JP4897764B2 - Vertical grain sorter - Google Patents
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- JP4897764B2 JP4897764B2 JP2008264587A JP2008264587A JP4897764B2 JP 4897764 B2 JP4897764 B2 JP 4897764B2 JP 2008264587 A JP2008264587 A JP 2008264587A JP 2008264587 A JP2008264587 A JP 2008264587A JP 4897764 B2 JP4897764 B2 JP 4897764B2
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- 235000013339 cereals Nutrition 0.000 claims description 137
- 241000209094 Oryza Species 0.000 claims description 34
- 235000007164 Oryza sativa Nutrition 0.000 claims description 34
- 235000009566 rice Nutrition 0.000 claims description 34
- 238000007790 scraping Methods 0.000 claims description 19
- 238000005192 partition Methods 0.000 claims description 17
- 230000006698 induction Effects 0.000 claims description 16
- 230000002093 peripheral effect Effects 0.000 claims description 12
- 239000000758 substrate Substances 0.000 claims description 12
- 230000003014 reinforcing effect Effects 0.000 claims description 11
- 229920003002 synthetic resin Polymers 0.000 claims description 11
- 239000000057 synthetic resin Substances 0.000 claims description 11
- 238000000638 solvent extraction Methods 0.000 claims description 5
- 230000005484 gravity Effects 0.000 claims description 4
- 230000037303 wrinkles Effects 0.000 claims description 4
- 239000004464 cereal grain Substances 0.000 claims 1
- 238000005360 mashing Methods 0.000 claims 1
- 239000002699 waste material Substances 0.000 description 10
- 239000004071 soot Substances 0.000 description 8
- 239000010902 straw Substances 0.000 description 6
- 238000003306 harvesting Methods 0.000 description 3
- 238000000034 method Methods 0.000 description 3
- 239000002245 particle Substances 0.000 description 3
- 238000012216 screening Methods 0.000 description 3
- 238000009434 installation Methods 0.000 description 2
- 238000009423 ventilation Methods 0.000 description 2
- 238000005303 weighing Methods 0.000 description 2
- 238000004891 communication Methods 0.000 description 1
- 238000012790 confirmation Methods 0.000 description 1
- 238000001816 cooling Methods 0.000 description 1
- 238000013461 design Methods 0.000 description 1
- 238000010586 diagram Methods 0.000 description 1
- 238000007599 discharging Methods 0.000 description 1
- 238000003780 insertion Methods 0.000 description 1
- 230000037431 insertion Effects 0.000 description 1
- 230000003993 interaction Effects 0.000 description 1
- 239000000843 powder Substances 0.000 description 1
- 238000012545 processing Methods 0.000 description 1
- 230000001681 protective effect Effects 0.000 description 1
- 230000008961 swelling Effects 0.000 description 1
- 230000009466 transformation Effects 0.000 description 1
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- Combined Means For Separation Of Solids (AREA)
- Adjustment And Processing Of Grains (AREA)
Description
本発明は、穀粒を選別して、割れ米や小粒米を取り除いて粒を揃える縦型穀粒選別機、特に糠を早期に選別することができる縦型穀粒選別機に関する。 The present invention relates to a vertical grain sorter that sorts grains and removes broken rice and small grains to prepare grains, and more particularly, to a vertical grain sorter that can quickly sort straw.
従来から、選別網体の内部に揚穀螺旋筒を設けて、被選別穀類を揚穀螺旋筒で揚上移動させながら選別網体により割れ米や小粒米などの屑米などを通過させ、選別網体から通過しない良穀を貯留タンクへと排出することによって、良穀を選別するように構成した穀類選別機が知られている。このような穀類選別機においては、選別網体から屑米とともに、糠も通過することから、混在する屑米と糠を効果的に分離する技術として特許文献1には、選別筒を通過した屑粒と糠とを基体側方下方に向け傾斜延設した屑粒シュートに放出し、その屑粒シュートの傾斜底面に糠落網を張設し、この糠落網で分別落下させた糠を糠シュートに落下させるように構成した縦型穀粒選別機の糠取装置が開示されている。 Conventionally, a crushed helix cylinder has been provided inside the sorting net, and the sorted cereal is passed through the crushed rice, such as broken rice and small grains, while the to-be-sorted grains are lifted and moved by the hedging helix. 2. Description of the Related Art A grain sorter configured to sort good grains by discharging good grains that do not pass through the net body to a storage tank is known. In such a cereal sorter, since the rice cake passes through the sorting net together with the waste rice, Patent Document 1 discloses the waste that has passed through the sorting cylinder as a technique for effectively separating the waste rice and the rice bran mixed. Grains and cocoons are discharged to a crumb chute that extends obliquely downward to the side of the substrate, and a fall net is stretched on the inclined bottom surface of the crumb chute. A harvesting device for a vertical grain sorter configured to be dropped is disclosed.
また、この種の縦型穀粒選別機に関しては、本願出願人も多くの出願をしており、例えば、特許文献2、特許文献3或いは特許文献4等が公開されている。 In addition, regarding this type of vertical grain sorter, the applicant of the present application has made many applications, and for example, Patent Document 2, Patent Document 3, or Patent Document 4 is disclosed.
しかし、特許文献1で開示される糠取装置は、揚穀螺旋筒の回転によって被選別穀類を揚上移動させながら選別網体の網目から糠を通過させて屑米とともに、屑粒シュートへと排出して屑粒シュートの傾斜底面に設けた選別網体によって屑米と糠とを分離する構成であり、糠が極めて粒径の小さい粉末状であるから、選別網体を通過する際の遠心力によって屑米に比べ長時間、基体内を浮遊し、屑粒シュートに到達するまで長時間がかかる。このため、基体内を浮遊する糠が例えば、選別網体の軸受けあるいは各種の可動部分に付着して故障の原因となるとともに、選別網体の目詰まりの原因ともなるので、できるだけ迅速に糠を被選別穀類から選別することが望ましい。また、特許文献2乃至4に開示された選別機においても、できるだけ迅速に糠を被選別穀類から選別するとした点では十分なものではなかった。 However, the harvesting device disclosed in Patent Document 1 passes the straw from the mesh of the sorting mesh body while moving the to-be-sorted grains up and down by the rotation of the cereal spiral cylinder, and along with the waste rice, into the waste grain chute. It is configured to separate waste rice and rice cake by a sorting mesh body that is discharged and disposed on the inclined bottom surface of the waste grain chute, and since the rice cake is a powder with a very small particle size, it is centrifuged when passing through the sorting mesh body. It takes a long time to float in the substrate for a long time compared to the waste rice due to the force and reach the waste grain chute. For this reason, the soot floating in the substrate adheres to, for example, the bearings or various movable parts of the sorting net and causes failure, and also causes clogging of the sorting net. It is desirable to select from the cereal to be selected. In addition, the sorting machines disclosed in Patent Documents 2 to 4 are not sufficient in that the straws are sorted from the to-be-sorted grains as quickly as possible.
本発明は上述した課題を解決するために成されたものであり、被選別穀類を選別する初期段階で糠を迅速に選別することができる縦型穀粒選別機を提供することを目的とする。 The present invention has been formed in order to solve the above problems, and an object thereof is to provide a vertical grain sorting machine can be rapidly screened bran at an early stage of selecting an object to be sorted cereals .
請求項1記載の縦型穀粒選別機は、外面にホッパを備えた基体と、前記ホッパと連通するように前記基体内下部に設けた供給筒と、この供給筒と同心状に配設され周面に誘導翼を有する誘導筒と、この誘導筒の上方に配設され選別されるべき良穀サイズに合わせた選別開口を多数形成した選別網体と、この選別網体及び誘導筒内に同心状に配設された周面に螺旋翼を有する揚穀螺旋筒と、良穀を貯留する貯留タンクとを備え、前記揚穀螺旋筒を高速回転させるとともに前記誘導筒を低速回転させて前記ホッパから供給筒内に供給される穀粒を前記誘導翼によって誘導筒の下部周面に形成する供給口から前記誘導筒の内部に導入し、前記揚穀螺旋筒によって揚穀しながら前記選別網体によって良穀を選別するように構成した縦型穀粒選別機であって、前記誘導筒の外周面に前記選別網体の選別開口のサイズよりも小さいサイズの開口を形成した網状体を前記誘導翼と前記選別網体との間に設けるとともに、該網状体を挟むように上下一対の円形フランジ部を前記誘導筒の外周面に突設し、前記誘導翼によって前記誘導筒の内部に導入した穀粒が前記揚穀螺旋筒の螺旋翼によって揚穀される初期段階で前記誘導筒の網状体から最も比重が軽く小さい糠を通過させて選別してから選別網体目で割れ米や小粒米が通過させ、該選別網体から通過しない良穀を前記貯留タンクへと揚穀するように構成したことを特徴とする。
The vertical grain sorter according to claim 1 is provided with a base body provided with a hopper on the outer surface, a supply cylinder provided in the lower part of the base body so as to communicate with the hopper, and concentrically with the supply pipe. A guide cylinder having guide wings on the circumferential surface, a sorting net having a large number of sorting openings arranged above the guide cylinder and adapted to the size of good grains to be sorted, and in the sorting net and the guide cylinder and AgeKoku spiral sleeve having a helical blade to the concentrically arranged circumferential surface, and a reservoir tank for storing YoKoku, the guide tube rotating at low speed the AgeKoku spiral sleeve causes a high speed the Grain supplied from a hopper into a supply cylinder is introduced into the induction cylinder from a supply port that is formed on the lower peripheral surface of the induction cylinder by the induction blade, and the sorting net is crushed by the cerealing spiral cylinder. A vertical grain sorter configured to sort good grains by body Te, Rutotomoni provided meshwork formed with openings of a size smaller than the size of the sorting aperture of the sorting network member on the outer peripheral surface of the guide tube between the sorting network element and the induction wing, the net-like body An initial pair of upper and lower circular flange portions projecting on the outer peripheral surface of the guide tube so as to sandwich the grain introduced into the guide tube by the guide wings. In the stage, a rice cake having the lightest specific gravity is passed through the mesh of the guide cylinder and sorted, and then the broken rice and small grains are passed through the sorted mesh, and the good grains that do not pass through the sorted mesh are stored in the storage tank. It is characterized by being configured to cereal .
請求項2記載の縦型穀粒選別機は、前記網状体の上部側に位置する前記フランジ部と、この上部側フランジ部に対応して前記基体の内側に形成する仕切り板によって基体内を上下に仕切る仕切り部を構成し、この仕切り部の下方に前記誘導筒の網状体から通過した糠を回収する糠取りボックスを設けたことを特徴とする。
3. The vertical grain sorter according to claim 2, wherein the inside of the base body is vertically moved by the flange portion located on the upper side of the mesh body and a partition plate formed on the inner side of the base body corresponding to the upper side flange portion. A partitioning section for partitioning into two parts is configured, and a scissor collecting box for collecting the soot that has passed from the mesh body of the guide tube is provided below the partitioning part.
請求項3記載の縦型穀粒選別機は、前記糠取りボックスの両側に縦方向に延びる位置決めリブを形成するとともに、この糠取りボックスの収納部には前記位置決めリブに対応して逆V字状の受けリブを形成し、その受けリブの後方傾斜面に前記位置決めリブを案内することによって前記糠取りボックスを前記収納部に位置決め保持したことを特徴とする。
Vertical grain sorting machine according to claim 3, wherein the pre-SL to form a positioning rib extending longitudinally on either side of the bran removing box, inverted V corresponding to the positioning ribs in the housing portion of the bran removing box A character-shaped receiving rib is formed, and the positioning box is positioned and held in the storage portion by guiding the positioning rib to a rearward inclined surface of the receiving rib.
請求項4記載の縦型穀粒選別機は、前記基体を形成する外周面の少なくとも一面を合成樹脂製パネルで構成し、この合成樹脂製パネルに書類収納部として兼用する補強用段部を形成したことを特徴とする。
Vertical grain sorting machine according to claim 4, wherein the at least one surface of the outer peripheral surface to form a pre-Symbol substrate is a synthetic resin panel, a reinforcing step portion which serves as a document storage portion to the synthetic resin panels It is formed.
本発明の縦型穀粒選別機によれば、供給筒内に導入された穀類は誘導筒の誘導翼によって誘導筒内へ導入され、揚穀螺旋筒の螺旋翼によって揚穀される初期段階で先ず、誘導筒に形成した網状体の網目を通過して糠取りボックスに溜まるから、比重の軽い糠を選別処理する初期段階で早期に選別することができる。 According to the vertical grain sorter of the present invention, the cereal introduced into the supply cylinder is introduced into the induction cylinder by the induction wing of the induction cylinder, and cerealed by the spiral wing of the cerealing spiral cylinder. First, since it passes through the mesh of the mesh-like body formed in the guide tube and accumulates in the culling box, it is possible to sort the cocoons having a low specific gravity at an early stage in the sorting process.
また、本発明の縦型穀粒選別機によれば、糠が基体の全体に渡って浮遊することなく、仕切り部で仕切られた下部排出路に排出され、軸受けや各種可動部分への付着を抑制することができる。 Further, according to the vertical grain sorter of the present invention, the straw is discharged to the lower discharge path partitioned by the partitioning part without floating over the whole base, and adheres to the bearing and various movable parts. Can be suppressed.
また、本発明の縦型穀粒選別機によれば、糠を回収する糠取りボックスの装着は、糠取りボックスの位置決めリブの下端を受けリブの傾斜面に誘い込むだけで、糠取りボックスが受けリブの後部傾斜面に沿って基体の内側に移動して糠取りボックスを保持することができるとともに、糠取りボックスの取り外しは、受けリブを支点として糠取りボックスを僅かに回転させて引き上げるだけで簡単に取り外すことができる。 In addition, according to the vertical grain sorter of the present invention, the installation of the brewing box for collecting cocoons can be performed by simply receiving the lower end of the positioning rib of the brewing box into the inclined surface of the rib. It can move along the rear inclined surface of the rib to the inside of the base to hold the scraping box, and the scraping box can be removed by rotating the scraping box slightly with the receiving rib as a fulcrum. Easy to remove.
また、本発明の縦型穀粒選別機によれば、膨出カバーから選別網体の目詰まりなどを簡単に確認できるとともに、誘導筒のフランジ部の外径と基体の開口幅との寸法上、基体内への誘導筒の組み付けに際し、誘導筒を横方向に倒した状態で基体内に挿入しなければならない場合、膨出カバーによって形成される膨らんだスペースを利用して基体の内壁部との干渉を防止することができる。 Further, according to the vertical grain sorter of the present invention, it is possible to easily check the clogging of the sorting net body from the bulging cover, and the dimension between the outer diameter of the flange portion of the guide tube and the opening width of the base body. When assembling the guide tube into the base, if the guide tube has to be inserted into the base in a state where the guide tube is tilted sideways, the inner wall portion of the base is formed using the bulging space formed by the bulging cover. Interference can be prevented.
また、本発明の縦型穀粒選別機によれば、最も目立つ基体の前面側に設けたハンドルに選別する良穀の残量などに応じて発光する発光表示部を設けることで、作業者に選別処理する良穀の残量などを視覚的に知らせることができ、視認性に優れるとともに、作業者に喚起を促す警報機能にも優れる。 Further, according to the vertical grain sorter of the present invention, by providing a light emitting display unit that emits light according to the remaining amount of good grains to be sorted on the handle provided on the front side of the most prominent base, The remaining amount of good cereal to be sorted can be visually informed, and it has excellent visibility and an alarm function that prompts the worker to be alerted.
また、本発明の縦型穀粒選別機によれば、基体の少なくとも一面を合成樹脂パネルで構成することで縦型穀粒選別機の軽量化が可能となるとともに、補強用段部を書類用、例えば選別機の取り扱い説明書などの収納スペースとして兼用することが可能となり、合理的であるとともに、紛失しやすい取り扱い説明書を縦型穀粒選別機の目立つ部分に保管することができ、取り扱い説明書の紛失を防止することができ、かつ、必要に応じて取り扱い説明書を簡単に取り出すことができる。 Further, according to the vertical grain sorting machine of the present invention, along with lighter vertical grain sorter by constituting at least one surface of the substrate with a synthetic resin panel is made possible, for documents the reinforcing step portion , for example, can be also used as a storage space, such as manual sorters, as well as a reasonable, it is possible to store the lost easily manual in part a prominent vertical grain sorting machine, handling The loss of the instruction can be prevented, and the instruction manual can be easily taken out if necessary.
本発明の縦型穀粒選別機は、外面にホッパを備えた基体と、前記ホッパと連通するように前記基体内下部に設けた供給筒と、この供給筒と同心状に配設され周面に誘導翼を有する誘導筒と、この誘導筒の上方に配設され選別されるべき良穀サイズに合わせた選別開口を多数形成した選別網体と、この選別網体及び誘導筒内に同心状に配設された周面に螺旋翼を有する揚穀螺旋筒と、良穀を貯留する貯留タンクとを備え、前記揚穀螺旋筒を高速回転させるとともに前記誘導筒を低速回転させて前記選別網体によって良穀を選別するように構成した縦型穀粒選別機であって、前記誘導筒の外周面に前記選別網体の選別開口のサイズよりも小さいサイズの開口を形成した網状体を設け、該網状体により前記供給筒内で穀粒から糠を選別するように構成する。
また、前記網状体の上部に位置して基体内を上下に仕切る仕切り部を設け、この仕切り部の下方に糠取りボックスを設ける。
また、本発明の縦型穀粒選別機は、外面にホッパを備えた基体と、前記ホッパと連通するように前記基体内下部に設けた供給筒と、この供給筒と同心状に配設され周面に誘導翼を有する誘導筒と、この誘導筒の上方に配設され選別されるべき良穀サイズに合わせた選別開口を多数形成した選別網体と、この選別網体及び誘導筒内に同心状に配設された周面に螺旋翼を有する揚穀螺旋筒と、良穀を貯留する貯留タンクとを備え、前記揚穀螺旋筒を高速回転させるとともに前記誘導筒を低速回転させて前記選別網体によって良穀を選別するように構成した縦型穀粒選別機であって、前記基体の両側に基体内を確認する窓部を形成し、その窓部にそれぞれ外側に膨出するように湾曲形成された透視可能な膨出カバーを装着し、その膨出カバーによって前記基体内に前記誘導筒の対角寸法より広い空間部を形成する。
また、本発明の縦型穀粒選別機は、外面にホッパを備えた基体と、選別されるべき良穀サイズに合わせた選別開口を多数形成した選別網体と、良穀を貯留する貯留タンクと、選別された糠を捕集する糠取りボックスとを備え、前記選別網体によって良穀を選別するように構成した縦型穀粒選別機であって、前記糠取りボックスの両側に縦方向に延びる位置決めリブを形成するとともに、この糠取りボックスの収納部には前記位置決めリブに対応して逆V字状の受けリブを形成し、その受けリブの後方傾斜面に前記位置決めリブを案内することによって前記糠取りボックスを前記収納部に位置決め保持した。
また、本発明の縦型穀粒選別機は、外面にホッパを備えた基体と、選別されるべき良穀サイズに合わせた選別開口を多数形成した選別網体と、良穀を貯留する貯留タンクとを備え、前記選別網体によって良穀を選別するように構成した縦型穀粒選別機であって、前記基体の前面側にハンドルを設け、このハンドルに選別処理状況に応じて点灯制御される発光表示部を設けた。
また、本発明の縦型穀粒選別機は、外面にホッパを備えた基体と、選別されるべき良穀サイズに合わせた選別開口を多数形成した選別網体と、良穀を貯留する貯留タンクとを備え、前記選別網体によって良穀を選別するように構成した縦型穀粒選別機であって、前記基体を形成する外周面の少なくとも一面を合成樹脂製パネルで構成し、この合成樹脂製パネルに書類収納部として兼用する補強用段部を形成した。
以下、本発明の縦型穀粒選別機の一実施例について、添付図面を参照して説明する。
A vertical grain sorter according to the present invention includes a base body provided with a hopper on the outer surface, a supply cylinder provided in the lower part of the base body so as to communicate with the hopper, and a circumferential surface disposed concentrically with the supply pipe A guide cylinder having guide blades, a sorting net having a large number of sorting openings arranged above the guide cylinder in accordance with the size of the good grain to be sorted, and a concentric shape in the sorting net and the guide cylinder And a storage tank for storing good cereals, and the rotating screen is rotated at a high speed and the guide tube is rotated at a low speed to select the sorting net. A vertical grain sorter configured to sort good grains according to a body, provided with a mesh body in which an opening having a size smaller than a size of a sorting opening of the sorting net is formed on an outer peripheral surface of the guide tube In addition, the net-like body is configured to sort the straw from the grains in the supply cylinder. To.
Further, a partition part is provided at the upper part of the mesh body to partition the inside of the base body up and down, and a scraping box is provided below the partition part.
The vertical grain sorter of the present invention is provided with a base body provided with a hopper on the outer surface, a supply cylinder provided in the lower part of the base body so as to communicate with the hopper, and concentrically with the supply pipe. A guide cylinder having guide wings on the circumferential surface, a sorting net having a large number of sorting openings arranged above the guide cylinder and adapted to the size of good grains to be sorted, and in the sorting net and the guide cylinder The cereals are arranged in a concentric manner with a spiral wing having spiral wings and a storage tank for storing good cereals. A vertical grain sorter configured to sort good grains by a sorting net, wherein window portions for confirming the inside of the base are formed on both sides of the base body, and each of the window portions bulges outward. A bulging cover that can be seen through is curved and attached to the bulging cover. Wherein said forming a wider space than the diagonal dimension of the guide tube in the substrate.
Further, the vertical grain sorter of the present invention includes a base having a hopper on the outer surface, a sorting net having a large number of sorting openings according to the size of good grains to be sorted, and a storage tank for storing good grains. A vertical grain sorter configured to sort good grains by the sorting net body, the vertical direction on both sides of the harvesting box. A positioning rib extending in a straight line is formed, and an inverted V-shaped receiving rib corresponding to the positioning rib is formed in the storage portion of the scraping box, and the positioning rib is guided to the rear inclined surface of the receiving rib. As a result, the scraping box was positioned and held in the storage portion.
Further, the vertical grain sorter of the present invention includes a base having a hopper on the outer surface, a sorting net having a large number of sorting openings according to the size of good grains to be sorted, and a storage tank for storing good grains. A vertical grain sorter configured to sort good grains by the sorting net body, provided with a handle on the front side of the base body, and the handle is controlled to be lit according to the sorting process status A light emitting display portion is provided.
Further, the vertical grain sorter of the present invention includes a base having a hopper on the outer surface, a sorting net having a large number of sorting openings according to the size of good grains to be sorted, and a storage tank for storing good grains. A vertical grain sorter configured to sort good grains by the sorting net body, wherein at least one of the outer peripheral surfaces forming the base is constituted by a synthetic resin panel, and the synthetic resin A reinforcing step portion that is also used as a document storage portion was formed on the panel.
Hereinafter, an embodiment of a vertical grain sorter according to the present invention will be described with reference to the accompanying drawings.
図1は縦型穀粒選別機の断面図で示しており、同図で示すように、縦型穀粒選別機は、固定キャスタ1a及び自在キャスタ1bを有するベース1と、このベース1上に配設され、略四角柱状に形成された中空状の基体2と、この基体2の正面上部に突出した貯留タンク3を設け、基体2の内部には供給筒4、誘導筒10、選別網体20及び揚穀螺旋筒30が同軸上に組み付けられ、基体2及び供給筒4の内部で選別網体20及び揚穀螺旋筒30が回動自在に構成されている。なお、図1において、図示左側を縦型穀粒選別機の背面、図示右側を正面とする。 Figure 1 shows a sectional view of TategataKoku particle separator, as shown in the figure, the vertical grain sorting machine comprises a base 1 having a fixed casters 1a and casters 1b, on the base 1 A hollow base body 2 that is disposed and formed in a substantially quadrangular prism shape, and a storage tank 3 that projects from the front upper portion of the base body 2 are provided. Inside the base body 2, a supply cylinder 4, a guide cylinder 10, and a sorting net body are provided. 20 and the cerealed spiral cylinder 30 are assembled coaxially, and the sorting net body 20 and the cerealed spiral cylinder 30 are configured to be rotatable inside the base body 2 and the supply cylinder 4. In FIG. 1, the back of the left side of a vertical grain sorting machine, the right side in the drawing and the front.
基体2の背面には穀類を供給するホッパ5が設けられ、このホッパ5と連通して基体2の内部下方に前記供給筒4が配置されている。供給筒4は上面を開放された有底筒型を成し、その供給筒4内に前記誘導筒10が配置されている。 A hopper 5 for supplying cereals is provided on the back surface of the base body 2, and the supply cylinder 4 is disposed below the base body 2 in communication with the hopper 5. The supply cylinder 4 has a bottomed cylinder shape with an open upper surface, and the guide cylinder 10 is disposed in the supply cylinder 4.
前記供給筒4内に配置される誘導筒10は図4に示すように、下部周面に複数の供給口11を形成し、この供給口11の上部に螺旋状の誘導翼12を形成し、さらに、その上部に糠を選別する帯状の網状体13を形成している。また、網状体13の上下を挟むように上下一対の円形フランジ部14,15が突設され、その上側のフランジ部14上に突設した係合片16,16に前記選別網体20の下端部に設けた係合用スリット19が係合して誘導筒10の上部に選別網体20が載置されている。この誘導筒10の係合片16と選別網体20の係合用スリット19との係合によって誘導筒10と選別網体20とが一体的に回転する。その選別網体20内には、前記揚穀螺旋筒30が同心状に配設されている。この揚穀螺旋筒30の上端部には回転軸30aが一体形成され、その回転軸30aが選別網体20の上端部に形成する軸受け21によって、揚穀螺旋筒30が選別網体20に対して相対的な回転を可能にしている。さらに、回転軸30aは軸受け21を貫通して前記基体2に固定した軸受け22に回動自在に軸支されている。これにより、選別網体20は誘導筒10と共に低速回転をし、揚穀螺旋筒30は同軸で高速回転を達成され、選別網体20内に同心状に配設した揚穀螺旋筒30の周面に形成する螺旋翼31によって選別網体20と揚穀螺旋筒30との間に供給される穀類を揚穀するように構成している。 As shown in FIG. 4, the guide tube 10 disposed in the supply tube 4 forms a plurality of supply ports 11 on the lower peripheral surface, and forms a spiral guide blade 12 on the top of the supply port 11, Further, a band-like net-like body 13 for selecting ridges is formed on the upper part. Further, a pair of upper and lower circular flange portions 14 and 15 are provided so as to sandwich the upper and lower sides of the mesh-like body 13, and the lower ends of the sorting mesh body 20 are provided on the engaging pieces 16 and 16 projecting on the upper flange portion 14. An engaging slit 19 provided in the portion engages, and a sorting net 20 is placed on the upper portion of the guide tube 10. Due to the engagement between the engaging piece 16 of the guide tube 10 and the engagement slit 19 of the sorting net body 20, the guiding tube 10 and the sorting net body 20 are integrally rotated. In the sorting net body 20, the above-mentioned threshing spiral cylinder 30 is disposed concentrically. A rotary shaft 30 a is integrally formed at the upper end portion of the cerealing spiral cylinder 30, and the cerealing spiral cylinder 30 is attached to the sorting net body 20 by a bearing 21 formed on the upper end portion of the sorting net body 20. To enable relative rotation. Further, the rotary shaft 30a is pivotally supported by a bearing 22 that passes through the bearing 21 and is fixed to the base 2. As a result, the sorting net body 20 rotates at a low speed together with the guide cylinder 10, and the cerealing spiral cylinder 30 is coaxially rotated at a high speed, and the circumference of the cerealing spiral cylinder 30 disposed concentrically in the sorting net body 20. The cereals supplied between the sorting net body 20 and the cerealing spiral cylinder 30 are cerealed by the spiral blades 31 formed on the surface.
このような選別網体20の低速回転と、揚穀螺旋筒30の高速回転を実現するには、前記誘導筒10の下部には二出力ギアモータ40が配置され、低速出力軸を誘導筒10の底部に固定するとともに、前記揚穀螺旋筒30の底板に二出力ギアモータ40の高速出力軸を固定することによって、誘導筒10と選別網体20とが一体に低速回転するとともに、揚穀螺旋筒30が高速回転する。ホッパ5の挿入口5aから供給筒4内へ導入された穀類は、誘導筒10の誘導翼12によって下方へと誘導され、誘導筒10の下部に開口された供給口11から誘導筒10内に導かれる。次いで、穀粒は選別網体20と揚穀螺旋筒30間に導入され、相対回転する選別網体20および揚穀螺旋筒30によって穀類を揚穀する間に、まず、誘導筒10に形成した網状体13の網目から糠を通過させたる。その後、選別網体20の網目で割れ米や小粒米を通過させ、選別網体20の網目から通過しない良穀を貯留タンク3へと排出して、割れ米や小粒米などの屑米と良穀を選別するように構成している。選別網体20に形成された多数の選別開口のサイズは良穀のサイズに合わせて決められており、誘導筒10に形成した網状体13の開口部(網目)のサイズはそれよりも狭い。前記基体2の内部には誘導筒10の上部側フランジ部14に対応して仕切り板17(図7に示す)が取り付けられ、この仕切り板17と上部側フランジ部14によって基体2の内部を上部排出路18aと下部排出路18bとに区画している。このフランジ部14と仕切り板17とは2枚が接して設けられており、その上部排出路18aに臨んで小米排出シュート出口7を設け、下部排出路18bの下部に着脱自在な糠取りボックス8を設けている。そして、前記誘導筒10の網状体13の網目から通過した糠は下部排出路18bを通って糠取りボックス8に排出され、選別網体20の網目を通過した割れ米や小粒米といった屑米は上部排出路18aを通って小米排出シュート7に排出される。供給筒4の最下部には排出口70が設けられており、レバー71等によって開閉自在に構成されている。 In order to realize such a low-speed rotation of the sorting net body 20 and a high-speed rotation of the cerealing helix 30, a two-output gear motor 40 is disposed below the induction cylinder 10, and the low-speed output shaft is connected to the induction cylinder 10. While fixing to the bottom and fixing the high-speed output shaft of the two-output gear motor 40 to the bottom plate of the cerealing spiral cylinder 30, the guide cylinder 10 and the sorting net 20 rotate at a low speed integrally, and the cerealing spiral cylinder 30 rotates at high speed. Grain introduced into the supply cylinder 4 from the insertion port 5 a of the hopper 5 is guided downward by the guide blade 12 of the guide cylinder 10 and enters the guide cylinder 10 from the supply port 11 opened at the lower part of the guide cylinder 10. Led. Next, the grain is introduced between the sorting net body 20 and the cerealing spiral cylinder 30, and the grain is first formed in the guide cylinder 10 while the cereal is being ceased by the relatively rotating sorting net body 20 and the cerealing spiral cylinder 30. A ridge is passed through the mesh of the mesh body 13. Thereafter, cracked rice and small grain rice are allowed to pass through the mesh of the sorting mesh body 20, and good grains that do not pass through the mesh of the sorting mesh body 20 are discharged to the storage tank 3. It is configured to sort cereals. The size of a large number of sorting openings formed in the sorting net 20 is determined in accordance with the size of good grains, and the size of the opening (mesh) of the net 13 formed in the guide tube 10 is narrower than that. A partition plate 17 (shown in FIG. 7) is attached to the inside of the base body 2 so as to correspond to the upper side flange portion 14 of the guide tube 10, and the inside of the base body 2 is made upper by the partition plate 17 and the upper side flange portion 14. It is divided into a discharge path 18a and a lower discharge path 18b. This is a flange portion 14 and the partition plate 17 is provided with two contacts, a small rice discharge chute outlet 7 provided facing to the upper exhaust passage 18a, freely bran removing boxes detachably in the lower part of the lower discharge path 18b 8 is provided. And the rice cake that has passed from the mesh of the mesh body 13 of the guide tube 10 is discharged to the rice picking box 8 through the lower discharge passage 18b, and the broken rice such as broken rice and small grain rice that has passed the mesh of the sorting mesh body 20 is removed. It is discharged to the small rice discharge chute 7 through the upper discharge path 18a. A discharge port 70 is provided at the lowermost part of the supply cylinder 4 and is configured to be opened and closed by a lever 71 and the like.
前記糠取りボックス8の詳細は、図5(a)(b)に示すように、上面を開口した箱型を成し、その両側に縦方向に保持用及び位置決め用のリブ8aが突設されるとともに、糠取りボックス8の前面板9には指掛け用の左右一対の凹部9a,9a(図2)が形成されている。さらに、前面板9に半透明部分9bを形成すれば、糠取りボックス8内に溜まった糠の量を外から見ることができる。この糠取りボックス8を基体2内に保持及び位置決めするには、前記基体2の側面下部に前記糠取りボックス8を収納する凹状(ポケット状)の収納部25が形成され、その収納部25の左右両側壁に前記位置決めリブ8aを誘い込む左右一対の逆V字状の受けリブ26が形成されている(図5(c))。図5(c)に示すように、糠取りボックス8を下端部から収納部25内に入れ込み、その受けリブ26の後部傾斜面26aに位置決めリブ8aの下端部を誘い込むことによって、収納部25内に糠取りボックス8を簡単に位置決め保持している。糠取りボックス8を取り出す際には、この逆を行えばよい。 As shown in FIGS. 5 (a) and 5 (b), the details of the scraping box 8 are formed in a box shape having an open upper surface, and holding and positioning ribs 8a projecting vertically on both sides thereof. At the same time, the front plate 9 of the scissor box 8 is formed with a pair of left and right recesses 9a, 9a (FIG. 2) for finger hanging. Furthermore, if the translucent portion 9b is formed on the front plate 9, the amount of soot accumulated in the soot removal box 8 can be seen from the outside. In order to hold and position the scraping box 8 in the base body 2, a concave (pocket-shaped) storage portion 25 for storing the scraping box 8 is formed at the lower side of the base body 2. A pair of left and right inverted V-shaped receiving ribs 26 for guiding the positioning ribs 8a are formed on the left and right side walls (FIG. 5C). As shown in FIG. 5C, the scooping box 8 is inserted into the storage portion 25 from the lower end portion, and the lower end portion of the positioning rib 8a is guided into the rear inclined surface 26a of the receiving rib 26, thereby The staking box 8 is easily positioned and held. When taking out the wrinkle-removing box 8, the reverse may be performed.
また、前記貯留タンク3は基体2に設けられた放出口2aに連通されており、その貯留タンク3の下方部には良穀aの排出口3aが設けられている。また、貯留タンク3の前面側には各種表示部50や各種操作スイッチ51を備えた操作パネル52が配置されている。その操作パネル52の下部にコ字状のハンドル55が取り付けられている。このハンドル55を握って前記ベース1に設けたキャスタ1a,1bによって縦型穀粒選別機を移動する。なお、ベース1の背面側に固定キャスタ1aが、前面側に自在キャスタ1bが配置され、ハンドル55を握って前面側の自在キャスタ1bによって縦型穀粒選別機の方向を変えながら移動して任意位置に縦型穀粒選別機を移動した後、ベース1に取り付けた設置脚6を延ばすことによって縦型穀粒選別機の位置を固定する。また、ハンドル55の前面両側から両側面に跨って左右対称の発光表示部56が設けられている。この発光表示部56は、図6示すように、例えばLEDなどの発光体57から成る4組の発光領域58a〜58dで構成され、これら発光領域58a〜58dは、選別する良穀aの処理状況、例えば良穀aの残量に応じて点灯するように制御している。例えば、前記表示操作パネル52で30Kgの良穀を選別処理するように設定した場合、7.5Kg選別する毎に奥側の発光領域58dから58c,58b,58aと順次、左右の発光表示部56が対称に点灯して利用者に良穀aの残量を発光表示部56の発光状態によって知られるように制御される。選別が完了した際には、全発光領域が点滅することにより、より高い視認性を得ることができる。その際には、同時に終了警告音を発することも可能である。なお、これら発光領域58a〜58dは透光性カバー59で覆われているが、図6においては透光性カバー59を外した状態を示している。 The storage tank 3 communicates with a discharge port 2 a provided in the base 2, and a discharge port 3 a for good grains a is provided at a lower portion of the storage tank 3. An operation panel 52 having various display units 50 and various operation switches 51 is arranged on the front side of the storage tank 3. A U-shaped handle 55 is attached to the lower part of the operation panel 52. Casters 1a provided on the base 1 by gripping the handle 55, to move the vertical grain sorter by 1b. The fixed casters 1a on the rear side of the base 1, casters 1b on the front side is arranged, the direction of the vertical grain sorting machine by the front side of the casters 1b behind the wheel 55 moves while ging after moving the TategataKoku particle sorter to an arbitrary position, to fix the position of the vertical grain sorting machine by extending the installation legs 6 attached to the base 1. In addition, symmetrical light-emitting display portions 56 are provided across both sides of the front surface of the handle 55. The light emitting display unit 56, as shown FIG. 6, for example, a four sets of the light emitting region 58a~58d consisting luminous body 57 such as LE D, these light-emitting region 58a~58d, the processing of YoKoku a to screen It is controlled to light up according to the situation, for example, the remaining amount of good grain a. For example, when the display operation panel 52 is set so as to sort 30 kg of good cereals, the left and right light emitting display portions 56 are sequentially arranged from the light emitting areas 58d to 58c, 58b, 58a on the back side every time 7.5 kg is sorted. There are controlled as known by light emission state of YoKoku a remaining amount of the light-emitting display portion 56 to the user lights symmetrically. When sorting is completed, the entire light emitting area blinks, so that higher visibility can be obtained. In that case, it is also possible to emit an end warning sound at the same time. Although these light emitting regions 58a~5 8 d is covered with the translucent cover 59, in FIG. 6 shows a state in which remove the translucent cover 59.
このコ字状のハンドル55は、貯留タンク3部に対して、手が挿入できるように所定距離だけ離して配置される(図10)。その際、コ字状の両終端部においてボルト等の固着手段51a,51bにより強固に固定される。なお、一対の4組の発光領域(58a〜58d)(58a〜58d)を構成する各発光素子への給電用のワイヤ58mは、中央部の給電ワイヤ開口部55aから纏めて配線されている。コ字状のハンドル55と貯留タンク3部との間で、給電用のワイヤ58mが外部に露出しないように、防護管59a内を通して配線することも可能である。 The U-shaped handle 55 is arranged a predetermined distance away from the storage tank 3 so that a hand can be inserted (FIG. 10). At that time, both U-shaped end portions are firmly fixed by fixing means 51a, 51b such as bolts. Note that the wires 58m for feeding power to the light emitting elements constituting the four pairs of light emitting regions (58a to 58d) (58a to 58d) are wired together from the feeding wire opening 55a at the center. It is also possible to wire between the U-shaped handle 55 and the storage tank 3 through the protective tube 59a so that the power supply wire 58m is not exposed to the outside.
また、基体2の両側上方には基体2内の選穀状態を確認するために、選別網体20の途中部分の両側に確認用窓部60が設けられる。この窓部60には外方に湾曲状に膨らんだ膨出カバー61が嵌め込まれており、この膨出カバー61から選別網体20の目詰まりなどを確認する。この膨出カバー61を膨出させたもう一つの理由は、後述するが、基体2内に誘導筒10を装着する際の便のためでもある。 Further, in order to confirm the cereal selection state in the base body 2 on both sides of the base body 2, confirmation window portions 60 are provided on both sides of the middle portion of the sorting net body 20. A bulging cover 61 bulging outwardly is fitted in the window 60, and the clogging of the sorting net 20 is confirmed from the bulging cover 61. Another reason why the bulging cover 61 is bulged is also for convenience when the guide tube 10 is mounted in the base 2 as described later.
また、前記基体2の前面パネル2bは合成樹脂パネルによって形成して、軽量化を図っている。図9(a)は、合成樹脂製の前面パネル2bの裏面図であり、下部に冷却用の通気開口部61,61・・・が形成されている。この通気開口部61,61・・・は、前面パネル2bの強度を弱くするので、その近傍上部に外部に凸の補強用のリブ62を設けている。前面パネル2bの上部には広い面が構成されているので、それを補強するために、その前面パネル2bの広い面を全体的にカバーするように、四角形状の補強用段部65が一体形成される。この補強用段部65の上辺部は開口部65aを形成している。この補強用段部65の裏面側には上下一対の薄い帯状体66を接着している。これによって、その補強用段部65の裏面に上下一対の薄い帯状体66との間の上辺が開口した空間部65bを形成することができる。これにより、適当なパンフレット等、例えば、縦型穀粒選別機の取り扱い説明書67の収納スペースとして利用することができる。 Further, the front panel 2b of the base 2 is formed of a synthetic resin panel to reduce the weight. FIG. 9A is a rear view of the front panel 2b made of synthetic resin, and cooling ventilation openings 61, 61... Are formed in the lower part. Since the ventilation openings 61, 61... Weaken the strength of the front panel 2b, a convex reinforcing rib 62 is provided on the upper portion in the vicinity thereof. Since a wide surface is formed on the upper portion of the front panel 2b, a rectangular reinforcing step 65 is integrally formed so as to cover the entire large surface of the front panel 2b in order to reinforce it. Is done. An upper side portion of the reinforcing step portion 65 forms an opening 65a. A pair of upper and lower thin strips 66 are bonded to the back side of the reinforcing step 65. As a result, a space 65b having an open upper side between the pair of upper and lower thin strips 66 can be formed on the back surface of the reinforcing step 65. Thus, such suitable pamphlets, for example, can be used as a storage space for manual 67 of vertical grain sorter.
次に、本実施例の動作について説明する。操作パネル52によって選別する良穀の重量などを設定して穀類をホッパ5内へ供給すると、穀類は導入口5aから供給筒4内に導入され、低速回転する誘導筒10の誘導翼12により下方へ導かれ、誘導筒10の下部に形成された供給口11から誘導筒10内へ導入される。誘導筒10内へ導入された穀類は、螺旋翼31と誘導筒10と一体に低速回転する選別網体20との相互作用によって揚穀される間に、先ず、最も比重が軽く小さい糠が誘導筒10に形成した網状体13の網目から通過する。次に選別網体20の網目で割れ米や小粒米が通過し、選別網体20の網目から通過しない良穀aが基体2上部まで揚穀され、選別網体20と一体に回転する掻出羽根(図示しない)によりはじき飛ばされて放出口2aより貯留タンク3内へ放出される。この貯留タンク3内の良穀aは貯留タンク3の下部に設けた排出口3aから計量機(図示しない)上に載置した穀類袋(図示しない)に充填される。穀類袋内に充填される良穀aの重量は計量機から縦型穀粒選別機の制御装置に出力され、良穀aの残量に応じてハンドル55に設けた発光体57が点灯制御する。 Next, the operation of this embodiment will be described. When the weight of good grains selected by the operation panel 52 is set and the cereal is supplied into the hopper 5, the cereal is introduced into the supply cylinder 4 from the introduction port 5a and is lowered by the guide blade 12 of the induction cylinder 10 rotating at low speed. And is introduced into the guide tube 10 from a supply port 11 formed in the lower portion of the guide tube 10. While the cereal introduced into the guide cylinder 10 is cerealed by the interaction between the spiral blade 31 and the sorting net 20 that rotates integrally with the guide cylinder 10 at a low speed, first, the lightest and lightest koji is guided. It passes through the mesh of the mesh 13 formed in the cylinder 10. Next, cracked rice or small grain rice passes through the mesh of the screening mesh body 20, and the good grain a that does not pass through the mesh of the screening mesh body 20 is raised to the upper part of the base 2, and scraped to rotate integrally with the screening mesh body 20. It is blown off by a blade (not shown) and discharged into the storage tank 3 from the discharge port 2a. The good grains a in the storage tank 3 are filled into a cereal bag (not shown) placed on a weighing machine (not shown) from a discharge port 3 a provided at the lower part of the storage tank 3. Weight YoKoku a charged in the cereal bag is outputted to the control unit of the vertical grain sorter from the weighing machine, the light emitter 57 to control the lighting provided in the handle 55 in accordance with the remaining amount of YoKoku a .
また、誘導筒10に形成した網状体13の網目から通過した糠は、下部排出路18bから糠取りボックス8に排出され、基体2から糠取りボックス8を取り外して糠取りボックス8に貯まった糠を回収する。下部排出路18bから糠取りボックス8に排出される経路については、本願発明の要旨ではないので、特に説明しない。一方、選別網体20の網目を通過した割れ米や小粒米といった屑米は上部排出路18aから小米排出シュート7に排出され、排出シュート7から穀類袋(図示しない)などに充填して回収する。なお、糠取りボックス8を基体2から取り外す際には、図5(c)中、鎖線に示すように、糠取りボックス8の指掛け用の凹部9a,9aに指を掛けて受けリブ26を支点として糠取りボックス8を僅かに回転させて引き上げるだけで、糠取りボックス8を簡単に取り外すことができる。一方、糠取りボックス8をセットする場合は、糠取りボックス8の位置決めリブ8aの下端を受けリブ26の傾斜面26aに誘い込むことによって、糠取りボックス8が受けリブ26の傾斜面26aに沿って糠取りボックス8には基体2の内側に向かう付勢力aが作用し、これにより糠取りボックス8の前面板9が基体2に押し付けられるため、糠取りボックス8を収納部25内において簡単に位置決め保持することができる。 Further, the soot that has passed through the mesh of the mesh body 13 formed in the guide tube 10 is discharged from the lower discharge path 18 b to the scooping box 8, and the scissors that have been removed from the base 2 and accumulated in the scooping box 8 are collected. Recover. The route discharged from the lower discharge path 18b to the scooping box 8 is not the gist of the present invention, and will not be particularly described. On the other hand, waste rice such as broken rice and small grain rice that has passed through the mesh of the sorting net body 20 is discharged to the small rice discharge chute 7 from the upper discharge path 18a, and is filled and recovered from the discharge chute 7 into a grain bag (not shown). . When removing the scissor box 8 from the base 2, as shown by a chain line in FIG. 5 ( c ), the receiving ribs 26 are supported by placing fingers on the recesses 9a, 9a for gripping the scooping box 8. As described above, the wrinkle box 8 can be easily removed by slightly rotating and lifting the wrinkle box 8. On the other hand, when setting the scraping box 8 , the scraping box 8 extends along the inclined surface 26 a of the receiving rib 26 by guiding the lower end of the positioning rib 8 a of the scraping box 8 into the inclined surface 26 a of the rib 26. An urging force a directed toward the inside of the base body 2 acts on the scissor box 8, and the front plate 9 of the scissor box 8 is thereby pressed against the base body 2, so that the scissor box 8 can be easily positioned in the storage unit 25. Can be held.
また、膨出カバー61からは、目詰まりしているかといった選別網体20の状態を確認することができる。さらには、図7に示すように、前記基体2内において前記誘導筒10を組み付ける際、膨出カバー61によって形成される外側に膨らんだスペースを利用して誘導筒10を容易に回転することができる。本発明の場合は、誘導筒10に網状体13を設けることにより寸法H(図8)が大きくなるが、そのような場合にも容易に対応が可能である。すなわち、誘導筒10を基体2内に組み込む際、基体2から背面カバー(横幅2r)を外した状態で基体2の背面側から誘導筒10を挿入して供給筒4内にセットするものであるが、誘導筒10の上部側フランジ部14と仕切り板17とで上部排出路18aと下部排出路18bとを仕切ることから、誘導筒10の上部側フランジ部14の外径Rは、基体2の内幅Wより若干小さいものの、基体2を大型化することなくコンパクト化しようとすると、設計上、外径Rと基体2の内幅Wはほぼ同一に設定される。一方、背面カバー2rを基体2に固定するには、基体2に背面カバー2rとの重ね合わせ代となる折り曲げ片2zを形成する必要がある。このため、誘導筒10を基体2内に組み込む際、基体2の開口幅W1より、前記誘導筒10の上部側フランジ部14の外径Rのほうが大きくなる。このため、誘導筒10を横方向に倒した状態(幅Hの状態)で基体2内に挿入することになる(誘導筒10の高さHは開口幅W1より小さい設計する必要がある)。したがって、基体2内に誘導筒10を組み付ける際、誘導筒10を横方向に倒した状態(幅Hの状態)で基体2内に挿入し、基体2内において誘導筒10を垂直方向に回転する必要がある。その際、外側に膨らみを持たせた膨出カバー61の部分(左右の膨出カバー61,61の内面距離W2)で上部側フランジ部14の回転スペース(つまり、誘導筒10の対角線上の最大寸法)を確保することができ、誘導筒10を回転する際、基体2の内壁部と上部側フランジ部14との干渉を防止することができ、誘導筒10の組み付け作業も容易である。 Further, from the bulging cover 61, it is possible to check the state of the sorting net body 20 as to whether it is clogged. Furthermore, as shown in FIG. 7, when assembling the guide tube 10 within the substrate 2, it is possible to easily rotate the guide tube 10 by utilizing the space bulging outward that will be formed by the bulging cover 61 it can. In the case of the present invention, the dimension H (FIG. 8) is increased by providing the mesh body 13 in the guide tube 10, but such a case can be easily dealt with. That is, when the guide tube 10 is incorporated into the base body 2, the guide tube 10 is inserted from the back side of the base body 2 and set in the supply tube 4 with the back cover (width 2 r) removed from the base body 2. but the outer diameter R of the upper flange portion 14 of the upper flange portion 14 and the fact that partitions the upper discharge passage 18a and the lower discharge path 18 b between the partition plate 17, guide tube 10 of the guide tube 10, the substrate 2 Although the inner width W is slightly smaller than the inner width W, the outer diameter R and the inner width W of the base body 2 are set to be substantially the same by design if the base body 2 is to be made compact without increasing its size. On the other hand, in order to fix the back cover 2r to the base body 2, it is necessary to form a bent piece 2z as an overlap margin with the back cover 2r on the base body 2. For this reason, when the guide tube 10 is incorporated in the base body 2, the outer diameter R of the upper flange portion 14 of the guide tube 10 becomes larger than the opening width W <b> 1 of the base body 2. For this reason, the guide tube 10 is inserted into the base body 2 in a state where the guide tube 10 is tilted laterally (width H) (the height H of the guide tube 10 needs to be designed to be smaller than the opening width W1). Therefore, when assembling the guide tube 10 in the base body 2, the guide tube 10 is inserted into the base body 2 in a state where the guide tube 10 is tilted sideways (width H), and the guide tube 10 is rotated in the vertical direction in the base body 2. There is a need. At this time, the rotation space of the upper flange portion 14 (that is, the maximum on the diagonal line of the guide tube 10) is the portion of the bulge cover 61 that has a bulge on the outside (the inner surface distance W2 of the left and right bulge covers 61, 61). Dimension) can be ensured, and when the guide tube 10 is rotated, interference between the inner wall portion of the base 2 and the upper flange portion 14 can be prevented, and the assembly work of the guide tube 10 is also easy.
以上のように、本実施例によれば、ホッパ5から供給筒4内に導入された穀類が誘導翼12によって誘導筒10の供給口11から誘導筒10内へ導入され、揚穀螺旋筒30の螺旋翼31によって穀類が揚穀される初期段階で先ず、誘導筒10に形成した網状体13で最も比重が軽く小さい糠を網目から通過させてから選別網体20の網目で割れ米や小粒米を通過させて選別網体20の網目から通過しない良穀aが上部仕切り板17上まで揚穀させることから、選別初期段階で糠を穀粒から早めに選別することができる。また、網状体13を通過した糠は仕切り板17と上部側フランジ部14によって区画された下部排出路18bに排出され、基体2の全体に渡って浮遊しないから、糠による選別網体20の目詰まりや軸受け21,22や各種可動部への糠の付着も抑制することができる。また、糠取りボックス8は、溜まった糠を回収する際、基体2から取り外せるように着脱自在となっているが、基体2への糠取りボックス8の装着は、糠取りボックス8の位置決めリブ8aの下端を受けリブ26の傾斜面26aに誘い込むだけで、糠取りボックス8が受けリブ26の傾斜面26aに沿って基体2の内側に移動し、糠取りボックス8の前面板9が基体2に押し付けられて簡単に位置決め保持することができる。一方、糠取りボックス8の取り外しは、受けリブ26を支点として糠取りボックス8を僅かに回転させて引き上げるだけで、糠取りボックス8を簡単に取り外すことができる。 As described above, according to the present embodiment, the cereal introduced from the hopper 5 into the supply cylinder 4 is introduced into the induction cylinder 10 from the supply port 11 of the induction cylinder 10 by the induction blade 12 , and the cereal spiral cylinder 30 In the initial stage when the cereals are cerealed by the spiral blades 31, first, the rice cake 13 having the lightest specific gravity in the mesh body 13 formed in the guide tube 10 is passed through the mesh and then cracked rice and small grains in the mesh of the sorting mesh body 20. Since the good grains a that pass through the rice and do not pass through the mesh of the sorting net body 20 are raised to the upper partition plate 17, the straw can be sorted early from the grain at the initial stage of the sorting. In addition, the soot that has passed through the mesh-like body 13 is discharged to the lower discharge path 18b defined by the partition plate 17 and the upper-side flange portion 14, and does not float over the entire base body 2. Clogging and adhesion of soot to the bearings 21 and 22 and various movable parts can also be suppressed. The scraping box 8 is detachable so that it can be removed from the base 2 when collecting the trapped soot. The mounting box 8 is attached to the base 2 by positioning ribs 8a of the scraping box 8. only lure of the inclined surface 26a of receiving the lower end rib 26, bran removing box 8 receives along the inclined surface 26a of the rib 26 to move inwardly of the base member 2, the front plate 9 of the bran removing box 8 base 2 And can be easily positioned and held. On the other hand, the staking box 8 can be easily removed by simply rotating the staking box 8 slightly with the receiving rib 26 as a fulcrum and pulling it up.
また、膨出カバー61から選別網体20の状態、例えば、選別網体20の目詰まりなどを簡単に確認できるとともに、誘導筒10の上部側フランジ部14の外径Rと基体2の開口幅W1との寸法上、基体2内への前記誘導筒10を組み付けに際し、誘導筒10を横方向に倒した状態で基体2内に挿入しなければならない場合、膨出カバー61で外側に膨らんだスペースを利用して倒した誘導筒10を起こす時、膨出カバー61の膨らんだ空間部を利用して上部側フランジ部14が回転するだけのスペースを確保することができる。これにより、誘導筒10の組み付ける際、基体2の内壁部と上部側フランジ部14との干渉を防止することができ、誘導筒10の組み付け作業も容易である。 Further, the state of the sorting net body 20 such as clogging of the sorting net body 20 can be easily confirmed from the bulging cover 61, and the outer diameter R of the upper side flange portion 14 of the guide tube 10 and the opening width of the base 2. When assembling the guide tube 10 into the base body 2 due to the size of W1, when the guide tube 10 has to be inserted into the base body 2 in a lateral direction, it is swollen outward by the bulging cover 61. When the guide cylinder 10 that is tilted down using the space is raised, a space enough for the upper flange portion 14 to rotate can be secured by using the swelled space portion of the bulging cover 61. Thereby, when the guide tube 10 is assembled, interference between the inner wall portion of the base 2 and the upper flange portion 14 can be prevented, and the assembly operation of the guide tube 10 is also easy.
また、基体2の前面に設けたハンドル55は、縦型穀粒選別機1を所望の位置に移動する際、握る部分であるが、その最も目立つ基体2の前面側に設けたハンドル55に選別する良穀aの残量に応じて発光する発光表示部56を設けることで、作業者に選別処理する良穀aの残量を視覚的に知らせることができ、視認性に優れるとともに、作業者に喚起を促す優れた警報機能をも備える。発光表示部56は、前面部を中心として左右対称に設けたことにより、縦型穀粒選別機1の左方向、右方向或いは前方からでも、広角度の範囲で縦型穀粒選別機1の動作状況を容易に把握することができるものである。 Further, a handle 55 provided on the front surface of the base 2, when moving vertical grain sorting machine 1 in the desired position, but is a portion gripped, sorting the handle 55 provided on the front side of the most prominent substrate 2 By providing the light-emitting display unit 56 that emits light according to the remaining amount of good cereal a, the operator can be visually informed of the remaining amount of good cereal a to be sorted, and the operator has excellent visibility, and the operator It also has an excellent alarm function that prompts the user to be alerted. Luminous display unit 56, by providing symmetrically around the front portion, a vertical grain sorting machine 1 in the leftward direction, rightward direction or even from the front, vertical grain sorter 1 in a range of wide angle The operating status can be easily grasped.
さらに、基体2の前面パネル2bを合成樹脂によって形成することで軽量化が可能となるとともに、前面パネル2bの補強用段部65を取り扱い説明書67の収納スペースとして利用することで極めて合理的であるとともに、紛失しやすい取り扱い説明書67を縦型穀粒選別機1の目立つ部分に保管することができ、取り扱い説明書67の紛失を防止することができるとともに、必要に応じて取り扱い説明書67を簡単に取り出すことができる。 Furthermore, the lighter is made possible by forming a front panel 2b of the base body 2 of synthetic resin, very reasonable by utilizing a reinforcing step portion 65 of the front panel 2b as a storage space for the manual 67 with some, lost easily can store the instruction manual 67 in vertical grain sorting machine 1 prominent portion, it is possible to prevent loss of manual 67, as needed manual 67 Can be taken out easily.
以上、本発明の一実施例について詳述したが、本発明は前記実施例に限定されるものではなく、本発明の要旨の範囲内で種々の変形実施が可能である。例えば、発光表示部を構成する発光体の種類や個数やカバーの形状といった基本的構成は適宜選定すればよい。 As mentioned above, although one Example of this invention was explained in full detail, this invention is not limited to the said Example, A various deformation | transformation implementation is possible within the range of the summary of this invention. For example, the basic configuration such as the type and number of light emitters constituting the light emitting display unit and the shape of the cover may be selected as appropriate.
1 縦型穀粒選別機
2 基体
2b 前面パネル(合成樹脂パネル)
3 貯留タンク
4 供給筒
5 ホッパ
7 排出シュート
8 糠取りボックス
8a 位置決めリブ
10 誘導筒
11 供給口
12 誘導翼
13 網状体
14 フランジ部(仕切り部)
17 仕切り板(仕切り部)
18a 上部排出路
18b 下部排出路
20 選別網体
25 収納部
26 受けリブ
26a 傾斜面
30 揚穀螺旋筒
31 螺旋翼
55 ハンドル
56 発光表示部
60 窓部
61 膨出カバー
65 補強用段部
1 vertical grain sorting machine 2 substrate 2b front panel (synthetic resin panels)
DESCRIPTION OF SYMBOLS 3 Storage tank 4 Supply cylinder 5 Hopper 7 Discharge chute 8 Saddle box 8a Positioning rib 10 Guide cylinder 11 Supply port 12 Guide blade 13 Net body 14 Flange part (partition part)
17 Partition plate (partition)
18a Upper discharge path 18b Lower discharge path 20 Sorting net body 25 Storage section 26 Receiving rib 26a Inclined surface 30 Sprouted spiral cylinder 31 Spiral blade 55 Handle 56 Light emitting display section 60 Window section 61 Swelling cover 65 Reinforcing step section
Claims (4)
前記誘導筒の外周面に前記選別網体の選別開口のサイズよりも小さいサイズの開口を形成した網状体を前記誘導翼と前記選別網体との間に設けるとともに、該網状体を挟むように上下一対の円形フランジ部を前記誘導筒の外周面に突設し、前記誘導翼によって前記誘導筒の内部に導入した穀粒が前記揚穀螺旋筒の螺旋翼によって揚穀される初期段階で前記誘導筒の網状体から最も比重が軽く小さい糠を通過させて選別してから選別網体目で割れ米や小粒米を通過させ、該選別網体から通過しない良穀を前記貯留タンクへと揚穀するように構成したことを特徴とする縦型穀粒選別機。 A base body provided with a hopper on the outer surface, a supply cylinder provided in the lower part of the base body so as to communicate with the hopper, a guide cylinder provided concentrically with the supply cylinder and having guide vanes on the peripheral surface, and the guide A sorting mesh body that is arranged above the cylinder and has a large number of sorting openings according to the size of the good grains to be sorted, and a spiral blade on the circumferential surface that is concentrically arranged in the sorting mesh and the guide cylinder. And a storage tank for storing good cereals, and rotating the induction cereal cylinder at a high speed and rotating the induction cylinder at a low speed to supply the cereal grains supplied from the hopper into the supply cylinder A vertical type that is introduced into the inside of the guide tube from a supply port formed on the lower peripheral surface of the guide tube by a guide blade, and is configured to sort good grains by the sorting net while mashing by the whipping spiral tube A grain sorter,
Rutotomoni provided meshwork formed with openings of a size smaller than the size of the sorting aperture of the sorting network member on the outer peripheral surface of the guide tube between the sorting network member and the induction wing, to sandwich the net-like body A pair of upper and lower circular flange portions projecting on the outer peripheral surface of the guide cylinder, and the grains introduced into the guide cylinder by the guide blades are cerealed by the spiral blades of the whipped spiral cylinder After passing through a small cocoon having the lightest specific gravity from the net of the guide tube and selecting it, the cracked rice and small grain rice are passed through the selection mesh, and the good grains that do not pass through the selection net are passed to the storage tank. A vertical grain sorter characterized in that it is configured to cereal .
2. The vertical type according to claim 1, wherein at least one of the outer peripheral surfaces forming the base is constituted by a synthetic resin panel, and a reinforcing step portion is also formed on the synthetic resin panel as a document storage portion. Grain sorter.
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| JP2011255040A Division JP5134135B2 (en) | 2011-11-22 | 2011-11-22 | Vertical grain sorter |
| JP2011255044A Division JP5194163B2 (en) | 2011-11-22 | 2011-11-22 | Vertical grain sorter |
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| JP4897764B2 true JP4897764B2 (en) | 2012-03-14 |
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| JP7205746B2 (en) * | 2018-10-05 | 2023-01-17 | 株式会社サタケ | Granular Sorter, Particle Sizer and Optical Sorter |
| CN109759170A (en) * | 2018-12-28 | 2019-05-17 | 江苏瑞牧生物科技有限公司 | A kind of wheat bran Matter Transfer grinding device |
| CN114226217B (en) * | 2021-11-17 | 2023-02-17 | 洪江市百禾农业发展有限公司 | A kind of sieving machine for condiment production and using method thereof |
| CN115156027B (en) * | 2022-09-08 | 2023-03-28 | 襄阳市飞钟粮食机械有限公司 | Husked rice separator of rice production and processing usefulness |
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| JPH0714505B2 (en) * | 1988-12-05 | 1995-02-22 | 株式会社タイガーカワシマ | Vertical grain sorter |
| JPH0818009B2 (en) * | 1989-07-17 | 1996-02-28 | 株式会社タイガーカワシマ | Wheat grain adjusting device |
| JP3885184B2 (en) * | 2000-05-16 | 2007-02-21 | 株式会社タイガーカワシマ | Cereal sorter |
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