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JPS6159124B2 - - Google Patents
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JPS6159124B2 - - Google Patents

Info

Publication number
JPS6159124B2
JPS6159124B2 JP3191477A JP3191477A JPS6159124B2 JP S6159124 B2 JPS6159124 B2 JP S6159124B2 JP 3191477 A JP3191477 A JP 3191477A JP 3191477 A JP3191477 A JP 3191477A JP S6159124 B2 JPS6159124 B2 JP S6159124B2
Authority
JP
Japan
Prior art keywords
cutting
rotating
rotating body
workpiece
cutting blades
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Expired
Application number
JP3191477A
Other languages
Japanese (ja)
Other versions
JPS53118564A (en
Inventor
Takeo Horiuchi
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Individual
Original Assignee
Individual
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Individual filed Critical Individual
Priority to JP3191477A priority Critical patent/JPS53118564A/en
Publication of JPS53118564A publication Critical patent/JPS53118564A/en
Publication of JPS6159124B2 publication Critical patent/JPS6159124B2/ja
Granted legal-status Critical Current

Links

Description

【発明の詳細な説明】 本発明は、野菜、果実等を、予め切削して、小
片となす手間を省き、原形のまま、高能率全面切
削回転式ジユーサ歯により、ジユーサ状に、すり
おろす事の出来るジユーサ歯に関する。
[Detailed Description of the Invention] The present invention eliminates the trouble of pre-cutting vegetables, fruits, etc. into small pieces, and grate them in the shape of a juicer in their original shape using highly efficient full-surface cutting rotary juicer teeth. Regarding the teeth that can be formed.

従来の回転式のジユーサ歯は、円形をなす円盤
の表面中心部に動力部の接続軸に取り付ける為
の、ボルト、ナツトがあり、その為、回転式ジユ
ーサ歯は、円周より中心部の軸付近にかけて、切
削刃を施していた。この従来の回転式ジユーサ歯
を切削面全面を使わず円盤の半径を使用する場
合、被切削物に接する円盤の面積は、円盤全面に
対しほぼ4分の1であり、ジユーサ歯の面積の割
合に比較して、切削面積が小さく極めて、能率が
悪い。次のこの回転式ジユーサ歯の全面を用いる
場合、被切削物は切削面の円周側に接している方
に比べて、中心部分に接している方のほうが切削
されにくく、被切削物表面をむらなく切削するこ
とができない。以上からわかるように、切削面の
半径を使用する場合は、装置が大きくなるのが不
可避であり、全面を使用しても、中心付近の切削
率が低くなること等を考えると、従来の回転式ジ
ユーサ歯は非能率的である。
Conventional rotary lever teeth have bolts and nuts in the center of the surface of a circular disc for attaching to the connecting shaft of the power unit. A cutting blade had been applied to the vicinity. When using the radius of the disc without using the entire cutting surface of this conventional rotary gear tooth, the area of the disc in contact with the workpiece is approximately 1/4 of the entire surface of the disc, which is a proportion of the area of the gear tooth. Compared to this, the cutting area is extremely small and the efficiency is low. Next, when using the entire surface of this rotary gear tooth, the part that is in contact with the center part of the workpiece is more difficult to cut than the part that is in contact with the circumference of the cutting surface, and the surface of the workpiece is Unable to cut evenly. As can be seen from the above, when using the radius of the cutting surface, it is unavoidable that the equipment becomes larger, and even if the entire surface is used, the cutting rate near the center will be low. Expression gear teeth are inefficient.

図面に基づき、詳細に説明する。 This will be explained in detail based on the drawings.

第1図の、1ジユーサ歯本体は、3切削刃付き
ローラーを、2回転体に取り付けたものである。
そのとき、2回転体と、3切削刃付きローラーの
ローラー本体(切削刃を除く)との高さを等しく
しておく。そしてローラーに切削刃を施した際、
切削刃が、2回転体表面から出るようにしてお
く。2回転体が回転すると3切削刃付きローラー
も回転するようにしておく。第2図はジユーサ歯
本体の側面の断面図であるが、これを用いて具体
的に述べれば、5の回転体に6切削刃付きローラ
ーを埋め込み、(第3図『ローラーの断面図』1
2は回転体、13はローラー、14は回転軸、1
5はローラーを埋め込むための穴。このように埋
め込む。)6切削刃付きローラーを固定するため
6切削刃付きローラー中心に7a,7b,7cの
軸を設けるのであるが、7a,7b,7cの場所
に軸を通す穴を施してローラーを固定する。そし
て、5回転体の受け皿を通す溝を5回転体の裏側
に掘り、9固定受け皿を取り付ける。そのとき、
溝の奥に7回転軸に設けた8歯車が回転するため
の余地をのこしておく。8歯車と噛み合うように
9受け皿の溝にはまつている先端部分に9b固定
歯車を設ける。この9b固定歯車は、いわばコツ
プの口のまわりに環状に設けたようなものになる
(第4図)。5回転体の中心の表側に10突起を設
け、裏側には動力源につなぐ11駆動軸を設け
る。9aは11駆動軸を固定するために、9固定
受け皿の一部に設けた軸受けである。先ず、動力
源に接続された11駆動軸が回転すると、それに
接続した5回転体が9a,9b,9c固定受け皿
上で回転する。9b固定歯車に噛み合わせられた
8歯車の回転により、5回転体中に埋め込まれた
6切削刃付きローラーは回転する。この歯車のギ
ヤ比は種々の数値に設定することが可能である。
The one-judge tooth main body shown in FIG. 1 has three rollers with cutting blades attached to two rotating bodies.
At this time, the heights of the two rotating bodies and the roller body (excluding the cutting blades) of the roller with three cutting blades are made equal. And when the roller is given a cutting edge,
Make sure that the cutting blade comes out from the surface of the two rotating bodies. When the two rotating bodies rotate, the three rollers with cutting blades also rotate. Fig. 2 is a sectional view of the side surface of the main body of the gear tooth, and to describe it more specifically, 6 rollers with cutting blades are embedded in the rotary body 5 (Fig. 3 ``Cross-sectional view of the roller'' 1).
2 is a rotating body, 13 is a roller, 14 is a rotating shaft, 1
5 is a hole for embedding the roller. Embed it like this. ) In order to fix the roller with cutting blades 6, shafts 7a, 7b, and 7c are provided at the center of the roller with cutting blades 6, and holes for passing the shafts are provided at the locations 7a, 7b, and 7c to fix the rollers. Then, dig a groove on the back side of the 5-rotator to pass the receiving plate of the 5-rotator, and attach the 9-fixed receiver. then,
Leave room in the depths of the groove for the 8 gears attached to the 7 rotation shafts to rotate. A fixed gear 9b is provided at the tip part that fits into the groove of the tray 9 so as to mesh with the gear 8. This fixed gear 9b is arranged in a ring shape around the mouth of the tip (Fig. 4). 10 protrusions are provided on the front side of the center of the 5 rotating body, and 11 drive shafts connected to the power source are provided on the back side. Reference numeral 9a denotes a bearing provided in a part of the fixing tray 9 to fix the drive shaft 11. First, when the drive shaft 11 connected to the power source rotates, the five rotating bodies connected thereto rotate on the fixed trays 9a, 9b, and 9c. The rotation of the 8 gears meshed with the fixed gear 9b rotates the 6 rollers with cutting blades embedded in the 5 rotating body. The gear ratio of this gear can be set to various values.

以上が、本装置の駆動系統の説明である。 The above is the explanation of the drive system of this device.

ところで、この装置の切削効果であるが、この
装置の目的は、従来の回転式ジユーサ歯の前述し
た。切削むらを解決するためであるので、第1図
の2回転体表面には、決して切削刃を設けず、3
ローラーにのみに切削刃を設ける。2回転体に対
する3ローラーの回転比率を高めておけば、装置
が駆動した場合、3切削刃付きローラーが、2回
転体中心の回りを360度回転しながら、被切削物
を、むらなくまんべんに切削できるのである。こ
のとき、切削効果を上げるために、3ローラーに
施す切削刃は、被切削物に対して、最良の角度を
もつてとりつける。4突起は、被切削物を2回転
体中心に安定させるためのものであり。このかわ
りに、第5図のように2回転体をa・凸円錐、も
しくは、b・凹円錐にして、被切削物を、2回転
体中心に安定または案内することも可能である。
By the way, regarding the cutting effect of this device, the purpose of this device is as described above for the conventional rotary gear teeth. In order to solve the problem of uneven cutting, no cutting blades are provided on the surface of the two rotating bodies shown in Fig. 1, and three
A cutting blade is provided only on the roller. If the rotation ratio of the 3 rollers to the 2 rotors is increased, when the device is driven, the 3 rollers with cutting blades will rotate 360 degrees around the center of the 2 rotors, evenly cutting the workpiece. It can be cut into many shapes. At this time, in order to increase the cutting effect, the cutting blades applied to the three rollers are attached to the object to be cut at the best angle. The four protrusions are for stabilizing the workpiece centered around the two rotating bodies. Alternatively, as shown in FIG. 5, it is also possible to make the two rotors a convex cone or b concave cone so that the object to be cut can be stabilized or guided around the center of the two rotors.

以上により従来のような一枚の円盤型ジユーサ
歯では、経験しなかつた能率的な全面切削が可能
になり、実施に際しても装置が小形軽量になつ
た。
As a result of the above, it has become possible to efficiently cut the entire surface, which has never been possible with a conventional single disk-shaped gear tooth, and the device has become smaller and lighter in weight.

次に本装置を用いた応用例を示す。 Next, we will show an application example using this device.

第6図は、本高能率全面切削回転式ジユーサ歯
をもちいた応用例で、被切削物を横にして用い
る、水平手動式切削機であり、簡単にテーブル、
調理台、まな板等に取り付けて用いる。
Figure 6 shows an application example using this high-efficiency full-face cutting rotary gear tooth.It is a horizontal manual cutting machine that uses the workpiece horizontally.
Use by attaching it to a cooking table, cutting board, etc.

第7図は、本高能率全面切削回転式ジユーサ歯
を用いた応用例で、被切削物を垂直に挿入しても
ちいる垂直式切削機で動力源には、減速モーター
を用いた。
Figure 7 shows an application example using this high-efficiency full-face cutting rotary gear tooth.It is a vertical cutting machine in which the workpiece is vertically inserted, and a deceleration motor is used as the power source.

第8図は、本高能率全面切削回転式ジユーサ歯
を用いた応用例で、1ジユーサ歯の全面に満たな
い小物の切削に用いる、小物切削アダブターを装
着した、側面の断面図。
Fig. 8 is a side sectional view of an application example using this high-efficiency full-face cutting rotary gear tooth, with a small-piece cutting adapter attached, which is used for cutting small items that are less than the entire surface of one gear tooth.

第9図は、本高能率全面切削回転式ジユーサ歯
を用いた応用例で1ジユーサ歯の全面に満たない
小物の切削に用いる、小物切削アダブターを装着
した、平面図。
FIG. 9 is a plan view of an application example using this high-efficiency full-face cutting rotary type gear tooth, in which a small-piece cutting adapter is attached, which is used for cutting small items that are less than the entire surface of one gear tooth.

【図面の簡単な説明】[Brief explanation of the drawing]

第1図はジユーサ歯の平面図。 1はジユーサ歯本体、2は回転体、3は切削刃
付きローラー、4は突起。 第2図はジユーサ歯の側面の断面図。 5は回転体(2と同じ)。6は切削刃付きロー
ラー(3と同じ)。7a,7b,7cは回転軸。
8は歯車。9aは固定受け皿。9bは固定歯車。
9cは軸受け。10は突起(4と同じ)。11は
駆動軸。 第3図は6切削刃付きローラーの側面の断面
図。 12は回転体(2,5と同じ)。13は切削刃
付きローラー(6と同じ)。14は回転軸(7
a,7b,7cと同じ)。15は埋め込み穴。 第4図は9bの立体説明図。第5図aは凸型円
錐ジユーサ歯の側面の断面図。第5図bは凹型円
錐ジユーサ歯の側面の断面図。第6図は、水平手
動式切削機。第7図は、垂直式切削機。第8図
は、小物切削アダブターを装着した垂直式切削機
の側面の断面図。第9図は、小物切削アダブター
を装着した垂直式切削機の平面図。
Fig. 1 is a plan view of the tooth. 1 is a gear tooth main body, 2 is a rotating body, 3 is a roller with a cutting blade, and 4 is a protrusion. Figure 2 is a cross-sectional view of the side surface of the gear teeth. 5 is a rotating body (same as 2). 6 is a roller with a cutting blade (same as 3). 7a, 7b, and 7c are rotating shafts.
8 is a gear. 9a is a fixed saucer. 9b is a fixed gear.
9c is the bearing. 10 is a protrusion (same as 4). 11 is the drive shaft. FIG. 3 is a side cross-sectional view of a roller with six cutting blades. 12 is a rotating body (same as 2 and 5). 13 is a roller with a cutting blade (same as 6). 14 is the rotation axis (7
a, 7b, 7c). 15 is an embedded hole. FIG. 4 is a three-dimensional explanatory diagram of 9b. FIG. 5a is a side cross-sectional view of a convex conical gear tooth. FIG. 5b is a side cross-sectional view of a concave conical gear tooth. Figure 6 shows a horizontal manual cutting machine. Figure 7 shows a vertical cutting machine. FIG. 8 is a side sectional view of a vertical cutting machine equipped with a small item cutting adapter. FIG. 9 is a plan view of a vertical cutting machine equipped with a small item cutting adapter.

Claims (1)

【特許請求の範囲】[Claims] 1 ジユーサ歯本体の2回転体上に、回転表面に
切削刃を施した、3切削刃付き回転ローラーを1
図のように、2回転体の中心から円周にかけて、
一個又は複数個取り付ける、2回転体は回転円盤
もしくは回転凸円錐、回転凹円錐のいずれの場合
をも含む、2回転体を回転させると、3切削刃付
きローラーも回転するようにしておき、3回転体
の直径未満の被切削物を、2回転体表面の一部又
は全部を用いて切削する、被切削物を回転体の中
心を用いて切削するとき、被切削物を安定させる
ために4突起を設けることも有りうる、上記の構
造を有する、高能率全面切削回転式ジユーサ歯。
1 A rotary roller with 3 cutting blades, which has cutting blades on the rotating surface, is mounted on 2 rotating bodies of the Jusa tooth main body.
As shown in the figure, from the center of the two-rotating body to the circumference,
One or more of them can be installed. 2 The rotating body can be a rotating disk, a rotating convex cone, or a rotating concave cone. When the 2 rotating body is rotated, the 3 rollers with cutting blades also rotate. When cutting a workpiece smaller than the diameter of the rotating body using part or all of the surface of the rotating body, 4. In order to stabilize the workpiece when cutting the workpiece using the center of the rotating body. A high-efficiency full-surface cutting rotary gear tooth having the above-mentioned structure, which may be provided with protrusions.
JP3191477A 1977-03-22 1977-03-22 High efficient rotary juicer teeth for cutting whole surface Granted JPS53118564A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP3191477A JPS53118564A (en) 1977-03-22 1977-03-22 High efficient rotary juicer teeth for cutting whole surface

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP3191477A JPS53118564A (en) 1977-03-22 1977-03-22 High efficient rotary juicer teeth for cutting whole surface

Publications (2)

Publication Number Publication Date
JPS53118564A JPS53118564A (en) 1978-10-17
JPS6159124B2 true JPS6159124B2 (en) 1986-12-15

Family

ID=12344239

Family Applications (1)

Application Number Title Priority Date Filing Date
JP3191477A Granted JPS53118564A (en) 1977-03-22 1977-03-22 High efficient rotary juicer teeth for cutting whole surface

Country Status (1)

Country Link
JP (1) JPS53118564A (en)

Also Published As

Publication number Publication date
JPS53118564A (en) 1978-10-17

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