JP3887621B2 - Raw food molding equipment with triple composite layers - Google Patents

Raw food molding equipment with triple composite layers Download PDF

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JP3887621B2
JP3887621B2 JP2003344336A JP2003344336A JP3887621B2 JP 3887621 B2 JP3887621 B2 JP 3887621B2 JP 2003344336 A JP2003344336 A JP 2003344336A JP 2003344336 A JP2003344336 A JP 2003344336A JP 3887621 B2 JP3887621 B2 JP 3887621B2
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黄連福
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黄 連福
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Description

本発明は三重の複合材料層を具える生食品成型装置に関し、特に内層、中層、外層の異なる素材から成る円柱形生地及び球形生食品を製造できる三重の複合材料層を具える生食品成型装置に関する。   BACKGROUND OF THE INVENTION 1. Field of the Invention The present invention relates to a raw food molding apparatus including a triple composite material layer, and more particularly, a raw food molding apparatus including a triple composite material layer capable of producing a cylindrical dough and a spherical raw food made of different materials of inner layer, middle layer, and outer layer. About.

公知の二層の素材の製造及び食材移送技術は、早期には特許文献1(例えば、特開平6−217675「成形食品製造方法とそのための装置」、特開平5−317021号公報「縦縞押出機」など)以下のように、製造される円柱体生食品は内層を餡材、外層を練皮とし、練皮の表面に直線状の装飾紋を施してあり、その円柱状食品を「切断及び成型装置」によって切断成型して大小異なる2つの球形を組み合わせた食品としていたが、成型後の食品は、内外二層の素材から成り、第三層の素材で包まれてはいない。

また、特許文献2〜6記載のように(1998年レオン自動機株式会社申請の特許「包被切断し且つ球形製品に成形できる設備」、1999年レオン自動機株式会社申請の特許「二層食品送り方法と装置」、同じく、レオン自動機株式会社申請の特許「包餡機」及び「二層の食品製品製造設備」など)、皮と内層餡材を有する球形食品(パン、肉まんなど)を製造し、水平に架設した二本のスクリューを利用して生地(或いは餡材)を水平式に駆動してベーンポンプに移送してベーンポンプの回転によって生地(或いは餡材)の進行方向を変えるもの、同様に水平に架設した二本のスクリューによってシンク内の生地を一方向に前進させ、ベーンポンプの中継で素材を移送して生地の進行方向を変えることができ、生地を所定方向に沿って成形装置内に送り込み、内層に餡材、外層を外皮という二層の素材から成る円柱形生地を成形排出するものなどがある。
The known two-layer material production and food transfer technology is disclosed in Japanese Patent Application Laid-Open No. 6-217675 “Formed food manufacturing method and apparatus”, Japanese Patent Application Laid-Open No. 5-317021 “vertical stripe extruder”. As shown below, the produced cylindrical raw food has the inner layer as a cocoon material and the outer layer as a paste, and the surface of the paste is provided with a linear decorative crest. The food was cut and molded by a “molding device” to combine two spheres of different sizes, but the molded food is composed of two layers of inner and outer layers and is not wrapped with a third layer of material.

In addition, as described in Patent Documents 2 to 6 (Patent “Facilities that can be cut and encapsulated and formed into a spherical product” filed in 1998 by Leon Automatic Machine Co., Ltd. ”Feeding method and equipment”, patents “pasting machine” and “two-layer food product manufacturing equipment” filed by Leon Automatic Co., Ltd.), and spherical foods (bread, meat buns, etc.) with skin and inner-layer rice cake Manufacturing and using two screws installed horizontally to drive the dough (or straw) horizontally, transfer it to the vane pump and change the direction of movement of the dough (or straw) by rotating the vane pump, Similarly, the dough in the sink can be advanced in one direction by two horizontally installed screws, and the material can be transferred by the relay of the vane pump to change the advancing direction of the dough. Fed into the apparatus, and the like Anzai the inner layer, a cylindrical fabric comprising an outer layer of a material of two layers of skin which molding discharged.

これらの装置で成形する円柱形の生地は内部の餡材と外皮の二層のみであって、水平に架設した二本のスクリューと生地の前進方向を変えるベーンポンプを利用し、ノズルとの組み合わせで二層の分布をもつ円柱形生地或いは球形食品(パン、中華まんなど)を製造できる。   The cylindrical dough formed by these devices is only two layers of the inner bran and outer skin, and it is possible to use two screws installed horizontally and a vane pump that changes the advancing direction of the dough, in combination with a nozzle. A cylindrical dough or a spherical food (bread, Chinese bun, etc.) having a two-layer distribution can be produced.

しかしこれらの公知技術によって製造する「円柱形生地」或いは「球形食品」は全て二層の素材から構成されるのみで、三層以上の素材層の円柱形生地及び球形食品の生産は難しく、消費者の多様な食品ニーズに応えられない。
また、上記特許の食材移送構造は、生地の進行及び方向変換のルートが長く、高グルテン生地の前進移動に際して誘導される軌道方向が無く、摩擦力が増大して流動性が悪く、下流の食品成形の品質信頼性に大きく影響する。
However, “cylindrical dough” or “spherical food” produced by these known techniques is only composed of two layers of material, and it is difficult to produce three or more layers of dough and spherical food. Cannot meet the diverse food needs of the elderly.
In addition, the food transfer structure of the above patent has a long route for dough advancement and direction change, there is no trajectory direction induced when the high gluten dough is moved forward, the frictional force increases, the fluidity is poor, and the downstream food Significantly affects molding quality reliability.

台湾公告号第270080号Taiwan Notice No. 270080 台湾公告号第335336号Taiwan Notice No. 335336 台湾公告号第355129号Taiwan Notice No. 355129 台湾公告号第349005号Taiwan Notice No. 349005 台湾公告号第474792号Taiwan Notice No. 474792 台湾公告号第534797号Taiwan Notice No. 534797

上記の問題点に鑑み、生地(或いは餡材)がスムーズに成形設備へ移送され、行程を効果的に短縮し、且つ三重の素材層を複合した生円柱体食品及び球形品を成形することを課題とする。   In view of the above problems, the dough (or straw) is smoothly transferred to a molding facility, the process is effectively shortened, and a raw cylindrical food and a spherical product are formed by combining triple material layers. Let it be an issue.

三重の素材層を複合する生食品成形設備を提供する。
左右対称に架設した2個のホッパにより下へ向けて生地を移送し、左右対称に架設した2個の食材移送装置によりホッパから導入した生地を収容し、生地の方向を変換して連続して複合器へ送り込み、その複合器はメインシリンダ、中間シリンダ、内シリンダを重ねて構成し、その下端にそれぞれ内、外ノズルを接続し、複合器が生地を受け入れて内、外ノズルの間から連続して円柱体生食品を産出するようにし、その生食品は内層、中層、外層素材の三重の素材で覆い包まれる。
We provide raw food molding equipment that combines three layers of material.
The dough is transferred downward by two hoppers laid symmetrically, the dough introduced from the hopper is accommodated by two food material transfer devices laid symmetrically, and the direction of the dough is changed continuously. The composite unit is composed of a main cylinder, an intermediate cylinder, and an internal cylinder. The internal and external nozzles are connected to the lower ends of the composite unit, and the composite unit receives the fabric and continues from between the internal and external nozzles. A cylindrical raw food is produced, and the raw food is covered with a triple material of an inner layer, a middle layer, and an outer layer material.

本発明により、三重の素材層で包み込んで複合する生円柱体食品及び球形食品を製造成形できる。また、固形餡材或いは粉状餡材を移送して円柱体生食品の内層材料を形成する。更に、生地(或いは餡材)が送り込まれる三重素材の成形設備の行程が短縮され且つ移動がスムーズにになり、高グルテン生地或いは流動性が悪い餡材を移送できる。   According to the present invention, it is possible to manufacture and mold a raw cylindrical food and a spherical food that are wrapped and combined with a triple material layer. Moreover, the inner layer material of a cylindrical raw food is formed by transferring a solid koji material or a powdery koji material. Furthermore, the process of the forming equipment for the triple material into which the dough (or the koji) is fed is shortened and the movement becomes smooth, and the high gluten dough or the koji with poor fluidity can be transferred.

図1、2、6、7に示すように、本発明の設備は以下を含む。
少なくとも2個の且つ縦方向に配置したホッパ10一組を具え、ホッパは錘形筒状を呈し、内部に羽根111を有する移送スクリュー11を設置することができ、生地Aをホッパ10内で上から下に向かって投入移送できる。
少なくとも2個の且つ水平方向に連結した食材移送装置20一組を、それぞれホッパ10の下方に連通して設け、図2、3、5に示すように各食材移送装置20は、以下を含む。
縦方向のAシンク22を具え、シンク壁面に通路23を設け、Aシンク22側辺に隣接して縦方向のBシンク25を設け、そのシンク壁面に縦方向のリブ山251と谷252を設け、また食材導入口26によってAシンク22と通じ、Bシンク25の上シンク口とホッパ10とを連通させ、生地Aは縦軸廻りに回転する移送スクリュー11によって上から下向きにBシンク25内に導入され、水平方向に向きを変えて食材導入口26からAシンク22内に移送される(図9に示す)。
縦軸廻りに回転するベーンポンプ28をAシンク22内に設置して推進器を形成し、これによりAシンク22内の生地Aの方向を変えて食材導入口26の生地Aを連続して通路23内に送り込む。
As shown in FIGS. 1, 2, 6, and 7, the equipment of the present invention includes:
At least two hoppers 10 arranged in the vertical direction are provided. The hopper has a cylindrical shape and can be provided with a transfer screw 11 having blades 111 inside. It can be loaded and transferred from the bottom.
A set of at least two and horizontally connected food transfer devices 20 is provided in communication below the hopper 10, and each food transfer device 20 includes the following, as shown in FIGS.
A vertical A sink 22 is provided, a passage 23 is provided on the sink wall surface, a vertical B sink 25 is provided adjacent to the side of the A sink 22, and vertical rib crests 251 and valleys 252 are provided on the sink wall surface. In addition, the food material inlet 26 communicates with the A sink 22, and the upper sink port of the B sink 25 communicates with the hopper 10, and the dough A enters the B sink 25 downward from above by the transfer screw 11 rotating around the vertical axis. It is introduced and transferred in the horizontal direction from the food inlet 26 into the A sink 22 (shown in FIG. 9).
A propeller is formed by installing a vane pump 28 rotating around the vertical axis in the A sink 22, thereby changing the direction of the dough A in the A sink 22 and continuously passing the dough A in the food inlet 26. Send in.

三重の食材の円柱体90生食品を産出する複合器50一組を設け、図3、4に示すように複合器50は以下を含む。
左、右入口52、54と縦方向通路56を具えるメインシリンダ51を設け、
縦方向通路62と横方向入口63を具える中間シリンダ60を設け、中間シリンダ60をメインシリンダ50の縦方向通路56内に挿入して設置し、
縦方向通路651を具える内シリンダ65を中間シリンダ60の縦方向通路62内に挿入設置し、内シリンダ65と中間シリンダ60の間に内環状通路652を形成し、筒状のホッパ69をこれらの上部に設けて内シリンダ65の上端口部に接続し、内シリンダ65の内壁にリブ山653と谷654を設け、
縦方向の内導入口661を具える内ノズル66を中間シリンダ60の下出口端に固定接続し、
内導入口681を具える外ノズル68をメインシリンダ51の縦方向通路56の下出口端に固定接続し、内ノズル66と外ノズル68の壁面間に外環状通路682を形成する。
羽根72を有する移送スクリュー70をホッパ69内及び内シリンダ65の縦方向通路651内に着脱可能に接続し、餡材Bをホッパ69から投入し、移送スクリュー70は餡材Bを上から下へ導入し、内シリンダ65の出口端から搬出して円柱体90の内層材91を形成する(図8に示す)。
生地Aは左右対称の二つの通路23を通ってメインシリンダ51の左、右入口52、54へ送り込まれ、メイン生地Aは水平方向に中間シリンダ60の外壁に当たって方向を変えられ、縦方向にメインシリンダ51の縦方向通路56内を下向きに移動し、外環状通路682を通って搬出され、円柱体90生食品の外層材92を形成する。
サブ生地Aは水平方向に中間シリンダ60の横向き入口63を通過して内シリンダ65の外壁に当たって内環状通路652を下向きに移動して搬出され、円柱体90生食品の中層材93を形成することにより、円柱体90が三重の材料の複合を有して連続して搬出される。
A set of composite units 50 for producing triple food cylinder 90 raw food is provided, and as shown in FIGS.
A main cylinder 51 having left and right inlets 52 and 54 and a longitudinal passage 56 is provided,
An intermediate cylinder 60 having a longitudinal passage 62 and a lateral inlet 63 is provided, and the intermediate cylinder 60 is installed by being inserted into the longitudinal passage 56 of the main cylinder 50;
An inner cylinder 65 having a longitudinal passage 651 is inserted and installed in the longitudinal passage 62 of the intermediate cylinder 60, an inner annular passage 652 is formed between the inner cylinder 65 and the intermediate cylinder 60, and the cylindrical hopper 69 is connected to these cylinder hoppers 69. Are connected to the upper end opening of the inner cylinder 65, and a rib crest 653 and a valley 654 are provided on the inner wall of the inner cylinder 65,
An inner nozzle 66 having a longitudinal inner inlet 661 is fixedly connected to the lower outlet end of the intermediate cylinder 60;
An outer nozzle 68 having an inner inlet 681 is fixedly connected to the lower outlet end of the longitudinal passage 56 of the main cylinder 51, and an outer annular passage 682 is formed between the wall surfaces of the inner nozzle 66 and the outer nozzle 68.
A transfer screw 70 having blades 72 is detachably connected in the hopper 69 and in the longitudinal passage 651 of the inner cylinder 65, and the brazing material B is introduced from the hopper 69. The transfer screw 70 moves the dredging material B from top to bottom. It introduces and carries out from the exit end of the inner cylinder 65, and forms the inner-layer material 91 of the cylindrical body 90 (shown in FIG. 8).
The dough A is fed into the left and right inlets 52 and 54 of the main cylinder 51 through two symmetrical passages 23, and the main dough A strikes the outer wall of the intermediate cylinder 60 in the horizontal direction and is changed in direction to the main direction in the vertical direction. It moves downward in the longitudinal passage 56 of the cylinder 51 and is carried out through the outer annular passage 682 to form the outer layer material 92 of the cylindrical body 90 raw food.
The sub-dough A passes through the lateral inlet 63 of the intermediate cylinder 60 in the horizontal direction, hits the outer wall of the inner cylinder 65, moves downward through the inner annular passage 652, and is carried out to form the middle layer material 93 of the cylindrical body 90 raw food. Thus, the cylindrical body 90 is continuously carried out with a composite of triple materials.

図12、13に示すように、内シリンダ65の内壁面は複数のリブ山653と谷654を形成し、中央に回転軸751を着脱可能に設けるプレートベース75を内シリンダ65上に架設し、プレートベース75上にガイド孔752を設けて内シリンダ65の縦方向通路651と通じさせ、複数個の食材投入口761を開口する回転プレート76を回転軸751上に穿接固定し、回転プレート76を回転して食材投入口761の一つづつをプレートベース75のガイド孔752に対応連通させることができる。
エアシリンダー77を食材投入口761の上方に架設し、そのピストン771は食材投入口761及びガイド孔752から縦方向通路651内に進入し、一定間隔を上下動する。
As shown in FIGS. 12 and 13, the inner wall surface of the inner cylinder 65 forms a plurality of rib crests 653 and valleys 654, and a plate base 75 detachably provided with a rotation shaft 751 at the center is installed on the inner cylinder 65. A guide hole 752 is provided on the plate base 75 so as to communicate with the longitudinal passage 651 of the inner cylinder 65, and the rotating plate 76 that opens the plurality of food material inlets 761 is pierced and fixed on the rotating shaft 751. And the food material inlets 761 can communicate with the guide holes 752 of the plate base 75 one by one.
The air cylinder 77 is installed above the food material input port 761, and the piston 771 enters the vertical passage 651 from the food material input port 761 and the guide hole 752, and moves up and down at a constant interval.

複合器50下方に切断装置80を架設し(図10,11)、円柱体90生食品が連続して切断装置80の中央穿孔82内に入り、切断装置80内の複数のシャッタ84がスライドし、中央穿孔82が閉じて円柱体90生食品を切断し、擬似球形生食品95に成型し、球形生食品95はコンベア98上に落下して搬送され、その球形生食品95は内、中、外層材91、93、92の分布した構造を具える。   A cutting device 80 is installed below the composite unit 50 (FIGS. 10 and 11), and the cylindrical body 90 raw food continuously enters the central perforation 82 of the cutting device 80, and a plurality of shutters 84 in the cutting device 80 slide. The central perforation 82 is closed and the cylindrical body 90 raw food is cut and molded into a pseudo spherical raw food 95. The spherical raw food 95 is dropped and conveyed on the conveyor 98, and the spherical raw food 95 is inside, inside, It has a distributed structure of outer layer materials 91, 93, 92.

二つのホッパ10の内壁面にそれぞれ複数の線形谷14を形成し、生地Aの二つのホッパ10内における上から下向きの流動を助け、生地Aの流動を増進し、進行方向のガイドとなる。
Bシンク25とAシンク22のシンク底面は高低落差Lを形成して、Bシンク25内の生地Aが迅速にAシンク22内に導入されるようにする。
餡材Bは乾燥粉状の餡材或いは固形餡材B1とすることができる。
図9に示すように、通路23の中心を延伸する仮想線SとBシンク25の中心を延伸する仮想線S1の内角θは95°〜130°の間である。
A plurality of linear valleys 14 are formed on the inner wall surfaces of the two hoppers 10, respectively, to assist the downward flow of the fabric A in the two hoppers 10 to enhance the flow of the fabric A and serve as a guide in the traveling direction.
The sink bottom surfaces of the B sink 25 and the A sink 22 form a height drop L so that the fabric A in the B sink 25 is quickly introduced into the A sink 22.
The brazing material B can be a dry powdery brazing material or a solid brazing material B1.
As shown in FIG. 9, the internal angle θ of the virtual line S extending through the center of the passage 23 and the virtual line S1 extending through the center of the B sink 25 is between 95 ° and 130 °.

図1、3に示すように、グルテンを有し軟性且つ流動可能な生地Aを二つのホッパ10内に投入し、軟性餡材Bをホッパ69内に投入し、移送スクリュー11、70がそれぞれ縦軸廻りに回転して、生地Aをホッパ10内から下へ移送し、生地AをBシンク25内に送り込む(図9に示す)。谷14、252及びリブ山251の構造が生地Aの進行方向のガイドとなって、ホッパ10からBシンク25への流動がスムーズになり、生地Aがホッパ10内とBシンク25内で行ったり来たりする状況が最小限に減少される。   As shown in FIGS. 1 and 3, gluten-containing soft and flowable dough A is put into two hoppers 10, soft rice bran B is put into hopper 69, and transfer screws 11 and 70 are longitudinally moved. Rotating around the shaft, the fabric A is transferred from the hopper 10 downward, and the fabric A is fed into the B sink 25 (shown in FIG. 9). The structure of the valleys 14 and 252 and the rib crest 251 serves as a guide in the traveling direction of the fabric A, and the flow from the hopper 10 to the B sink 25 is smooth, and the fabric A is performed in the hopper 10 and the B sink 25. Coming situations are reduced to a minimum.

図2、3に示すように、2個のベーンポンプ28は複数の板状羽根281を回転できる軸カバー282の挿入溝283上に移動可能に挿入接続し、軸カバー282は偏心軸廻りに回転する羽根281のAシンク22内における偏心回転軸として、Bシンク25内で移動中の生地Aの進行方向を変え、連続して一定方向に送り込み、通路23を通過してそれぞれメインシリンダ51の左、右入口52、54から侵入させる。
図5に示すように、A、Bシンク22、25のシンク底表面には高度差Lがあり、Bシンク25内の生地Aを経路に従ってAシンク22の方向へ流動させる。図8に示すように、右入口54からメインシリンダ51に進入した生地Aは、中間シリンダ60の外壁面にぶつかると縦方向通路56に沿って外環状通路682へと下向きに流動し、メインシリンダ51下出口端から搬出されて、円柱体90の外層材92を形成する。左入口52から進入した生地Aの一部は縦方向通路56及び外環状通路682を進行中に右入口54から進入した生地Aと混ざり一体化する。また、別の一部の生地Aは横方向入口63から進入し、内環状通路652に沿って下へ流動し、メインシリンダ51の下出口端から搬出されて円柱体90の中間材料93を形成する。
As shown in FIGS. 2 and 3, the two vane pumps 28 are movably inserted into the insertion grooves 283 of the shaft cover 282 that can rotate a plurality of plate-like blades 281, and the shaft cover 282 rotates around the eccentric shaft. As an eccentric rotation shaft in the A sink 22 of the blade 281, the traveling direction of the fabric A moving in the B sink 25 is changed, continuously fed in a fixed direction, passed through the passage 23, respectively, to the left of the main cylinder 51, Entry from right inlets 52 and 54.
As shown in FIG. 5, there is an altitude difference L on the sink bottom surfaces of the A and B sinks 22 and 25, and the fabric A in the B sink 25 flows in the direction of the A sink 22 along the path. As shown in FIG. 8, when the fabric A that has entered the main cylinder 51 from the right inlet 54 hits the outer wall surface of the intermediate cylinder 60, it flows downward along the longitudinal passage 56 to the outer annular passage 682. 51 It is carried out from the lower exit end, and the outer layer material 92 of the cylindrical body 90 is formed. Part of the fabric A entering from the left entrance 52 is mixed and integrated with the fabric A entering from the right entrance 54 while the longitudinal passage 56 and the outer annular passage 682 are traveling. Another part of the fabric A enters from the lateral inlet 63, flows downward along the inner annular passage 652, and is carried out from the lower outlet end of the main cylinder 51 to form the intermediate material 93 of the cylindrical body 90. To do.

餡材Bを別のホッパ69内に投入し、移送スクリュー70の回転により餡材Bを下へ移送して、餡材Bが縦方向通路651内を下へ流動するようにする。リブ山653と谷654の構造は、餡材Bが縦方向通路651内を流動時に、軌道に沿った流動とし、餡材Bを縦方向通路651内で上から下へ向かってスムーズにい流動させる。
餡材Bは内シリンダ65下端から搬出後、円柱体90内の内層材91を形成する。以上により、内、中、外層材91、93、92が層状に複合された円柱体90が連続して産出される。
The brazing material B is put into another hopper 69, and the brazing material B is transferred downward by the rotation of the transfer screw 70 so that the brazing material B flows downward in the longitudinal passage 651. The ribs 653 and valleys 654 are structured such that when the brazing material B flows in the longitudinal passage 651, the bridging material B flows along the trajectory and flows smoothly in the longitudinal passage 651 from top to bottom. Let
After the brazing material B is carried out from the lower end of the inner cylinder 65, the inner layer material 91 in the cylindrical body 90 is formed. As described above, the cylindrical body 90 in which the inner, inner, and outer layer materials 91, 93, and 92 are combined in layers is continuously produced.

図8、9に示すように、餡材Bは軟性(水分を含んだ)餡材に限られない。乾燥粉状の餡材Bも効果的に搬出され、乾燥餡材B(ピーナツ粉など)はホッパ69内で移送スクリュー70により推進され、乾燥粉状餡材Bを上から下へ移送し、加えて線状リブ山653及び谷654の構造によって、乾燥粉状餡材Bが縦方向通路651を下へ移送される際に方向のガイドとなり、乾燥粉状餡材Bの搬出の安定性を増進する。最後に乾燥粉状餡材Bを円柱体90の内層材91に形成することができる。   As shown in FIGS. 8 and 9, the brazing material B is not limited to a soft (containing moisture) brazing material. The dried powdery rice cake B is also effectively carried out, and the dried rice cake B (such as peanut powder) is propelled by the transfer screw 70 in the hopper 69 to transfer and add the dried powdery rice cake B from the top to the bottom. The structure of the linear rib crest 653 and the valley 654 serves as a direction guide when the dried powdery brazing material B is transported down the vertical passage 651, and promotes the stability of carrying out the dry powdery brazing material B. To do. Finally, the dry powdery brazing material B can be formed on the inner layer material 91 of the cylindrical body 90.

図12に本発明の別の実施例、固形餡材の充填を示す。この場合移送スクリュー70やホッパ69は取り外してよい。縦軸廻りに回転する回転軸751が円形回転プレート76を駆動し、固定されたプレートベース75上で回転運動して、一定角度回転する。この時複数の食材投入口761内にそれぞれ固形餡材B1を投入し、食材投入口761がガイド孔752に対応すると、回転軸751及び円形回転プレート76は暫時回転を停止する。図13に示すように、エアシリンダー77が作動し、ピストン771が上定点から下定点へ移動し、固形餡材B1(調理済み卵黄や果実粒など)を縦方向通路651の末端まで押し入れて餡材を出し、固形餡材B1を円柱体90生食品の内層材91’に形成する(図14に示す)。ピストン771が上定点に戻ると、回転プレート76は再び一定距離回転し、ピストン771を再度下定点へと運動させて、再度餡材を装填する。この時線状谷654の構造は、ピストン771が上下動する際に、内シリンダ65内の空気が谷654に沿って排出されるようにして、ピストン771の進行を助けるものである。このようにして、円柱体90生食品の内層材91’を不連続に分布させることができ、円柱体90生食品は下流の切断装置80による切断及び圧迫成型作業を経て、内部に固形状の内層材91’を包む餅類食品90’(図15に示す)或いはその他の様態の食品を製造できる。   FIG. 12 shows another embodiment of the present invention, the filling of the solid brazing material. In this case, the transfer screw 70 and the hopper 69 may be removed. A rotating shaft 751 rotating around the vertical axis drives the circular rotating plate 76 and rotates on a fixed plate base 75 to rotate by a certain angle. At this time, when the solid glaze B1 is introduced into each of the plurality of food material introduction ports 761 and the food material introduction port 761 corresponds to the guide hole 752, the rotation shaft 751 and the circular rotation plate 76 stop rotating for a while. As shown in FIG. 13, the air cylinder 77 is operated, the piston 771 moves from the upper fixed point to the lower fixed point, and the solid straw material B1 (cooked egg yolk, fruit grains, etc.) is pushed to the end of the longitudinal passage 651 The material is taken out and the solid brazing material B1 is formed on the inner layer material 91 ′ of the cylindrical body 90 raw food (shown in FIG. 14). When the piston 771 returns to the upper fixed point, the rotating plate 76 rotates again by a predetermined distance, and the piston 771 is moved again to the lower fixed point, and the brazing material is loaded again. At this time, the structure of the linear valley 654 is to assist the progression of the piston 771 so that the air in the inner cylinder 65 is discharged along the valley 654 when the piston 771 moves up and down. In this way, the inner layer material 91 ′ of the cylindrical body 90 raw food can be discontinuously distributed, and the cylindrical body 90 raw food is subjected to cutting and compression molding operations by the downstream cutting device 80, and the solid state is formed inside. A moss food 90 '(shown in FIG. 15) wrapping the inner layer material 91' or other types of food can be manufactured.

図10に示すように、切断装置80を複合器50の真下に架設し、複合器50から連続して排出される円柱体90は切断装置80の中央穿孔82内を通過し、図11に示すように、切断装置80の複数のシャッタ84が中央穿孔82を封鎖し、円柱体90を切断して球形生食品95に成型する。球形生食品95はコンベア98に落下して搬送される。球形生食品95の断面は三重の材料分布を形成する。   As shown in FIG. 10, the cutting device 80 is installed directly under the composite device 50, and the cylindrical body 90 continuously discharged from the composite device 50 passes through the central perforation 82 of the cutting device 80, and is shown in FIG. As described above, the plurality of shutters 84 of the cutting device 80 block the central perforation 82, and the cylindrical body 90 is cut and molded into the spherical raw food 95. The spherical raw food 95 is dropped on the conveyor 98 and conveyed. The cross section of the spherical raw food 95 forms a triple material distribution.

本発明平面正面図である。It is this invention top view. 本発明のホッパと食材移送装置の立体分解図である。It is a three-dimensional exploded view of the hopper and food transfer device of the present invention. 本発明のホッパと食材移送装置の組立立体図である。It is an assembly three-dimensional view of the hopper and food material transfer apparatus of this invention. 本発明の円柱体生食品の複合器立体分解図である。It is a complex three-dimensional exploded view of cylindrical raw food of the present invention. 本発明の食材移送装置のシンクの断面略図である。It is the cross-sectional schematic of the sink of the foodstuff transfer apparatus of this invention. 本発明の一横断面の略図である。1 is a schematic cross-sectional view of the present invention. 図6のC−C線における断面略図である。It is a cross-sectional schematic in CC line of FIG. 図7の実施例の断面動作略図である。FIG. 8 is a schematic sectional operation view of the embodiment of FIG. 7. 図6の実施例の断面動作略図である。FIG. 7 is a schematic sectional operation view of the embodiment of FIG. 6. 円柱体生食品が切断装置の中央穿孔を通過する断面略図である。It is a cross-sectional schematic diagram through which the cylindrical raw food passes through the central perforation of the cutting device. 円柱体生食品が切断装置に切断され球形生食品に成型される断面 図である。It is sectional drawing by which cylindrical raw food is cut | disconnected by the cutting device, and is shape | molded by spherical raw food. 本発明の固形餡材充填の実施例の断面図である。It is sectional drawing of the Example of solid brazing material filling of this invention. 本発明の固形餡材充填の実施例の断面図である。It is sectional drawing of the Example of solid brazing material filling of this invention. 本発明により成型した円柱体生食品の一断面図である。1 is a cross-sectional view of a cylindrical raw food molded according to the present invention. 円柱体生食品が切断成型された一餅類食品断面図である。FIG. 2 is a cross-sectional view of a crustacean food product obtained by cutting and molding a cylindrical raw food product.

符号の説明Explanation of symbols

10、69 ホッパ
11、70 移送スクリュー
111、72、281 羽根
20 食材移送装置
22 Aシンク
23 通路
25 Bシンク
26 食材導入口
28 ベーンポンプ
251 リブ山
252、14 谷
282 軸カバー
283 装着溝
50 複合器
51 メインシリンダ
52 左入口
54 右入口
56、62、651 縦方向通路
60 中間シリンダ
63 横方向入口
65 内シリンダ
66 内ノズル
68 外ノズル
652 環状通路
653 リブ山
654 谷
661、681 内導入口
682 外環状通路
75 プレートベース
76 回転プレート
77 エアシリンダー
751 回転軸
752 ガイド孔
761 食材投入口
771 ピストン
80 切断装置
82 中央穿孔
84 シャッタ
90 円柱体
90’ 餅類食品
91、91’ 内層材
92 外層材
93 中層材
95 球形生食品
98 コンベア
A 生地
B 餡材
B1 固形餡材
L 高度差
S、S1 仮想線
θ 内角
10, 69 Hopper 11, 70 Transfer screw 111, 72, 281 Blade 20 Food transfer device 22 A sink 23 Passage 25 B sink 26 Food inlet 28 Vane pump 251 Rib crest 252, 14 trough 282 Shaft cover 283 Mounting groove 50 Composite 51 Main cylinder 52 Left inlet 54 Right inlet 56, 62, 651 Vertical passage 60 Intermediate cylinder 63 Horizontal inlet 65 Inner cylinder 66 Inner nozzle 68 Outer nozzle 652 Annular passage 653 Rib crest 654 Valley 661, 681 Inner inlet 682 Outer annular passage 75 Plate base 76 Rotating plate 77 Air cylinder 751 Rotating shaft 752 Guide hole 761 Food material inlet 771 Piston 80 Cutting device 82 Central drilling 84 Shutter 90 Cylindrical body 90 'Mossy food 91, 91' Inner layer material 92 Outer layer material 93 Middle layer material 95 Spherical raw food 98 conveyor
A fabric
B
B1 Solid wood
L Altitude difference
S, S1 Virtual line θ Interior angle

Claims (7)

少なくとも2個一組の且つ縦方向に配置したホッパを具え、ホッパは錘形筒状を呈し、内部に羽根を有する移送スクリューを設置し、生地をホッパ内で上から下に向かって投入移送するようにし、
少なくとも2個一組の且つ水平方向に連結した食材移送装置を、それぞれホッパの下方に連通して設け、
各食材移送装置は、縦方向のAシンクを具え、シンク壁面に通路を設け、Aシンク側辺に隣接して縦方向のBシンクを設け、そのシンク壁面に縦方向のリブ山と谷を設け、また食材導入口によってAシンクと通じ、Bシンクの上シンク口とホッパとを連通させ、生地Aは縦軸廻りに回転する移送スクリューによって上から下向きにBシンク内に導入され、水平方向に向きを変えて食材導入口からAシンク内に移送され、
縦軸廻りに回転するベーンポンプをAシンク内に設置して推進器を形成し、これによりAシンク内の生地の方向を変えて食材導入口の生地を連続して通路内に送り込むようにして成り
三重の食材の円柱体生食品を排出する複合器一組を設け、複合器は、
左、右入口と縦方向通路を具えるメインシリンダを設け、
縦方向通路と横方向入口を具える中間シリンダを設け、中間シリンダをメインシリンダの縦方向通路内に挿入して設置し、
縦方向通路を具える内シリンダを中間シリンダの縦方向通路内に挿入設置し、内シリンダと中間シリンダの間に内環状通路を形成し、筒状のホッパを設けて内シリンダの上端口部に連接し、内シリンダの内壁にリブ山と谷を設け、
縦方向の内導入口を具える内ノズルを設けて中間シリンダの下出口端に接続固定し、
内導入口を具える外ノズルを設けて、メインシリンダの縦方向通路の下出口端に接続固定し、内ノズルと外ノズルの壁面間に外環状通路を形成し、
羽根を有する移送スクリューをホッパ内及び内シリンダの縦方向通路内に着脱可能に接続し、餡材をホッパから投入して、移送スクリューが餡材を上から下へ導入し、内シリンダの出口端から搬出して円柱体の内層材を形成するようにし、
生地は左右対称の二つの通路を通ってメインシリンダの左、右入口へ送り込まれ、メイン生地は水平方向に中間シリンダの外壁に当たって方向を変えられ、縦方向にメインシリンダの縦方向通路内を下向きに移動し、外環状通路を通って搬出されて円柱体生食品の外層材を形成し、
サブ生地は水平方向に中間シリンダの横向き入口を通過して内シリンダの外壁に当たって内環状通路を下向きに移動して搬出され、円柱体生食品の中層材を形成することにより、
三重の材料の複合層からなる円柱体として連続して排出されるようにして成ることを特徴とする三重の複合材料層を具える生食品成型設備。
At least two sets of hoppers arranged in the vertical direction are provided, the hoppers have a cylindrical shape, a transfer screw having blades is installed inside, and the dough is input and transferred from top to bottom in the hopper. And
A set of at least two food ingredients connected in the horizontal direction are provided in communication with each other below the hopper,
Each food transfer device has a vertical A sink, a passage is provided on the sink wall surface, a vertical B sink is provided adjacent to the side of the A sink, and vertical rib crests and valleys are provided on the sink wall surface. In addition, the food material introduction port communicates with the A sink, the upper sink port of the B sink and the hopper communicate with each other, and the dough A is introduced into the B sink from the top downward by the transfer screw rotating around the vertical axis, and horizontally The direction is changed and transferred from the food inlet to the A sink,
A propeller is formed by installing a vane pump rotating around the vertical axis in the A sink, thereby changing the direction of the dough in the A sink and continuously feeding the dough at the food inlet into the passage. A set of a composite device that discharges cylindrical food with triple food ingredients is provided.
A main cylinder with left and right inlets and a longitudinal passage is provided.
An intermediate cylinder having a longitudinal passage and a lateral inlet is provided, and the intermediate cylinder is installed by being inserted into the longitudinal passage of the main cylinder.
An inner cylinder having a longitudinal passage is inserted and installed in the longitudinal passage of the intermediate cylinder, an inner annular passage is formed between the inner cylinder and the intermediate cylinder, and a cylindrical hopper is provided at the upper end of the inner cylinder. Connected, and provided rib crests and troughs on the inner wall of the inner cylinder,
An inner nozzle with a longitudinal inner inlet is provided and fixed at the lower outlet end of the intermediate cylinder,
An outer nozzle having an inner introduction port is provided, connected and fixed to the lower outlet end of the longitudinal passage of the main cylinder, and an outer annular passage is formed between the inner nozzle and the outer nozzle wall,
A transfer screw having blades is detachably connected in the hopper and in the longitudinal passage of the inner cylinder, the dredger is introduced from the hopper, the transfer screw introduces the dredger from top to bottom, and the outlet end of the inner cylinder. To form the inner layer material of the cylindrical body,
The dough is fed to the left and right inlets of the main cylinder through two symmetrical passages, the main dough is changed in the horizontal direction by striking the outer wall of the intermediate cylinder, and is directed downward in the longitudinal passage of the main cylinder. Moved to the outer annular passage to form an outer layer material of cylindrical raw food,
The sub-dough passes horizontally through the lateral inlet of the intermediate cylinder, hits the outer wall of the inner cylinder, moves down the inner annular passage, and is carried out to form a middle layer material of cylindrical raw food,
A raw food molding facility comprising a triple composite material layer characterized by being continuously discharged as a cylindrical body composed of a composite layer of triple material.
内シリンダの内壁面は複数のリブ山と谷を形成し、
中央に回転軸を着脱可能に設けるプレートベースを内シリンダ上に架設し、プレートベース上にガイド孔を設けて内シリンダの縦方向通路と通じさせ、
複数個の食材投入口を開口した回転プレートを回転軸上に固定し、回転プレートが回転して食材投入口の一つづつをプレートベースのガイド孔に対応連通させることができ、
エアシリンダーを食材投入口の上方に架設し、そのピストンが食材投入口及びガイド孔から縦方向通路内に進入し、一定間隔で上下動するようにして成ることを特徴とする請求項1記載の三重の複合材料層を具える生食品成型装置。
The inner wall surface of the inner cylinder forms a plurality of rib peaks and valleys,
A plate base in which a rotary shaft is detachably installed in the center is installed on the inner cylinder, a guide hole is provided on the plate base and communicated with the longitudinal passage of the inner cylinder.
A rotating plate with a plurality of food material inlets is fixed on the rotation shaft, and the rotating plate can rotate to connect each of the food material inlets to the guide holes of the plate base.
2. The air cylinder according to claim 1, wherein the air cylinder is installed above the food material inlet, and the piston enters the longitudinal passage from the food material inlet and the guide hole, and moves up and down at regular intervals. Raw food molding equipment with triple composite material layers.
複合器下方に切断装置を架設し、円柱体生食品が連続して切断装置の中央穿孔内に入り、切断装置内の複数のシャッタがスライドして中央穿孔が閉じて円柱体生食品を切断し、擬似球形生食品に成型し、球形生食品はコンベア上に落下して搬送され、その球形生食品は内、中、外層材の分布構造を具えることを特徴とする請求項1記載の三重の複合材料層を具える生食品成型装置。   A cutting device is installed under the complex, and the cylindrical raw food continuously enters the central perforation of the cutting device, and a plurality of shutters in the cutting device slide to close the central perforation and cut the cylindrical raw food. The triple raw food according to claim 1, which is molded into a pseudo spherical raw food, the spherical raw food is dropped and conveyed on a conveyor, and the spherical raw food has a distribution structure of inner, middle and outer layer materials. Raw food molding equipment that has a composite material layer. 二つのホッパの内壁面にそれぞれ複数の線形谷を形成し、生地の二ホッパ内における上から下向きの流動を促進するようにして成ることを特徴とする請求項1記載の三重の複合材料層を具える生食品成型装置。   The triple composite material layer according to claim 1, wherein a plurality of linear valleys are formed on the inner wall surfaces of the two hoppers so as to promote the downward flow of the dough in the two hoppers. Raw food molding equipment. BシンクとAシンクのシンク底面は高低落差を形成して、Bシンク内の生地が迅速にAシンク内に導入されるようにして成ることを特徴とする請求項1記載の三重の複合材料層を具える生食品成型装置。   The triple composite material layer according to claim 1, wherein the bottom surfaces of the sinks of the B sink and the A sink form a height drop so that the fabric in the B sink is quickly introduced into the A sink. Raw food molding equipment. 餡材は乾燥粉状の餡材或いは固形餡材とすることができることを特徴とする請求項1記載の三重の複合材料層を具える生食品成型装置。   2. The raw food molding apparatus comprising a triple composite material layer according to claim 1, wherein the rice bran can be a dry powdery rice cake or a solid rice cake. 通路の中心を延伸する仮想線とBシンクの中心を延伸する仮想線の内角θは95°〜130°の間であるようにして成ることを特徴とする請求項1記載の三重の複合材料層を具える生食品成型装置。
2. The triple composite material layer according to claim 1, wherein an inner angle θ between an imaginary line extending in the center of the passage and an imaginary line extending in the center of the B sink is between 95 ° and 130 °. Raw food molding equipment.
JP2003344336A 2003-10-02 2003-10-02 Raw food molding equipment with triple composite layers Expired - Fee Related JP3887621B2 (en)

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CN102210480B (en) * 2010-04-07 2013-06-26 黄连福 Three-layer encrusting machine with interchangeable horizontal and vertical feeding modes
CN105942562A (en) * 2016-06-27 2016-09-21 刘明璧 Material filling device with arc-shaped sheet metal moving along circumferential direction
CN107581205B (en) * 2017-10-24 2022-11-29 李才生 Wheaten food processing equipment and method for preparing wheaten food by using same
CN108514012A (en) * 2018-06-11 2018-09-11 许德康 Multilayer food product process units
CN110122522B (en) * 2019-06-25 2024-04-05 河南省豫阳光食品机械有限公司 Automatic stuffing wrapping device for cakes
CN110884900A (en) * 2019-12-16 2020-03-17 郑州思念食品有限公司 Discharging mechanism, processing equipment and method for sandwich fried ball blank
CN111802676A (en) * 2020-08-07 2020-10-23 惠州市新鑫辉自动化设备有限公司 Filling injection device of food forming machine
CN114451434B (en) * 2022-03-09 2023-01-13 黄河水利职业技术学院 Full-automatic production's encrusting machine for food engineering

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