JP7640286B2 - Absorbent bodies and absorbent articles - Google Patents
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- JP7640286B2 JP7640286B2 JP2021030068A JP2021030068A JP7640286B2 JP 7640286 B2 JP7640286 B2 JP 7640286B2 JP 2021030068 A JP2021030068 A JP 2021030068A JP 2021030068 A JP2021030068 A JP 2021030068A JP 7640286 B2 JP7640286 B2 JP 7640286B2
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- 239000002250 absorbent Substances 0.000 title claims description 208
- 230000002745 absorbent Effects 0.000 title claims description 208
- 239000004745 nonwoven fabric Substances 0.000 claims description 120
- 239000002131 composite material Substances 0.000 claims description 49
- 229920000247 superabsorbent polymer Polymers 0.000 claims description 48
- 239000000835 fiber Substances 0.000 claims description 46
- 229920002635 polyurethane Polymers 0.000 claims description 33
- 239000004814 polyurethane Substances 0.000 claims description 33
- XLYOFNOQVPJJNP-UHFFFAOYSA-N water Substances O XLYOFNOQVPJJNP-UHFFFAOYSA-N 0.000 claims description 18
- 239000000463 material Substances 0.000 claims description 17
- -1 polyethylene Polymers 0.000 claims description 17
- 239000004698 Polyethylene Substances 0.000 claims description 10
- 229920000573 polyethylene Polymers 0.000 claims description 10
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- 239000004743 Polypropylene Substances 0.000 claims description 7
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- 229920000642 polymer Polymers 0.000 claims description 6
- BXKDSDJJOVIHMX-UHFFFAOYSA-N edrophonium chloride Chemical compound [Cl-].CC[N+](C)(C)C1=CC=CC(O)=C1 BXKDSDJJOVIHMX-UHFFFAOYSA-N 0.000 claims description 4
- 230000000149 penetrating effect Effects 0.000 claims description 4
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- 210000001124 body fluid Anatomy 0.000 description 54
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- 238000005187 foaming Methods 0.000 description 5
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- 239000002245 particle Substances 0.000 description 5
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- 239000002356 single layer Substances 0.000 description 3
- VTYYLEPIZMXCLO-UHFFFAOYSA-L Calcium carbonate Chemical group [Ca+2].[O-]C([O-])=O VTYYLEPIZMXCLO-UHFFFAOYSA-L 0.000 description 2
- 239000000654 additive Substances 0.000 description 2
- 239000012790 adhesive layer Substances 0.000 description 2
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- 229920000742 Cotton Polymers 0.000 description 1
- 206010012735 Diarrhoea Diseases 0.000 description 1
- 235000014466 Douglas bleu Nutrition 0.000 description 1
- JOYRKODLDBILNP-UHFFFAOYSA-N Ethyl urethane Chemical compound CCOC(N)=O JOYRKODLDBILNP-UHFFFAOYSA-N 0.000 description 1
- IAYPIBMASNFSPL-UHFFFAOYSA-N Ethylene oxide Chemical compound C1CO1 IAYPIBMASNFSPL-UHFFFAOYSA-N 0.000 description 1
- 244000043261 Hevea brasiliensis Species 0.000 description 1
- 239000004909 Moisturizer Substances 0.000 description 1
- 241000218657 Picea Species 0.000 description 1
- 241000218606 Pinus contorta Species 0.000 description 1
- 235000005018 Pinus echinata Nutrition 0.000 description 1
- 241001236219 Pinus echinata Species 0.000 description 1
- 235000011334 Pinus elliottii Nutrition 0.000 description 1
- 241000142776 Pinus elliottii Species 0.000 description 1
- 235000017339 Pinus palustris Nutrition 0.000 description 1
- 235000008577 Pinus radiata Nutrition 0.000 description 1
- 241000218621 Pinus radiata Species 0.000 description 1
- 239000004952 Polyamide Substances 0.000 description 1
- 239000004372 Polyvinyl alcohol Substances 0.000 description 1
- 241000218683 Pseudotsuga Species 0.000 description 1
- 235000005386 Pseudotsuga menziesii var menziesii Nutrition 0.000 description 1
- 229920000297 Rayon Polymers 0.000 description 1
- 210000001015 abdomen Anatomy 0.000 description 1
- 239000006096 absorbing agent Substances 0.000 description 1
- NIXOWILDQLNWCW-UHFFFAOYSA-N acrylic acid group Chemical group C(C=C)(=O)O NIXOWILDQLNWCW-UHFFFAOYSA-N 0.000 description 1
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- FACXGONDLDSNOE-UHFFFAOYSA-N buta-1,3-diene;styrene Chemical compound C=CC=C.C=CC1=CC=CC=C1.C=CC1=CC=CC=C1 FACXGONDLDSNOE-UHFFFAOYSA-N 0.000 description 1
- 229910000019 calcium carbonate Inorganic materials 0.000 description 1
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- RPOCFUQMSVZQLH-UHFFFAOYSA-N furan-2,5-dione;2-methylprop-1-ene Chemical compound CC(C)=C.O=C1OC(=O)C=C1 RPOCFUQMSVZQLH-UHFFFAOYSA-N 0.000 description 1
- 229920000578 graft copolymer Polymers 0.000 description 1
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- 239000004816 latex Substances 0.000 description 1
- 229920000126 latex Polymers 0.000 description 1
- 235000014684 lodgepole pine Nutrition 0.000 description 1
- 239000006210 lotion Substances 0.000 description 1
- 238000005259 measurement Methods 0.000 description 1
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- 229920003052 natural elastomer Polymers 0.000 description 1
- 229920001194 natural rubber Polymers 0.000 description 1
- JRZJOMJEPLMPRA-UHFFFAOYSA-N olefin Natural products CCCCCCCC=C JRZJOMJEPLMPRA-UHFFFAOYSA-N 0.000 description 1
- 239000003002 pH adjusting agent Substances 0.000 description 1
- 239000012466 permeate Substances 0.000 description 1
- 229920003023 plastic Polymers 0.000 description 1
- 239000004033 plastic Substances 0.000 description 1
- 239000002985 plastic film Substances 0.000 description 1
- 229920006255 plastic film Polymers 0.000 description 1
- 229920000233 poly(alkylene oxides) Polymers 0.000 description 1
- 229920001200 poly(ethylene-vinyl acetate) Polymers 0.000 description 1
- 229920001495 poly(sodium acrylate) polymer Polymers 0.000 description 1
- 229920002647 polyamide Polymers 0.000 description 1
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- 229920002451 polyvinyl alcohol Polymers 0.000 description 1
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- 238000011160 research Methods 0.000 description 1
- 238000007127 saponification reaction Methods 0.000 description 1
- 235000000673 shore pine Nutrition 0.000 description 1
- NNMHYFLPFNGQFZ-UHFFFAOYSA-M sodium polyacrylate Chemical compound [Na+].[O-]C(=O)C=C NNMHYFLPFNGQFZ-UHFFFAOYSA-M 0.000 description 1
- 238000009987 spinning Methods 0.000 description 1
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- 229920000468 styrene butadiene styrene block copolymer Polymers 0.000 description 1
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- 238000012546 transfer Methods 0.000 description 1
- 238000003466 welding Methods 0.000 description 1
Landscapes
- Absorbent Articles And Supports Therefor (AREA)
- Nonwoven Fabrics (AREA)
Description
本発明は、吸収体及び該吸収体を備える吸収性物品に関する。 The present invention relates to an absorbent body and an absorbent article including the absorbent body.
一般に吸収性物品は、液透過性のトップシートと、液不透過性のバックシートと、これらの間に配置された吸収体とで構成され、尿等の体液はトップシートを透過して吸収体に吸収及び保持される。近年は吸収性物品を着けていることが目立たない、また着用時に違和感がなく、つけている感がない薄型の吸収性物品が望まれている。薄型の吸収性物品を設計する場合、通常、吸収性物品の大部分を占める吸収体の薄型化が検討され、薄型の吸収体を用いた吸収性物品が多く提案されている(特許文献1乃至4)。 Generally, absorbent articles are composed of a liquid-permeable top sheet, a liquid-impermeable back sheet, and an absorbent body disposed between them, and body fluids such as urine pass through the top sheet and are absorbed and held by the absorbent body. In recent years, there has been a demand for thin absorbent articles that are not noticeable when worn, and that do not feel strange or uncomfortable when worn. When designing thin absorbent articles, consideration is usually given to making the absorbent body, which makes up the majority of the absorbent article, thinner, and many absorbent articles using thin absorbent bodies have been proposed (Patent Documents 1 to 4).
特許文献1には、表面シートと吸収体との間にセカンドシートが配された吸収性物品において、吸収体が0.12g/cm3より高い密度を有し、セカンドシートが1.5×103N以上の毛細管力を有する吸収性物品が開示されている。特許文献1によれば、吸収体の密度とセカンドシートの毛細管力とを最適化することにより、吸収体の薄さと優れた吸収力とを高いレベルで両立して、装着時に安心と、快適な装着感を与えることができる、と記載されている。 Patent Document 1 discloses an absorbent article in which a second sheet is disposed between a top sheet and an absorbent body, the absorbent body having a density higher than 0.12 g/ cm3 , and the second sheet having a capillary force of 1.5 x 103 N or more. Patent Document 1 describes that by optimizing the density of the absorbent body and the capillary force of the second sheet, it is possible to achieve a high level of both thinness of the absorbent body and excellent absorbency, thereby providing a sense of security and comfort when worn.
特許文献2には、不織布及び高吸収性ポリマーを含む肌側吸収層と、親水性多孔質材料及び高吸収性ポリマーを含む非肌側吸収層とを有し、非肌側吸収層は実質的に縦長であり、その幅方向中央部は他の部位に比して、高吸収性ポリマーの分布量が少ない吸収性物品が開示されている。特許文献2によれば、非肌側吸収層に親水性多孔質材料を用い、高吸収性ポリマーの分布を最適化することにより、液拡散性、液保持性を高く保持しつつ、厚みが薄く、吸収速度が速くすることができる、と記載されている。 Patent Document 2 discloses an absorbent article having a skin-side absorbent layer containing a nonwoven fabric and a superabsorbent polymer, and a non-skin-side absorbent layer containing a hydrophilic porous material and a superabsorbent polymer, the non-skin-side absorbent layer being substantially elongated, with the amount of superabsorbent polymer distributed in the widthwise center portion being smaller than in other portions. Patent Document 2 describes that by using a hydrophilic porous material for the non-skin-side absorbent layer and optimizing the distribution of the superabsorbent polymer, it is possible to achieve a thin thickness and a fast absorption rate while maintaining high liquid diffusion and liquid retention.
特許文献3には、吸収性ゲル材料としてのポリウレタン発泡体層を含む基材層と、高吸収性ポリマー層と、接着剤層と、カバー層とがこの順に積層された積層体を含み、接着剤層がホットメルト接着剤を含み、カバー層が不織布を含む吸収体が開示されている(請求項1、2、4、段落0010、段落0016)。基材層及びカバー層を構成する材料としては、スパンボンド不織布、カード不織布、エアレイド不織布等の不織布材料が記載されるのみである(段落0045)。特許文献3によれば、基材層上に安定して取り付けられるポリウレタン発泡体層を組み込むことによって、フィット性が良く快適であり、吸収体の吸収能力の利用率を維持できる、と記載されている(段落0009、段落0043)。 Patent Document 3 discloses an absorbent body including a laminate in which a base layer including a polyurethane foam layer as an absorbent gel material, a superabsorbent polymer layer, an adhesive layer, and a cover layer are laminated in this order, the adhesive layer including a hot melt adhesive, and the cover layer including a nonwoven fabric (claims 1, 2, 4, paragraphs 0010 and 0016). As materials constituting the base layer and the cover layer, only nonwoven fabric materials such as spunbond nonwoven fabric, carded nonwoven fabric, and airlaid nonwoven fabric are described (paragraph 0045). Patent Document 3 describes that by incorporating a polyurethane foam layer that is stably attached to the base layer, the absorbent body has a good fit and is comfortable, and the utilization rate of the absorbent body's absorption capacity can be maintained (paragraphs 0009 and 0043).
特許文献4には、プラスチック発泡体層及び/又はラテックス発泡体層と、粒子状高吸収性ポリマーを含む体液吸収層と、を含む層状吸収体において、高吸収性ポリマーがプラスチック発泡体層及び/又はラテックス発泡体層の上に直接、それらの間に、又はその下に、所定量及び/又は所定の位置に配置され、並びに発泡プラスチック層及び/又は発泡ラテックス層:高吸収性ポリマーの量的比率が1:500乃至50:1、好ましくは1:50乃至25:1、最も好ましくは1:5乃至10:1である層状吸収体が開示されている。特許文献4によれば、前述の層状吸収体を採用することで、水及び水性液体に対する吸収性能、特に荷重下での吸収性能が高まる、と記載されている Patent document 4 discloses a layered absorbent body including a plastic foam layer and/or a latex foam layer and a body fluid absorbent layer including a particulate superabsorbent polymer, in which the superabsorbent polymer is disposed in a predetermined amount and/or at a predetermined position directly on, between, or below the plastic foam layer and/or the latex foam layer, and the quantitative ratio of the foamed plastic layer and/or the foamed latex layer to the superabsorbent polymer is 1:500 to 50:1, preferably 1:50 to 25:1, and most preferably 1:5 to 10:1. Patent document 4 describes that the use of the above-mentioned layered absorbent body enhances the absorption performance for water and aqueous liquids, especially the absorption performance under load.
特許文献1乃至4に記載の吸収体は、いずれも、フラッフパルプ等の吸収性繊維を含有しない薄型の吸収性シートに属するものであり、吸収性物品を薄型化、軽量化する上では有効であるものの、吸収性能をある程度犠牲にしなければならない。特に、吸収体面積の狭い軽失禁製品や尿取りパッドにおいては十分な吸収性能を保つことができない。 All of the absorbents described in Patent Documents 1 to 4 are thin absorbent sheets that do not contain absorbent fibers such as fluff pulp, and although they are effective in making absorbent articles thinner and lighter, they must sacrifice some absorption performance. In particular, they are unable to maintain sufficient absorption performance in light incontinence products and urine pads, which have a small absorbent surface area.
また、吸収性物品において、吸収の速さ(以下「吸収速度」ともいう)と逆戻り量の少なさは、吸収性能の指標としてどちらも重要であるが、吸収体として従来の吸収性シートを用いた薄型の吸収性物品においては両者を高い次元で満たすことは難しい。 In addition, in absorbent articles, both the speed of absorption (hereinafter also referred to as "absorption rate") and the small amount of return are important indicators of absorption performance, but it is difficult to satisfy both of these at a high level in thin absorbent articles that use conventional absorbent sheets as the absorbent body.
本発明の目的は、体液拡散性に優れ、吸収性能、吸収速度及び逆戻り防止性を高水準で兼ね備え、着用感、フィット性にも優れた薄型吸収体を備える吸収性物品を提供することである。 The object of the present invention is to provide an absorbent article with a thin absorbent body that has excellent bodily fluid diffusion, high levels of absorption performance, absorption speed, and backflow prevention, and also has excellent wearing comfort and fit.
本発明者は、上記課題を解決するために鋭意研究を重ねた結果、ポリウレタン連続多孔体シート、開孔フィルム、スパンボンド不織布上にパルプ繊維ウェブを積層し一体化してある複合型不織布、及び高吸収性ポリマーを用いて薄型吸収体(吸収性シート)を形成することにより、所望の吸収体及び吸収性物品が得られることを見出し、本発明を完成するに至った。すなわち本発明は下記の吸収性物品に係る。 As a result of intensive research conducted by the inventors to solve the above problems, they discovered that the desired absorbent body and absorbent article can be obtained by forming a thin absorbent body (absorbent sheet) using a polyurethane continuous porous sheet, a perforated film, a composite nonwoven fabric in which a pulp fiber web is laminated and integrated onto a spunbond nonwoven fabric, and a highly absorbent polymer, and thus completed the present invention. That is, the present invention relates to the following absorbent article.
(1)液透過性のトップシートと、液不透過性のバックシートと、その間に設けられた吸収体と、を備える吸収性物品であって、
前記吸収性シートは、
着用者の肌面側から、少なくとも、ポリウレタン連続多孔質体シート、開孔フィルム、スパンボンド不織布上にパルプ繊維ウェブを積層し一体化してある複合型不織布の順に積層されており、前記各シートの間に封入された高吸収性ポリマーを有し、
前記ポリウレタン連続多孔質体シートと前記開孔フィルムとの間と、前記開孔フィルムと前記複合型不織布との間には、それぞれが、前記高吸収性ポリマーを封入するブロック状の空間を形成するように接合されていることを特徴とする吸収性物品。
(2)前記ポリウレタン連続多孔体シートは、坪量が30g/m2以上300g/m2以下であり、かつ見かけ密度が100kg/m3以上200kg/m3以下である、上記(1)の吸収性物品。
(3)前記ポリウレタン連続多孔体シートは骨格表面が親水性である、上記(1)又は(2)の吸収性物品。
(4)前記開孔フィルムは、肌側面から非肌側面に貫通する貫通孔を有し、前記貫通孔の開孔径が0.3mm以上1.5mm以下であり、前記貫通孔の数が50個/cm2以上である、上記(1)乃(3)のいずれかの吸収性物品。
(5)前記貫通孔は、前記肌側面と前記非肌側面とでは前記開孔径の大きさが異なり、前記開孔径の差が0.03mm以上0.15mm以下である、上記(4)の吸収性物品。
(6)前記貫通孔の前記肌側面の前記開孔径が前記非肌側面の前記開孔径よりも大きい、上記(4)又は(5)の吸収性物品。
(7)前記複合型不織布の25mm幅試験片を、テンシロン引張試験において長手方向に2mm伸ばすのに要する強度が、1.5N/25mm以上5.0N/25mm以下である、上記(1)乃至(5)のいずれかの吸収性物品。
(8)前記スパンボンド不織布は、ナイロン(商標名)、ビニロン、ポリエステル、アクリル樹脂、ポリエチレン、ポリプロピレン、及びポリスチレンよりなる群から選ばれる樹脂材料からなる繊維の1種又は2種以上を含む、上記(1)乃至(7)のいずれかの吸収性物品。
(9)複合型不織布が、前記スパンボンド不織布と前記パルプ繊維ウェブとの水流交絡一体化物であり、前記水流交絡は、ウォータージェットを噴射するウォータージェットノズルの穴直径Φが0.06mm以上0.15mm以下、且つ前記ウォータージェットノズの間隔が0.4mm以上1.0mm以下の条件下で実施される、上記(1)乃至(8)のいずれかの吸収性物品。
(10)前記複合型不織布は、前記高吸収性ポリマーと接する前記パルプ繊維ウェブの表面に凹凸を有する、上記(1)乃至(9)のいずれかの吸収性物品。
(11)前記各シートの間に封入された前記高吸収性ポリマーの坪量が、それぞれ30g/m2以上300g/m2以下である、上記(1)乃至(10)のいずれかの吸収性物品。
(1) An absorbent article comprising a liquid-permeable top sheet, a liquid-impermeable back sheet, and an absorbent body provided therebetween,
The absorbent sheet is
The garment is made of at least a polyurethane continuous porous body sheet, a perforated film, and a composite nonwoven fabric obtained by laminating and integrating a pulp fiber web onto a spunbond nonwoven fabric in this order from the wearer's skin side, and has a highly absorbent polymer enclosed between the sheets;
An absorbent article characterized in that the polyurethane continuous porous body sheet and the perforated film, and the perforated film and the composite nonwoven fabric are bonded together so as to form a block-shaped space in which the superabsorbent polymer is enclosed.
(2) The absorbent article according to (1) above, wherein the open porous polyurethane sheet has a basis weight of 30 g/ m2 or more and 300 g/ m2 or less and an apparent density of 100 kg/ m3 or more and 200 kg/ m3 or less.
(3) The absorbent article according to (1) or (2) above, wherein the surface of the skeleton of the polyurethane continuous porous sheet is hydrophilic.
(4) An absorbent article according to any one of (1) to ( 3 ) above, wherein the perforated film has through holes penetrating from the skin side to the non-skin side, the aperture diameter of the through holes is 0.3 mm or more and 1.5 mm or less, and the number of the through holes is 50/cm2 or more.
(5) The absorbent article according to (4) above, wherein the through-holes have different opening diameters on the skin side and the non-skin side, the difference in opening diameter being 0.03 mm or more and 0.15 mm or less.
(6) The absorbent article according to (4) or (5) above, wherein the aperture diameter of the through-hole on the skin side is larger than the aperture diameter on the non-skin side.
(7) An absorbent article according to any one of (1) to (5) above, wherein the strength required to stretch a 25 mm wide test piece of the composite nonwoven fabric by 2 mm in the longitudinal direction in a Tensilon tensile test is 1.5 N/25 mm or more and 5.0 N/25 mm or less.
(8) An absorbent article according to any one of (1) to (7) above, wherein the spunbond nonwoven fabric contains one or more types of fibers made of a resin material selected from the group consisting of nylon (trade name), vinylon, polyester, acrylic resin, polyethylene, polypropylene, and polystyrene.
(9) An absorbent article according to any one of (1) to (8) above, wherein the composite nonwoven fabric is a hydroentangled integrated product of the spunbond nonwoven fabric and the pulp fiber web, and the hydroentanglement is carried out under conditions in which the hole diameter Φ of the water jet nozzle for spraying the water jet is 0.06 mm or more and 0.15 mm or less, and the distance between the water jet nozzles is 0.4 mm or more and 1.0 mm or less.
(10) The absorbent article according to any one of (1) to (9) above, wherein the composite nonwoven fabric has irregularities on the surface of the pulp fiber web that is in contact with the highly absorbent polymer.
(11) The absorbent article according to any one of (1) to (10) above, wherein the basis weight of the superabsorbent polymer enclosed between the sheets is 30 g/ m2 or more and 300 g/ m2 or less.
本発明によれぱ、体液拡散性に優れ、吸収性能、吸収速度及び逆戻り防止性を高水準で兼ね備え、着用感、フィット性にも優れた薄型吸収体を備える吸収性物品が提供される。 The present invention provides an absorbent article that has a thin absorbent body that has excellent bodily fluid diffusion properties, high levels of absorption performance, absorption speed, and backflow prevention, and also has excellent wearing comfort and fit.
本明細書において、吸収性物品の着用とは、体液の吸収前後を問わず、吸収性物品を身体に装着した状態をいう。吸収性物品において、長さ方向とは吸収性物品を身体に装着したときに装着者の股間部を介して身体の前後に亘る方向であり、幅方向とは長さ方向に対して直交する方向であり、厚さ方向とは各構成部材を積層する方向である。肌側面とは、吸収性物品を着用したときに、着用者の肌に当接する表面及び肌を臨む表面であり、非肌側面とは、着用者の衣服に接触する表面又は衣服を臨む表面である。体液とは、尿や血液、軟便中の水分等の体内から体外に排出された液体をいう。 In this specification, wearing an absorbent article refers to the state in which the absorbent article is worn on the body, regardless of whether bodily fluids have been absorbed or not. In an absorbent article, the length direction is the direction that spans the front and back of the body via the wearer's crotch when the absorbent article is worn on the body, the width direction is the direction perpendicular to the length direction, and the thickness direction is the direction in which each component is layered. The skin side is the surface that contacts the wearer's skin and faces the skin when the absorbent article is worn, and the non-skin side is the surface that contacts the wearer's clothing or faces the clothing. Body fluids refer to liquids discharged from the body to the outside, such as urine, blood, and water in loose stools.
<吸収性物品>
以下、図面を参照しつつ、本実施形態に係る吸収性物品50について説明する。図1乃至図3は、吸収性物品50を示す。図4は、吸収性シート前駆体25aを示す。図5は、吸収体20中の体液の代表的な流れを示す。図6乃至図10は、それぞれ、比較例1乃至7に係る吸収性物品70、71、72、73、74、75、76を示す。これらの図面は吸収性物品50中の各構成部材の形状や寸法、大小関係等を規定するものではない。
<Absorbent Articles>
The absorbent article 50 according to this embodiment will be described below with reference to the drawings. Figures 1 to 3 show the absorbent article 50. Figure 4 shows an absorbent sheet precursor 25a. Figure 5 shows a typical flow of bodily fluids in an absorbent body 20. Figures 6 to 10 show absorbent articles 70, 71, 72, 73, 74, 75, and 76 according to comparative examples 1 to 7, respectively. These drawings do not stipulate the shape, dimensions, size relationship, etc. of each component member in the absorbent article 50.
本実施形態の吸収性物品50は、乳幼児用、成人用及び高齢者用の種々の吸収性物品として使用でき、例えば、軽失禁製品、軽失禁ライナー、尿取りパッド、生理用ナプキン等のパッド製品、パンツタイプ紙おむつ、テープ止めタイプ紙おむつ等の紙おむつ製品等が挙げられる。これらの中でも、薄型であることと、複数回の吸収でも吸収量や吸収速度が低下しないことを利用して、特に軽失禁製品、尿取りパッド等のパッド製品として好適に使用できる。また、アウターとしての各種紙おむつと、インナーとしての吸収性物品50とを組み合わせてもよい。吸収性物品50の、長手方向の寸法(最大寸法)、及び幅方向の寸法(最大寸法)はいずれも特に限定されないが、それぞれ、例えば、100mm以上800mm以下の範囲、及び50mm以上500mm以下の範囲である。吸収性物品50の寸法を前記の範囲に調整すると、種々の形態の吸収性物品が容易に得られる。 The absorbent article 50 of this embodiment can be used as various absorbent articles for infants, adults, and the elderly, and examples of such products include light incontinence products, light incontinence liners, urine pads, sanitary napkins, and other pad products, as well as pants-type paper diapers and tape-fastened paper diapers. Among these, the absorbent article 50 can be particularly used as a pad product such as a light incontinence product or a urine pad, taking advantage of its thinness and the fact that the amount of absorption and the absorption speed do not decrease even after multiple absorptions. In addition, various paper diapers as outerwear and the absorbent article 50 as innerwear may be combined. The longitudinal dimension (maximum dimension) and width dimension (maximum dimension) of the absorbent article 50 are not particularly limited, but are, for example, in the range of 100 mm to 800 mm and 50 mm to 500 mm, respectively. By adjusting the dimensions of the absorbent article 50 to the above ranges, various types of absorbent articles can be easily obtained.
図1及び図2に示す吸収性物品50は、肌側に位置する、液透過性のトップシート10と、トップシート10に対向配置され、非肌側に位置する液不透過性のバックシート30と、トップシート10とバックシート30との間に配置された吸収体20と、トップシート10の肌側面に設けられた一対の立体ギャザー40と、を備える。 The absorbent article 50 shown in Figures 1 and 2 comprises a liquid-permeable top sheet 10 located on the skin side, a liquid-impermeable back sheet 30 located opposite the top sheet 10 and on the non-skin side, an absorbent body 20 disposed between the top sheet 10 and the back sheet 30, and a pair of three-dimensional gathers 40 provided on the skin side of the top sheet 10.
吸収体20はフラッフパルプ等の吸収性繊維を含まない吸収性シート25を含み、図2に示すように、肌側から非肌側に向けて、ポリウレタン連続多孔体シート21と、開孔フィルム22と、スパンボンド不織布27上にパルプ繊維ウェブ26を積層し一体化した複合型不織布23とがこの順に積層されており、ポリウレタン連続多孔体シート21と開孔フィルム22とのシート間に高吸収性ポリマー12(図4)を封入した第1SAP層と、開孔フィルム22と複合型不織布23とのシート間に高吸収性ポリマー12を封入した第2SAP層とを有し、第1SAP層には該層を面方向にブロック状空間62に分割し、かつポリウレタン連続多孔体シート21と開孔フィルム22とを部分的に接合する平面視帯状の第1接合部60が縦横に設けられ、第2SAP層には該層を面方向にブロック状空間63に分割し、かつ開孔フィルム22と複合型不織布23とを部分的に接合する平面視帯状の第2接合部61が縦横に設けられている。 The absorbent body 20 includes an absorbent sheet 25 that does not contain absorbent fibers such as fluff pulp, and as shown in FIG. 2, a polyurethane continuous porous body sheet 21, a perforated film 22, and a composite nonwoven fabric 23 in which a pulp fiber web 26 is laminated and integrated onto a spunbond nonwoven fabric 27 are laminated in this order from the skin side to the non-skin side. A first SAP layer in which a superabsorbent polymer 12 (FIG. 4) is enclosed between the polyurethane continuous porous body sheet 21 and the perforated film 22, and a composite nonwoven fabric 23 in which a superabsorbent polymer 12 (FIG. 4) is laminated between the perforated film 22 and the composite nonwoven fabric 23 are laminated in this order from the skin side to the non-skin side. The first SAP layer has a second SAP layer with a superabsorbent polymer 12 enclosed between the composite nonwoven fabric 23 and the first SAP layer. The first SAP layer is provided with first bonding portions 60 that are strip-shaped in plan view and that divide the layer into block-shaped spaces 62 in the surface direction and partially bond the continuous polyurethane porous body sheet 21 and the perforated film 22, and the second SAP layer is provided with second bonding portions 61 that are strip-shaped in plan view and that divide the layer into block-shaped spaces 63 in the surface direction and partially bond the perforated film 22 and the composite nonwoven fabric 23, and the second SAP layer is provided with second bonding portions 61 that are strip-shaped in plan view and that divide the layer into block-shaped spaces 63 in the surface direction and that partially bond the perforated film 22 and the composite nonwoven fabric 23.
本実施形態によれば、着用者の肌側から順に配置されたポリウレタン連続多孔質体シート21と、開孔フィルム22と、複合型不織布23との各層間が高吸収性ポリマー12を含むブロック状空間62、63を形成するように部分的に接合された吸収性シート25を備えることで、特に繰り返し吸収の際に吸収速度が低下せず、逆戻りが少なく、体液の拡散性に優れた、吸収性及び着用感の良好な吸収体20及び吸収体20を備える吸収性物品50を得ることができる。ポリウレタン連続多孔体シート21は柔軟性に富むことから、体液吸収前においては高吸収性ポリマー12の硬さを感じ難く、また複合型不織布23は水流交絡面に形成されたウォータージェットによるパルプ繊維ウェブ26の凹凸な表面が高吸収性ポリマー12に接しており、更にブロック状空間63に高吸収性ポリマー12が封入配置されていることによって、高吸収性ポリマー12の位置ズレ、移動が抑えられて、体液吸収後も厚さや触感を長手方向、幅方向でより均一に保つことができるため、着用感が向上する。 According to this embodiment, by providing an absorbent sheet 25 in which the layers of a polyurethane continuous porous body sheet 21, a perforated film 22, and a composite nonwoven fabric 23, which are arranged in this order from the wearer's skin side, are partially joined to form block-shaped spaces 62, 63 containing superabsorbent polymer 12 between each layer, it is possible to obtain an absorbent body 20 and an absorbent article 50 comprising the absorbent body 20, which have good absorbency and wearing comfort, and which do not reduce the absorption rate particularly during repeated absorption, have little backflow, and have excellent diffusion of body fluids. Because the polyurethane continuous porous sheet 21 is highly flexible, the hardness of the superabsorbent polymer 12 is difficult to feel before absorbing bodily fluids, and the composite nonwoven fabric 23 has an uneven surface of the pulp fiber web 26 formed by the water jet on the water flow entanglement surface, which contacts the superabsorbent polymer 12. Furthermore, because the superabsorbent polymer 12 is enclosed and arranged in the block-shaped space 63, the positional shift and movement of the superabsorbent polymer 12 is suppressed, and the thickness and feel can be maintained more uniformly in the longitudinal and transverse directions even after absorbing bodily fluids, improving the wearing comfort.
本実施形態の吸収性物品50は、トップシート10、吸収体20、及びバックシート30を基本構成単位とするものであり、必要に応じて、前述のような立体ギャザー40の配設、トップシート10と吸収体20との間への液透過性のトランスファシート(不図示)や液透過性のセカンドシートの配設等の、公知の様々な改変を施すことができる。以下、吸収性物品50の構成部材について、トップシート10、吸収体20、バックシート30、及び立体ギャザー40の順で更に詳しく説明する。
The absorbent article 50 of this embodiment has the top sheet 10, absorbent body 20, and back sheet 30 as basic constituent units, and can be modified as necessary with various known modifications, such as the provision of the above-mentioned three-dimensional gathers 40, and the provision of a liquid-permeable transfer sheet (not shown) or a liquid-permeable second sheet between the top sheet 10 and absorbent body 20. The components of the absorbent article 50 will be described in more detail below in the order of the top sheet 10, absorbent body 20, back sheet 30, and three-dimensional gathers 40.
<トップシート>
トップシート10は、吸収体20に向けて体液を速やかに通過させる液透過性のシート状基材である。トップシート10は、着用者の肌に当接してもよいように、柔らかな感触で、肌に刺激を与えない基材が好ましい。該基材としては、例えば、親水性シート、同種又は異種の親水性シートの積層体である複合不織布、開口ポリエチレンフィルム等の開口性フィルム、ポリエチレンフォーム、ウレタンフォーム等の発泡フィルム等が挙げられる。親水性シートとしては、例えば、ポリプロピレンやポリエチレン等の合成樹脂からなる合成繊維、レーヨン等の再生繊維、綿等の天然繊維等を用いて作製された、エアスルー不織布、サーマルボンド不織布、スパンレース不織布、スパンボンド不織布等が挙げられる。これらの中でも不織布が好ましく、エアスルー不織布、サーマルボンド不織布、スパンボンド不織布等がより好ましい。
<Top sheet>
The top sheet 10 is a liquid-permeable sheet-like substrate that allows bodily fluids to pass quickly toward the absorbent 20. The top sheet 10 is preferably a substrate that has a soft feel and does not irritate the skin so that it may come into contact with the wearer's skin. Examples of the substrate include hydrophilic sheets, composite nonwoven fabrics that are laminates of the same or different hydrophilic sheets, open-ended films such as open-ended polyethylene films, and foamed films such as polyethylene foam and urethane foam. Examples of hydrophilic sheets include air-through nonwoven fabrics, thermal bond nonwoven fabrics, spunlace nonwoven fabrics, spunbond nonwoven fabrics, and the like, which are made using synthetic fibers made of synthetic resins such as polypropylene and polyethylene, regenerated fibers such as rayon, and natural fibers such as cotton. Among these, nonwoven fabrics are preferred, and air-through nonwoven fabrics, thermal bond nonwoven fabrics, spunbond nonwoven fabrics, and the like are more preferred.
トップシート10には、液透過性を向上させる観点から、エンボス加工や穿孔加工を表面に施してもよい。トップシート10は、肌への刺激を低減させる観点から、ローション、酸化防止剤、抗炎症成分、pH調整剤、抗菌剤、保湿剤等の1種又は2種以上を含有してもよい。トップシート10の坪量は、強度、加工性及び液戻り量の観点から、例えば、18g/m2以上400g/m2以下の範囲である。トップシート10の形状は特に制限されず、漏れがないように体液を吸収体20へと誘導するために必要とされる、吸収体20の一部又は全部を覆う形状であればよい。 The top sheet 10 may be embossed or perforated on the surface in order to improve liquid permeability. The top sheet 10 may contain one or more of lotion, antioxidant, anti-inflammatory component, pH adjuster, antibacterial agent, moisturizer, etc. in order to reduce irritation to the skin. The basis weight of the top sheet 10 is, for example, in the range of 18 g/m 2 to 400 g/m 2 in terms of strength, processability, and liquid return amount. The shape of the top sheet 10 is not particularly limited, and may be any shape that covers a part or all of the absorbent body 20, which is necessary to guide bodily fluids to the absorbent body 20 without leakage.
<吸収体>
吸収体20は、その長手方向の寸法(最大長さ)が、例えば、100mm以上800mm以下の範囲、150mm以上500mm以下の範囲、又は270mm以上500mm以下の範囲である。吸収体20の幅方向の寸法(最大幅)は、例えば、50mm以上500mm以下の範囲、60mm以上400mm以下の範囲、又は70mm以上105mm以下の範囲である。また、吸収体20の平面視形状が砂時計型である場合は、長手方向寸法が180mm以上800mm以下の範囲、着用者の腹部及び背部にそれぞれ当接する腹側部及び背側部の幅方向寸法がともに60mm以上400mm以下の範囲であり、着用者の股間部に当接する股部の幅方向寸法が90mm以上250mm以下の範囲である。吸収体20の全面又は一部にエンボス加工を施してもよい。吸収体20の平面視形状としては、例えば、砂時計型、Iの字状、長方形、4角が丸まった角丸四角形、長円等が挙げられる。
<Absorbent>
The absorbent body 20 has a longitudinal dimension (maximum length) in the range of, for example, 100 mm to 800 mm, 150 mm to 500 mm, or 270 mm to 500 mm. The widthwise dimension (maximum width) of the absorbent body 20 is, for example, 50 mm to 500 mm, 60 mm to 400 mm, or 70 mm to 105 mm. When the planar shape of the absorbent body 20 is an hourglass shape, the longitudinal dimension is in the range of 180 mm to 800 mm, the widthwise dimensions of the ventral side portion and the back side portion that contact the wearer's abdomen and back, respectively, are both in the range of 60 mm to 400 mm, and the widthwise dimension of the crotch portion that contacts the wearer's crotch is in the range of 90 mm to 250 mm. The absorbent body 20 may be embossed on the entire surface or a part thereof. Examples of the shape of the absorber 20 in a plan view include an hourglass shape, an I-shape, a rectangle, a rounded rectangle with rounded corners, an oval, and the like.
本実施形態の吸収体20は、フラッフパルプ等の吸収性繊維を含有しない吸収性シート25と、吸収性シート25を包む親水性シート24とを含んでいる。吸収性シート25については後に詳述する。親水性シート24は、例えば、その幅方向中央部付近に吸収性シート25の非肌側面を載置し、必要に応じてこれら接着した後、親水性シート24の幅方向両側をC折りにより吸収性シート25の肌側で重ね合わせ、必要に応じて重ね合わせた部分を接着することで、吸収性シート25全体を包む。親水性シート24は、前述のように吸収性シート25の全体を包むだけでなく、吸収性シート25の非肌側面、幅方向両側面、及び肌側面の幅方向両端部付近を覆い、トップシート10と吸収性シート25との間で、親水性シート24の幅方向両端が対向及び離隔して、長手方向に延びるスリット状空間が形成されるように吸収性シート25を包んでもよい。 The absorbent body 20 of this embodiment includes an absorbent sheet 25 that does not contain absorbent fibers such as fluff pulp, and a hydrophilic sheet 24 that wraps the absorbent sheet 25. The absorbent sheet 25 will be described in detail later. For example, the non-skin side of the absorbent sheet 25 is placed near the center of the width direction of the hydrophilic sheet 24, and after bonding them as necessary, both sides of the hydrophilic sheet 24 in the width direction are overlapped on the skin side of the absorbent sheet 25 by C-folding, and the overlapped parts are bonded as necessary, thereby wrapping the entire absorbent sheet 25. The hydrophilic sheet 24 may not only wrap the entire absorbent sheet 25 as described above, but also cover the non-skin side, both width direction sides, and the vicinity of both width direction ends of the skin side of the absorbent sheet 25, and wrap the absorbent sheet 25 so that both width direction ends of the hydrophilic sheet 24 face each other and are separated from each other to form a slit-like space extending in the longitudinal direction between the top sheet 10 and the absorbent sheet 25.
(親水性シート)
親水性シート24としては、この分野で常用されるものをいずれも使用でき、例えば、サーマルボンド不織布、スパンボンド不織布、エアレイド不織布、エアスルー不織布、パルプ含有不織布等の親水性不織布、ティシュペーパー、吸収紙等が挙げられる。親水性不織布の中でも、サーマルボンド不織布、スパンボンド不織布、エアスルー不織布、パルプ含有不織布等の親水性不織布がより好ましく、エアスルー不織布、パルプ含有不織布、スパンボンド不織布等がさらに好ましい。親水性シート24の厚さは例えば0.10mm以上0.25mm以下の範囲、坪量は例えば5g/m2以上40g/m2以下の範囲である。以下、吸収性シートを構成する各部材について説明する。
(hydrophilic sheet)
As the hydrophilic sheet 24, any of those commonly used in this field can be used, and examples thereof include hydrophilic nonwoven fabrics such as thermal bonded nonwoven fabrics, spunbonded nonwoven fabrics, airlaid nonwoven fabrics, air-through nonwoven fabrics, and pulp-containing nonwoven fabrics, tissue paper, absorbent paper, etc. Among hydrophilic nonwoven fabrics, hydrophilic nonwoven fabrics such as thermal bonded nonwoven fabrics, spunbonded nonwoven fabrics, air-through nonwoven fabrics, and pulp-containing nonwoven fabrics are more preferred, and air-through nonwoven fabrics, pulp-containing nonwoven fabrics, spunbonded nonwoven fabrics, etc. are even more preferred. The thickness of the hydrophilic sheet 24 is, for example, in the range of 0.10 mm to 0.25 mm, and the basis weight is, for example, in the range of 5 g/m 2 to 40 g/m 2. Hereinafter, each member constituting the absorbent sheet will be described.
(ポリウレタン連続多孔体シート)
ポリウレタン連続多孔体シート21は、ポリウレタン連続気泡発泡体(以下「軟質ポリウレタンフォーム」ともいう)を主成分として含み、体液拡散性及び柔軟性に優れている。ここで、「主成分として含む」とは、軟質ポリウレタンフォームを全体の50質量%以上含有することを意味する。ポリウレタン連続多孔体シート21には、例えば、軟質ポリウレタンフォームを主成分として含有する単層シート、軟質ポリウレタンフォームからなる単層シート等を使用できる。
(Polyurethane continuous porous sheet)
The continuous porous polyurethane sheet 21 contains an open-cell polyurethane foam (hereinafter also referred to as "flexible polyurethane foam") as a main component, and has excellent body fluid diffusibility and flexibility. Here, "containing as a main component" means that the soft polyurethane foam accounts for 50% by mass or more of the total. The continuous porous polyurethane sheet 21 may be, for example, a single-layer sheet containing soft polyurethane foam as a main component, or a single-layer sheet made of soft polyurethane foam.
ポリウレタン連続多孔体シート21は、例えば、トップシート10を透過してきた体液を吸収体20(吸収性シート25)全体に万遍なく拡散させる。ポリウレタン連続多孔体シート21は柔軟性をも有し、体液吸収前は高吸収性ポリマー12の粒子のざらつき感を緩和し、体液吸収後は高吸収性ポリマー12が膨潤して生じるゼリー状の圧迫感、体液を吸収して膨潤及び硬化した後のゴツゴツ感を緩和するので、吸収性物品50の着用感が大きく向上する。 The polyurethane continuous porous sheet 21, for example, diffuses bodily fluids that have permeated the top sheet 10 evenly throughout the absorbent 20 (absorbent sheet 25). The polyurethane continuous porous sheet 21 is also flexible, and reduces the roughness of the particles of the superabsorbent polymer 12 before absorbing bodily fluids, and reduces the jelly-like pressure caused by the swelling of the superabsorbent polymer 12 after absorbing bodily fluids, as well as the roughness after absorbing bodily fluids and swelling and hardening, greatly improving the wearing comfort of the absorbent article 50.
軟質ポリウレタンフォームは、例えば、ポリオール、ポリイソシアネート等の原料化合物、発泡剤、整泡剤、触媒等の添加剤等を混合し、得られた混合物を加熱して発泡させることにより得ることができる。また、原料化合物を加熱下に反応させつつ、気体系の発泡剤を注入してもよい。原料化合物の種類、添加剤の種類と添加量、発泡時の加熱温度、発泡時間、発泡時の加圧力といった反応条件を適宜選択することにより、軟質ポリウレタンフォームの発泡倍率、見かけ密度、引張強度、引張破断伸び、伸長応力、平均摩擦係数(MIU)、摩擦係数変動(MMD)等の各特性を調整できる。例えば、軟質ポリウレタンフォームの発泡倍率は、体液拡散性、柔軟性等の観点から、10倍以上60倍以下の範囲である。また、軟質ポリウレタンフォームは、抽出法、W/Oエマルション法等に従って製造することもできる。 Flexible polyurethane foam can be obtained by mixing raw material compounds such as polyol and polyisocyanate, additives such as foaming agent, foam stabilizer, and catalyst, and heating the resulting mixture to foam. Alternatively, a gaseous foaming agent may be injected while reacting the raw material compounds under heating. By appropriately selecting reaction conditions such as the type of raw material compound, the type and amount of additive, the heating temperature during foaming, the foaming time, and the pressure during foaming, the properties of the flexible polyurethane foam, such as the foaming ratio, apparent density, tensile strength, tensile elongation at break, elongation stress, average coefficient of friction (MIU), and coefficient of friction variation (MMD), can be adjusted. For example, the foaming ratio of the flexible polyurethane foam is in the range of 10 times or more and 60 times or less from the viewpoint of body fluid diffusibility, flexibility, etc. Flexible polyurethane foam can also be produced according to an extraction method, a W/O emulsion method, etc.
ポリウレタン連続多孔体シート21の坪量及び見かけ密度は、体液拡散性や柔軟性、液戻りや体液漏れの防止性、通気性や蒸れ等の観点から、それぞれ、坪量が例えば30g/m2以上300g/m2以下の範囲、又は50g/m2以上250g/m2以下の範囲から選択され、見かけ密度は、吸収体20全体としての機械的強度、体液吸収後の吸収体20のずり落ち防止、柔軟性等の観点から、100kg/m3以上200kg/m3以下の範囲、又は120g/m2以上180g/m2以下の範囲からから選択される。 The basis weight and apparent density of the polyurethane continuous porous sheet 21 are selected, for example, from the range of 30 g/m2 or more to 300 g/ m2 or from the range of 50 g/m2 or more to 250 g/ m2 or less from the viewpoints of bodily fluid diffusion, flexibility, prevention of liquid return and bodily fluid leakage, breathability, stuffiness, etc. , and the apparent density is selected, for example, from the range of 100 kg/m3 or more to 200 kg/ m3 or from the range of 120 g/m2 or more to 180 g/ m2 or less from the viewpoints of the mechanical strength of the absorbent body 20 as a whole, prevention of slipping of the absorbent body 20 after absorbing bodily fluids, flexibility, etc.
ポリウレタン連続多孔体シート21の厚みは、例えば、1.0mm以上4.0mm以下の範囲、又は1.5mm以上3.2mm以下の範囲である。厚みは、例えば「ハイトゲージ」((株)ミツトヨ製)を用いて、無荷重条件下で測定する。 The thickness of the polyurethane continuous porous sheet 21 is, for example, in the range of 1.0 mm to 4.0 mm, or in the range of 1.5 mm to 3.2 mm. The thickness is measured under no-load conditions, for example, using a "height gauge" (manufactured by Mitutoyo Corporation).
ポリウレタン連続多孔体シート21に含まれる軟質ポリウレタンフォームの骨格表面は親水性でも疎水性でもよいが、体液の濡れ易さ等の観点から、好ましい実施形態では骨格表面は親水性である。なお、親水性を有する骨格としては、ポリオールとポリアルキレンオキシドポリオールとを含有するものが挙げられる。また、疎水性骨格に界面活性剤やエチレンオキシド等に由来する親水性基を導入して親水化したものでもよい。骨格表面が親水性であるか否かは、まず、ポリウレタン連続多孔体シート21から幅10mm以上、長さ10mm以上の寸法で切り出した試料を撓みがないように平面上に静置し、次に、試料にイオン交換水の水滴(0.05mL)を10滴たらし、試料に吸収されるまでの時間を測定し、この時間が5秒以内である場合、又は8滴以上の水滴が吸収された場合を親水性であると判断する。 The skeleton surface of the soft polyurethane foam contained in the continuous polyurethane porous sheet 21 may be hydrophilic or hydrophobic, but in a preferred embodiment, the skeleton surface is hydrophilic from the viewpoint of wettability with body fluids, etc. Examples of skeletons having hydrophilic properties include those containing polyol and polyalkylene oxide polyol. In addition, the skeleton may be hydrophilized by introducing hydrophilic groups derived from surfactants or ethylene oxide into the hydrophobic skeleton. Whether the skeleton surface is hydrophilic or not is determined by first cutting a sample with dimensions of 10 mm or more in width and length from the continuous polyurethane porous sheet 21 and placing it on a flat surface without bending, then dropping 10 drops of ion-exchanged water (0.05 mL) onto the sample and measuring the time until the sample is absorbed. If this time is within 5 seconds or if 8 or more drops of water are absorbed, it is determined to be hydrophilic.
(開孔フィルム)
開孔フィルム22は、図2乃至図4に示すように、一方の表面から他方の表面に貫通する複数の開孔22aを有することで液透過性を示す。開孔フィルム22は、吸収性シート25において、肌側に位置する肌側シート(以下「肌側素材」ともいう)であるポリウレタン連続多孔体シート21と、非肌側に位置する非肌側シート(以下「非肌側素材」ともいう)である複合型不織布23との中間シート(以下「中間素材」ともいう)として設けられ、ポリウレタン連続多孔体シート21と複合型不織布23との間の高吸収性ポリマー12の固着担持層を厚さ方向に第1SAP層(肌側SAP層)と第2SAP層(非肌側SAP層)とに2分して、第1SAP層と第2SAP層との間で体液が透過可能になるように配置されている。
(perforated film)
The perforated film 22 exhibits liquid permeability by having a plurality of perforations 22a penetrating from one surface to the other surface, as shown in Figures 2 to 4. The perforated film 22 is provided as an intermediate sheet (hereinafter also referred to as "intermediate material") between the continuous porous polyurethane sheet 21, which is the skin-side sheet (hereinafter also referred to as "skin-side material") located on the skin side in the absorbent sheet 25, and the composite nonwoven fabric 23, which is the non-skin-side sheet (hereinafter also referred to as "non-skin-side material") located on the non-skin side, and the fixed support layer of the superabsorbent polymer 12 between the continuous porous polyurethane sheet 21 and the composite nonwoven fabric 23 is divided in the thickness direction into a first SAP layer (skin-side SAP layer) and a second SAP layer (non-skin-side SAP layer), and is arranged so that body fluids can permeate between the first SAP layer and the second SAP layer.
図5に示すように、吸収体20(又は吸収性シート25)に対して排泄された体液は、開孔フィルム22の抵抗を受けて一旦第1SAP層を面方向(特に長手方向)に広がり、それとほぼ同時に開孔フィルム22の複数の開孔22aから第2SAP層にも流れ込み、第1SAP層及び第2SAP層の体液拡散性、特に長手方向への体液拡散性を高めることができる。これとともに、開孔フィルム22は、例えば、体液を吸収した高吸収性ポリマー12が膨潤して結合するゲルブロッキングが広範囲に発生して吸収速度や吸収量等が低下するのを防止する。その結果、複数回の体液吸収を行なった後でも、体液の吸収速度の低下が非常に少なく、漏れを防止しつつ、体液を吸収できる。 As shown in FIG. 5, body fluids excreted into the absorbent 20 (or absorbent sheet 25) are subjected to the resistance of the perforated film 22 and spread in the first SAP layer in the planar direction (particularly in the longitudinal direction), and at the same time flow into the second SAP layer through the multiple perforations 22a of the perforated film 22, thereby enhancing the body fluid diffusion properties of the first and second SAP layers, particularly in the longitudinal direction. At the same time, the perforated film 22 prevents, for example, gel blocking, which occurs when the superabsorbent polymer 12 that has absorbed body fluid swells and bonds, from occurring over a wide area, resulting in a decrease in the absorption rate and amount of absorption. As a result, even after multiple body fluid absorptions, there is very little decrease in the absorption rate of body fluids, and body fluids can be absorbed while preventing leakage.
開孔フィルム22は、前述のように、肌側面から非肌側面に貫通し、両方の表面に開口する複数の開孔(貫通孔)22aを有している。開孔フィルム22における開孔22aの数は、例えば50個/cm2以上であり、上限は開孔22aの開孔径に応じて、第1SAP層における体液の面方向への流れを作り出す効果と、開孔22aによる第1SAP層から第2SAP層への体液の拡散効果とが高水準でバランス良く得られる範囲を適宜選択すればよい。また、体液透過性等の観点から、開孔面積率は25%以上50%以の範囲、又は30%以上50%以下の範囲である。開孔22aは、例えば、一方の表面の開孔径が他方の表面の開孔径よりも大きい漏斗状の立体形状を有する。本実施形態の開孔フィルム22は、肌側面の開孔径が非肌側面の開孔径よりも大きくなるように、又は非肌面の開孔径が肌側面の開孔径よりも大きくなるように配置され、その配置により、第1SAP層から第2SAP層への体液拡散性が向上し、吸収性シート25全体としての体液拡散性が向上する。前述の2つの配置の中でも、体液拡散性等の観点から、肌側面の前記開孔径が非肌側面の開孔径よりも大きくなる配置が好ましい。 As described above, the perforated film 22 has a plurality of openings (through holes) 22a penetrating from the skin side to the non-skin side and opening on both surfaces. The number of openings 22a in the perforated film 22 is, for example, 50/ cm2 or more, and the upper limit may be appropriately selected according to the opening diameter of the openings 22a so that the effect of creating a flow of body fluid in the first SAP layer in the surface direction and the effect of diffusing body fluid from the first SAP layer to the second SAP layer by the openings 22a can be obtained at a high level and in a well-balanced manner. From the viewpoint of body fluid permeability, the open area ratio is in the range of 25% to 50%, or in the range of 30% to 50%. The openings 22a have, for example, a funnel-shaped three-dimensional shape in which the opening diameter on one surface is larger than the opening diameter on the other surface. The perforated film 22 of this embodiment is arranged so that the pore diameter on the skin side is larger than the pore diameter on the non-skin side, or so that the pore diameter on the non-skin side is larger than the pore diameter on the skin side, and this arrangement improves the bodily fluid diffusibility from the first SAP layer to the second SAP layer, thereby improving the bodily fluid diffusibility of the entire absorbent sheet 25. Of the two arrangements mentioned above, from the viewpoint of bodily fluid diffusibility etc., an arrangement in which the pore diameter on the skin side is larger than the pore diameter on the non-skin side is preferred.
開孔フィルム22において、肌側面及び非肌側面における開孔径は、例えば0.3mm以上1.5mm以下の範囲から選択される。開孔径が0.3mm未満では、第1SAP層から第2SAP層への体液透過性が低下する傾向がある。開孔径が1.5mmを超えると、体液が透過しやすくなりすぎ、第1SAP層の面方向、特に長手方向の流れを形成できない傾向がある。また、好ましい実施形態では、開孔フィルム22は、肌側面の開孔径が、非肌側面の開孔径よりも、0.03mm以上0.15mm以下大きい。肌側面の開孔径と、非肌側面の開孔径との差を前述の範囲とすることで、開孔フィルム22による第1SAP層での体液の面方向への流れと、体液の第2SAP層への拡散とがバランスよく両立し、吸収性シート25全体としての体液拡散性が向上する。 In the perforated film 22, the pore size on the skin side and non-skin side is selected from the range of 0.3 mm to 1.5 mm. If the pore size is less than 0.3 mm, the permeability of body fluids from the first SAP layer to the second SAP layer tends to decrease. If the pore size is more than 1.5 mm, the body fluids tend to pass through too easily and do not flow in the surface direction of the first SAP layer, particularly in the longitudinal direction. In a preferred embodiment, the perforated film 22 has a pore size on the skin side that is 0.03 mm to 0.15 mm larger than the pore size on the non-skin side. By setting the difference between the pore size on the skin side and the pore size on the non-skin side within the above-mentioned range, the flow of body fluids in the surface direction in the first SAP layer through the perforated film 22 and the diffusion of body fluids to the second SAP layer are both balanced, and the body fluid diffusion of the absorbent sheet 25 as a whole is improved.
開孔フィルム22の坪量は、吸収性物品50が硬い感触になって着用感が低下するのを防止する観点等から、例えば10g/m2以上100g/m2以下の範囲である。開孔フィルム22としては、貫通孔の立体形状が漏斗状であるプラスチックフィルムを特に限定なく使用でき、開孔ポリエチレンフィルム、開孔ポリプロピレンフィルム等が挙げられる。 The basis weight of the perforated film 22 is, for example, in the range of 10 g/ m2 to 100 g/ m2 from the viewpoint of preventing the absorbent article 50 from feeling hard and reducing the wearing comfort. As the perforated film 22, any plastic film having through holes with a three-dimensional shape of a funnel can be used without any particular limitation, and examples thereof include perforated polyethylene film and perforated polypropylene film.
(複合型不織布)
複合型不織布23は、スパンボンド不織布27の表面上にパルプ繊維ウェブ26を積層又は積層して一体化した不織布である(図2乃至図4)。ここで「一体化」とは、吸収性物品50の使用期間にスパンボンド不織布27とパルプ繊維ウェブ26とが部分的でも剥離して、複合型不織布23の機能が大きく低減することがない状態にあることを意味する。本実施形態の複合型不織布23は、例えば、図3の第1接合部60及び第2接合部61形成前の吸収体前駆体25aに示すように、中間素材である開孔フィルム22と非肌側素材である複合型不織布23のパルプ繊維ウェブ26とが対向するように配置される。このように配置することで、後述するパルプ繊維ウェブ26の機能が十分に発揮され、所望の吸収体20が得られる。
(Composite nonwoven fabric)
The composite nonwoven fabric 23 is a nonwoven fabric in which a pulp fiber web 26 is laminated or laminated and integrated on the surface of a spunbond nonwoven fabric 27 (FIGS. 2 to 4). Here, "integrated" means that the spunbond nonwoven fabric 27 and the pulp fiber web 26 are not even partially peeled off during the use period of the absorbent article 50, and the function of the composite nonwoven fabric 23 is not significantly reduced. In the composite nonwoven fabric 23 of this embodiment, the perforated film 22, which is an intermediate material, and the pulp fiber web 26 of the composite nonwoven fabric 23, which is a non-skin side material, are arranged so as to face each other, for example, as shown in the absorbent precursor 25a before the formation of the first bonded portion 60 and the second bonded portion 61 in FIG. 3. By arranging in this manner, the function of the pulp fiber web 26 described later is fully exhibited, and a desired absorbent 20 is obtained.
複合型不織布23は、種々の方法により作製できるが、例えば、水流交絡法によれば、スパンボンド不織布に対して、パルプ繊維をウォータージェットと共に噴射することにより作製できる。水流交絡法では、外観、触感の柔らかさと効率のバランスの観点から、ウォータージェットを噴射するウォータージェットノズルの穴直径Φは例えば0.06mm以上0.15mm以下の範囲であり、かつ、ウォータージェットノズルの間隔は例えば0.4mm以上1.0mm以下の範囲である。 The composite nonwoven fabric 23 can be produced by various methods. For example, the hydroentanglement method can be used to produce a spunbond nonwoven fabric by injecting pulp fibers together with a water jet. In the hydroentanglement method, from the viewpoint of the balance between appearance, softness to the touch, and efficiency, the hole diameter Φ of the water jet nozzle that injects the water jet is, for example, in the range of 0.06 mm to 0.15 mm, and the spacing of the water jet nozzles is, for example, in the range of 0.4 mm to 1.0 mm.
水流交絡による一体化物である複合型不織布23は、スパンボンド不織布27の一方の表面において、スパンボンド不織布27を構成する繊維とパルプ繊維とが絡み合うことによってパルプ繊維ウェブ26が一体化されるとともに、パルプ繊維の一部が、スパンボンド不織布27を厚み方向に突き抜けて他方の面に露出し、スパンボンド不織布27とパルプ繊維ウェブ26とが強固に固定される。水流交絡法で作製された複合型不織布23は、パルプ繊維ウェブ26の表面に微細な凹凸(不図示)が形成されている。したがって、開孔フィルム22と複合型不織布23のパルプ繊維ウェブ26とが対向するようにこれらを配置すると、粉末状の高吸収性ポリマー12はパルプ繊維ウェブ26の微細な凹凸によってその位置が固定され、着用者の動作による高吸収性ポリマー12の位置ずれ及びそれに伴う吸収性能の低下や着用感の悪化が防止されるという利点がある。また、パルプ繊維ウェブ26は体液を一時的に貯留する機能を有するので、多量の体液が一時的に排出されても、ウエットバック量を低減することができる。 In the composite nonwoven fabric 23, which is an integrated product by hydroentanglement, the fibers constituting the spunbond nonwoven fabric 27 and the pulp fibers are entangled on one surface of the spunbond nonwoven fabric 27 to integrate the pulp fiber web 26, and a part of the pulp fibers penetrates the spunbond nonwoven fabric 27 in the thickness direction and is exposed on the other surface, so that the spunbond nonwoven fabric 27 and the pulp fiber web 26 are firmly fixed. In the composite nonwoven fabric 23 produced by the hydroentanglement method, fine irregularities (not shown) are formed on the surface of the pulp fiber web 26. Therefore, when the perforated film 22 and the pulp fiber web 26 of the composite nonwoven fabric 23 are arranged so that they face each other, the position of the powdered superabsorbent polymer 12 is fixed by the fine irregularities of the pulp fiber web 26, which has the advantage of preventing the superabsorbent polymer 12 from shifting in position due to the wearer's movements and the associated deterioration in absorption performance and deterioration in wearing comfort. In addition, the pulp fiber web 26 has the function of temporarily storing bodily fluids, so even if a large amount of bodily fluid is temporarily discharged, the amount of wetback can be reduced.
好ましい実施形態では、複合型不織布23は、テンシロンでの引張試験において、25mm幅に形成した試験片を縦方向に2mm伸ばすのに必要な引張強度(以下「テンシロン試験の引張強度」ともいう)が、1.5N/25mm以上5.0N/25mm以下の範囲である。これにより、吸収性物品50を着用したときの吸収体20の保形性と着用感とを高水準で両立させることができる。 In a preferred embodiment, the composite nonwoven fabric 23 has a tensile strength required to stretch a 25 mm wide test piece by 2 mm in the longitudinal direction in a Tensilon tensile test (hereinafter also referred to as the "Tensilon test tensile strength") in the range of 1.5 N/25 mm to 5.0 N/25 mm. This allows the absorbent body 20 to achieve a high level of both shape retention and comfort when the absorbent article 50 is worn.
別の好ましい実施形態では、複合型不織布23における、スパンボンド不織布27とパルプ繊維ウェブ26との質量構成比(スパンボンド不織布27/パルプ繊維ウェブ26、質量%基準)は、35/65以上10/90以下の範囲、又は40/60以上25/75以下の範囲である。質量構成比を前述の範囲にすると、スパンボンド不織布27によるパルプ繊維ウェブ26の形状保持効果が保たれ、パルプ繊維ウェブ26による高吸収性ポリマー12の位置ズレ防止効果だけでなく、パルプ繊維ウェブ26による体液の一時貯留性が十分に発揮され、体液排出初期のウエットバックや体液漏れが十分に防止されるとともに、複合型不織布23が所定の柔らかさを保持することになり、吸収性物品50に良好な着用感、肌触りを付与することができる。 In another preferred embodiment, the mass composition ratio of the spunbond nonwoven fabric 27 to the pulp fiber web 26 in the composite nonwoven fabric 23 (spunbond nonwoven fabric 27/pulp fiber web 26, mass % basis) is in the range of 35/65 to 10/90, or in the range of 40/60 to 25/75. When the mass composition ratio is in the above-mentioned range, the shape retention effect of the pulp fiber web 26 by the spunbond nonwoven fabric 27 is maintained, and not only the effect of the pulp fiber web 26 in preventing the positional deviation of the superabsorbent polymer 12, but also the temporary storage ability of the pulp fiber web 26 is fully exhibited, and wetback and leakage of body fluids at the beginning of body fluid discharge are fully prevented, and the composite nonwoven fabric 23 maintains a predetermined softness, and the absorbent article 50 can be given a good wearing feeling and touch.
ここで、スパンボンド不織布27としては、スパンボンド法、メルトブロー法、フラッシュ紡糸法等によって作製されたものを特に限定なく使用できるが、ポリアミド(ナイロン(商標名)、ビニロン、ポリエステル、アクリル樹脂、ポリエチレン、ポリプロピレン、及びポリスチレン等の樹脂材料からなる樹脂繊維の1種又は2種以上を含むスパンボンド不織布が好ましい。さらに、スパンボンド不織布27は、界面活性剤等の公知の親水剤によって親水化処理されていてもよい。親水化処理により、体液がスパンボンド不織布27を通液して、パルプ繊維ウェブ26に到達しやすくなる。 The spunbond nonwoven fabric 27 may be made by any method, including spunbonding, meltblowing, flash spinning, etc., without any particular limitations. However, a spunbond nonwoven fabric containing one or more types of resin fibers made of resin materials such as polyamide (Nylon (trademark)), vinylon, polyester, acrylic resin, polyethylene, polypropylene, and polystyrene is preferred. Furthermore, the spunbond nonwoven fabric 27 may be hydrophilized with a known hydrophilic agent such as a surfactant. The hydrophilization makes it easier for bodily fluids to pass through the spunbond nonwoven fabric 27 and reach the pulp fiber web 26.
スパンボンド不織布27の坪量は、例えば、7g/m2以上20g/m2以下の範囲、又は10g/m2以上17g/m2以下の範囲である。パルプ繊維ウェブ26の坪量は、例えば、30g/m2以上70g/m2以下の範囲、又は30g/m2以上50g/m2以下の範囲である。スパンボンド不織布27及びパルプ繊維ウェブ26の各坪量を、前述の範囲にすると、複合型不織布23の坪量を適切な範囲に調整することが容易になる。 The basis weight of the spunbond nonwoven fabric 27 is, for example, in the range of 7 g/ m2 to 20 g/ m2 , or in the range of 10 g/ m2 to 17 g/ m2 . The basis weight of the pulp fiber web 26 is, for example, in the range of 30 g/ m2 to 70 g/ m2 , or in the range of 30 g/ m2 to 50 g/ m2 . When the basis weights of the spunbond nonwoven fabric 27 and the pulp fiber web 26 are each set in the above-mentioned ranges, it becomes easy to adjust the basis weight of the composite nonwoven fabric 23 to an appropriate range.
パルプ繊維ウェブ26に含まれるパルプ繊維としては、特に限定されないが、ラジアータパイン、スラッシュパイン、サザンパイン、ロッジポールパイン、スプルース、ダグラスファー等の針葉樹晒クラフトパルプ(NBKP)等が挙げられる。NBKPは、1種単独で又は2種以上を組み合わせて使用できる。 Pulp fibers contained in the pulp fiber web 26 include, but are not limited to, bleached coniferous kraft pulp (NBKP) such as radiata pine, slash pine, southern pine, lodgepole pine, spruce, and Douglas fir. NBKP can be used alone or in combination of two or more types.
<ブロック状空間>
本実施形態では、ポリウレタン連続多孔体シート21と開孔フィルム22との間に高吸収性ポリマー12が封入されて第1SAP層が形成され、第1SAP層には第1の接合部60により複数の第1のブロック状空間(閉空間)62が形成されている。また、開孔フィルム22と複合型不織布23との間に高吸収性ポリマー12が封入されて第2SAP層が形成され、第2SAP層には第2の接合部61により複数の第2のブロック状空間(閉空間)63が形成されている。
<Block-shaped space>
In this embodiment, a first SAP layer is formed by sealing the superabsorbent polymer 12 between the continuous polyurethane porous sheet 21 and the porous film 22, and a plurality of first block-shaped spaces (closed spaces) 62 are formed in the first SAP layer by first bonding parts 60. A second SAP layer is formed by sealing the superabsorbent polymer 12 between the porous film 22 and the composite nonwoven fabric 23, and a plurality of second block-shaped spaces (closed spaces) 63 are formed in the second SAP layer by second bonding parts 61.
第1SAP層及び第2SAP層には、それぞれの層を面方向に複数のブロック状の空間62、63に分割し、かつポリウレタン連続多孔体シート21と開孔フィルム22とを部分的に接合する平面視帯状の第1の接合部60及び第2の接合部61が縦横に所定の間隔を空けて直線状に設けられている。本実施形態の第1SAP層及び第2SAP層は、吸収性物品50の外縁とは所定の間隔を空けて、該外縁に対して長手方向及び幅方向にほぼ平行に延びて吸収性物品50の外縁形状にほぼ相似する矩形状の閉空間を形成し、さらに該閉空間内を複数本の第1の接合部60及び第2の接合部61がほぼ平行にかつほぼ等間隔に幅方向に延びて該閉空間の外枠を形成する第1の接合部60及び第2の接合部61に結合し、長手方向に並列された複数の第1SAP層及び第2SAP層がそれぞれ形成される。なお、吸収性物品50の外縁に沿って第1の接合部60及び第2の接合部61を設けてもよい。 In the first and second SAP layers, the layers are divided into a plurality of block-shaped spaces 62, 63 in the surface direction, and the first and second bonding portions 60 and 61, which are strip-shaped in plan view and partially bond the continuous polyurethane porous body sheet 21 and the perforated film 22, are linearly arranged at a predetermined interval in the vertical and horizontal directions. The first and second SAP layers of this embodiment extend substantially parallel to the outer edge of the absorbent article 50 in the longitudinal and width directions at a predetermined interval from the outer edge to form a rectangular closed space substantially similar to the shape of the outer edge of the absorbent article 50, and further, a plurality of first bonding portions 60 and second bonding portions 61 extend substantially parallel and at substantially equal intervals in the width direction within the closed space to be connected to the first bonding portions 60 and second bonding portions 61 that form the outer frame of the closed space, forming a plurality of first and second SAP layers arranged in parallel in the longitudinal direction. The first joint 60 and the second joint 61 may be provided along the outer edge of the absorbent article 50.
第1の接合部60及び第2の接合部61でそれぞれで区切られた複数の第1のブロック状(又は矩形状)空間62及び第2のブロック状(又は矩形状)空間63内には、それぞれ、所定量の高吸収性ポリマー12が封入されている。第1のブロック状空間62、第2のブロック状空間63への高吸収性ポリマー12の各封入量は同じでもよく異なっていてもよいが、高吸収性ポリマー12の坪量は、例えば、30g/m2以上300g/m2以下の範囲である。これにより、体液の吸収により膨潤した高吸収性ポリマー12が広範囲にわたって結着し、体液の拡散を妨げるゲルブロッキングの発生が防止されるので、体液を繰り返し吸収しても、吸収速度、吸収量等の吸収性能の低下が顕著に少なくなる。 A predetermined amount of superabsorbent polymer 12 is enclosed in each of a plurality of first block-shaped (or rectangular) spaces 62 and second block-shaped (or rectangular) spaces 63, which are respectively partitioned by the first joints 60 and the second joints 61. The amount of superabsorbent polymer 12 enclosed in each of the first block-shaped spaces 62 and the second block-shaped spaces 63 may be the same or different, but the basis weight of the superabsorbent polymer 12 is, for example, in the range of 30 g/ m2 to 300 g/ m2 . As a result, the superabsorbent polymer 12 swollen by the absorption of body fluids is bound over a wide range, preventing the occurrence of gel blocking that impedes the diffusion of body fluids, and therefore, even if body fluids are repeatedly absorbed, the decrease in absorption performance such as absorption speed and absorption amount is significantly reduced.
第1SAP層及び第2SAP層に設けられた第1のブロック状の空間62、第2のブロック状の空間63の平面視形状は、本実施形態では略矩形であるが、これに限定されず、三角形(特に正三角形)、六角形(特に正六角形)、円形、同心円形等の種々の形状とすることができる。また、第1の接合部60の幅方向寸法、長手方向及び幅方向の各本数や配置等は、ブロック状の空間61への高吸収性ポリマー12の封入量等に応じて適宜選択される。第1の接合部60及び第2の接合部61は、例えば、ホットメルト接着剤を含んで構成され、又はヒートシール、超音波シール等による溶着領域でもよい。 The planar shape of the first block-shaped space 62 and the second block-shaped space 63 provided in the first SAP layer and the second SAP layer is substantially rectangular in this embodiment, but is not limited thereto and may be various shapes such as a triangle (particularly an equilateral triangle), a hexagon (particularly a regular hexagon), a circle, a concentric circle, etc. In addition, the width dimension of the first joint 60, the number and arrangement in the longitudinal and width directions, etc. are appropriately selected depending on the amount of superabsorbent polymer 12 enclosed in the block-shaped space 61, etc. The first joint 60 and the second joint 61 may be configured to include, for example, a hot melt adhesive, or may be a welded region by heat sealing, ultrasonic sealing, etc.
好ましい実施形態では、第2SAP層に形成されたブロック状の空間63の数が、第1SAP層に形成されたブロック状の空間62の数よりも多くなるように構成されている。この構成によれば、吸収性シート25又は吸収体20全体への体液拡散性が一層向上し、ゲルブロッキングの発生を防止しつつ、吸収速度を初期設定に維持し、吸収量を更に増加させることができる。 In a preferred embodiment, the number of block-shaped spaces 63 formed in the second SAP layer is configured to be greater than the number of block-shaped spaces 62 formed in the first SAP layer. This configuration further improves the diffusion of bodily fluids into the absorbent sheet 25 or the entire absorbent body 20, and while preventing the occurrence of gel blocking, it is possible to maintain the absorption rate at the initial setting and further increase the absorption amount.
(高吸収性ポリマー)
高吸収性ポリマー12としては、体液を吸収し、かつ、逆流を防止できるものであれば特に制限はなく、ポリアクリル酸塩、ポリアスパラギン酸塩、(デンプン-アクリル酸)グラフト共重合体、(アクリル酸-ビニルアルコール)共重合体、(イソブチレン-無水マレイン酸)共重合体及びそのケン化物等が挙げられる。これらの中でも、重量当たりの吸収量の観点から、ポリアクリル酸塩が好ましく、ポリアクリル酸アルカリ金属塩がより好ましく、ポリアクリル酸ナトリウムが更に好ましい。高吸収性ポリマー12は、1種を単独で又は2種以上を組み合わせて使用できる。
(Superabsorbent polymer)
The superabsorbent polymer 12 is not particularly limited as long as it can absorb body fluids and prevent backflow, and examples thereof include polyacrylates, polyaspartates, (starch-acrylic acid) graft copolymers, (acrylic acid-vinyl alcohol) copolymers, (isobutylene-maleic anhydride) copolymers, and saponification products thereof. Among these, from the viewpoint of the absorption amount per weight, polyacrylates are preferred, alkali metal polyacrylates are more preferred, and sodium polyacrylate is even more preferred. The superabsorbent polymer 12 can be used alone or in combination of two or more types.
高吸収性ポリマー12は、例えば、粒子状、繊維状等の形態で用いられるが、取扱い易さ等の観点から好ましくは粒子状で用いられる。このとき、粉体としての流動性が悪い微粉末の高吸収性ポリマー12の使用を避け、中位粒子径を有する高吸収性ポリマー12を用いることにより、吸収に関する基本性能を高め、かつ、吸収体20が硬くなることにより発生するごつごつとした触感を低減することができる。高吸収性ポリマー12の中位粒子径は、例えば、50μm以上600μm以下の範囲又は100μm以上500μm以下の範囲である。 The superabsorbent polymer 12 is used in the form of particles, fibers, etc., for example, but is preferably used in the form of particles from the viewpoint of ease of handling, etc. In this case, by avoiding the use of a fine powder of superabsorbent polymer 12 that has poor fluidity as a powder and using a superabsorbent polymer 12 with a medium particle size, it is possible to improve the basic absorption performance and reduce the rough feel caused by the absorbent body 20 becoming hard. The medium particle size of the superabsorbent polymer 12 is, for example, in the range of 50 μm to 600 μm or in the range of 100 μm to 500 μm.
高吸収性ポリマー12を第1のブロック状空間62内及び第2のブロック状空間63内に封入するには、例えば、ホットメルト接着剤が用いられる。ホットメルト接着剤としては、融点が100℃以上180℃以下のものを特に限定なく使用でき、例えば、スチレン-ブタジエン-スチレン系共重合体、スチレン-イソプレン-スチレン系共重合体等の合成ゴム系ホットメルト接着剤、エチレン-酢酸ビニル共重合体等のオレフィン系ホットメルト接着剤等が挙げられる。ホットメルト接着剤の塗布方法としては、ノズルから溶融状態のホットメルト接着剤を非接触式で塗布するカーテンコート法やスパイラル法、接触式で塗布するスロット法等、公知の方法が利用できる。ホットメルト接着剤の含有量は、高吸収性ポリマー12の吸収性及び装着時の肌触りを損なわない観点から、例えば10g/m2以下の範囲である。 To seal the superabsorbent polymer 12 in the first block-shaped space 62 and the second block-shaped space 63, for example, a hot melt adhesive is used. As the hot melt adhesive, any adhesive having a melting point of 100° C. or more and 180° C. or less can be used without any particular limitation, and examples thereof include synthetic rubber-based hot melt adhesives such as styrene-butadiene-styrene copolymers and styrene-isoprene-styrene copolymers, and olefin-based hot melt adhesives such as ethylene-vinyl acetate copolymers. As a method for applying the hot melt adhesive, known methods such as a curtain coat method or a spiral method in which the hot melt adhesive in a molten state is applied from a nozzle in a non-contact manner, and a slot method in which the hot melt adhesive is applied in a contact manner can be used. The content of the hot melt adhesive is, for example, in the range of 10 g/m 2 or less from the viewpoint of not impairing the absorbency of the superabsorbent polymer 12 and the feel on the skin when worn.
<吸収性シート及び吸収体の製造方法>
本実施形態の吸収性シート25は、例えば、ポリウレタン連続多孔体シート21及び開孔フィルム22の各非肌側面において、第1の接合部60、第2の接合部61の各形成予定領域を残して、所定のパターンで高吸収性ポリマー12を散布する工程と、必要に応じてホットメルト接着剤を供給して高吸収性ポリマー12を固着担持する工程と、ポリウレタン連続多孔体シート21の高吸収性ポリマー12を散布又は固着した非肌側面に開孔フィルム22の肌側面を重ね合わせ、開孔フィルム22の高吸収性ポリマー12を散布又は固着した非肌側面に複合型不織布23のパルプ繊維ウェブ26を重ね合わせ、積層体を得る工程と、必要に応じて該積層体を加圧及び/又は加熱しつつ第1の接合部60及び第2の接合部61を形成する工程と、を含む製造方法により作製できる。なお、第1の接合部60及び第2の接合部61は、例えば、ホットメルト接着剤を用いて、又はヒートシール、超音波シール等の溶着方法で形成できる。得られた吸収性シート25を親水性シート24で前述のように包むことにより、吸収体20が得られる。ここで使用するホットメルト接着剤及びその塗布方法は、高吸収性ポリマー12を固着担持させるホットメルト接着剤と同じである。
<Method of manufacturing absorbent sheet and absorbent body>
The absorbent sheet 25 of this embodiment can be produced by a manufacturing method including, for example, the steps of spraying superabsorbent polymer 12 in a predetermined pattern on each of the non-skin sides of the polyurethane continuous porous sheet 21 and the perforated film 22, leaving areas where the first bonded portion 60 and the second bonded portion 61 are to be formed; if necessary, supplying a hot melt adhesive to fix and support the superabsorbent polymer 12; superimposing the skin side of the perforated film 22 on the non-skin side of the polyurethane continuous porous sheet 21 on which the superabsorbent polymer 12 has been sprayed or fixed, and superimposing the pulp fiber web 26 of the composite nonwoven fabric 23 on the non-skin side of the perforated film 22 on which the superabsorbent polymer 12 has been sprayed or fixed, to obtain a laminate; and if necessary, forming the first bonded portion 60 and the second bonded portion 61 while pressurizing and/or heating the laminate. The first bonded portion 60 and the second bonded portion 61 can be formed, for example, by using a hot melt adhesive or by a welding method such as heat sealing or ultrasonic sealing. The obtained absorbent sheet 25 is wrapped in the hydrophilic sheet 24 as described above to obtain the absorbent body 20. The hot melt adhesive used here and the method of applying it are the same as those for the hot melt adhesive that fixes and supports the superabsorbent polymer 12.
<バックシート>
バックシート30は、吸収体20が保持する体液が衣類を濡らさないような液不透過性を備えた通気性又は非通気性の基材を用いて形成されればよく、該基材としては、例えば、樹脂フィルム、樹脂フィルムと不織布との積層体である複合シート等が挙げられる。複合シートに用いられる不織布としては、製法を特に限定せず、例えば、スパンボンド不織布、メルトブロー不織布等の単層不織布、スパンボンド不織布/メルトブロー不織布積層体、スパンボンド不織布/メルトブロー不織布/スパンボンド不織布積層体等の複合不織布、これらの複合材料等が挙げられる。また、樹脂フィルムとしては、例えば、ポリエステル、ポリビニルアルコール、ポリエチレン、ポリプロピレン、ポリエチレンとポリプロピレンの複合フィルム等が挙げられる。
<Back seat>
The back sheet 30 may be formed using a breathable or non-breathable substrate that is impermeable to liquids so that the body fluids held by the absorbent 20 do not wet clothing, and examples of the substrate include a resin film and a composite sheet that is a laminate of a resin film and a nonwoven fabric. The nonwoven fabric used in the composite sheet is not particularly limited in its manufacturing method, and examples thereof include single-layer nonwoven fabrics such as spunbond nonwoven fabrics and meltblown nonwoven fabrics, composite nonwoven fabrics such as spunbond nonwoven fabrics/meltblown nonwoven fabric laminates, and composite materials thereof. Examples of the resin film include polyester, polyvinyl alcohol, polyethylene, polypropylene, and composite films of polyethylene and polypropylene.
バックシート30の坪量は、強度及び加工性の点から、例えば15g/m2以上60g/m2以下の範囲、又は15g/m2以上40g/m2以下の範囲である。また、着用時の蒸れを防止するため、バックシート30には、通気性を持たせることが好ましい。バックシート30に通気性を備えさせるためには、例えば、基材の樹脂フィルムにフィラーを配合したり、バックシート30にエンボス加工を施したりすればよい。なお、フィラーとしては炭酸カルシウムを挙げることができ、その配合方法は、公知の方法を制限なく実施できる。 The basis weight of the back sheet 30 is, for example, in the range of 15 g/ m2 to 60 g/ m2 or in the range of 15 g/ m2 to 40 g/ m2 in terms of strength and processability. In order to prevent stuffiness during wearing, it is preferable that the back sheet 30 has breathability. In order to provide the back sheet 30 with breathability, for example, a filler may be blended into the resin film of the base material, or the back sheet 30 may be embossed. An example of the filler is calcium carbonate, and the blending method may be a known method without any restrictions.
<立体ギャザー>
立体ギャザー40は、例えば、吸収性物品50の着用者が排泄した体液の横漏れを防止するために、吸収性物品50の幅方向両端付近で吸収性物品50の長手方向に沿ってトップシート10の肌側面に固定される。立体ギャザー40は、弾性伸縮部材40aと、撥水性及び/又は防水性のシート部材40bと、を含む。
<3D gathers>
The three-dimensional gathers 40 are fixed to the skin side of the top sheet 10 near both ends in the width direction of the absorbent article 50 along the longitudinal direction of the absorbent article 50 in order to prevent, for example, lateral leakage of bodily fluids excreted by the wearer of the absorbent article 50. The three-dimensional gathers 40 include an elastic stretch member 40a and a water-repellent and/or waterproof sheet member 40b.
弾性伸縮部材40aは、シート部材40bの自由端(他端)付近に長手方向に沿って配設され、該自由端に起立性を付与し、シート部材40bの自由端及びその近傍領域を着用者の体型に合わせて変形可能にする。シート部材40bは、本実施形態では幅方向一端(固定端)がバックシート30の肌側面の幅方向両端付近に固定され、幅方向途中部がトップシート10の肌側面の幅方向両端付近に固定され、幅方向他端が起立性を有する自由端である。シート部材40bの固定端(幅方向一端)の固定位置は、本実施形態に限定されず、例えば、バックシート30の非肌側面、内部に吸収体20を収納したトップシート10とバックシート30との各縁辺の全部又は一部接合体の肌側面又は非肌側面の幅方向両端付近、トップシート10の肌側面の幅方向両端付近等が挙げられる。 The elastic stretch member 40a is disposed in the longitudinal direction near the free end (other end) of the sheet member 40b, imparting uprightness to the free end, and allowing the free end of the sheet member 40b and its neighboring area to be deformed to fit the wearer's body shape. In this embodiment, the sheet member 40b has one widthwise end (fixed end) fixed near both widthwise ends of the skin side of the back sheet 30, a middle part in the widthwise direction fixed near both widthwise ends of the skin side of the top sheet 10, and the other widthwise end being a free end having uprightness. The fixing position of the fixed end (one widthwise end) of the sheet member 40b is not limited to this embodiment, and examples include the non-skin side of the back sheet 30, near both widthwise ends of the skin side or non-skin side of the joint of all or part of each edge of the top sheet 10 and the back sheet 30 with the absorbent body 20 stored therein, and near both widthwise ends of the skin side of the top sheet 10.
シート部材40bは撥水性及び/又は防水性を有するシートであり、例えば不織布から構成される。第1シート部材用不織布としては、疎水性繊維にて形成された撥水性及び/又は防水性(液不透過性)の不織布を特に限定なく使用でき、例えば、スパンボンド不織布、メルトブロー不織布、スパンボンド不織布/メルトブロー不織布/スパンボンド不織布積層体である複合不織布(SMS不織布)等が挙げられる。シート部材40bの目付は、例えば、13g/m2以上20g/m2以下の範囲である。弾性伸縮部材40aとしては、例えば、天然ゴム、合成ゴム、ポリウレタン等からなる、糸状、紐状、帯状のものを適宜使用することができる。 The sheet member 40b is a water-repellent and/or waterproof sheet, and is made of, for example, a nonwoven fabric. As the nonwoven fabric for the first sheet member, any water-repellent and/or waterproof (liquid-impermeable) nonwoven fabric formed of hydrophobic fibers can be used without any particular limitation, and examples thereof include spunbond nonwoven fabric, meltblown nonwoven fabric, and composite nonwoven fabric (SMS nonwoven fabric) which is a spunbond nonwoven fabric/meltblown nonwoven fabric/spunbond nonwoven fabric laminate. The basis weight of the sheet member 40b is, for example, in the range of 13 g/m 2 to 20 g/m 2. As the elastically stretchable member 40a, for example, a thread-shaped, string-shaped, or strip-shaped material made of natural rubber, synthetic rubber, polyurethane, or the like can be appropriately used.
<吸収性物品の製造方法>
吸収性物品50は、公知の製造方法により製造でき、例えば、吸収体20をトップシート10とバックシート30との間に配置する工程と、トップシート10とバックシート30とを一部又は全周に亘ってホットメルト接着剤やヒートエンボス、超音波エンボス、高周波エンボス等を用いて固定する工程と、バックシート30及びトップシート10の所定位置に立体ギャザー40を設置する工程と、を含む製造方法が挙げられる。そして、吸収性物品50が尿取りパッドや軽失禁パッドである場合は、これを包装体に個別包装した後、長手方向に3つ折りにして折りたためばよい。また、レッグギャザー、ウエストギャザー、サイドフラップ等を必要に応じて設けることができる。
<Method of manufacturing absorbent articles>
The absorbent article 50 can be manufactured by a known manufacturing method, for example, a manufacturing method including a step of arranging the absorbent body 20 between the top sheet 10 and the back sheet 30, a step of fixing the top sheet 10 and the back sheet 30 partially or entirely around the periphery using a hot melt adhesive, heat embossing, ultrasonic embossing, high frequency embossing, or the like, and a step of providing three-dimensional gathers 40 at predetermined positions on the back sheet 30 and the top sheet 10. When the absorbent article 50 is a urine absorption pad or a light incontinence pad, it may be individually packaged in a package and then folded in thirds in the longitudinal direction. Leg gathers, waist gathers, side flaps, and the like may be provided as necessary.
以上、実施形態を用いて本発明を説明したが、本発明の技術的範囲は上記実施形態や実施例に記載の範囲には限定されないことは言うまでもない。上記実施形態に、多様な変更又は改良を加えることが可能であることが当業者に明らかである。また、そのような変更又は改良を加えた形態も本発明の技術的範囲に含まれ得ることが、特許請求の範囲の記載から明らかである。 Although the present invention has been described above using embodiments, it goes without saying that the technical scope of the present invention is not limited to the scope described in the above embodiments and examples. It will be clear to those skilled in the art that various modifications and improvements can be made to the above embodiments. Furthermore, it is clear from the claims that forms incorporating such modifications or improvements can also be included in the technical scope of the present invention.
以下に実施例及び比較例を挙げ、本実施形態を更に具体的に説明する。 The following examples and comparative examples will explain this embodiment in more detail.
(実施例1~2及び比較例1~7)
(吸収性物品の作製)
図2(実施例1、2)、図6(比較例1に係る吸収性物品70)、図7(比較例2に係る吸収性物品71、比較例3に係る吸収性物品72は符号28がエアスルー不織布)、図8(比較例4に係る吸収性物品73、比較例5に係る吸収性物品74は符号28がエアスルー不織布)、図9(比較例6に係る吸収性物品75)、及び図10(比較例7に係る吸収性物品76)に示す構成を有する吸収性物品を次のようにして作製した。
(Examples 1 to 2 and Comparative Examples 1 to 7)
(Preparation of absorbent articles)
Absorbent articles having the configurations shown in FIG. 2 (Examples 1 and 2), FIG. 6 (absorbent article 70 according to Comparative Example 1), FIG. 7 (absorbent article 71 according to Comparative Example 2 and absorbent article 72 according to Comparative Example 3, in which reference numeral 28 indicates an air-through nonwoven fabric), FIG. 8 (absorbent article 73 according to Comparative Example 4 and absorbent article 74 according to Comparative Example 5, reference numeral 28 indicates an air-through nonwoven fabric), FIG. 9 (absorbent article 75 according to Comparative Example 6), and FIG. 10 (absorbent article 76 according to Comparative Example 7) were produced as follows.
肌側に配置される肌側素材としてポリウレタン連続気泡発泡体シート(骨格表面が親水性、坪量80g/m2、厚さ2.0mm、見かけ密度140kg/m3)を用い、中間素材として開孔フィルム(実施例1、2、比較例4、5)、複合型不織布(比較例1)、前述のポリウレタン連続気泡発泡体シート(比較例2)又はエアスルー不織布(比較例3)を用い或いは中間素材を用いず(比較例6、7)、非肌側素材として複合型不織布(実施例1、2、比較例1~3、6)、前述のポリウレタン連続気泡発泡体シート(比較例4、7)又はエアスルー不織布(比較例5)を用い、吸収性シートを作製した。得られた吸収性シートを、スパンボンド不織布(親水性シート、坪量12g/m2)でC折りして包んだ、寸法420mm×150mmの吸収体を使用した。 An absorbent sheet was prepared using an open-cell polyurethane foam sheet (hydrophilic skeleton surface, basis weight 80 g/ m2 , thickness 2.0 mm, apparent density 140 kg/ m3 ) as the skin-side material placed on the skin side, an apertured film (Examples 1, 2, Comparative Examples 4, 5), a composite nonwoven fabric (Comparative Example 1), the above-mentioned open-cell polyurethane foam sheet (Comparative Example 2) or an air-through nonwoven fabric (Comparative Example 3) as the intermediate material, or no intermediate material (Comparative Examples 6, 7), and a composite nonwoven fabric (Examples 1, 2, Comparative Examples 1-3, 6), the above-mentioned open-cell polyurethane foam sheet (Comparative Examples 4, 7) or an air-through nonwoven fabric (Comparative Example 5) as the non-skin-side material. The obtained absorbent sheet was folded in a C-fold with a spunbond nonwoven fabric (hydrophilic sheet, basis weight 12 g/ m2 ) and wrapped to prepare an absorbent body measuring 420 mm x 150 mm.
また、液透過性のトップシートとしてエアスルー不織布(坪量20g/m2)を、液不透過性のバックシートとして通気性ポリエチレンシート(坪量35g/m2)を、立体ギャザーとしてスパンボンド不織布/メルトブローン不織布/スパンボンド不織布をこの順で積層した複合不織布(坪量15g/m2)を用いた。トップシート、バックシート、吸収体を一体化する際に、ホットメルト接着剤を用いてトップシートと吸収体肌側面とを接合し、実施例1~2及び比較例1~7の、長手方向寸法480mm、幅方向寸法200mmの吸収性物品を作製した。 An air-through nonwoven fabric (basis weight 20 g/ m2 ) was used as the liquid-permeable top sheet, a breathable polyethylene sheet (basis weight 35 g/ m2 ) was used as the liquid-impermeable back sheet, and a composite nonwoven fabric (basis weight 15 g/ m2 ) in which a spunbond nonwoven fabric/meltblown nonwoven fabric/spunbond nonwoven fabric were laminated in this order was used as the three-dimensional gathers. When the top sheet, back sheet, and absorbent body were integrated, the top sheet and the skin side of the absorbent body were bonded using a hot melt adhesive to produce absorbent articles with a longitudinal dimension of 480 mm and a width dimension of 200 mm in Examples 1-2 and Comparative Examples 1-7.
実施例1~2及び比較例1~7の吸収性物品について、次の評価を実施した。結果を表1に示す。
(総吸収量)
生理食塩水中に5分間浸漬した後、金網上で30秒間水切りし、吸収前後の重量差を計測する。
(繰り返し吸収速度)
底面140×100mm、外径40mm、内径35mm、重量1400gの治具を用いて、荷重下120mlの生理食塩水を10分間隔で3回注水し、3回目の注水分120mlを吸収する時間を測定する。
(液戻り)
吸収速度3回測定終了後、10分後に35gf/cm2荷重条件で、55mm径のろ紙に1分間で逆戻り吸収した水分量を測定する。
(拡散長さ)
吸収速度3回測定終了後の生理食塩水を吸収した部分の最大長さを測定する。
The following evaluations were carried out on the absorbent articles of Examples 1 and 2 and Comparative Examples 1 to 7. The results are shown in Table 1.
(Total Absorption)
After immersion in physiological saline for 5 minutes, the sample is drained on a wire mesh for 30 seconds, and the weight difference before and after absorption is measured.
(Repeated absorption rate)
Using a jig with a base of 140×100 mm, outer diameter of 40 mm, inner diameter of 35 mm and weight of 1400 g, 120 ml of physiological saline is poured under load three times at 10 minute intervals and the time taken to absorb the third 120 ml of water is measured.
(liquid return)
After three absorption rate measurements have been completed, the amount of water absorbed back into a 55 mm diameter filter paper in one minute is measured 10 minutes later under a load of 35 gf/cm 2 .
(Diffusion Length)
After the absorption rate was measured three times, the maximum length of the part that absorbed the physiological saline was measured.
表1から、本実施形態の吸収性シートを親水性シートでC折りした吸収体を用いることにより、体液吸収量及び繰り返し吸収速度が高い水準に維持され、液戻り防止性にも優れた薄型の吸収性物品が得られることが分かる。 From Table 1, it can be seen that by using an absorbent body in which the absorbent sheet of this embodiment is folded into a C shape with a hydrophilic sheet, a thin absorbent article can be obtained that maintains a high level of body fluid absorption amount and repeated absorption speed and also has excellent resistance to liquid return.
10 トップシート
12 高吸収性ポリマー
20 吸収体
21 ポリウレタン連続多孔体シート
22 開孔フィルム
23 複合型不織布
22a 開孔(貫通孔)
24 親水性シート
25 吸収性シート
26 パルプ繊維ウェブ
27 スパンボンド不織布
30 バックシート
40 立体ギャザー
40a 弾性伸縮部材
40b シート部材
50 吸収性物品
60 第1接合部
61 第2接合部
62 第1ブロック状空間
63 第2ブロック状空間
Reference Signs List 10: Top sheet 12: Highly absorbent polymer 20: Absorbent body 21: Continuously porous polyurethane sheet 22: Perforated film 23: Composite nonwoven fabric 22a: Perforation (through hole)
24 Hydrophilic sheet 25 Absorbent sheet 26 Pulp fiber web 27 Spunbond nonwoven fabric 30 Back sheet 40 Three-dimensional gathers 40a Elastically stretchable member 40b Sheet member 50 Absorbent article 60 First joint 61 Second joint 62 First block-shaped space 63 Second block-shaped space
Claims (11)
前記吸収体は、吸収性繊維を含有しないものであって、吸収性シートを有し、
前記吸収性シートは、
着用者の肌面側から、少なくとも、ポリウレタン連続多孔質体シート、開孔フィルム、スパンボンド不織布上にパルプ繊維ウェブを積層し一体化してある複合型不織布の順に積層されており、前記ポリウレタン連続多孔質体シートと前記開孔フィルムとの間及び前記開孔フィルムと前記複合型不織布との間に封入された高吸収性ポリマーを有し、
前記ポリウレタン連続多孔質体シートと前記開孔フィルムとの間と、前記開孔フィルムと前記複合型不織布との間には、それぞれが、前記高吸収性ポリマーを封入するブロック状の空間を形成するように接合されていることを特徴とする吸収性物品。 An absorbent article comprising a liquid-permeable top sheet, a liquid-impermeable back sheet, and an absorbent body provided therebetween,
The absorbent body does not contain absorbent fibers and has an absorbent sheet,
The absorbent sheet is
the garment is laminated in this order from the wearer's skin side, with at least a polyurethane continuous porous body sheet, a perforated film, and a composite nonwoven fabric obtained by laminating and integrating a pulp fiber web onto a spunbond nonwoven fabric, and has a highly absorbent polymer enclosed between the polyurethane continuous porous body sheet and the perforated film, and between the perforated film and the composite nonwoven fabric;
An absorbent article characterized in that the polyurethane continuous porous body sheet and the perforated film, and the perforated film and the composite nonwoven fabric are bonded together so as to form a block-shaped space in which the superabsorbent polymer is enclosed.
The absorbent article according to any one of claims 1 to 10, wherein the basis weight of the superabsorbent polymer enclosed between the polyurethane continuous porous body sheet and the perforated film, and between the perforated film and the composite nonwoven fabric is 30 g/ m2 or more and 300 g/ m2 or less, respectively.
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| JP2007105217A (en) | 2005-10-13 | 2007-04-26 | Kao Corp | Absorbent article and manufacturing method thereof |
| JP2017164356A (en) | 2016-03-17 | 2017-09-21 | 株式会社リブドゥコーポレーション | Absorbent article |
| JP2020139248A (en) | 2019-02-28 | 2020-09-03 | 日本製紙クレシア株式会社 | Composite non-woven fabric and its manufacturing method |
| JP2020162629A (en) | 2019-03-28 | 2020-10-08 | 日本製紙クレシア株式会社 | Absorbent article |
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| DE69424669T2 (en) * | 1994-09-09 | 2001-01-25 | The Procter & Gamble Company, Cincinnati | Absorbent composite material and process for its manufacture |
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| JP2007105217A (en) | 2005-10-13 | 2007-04-26 | Kao Corp | Absorbent article and manufacturing method thereof |
| JP2017164356A (en) | 2016-03-17 | 2017-09-21 | 株式会社リブドゥコーポレーション | Absorbent article |
| JP2020139248A (en) | 2019-02-28 | 2020-09-03 | 日本製紙クレシア株式会社 | Composite non-woven fabric and its manufacturing method |
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