CN102036566A - Crusted food product manufacturing device - Google Patents

Crusted food product manufacturing device Download PDF

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Publication number
CN102036566A
CN102036566A CN2009801182413A CN200980118241A CN102036566A CN 102036566 A CN102036566 A CN 102036566A CN 2009801182413 A CN2009801182413 A CN 2009801182413A CN 200980118241 A CN200980118241 A CN 200980118241A CN 102036566 A CN102036566 A CN 102036566A
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CN
China
Prior art keywords
move
pressing component
freely
crust material
jet element
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Granted
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CN2009801182413A
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Chinese (zh)
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CN102036566B (en
Inventor
桥本滋
中野慎也
近藤泰范
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Rheon Automatic Machinery Co Ltd
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Rheon Automatic Machinery Co Ltd
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    • AHUMAN NECESSITIES
    • A21BAKING; EDIBLE DOUGHS
    • A21CMACHINES OR EQUIPMENT FOR MAKING OR PROCESSING DOUGHS; HANDLING BAKED ARTICLES MADE FROM DOUGH
    • A21C9/00Other apparatus for handling dough or dough pieces
    • A21C9/06Apparatus for filling pieces of dough such as doughnuts
    • AHUMAN NECESSITIES
    • A23FOODS OR FOODSTUFFS; TREATMENT THEREOF, NOT COVERED BY OTHER CLASSES
    • A23PSHAPING OR WORKING OF FOODSTUFFS, NOT FULLY COVERED BY A SINGLE OTHER SUBCLASS
    • A23P20/00Coating of foodstuffs; Coatings therefor; Making laminated, multi-layered, stuffed or hollow foodstuffs
    • A23P20/20Making of laminated, multi-layered, stuffed or hollow foodstuffs, e.g. by wrapping in preformed edible dough sheets or in edible food containers
    • A23P20/25Filling or stuffing cored food pieces, e.g. combined with coring or making cavities

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  • Life Sciences & Earth Sciences (AREA)
  • Engineering & Computer Science (AREA)
  • Food Science & Technology (AREA)
  • Chemical & Material Sciences (AREA)
  • Polymers & Plastics (AREA)
  • Manufacturing And Processing Devices For Dough (AREA)
  • Formation And Processing Of Food Products (AREA)
  • Making Paper Articles (AREA)
  • General Preparation And Processing Of Foods (AREA)

Abstract

A crusted food product manufacturing device is provided with a crust material transfer means for transferring a flat crust material onto a placing member so as to cover the opening part of the placing member provided on the front surface side of a body frame of the device, a dough pressing member which is capable of pressing the outer periphery portion of the crust material placed on the placing member and can move up and down, a nozzle member which is capable of discharging a filling into the center portion of the crust material on the placing member and can move up and down, a vertically movable and supporting means which is capable of supporting from the lower side the crust material moving down from the opening part of the placing member and can move up and down, and a sealing means for sealing the periphery of the crust material while gathering the same to the center portion after the moving up of the nozzle member and the dough pressing member. The nozzle member and the dough pressing member can move up and down individually and the positions of moving up/down thereof can be adjusted individually.

Description

The coated foods manufacturing installation
Technical field
The present invention relates to make continuously the coated foods manufacturing installation of following coated foods (product), the crust material that described coated foods constitutes with the food dough of for example bread blank etc. for example wraps into the interior material that the food by filling or jam etc. constitutes and constitutes.
Background technology
In the past, when making coated foods, with form flat be positioned on the mounting parts with peristome as the crust material of bread blank etc. in the mode of peristome as described in covering after, the circumference of described crust material is being pushed under the state that remains on described mounting parts by pressing component, supplied with material in the mounting to the central portion of described crust material by being mounted to the jet element that moves up and down freely.Rise behind described pressing component and the jet element, by the involution unit that constitutes by suitable plug-in strip mechanism the circumference of described crust material is collected to central portion and carries out involution.Above-mentioned technology for example is documented in the patent document 1.
In the structure of described patent document 1 record, be installed in integratedly to move up and down on the ring-type stay on the jet element and possess a plurality of steady arms freely, support the pressing component of ring-type with the bottom of this steady arm, elasticity is equipped with helical spring between above-mentioned pressing component and the above-mentioned stay, described pressing component all the time downward direction push stressed, make pressing component than the lower end part of described jet element in downside.
Thereupon, according to above-mentioned structure, after pressing component is pushed the circumference of crust material, material in the bottom downward direction of jet element is supplied with by the central portion of compressive strain crust material, after the bottom of described jet element rose to the top of described pressing component, pressing component rose along with the rising of described jet element.So can carry out the supply of interior material exactly to the central portion of crust material.
But, as above-mentioned structure in the past in, after pressing component is pushed the crust material, during jet element decline rising, though because helical spring active force is in the state that pressing component is pushed the crust material all the time, but because along with the described helical spring active force of variation of the upper-lower position of described jet element changes, so the pressing force of described pressing component changes instability all the time.Thereupon, the thickness of the circumference of the crust material of being pushed by described pressing component is because the influence of the character of crust material etc., is difficult to remain certain, will exist for example to be difficult to make involution portion to remain certain thickness problem.
Further, in foregoing structure in the past, because jet element and pressing component are the position relation that keeps certain and the structure that one moves up and down, can not adjust the relative upper-lower position relation of jet element and pressing component corresponding to conditions such as the character of crust material, thickness so exist, or adjust the problem with opportunity that moves up and down of pressing component of moving up and down of jet element.
Technical literature formerly
Patent documentation
Patent documentation 1: Japan speciallys permit communique No. 4045319
Summary of the invention
The present invention finishes in order to solve above-mentioned problem.So its objective is provides the coated foods manufacturing installation that moves up and down the position that can adjust jet element and blank pressing component corresponding to thickness, the character of crust material respectively.
Further, another object of the present invention provides the coated foods manufacturing installation with opportunity that moves up and down of blank pressing component of moving up and down that can adjust jet element.
In order to achieve the above object, first scheme of the present invention be used to make wrap into the crust material in the coated foods manufacturing installation of coated foods of structure of material, constitute by following: be used for the crust material of flat being delivered to crust material supply unit on the described mounting parts to cover the mode of mounting component openings portion that described coated foods manufacturing installation is provided in the front face side of main stand; Push the outer peripheral edges portion that is positioned in the crust material on the described mounting parts freely, and move up and down blank pressing component freely; The central portion of the crust material on the described mounting parts interior material that spues freely, and move up and down freely jet element; Support the crust material that descends from the described peristome of described mounting parts freely from downside, and move up and down lifting supporter freely; And, after described jet element and blank pressing component rise, the circumference of described crust material is collected to central portion and carries out the involution unit of involution; In said structure, described jet element and blank pressing component are can move up and down respectively and can adjust respectively to move up and down the position.
From the alternative plan of the present invention of the described first scheme subordinate is the coated foods manufacturing installation, possesses the nozzle reciprocating mechanism that is used to move up and down described jet element at described main stand; With respect to moving up and down the nozzle Lift Part that is provided in freely on the described nozzle reciprocating mechanism, can load and unload described jet element from the place ahead; Described main stand possesses the pressing component reciprocating mechanism that is used to move up and down described blank pressing component; And, with respect to moving up and down the pressing component Lift Part that is provided in freely on the described pressing component reciprocating mechanism, can load and unload described pressing component from the place ahead.
From third party's case of the present invention of described first scheme or described alternative plan subordinate is the coated foods manufacturing installation, can connect into motionless state with the interior material feed unit one that is provided in described main stand front, and with respect to described main stand front, can in the urceolus of the place ahead loading and unloading ground installation, move up and down and be equipped with described jet element freely; Move up and down in the outside of described urceolus and to be equipped with described blank pressing component freely; And, constitute nozzle unit by described urceolus, jet element and blank pressing component.
The cubic case of the present invention of any one scheme subordinate is in the coated foods manufacturing installation from described first scheme to third party's case, and described involution unit and described interior material feed unit can load and unload from the place ahead with respect to main stand.
The present invention according to the cubic case record of above-mentioned first scheme to the, because jet element and blank pressing component can move up and down respectively, and can adjust respectively and move up and down the position, so can adjust the position that moves up and down of jet element and blank pressing component respectively corresponding to thickness, the character of crust material.In addition, the opportunity that moves up and down with the blank pressing component of moving up and down of jet element can also be adjusted, problem in the past can be solved as the aforementioned.
Description of drawings
Fig. 1 is the integrally-built perspective illustration of coated foods manufacturing installation of expression embodiments of the present invention.
Fig. 2 is that the integrally-built master of coated foods manufacturing installation of expression embodiments of the present invention looks key diagram.
Fig. 3 is that key diagram is looked on the integrally-built left side of coated foods manufacturing installation of expression embodiments of the present invention.
Fig. 4 is the integrally-built key diagram of overlooking of coated foods manufacturing installation of expression embodiments of the present invention.
Fig. 5 be expression nozzle unit, sealing device, pump a part just analyse and observe key diagram.
Fig. 6 is the backsight key diagram of the structure that moves up and down respectively of expression jet element and blank pressing component.
The specific embodiment
Below, utilize the description of drawings embodiments of the present invention.And the side represented with F in Fig. 1 is as the face side (front side) based on coated foods manufacturing installation 1 of the present invention, and a side of representing with B is as rear side, and a side of representing with L is as the left side, and a side of representing with R is as the right side, and describes.F among Fig. 2 to Fig. 4, B, L, R are also identical with the direction represented among Fig. 1 respectively.
At first, during with reference to Fig. 1, the coated foods manufacturing installation 1 of embodiments of the present invention possesses the main stand 5 of the case shape that is equipped with Caster 3.Aforementioned body frame 5 is divided into front side main stand 5A and rear side main stand 5B, and rear side main stand 5B can be installed in front side main stand 5A by hinge member (omitting diagram) with rearward opening and closing.Thereupon, various structures, the device class that can internally be contained in front side main stand 5A and rear side main stand 5B easily guaranteed to keep in good repair inspection.In addition, after explanation in will comprise front side main stand 5A and rear side main stand 5B is called main stand 5, when needing to distinguish front side main stand 5A and rear side main stand 5B especially, distinguishing.
In the front 7 of described main stand 5 the mounting parts 9 that possess toroidal peristome 9A at central portion are installed, and have crust material 11 that the mode that is used for the described peristome 9A that covers above-mentioned mounting parts 9 will form flat and be transported to crust material supply unit 13 on the described mounting parts 9.Though the structure of this crust material supply unit 13 is known, if describe briefly, crust material supply unit 13 is made of ribbon conveyer, and the leading section of the conveyer belt in the ribbon conveyer (left part among Fig. 1) is the structure that can move to described mounting parts 9 tops freely.
In this crust material supply unit 13, by being transported to the top of described mounting parts 9 by the crust material 11 of mounting, the leading section of conveyer belt retreats to the right side from the left side in Fig. 1 on one side, on one side transfer out crust material 11, the mode that plays with the peristome 9A that covers described mounting parts 9 falls crust material 11 effect that is supplied on the mounting parts 9.In addition, because the structure of described crust material supply unit 13 is known, so omit to the detailed description of crust material supply unit 13 structures with to the explanation of its effect.
And, move up and down in the front 7 of described main stand 5 and to be equipped with the annular blank pressing component 15 that the outer peripheral edges portion that is positioned in the crust material 11 on the described mounting parts 9 is pushed freely to described mounting parts 9 freely, and move up and down spue the freely jet element 17 of interior material (omitting diagram) of the central portion that is equipped with the described crust material 11 on described mounting parts 9 freely.Further, the front of described main stand 5 move up and down be equipped with freely from described jet element 17 to the central portion of crust material 11 spue supply with in the material, the lifting supporter 19 of the following side of the crust material 11 of peristome 9A decline from the downside support from described mounting parts 9.
For the coated foods of material in will coating with crust material 11 be taken out of to next operation, above-mentioned lifting supporter 19 is made of ribbon conveyer.In addition, because this lifting supporter 19 is known, therefore omit detailed description to lifting supporter 19.And, the front 7 of described main stand 5 and described lifting supporter 19 in abutting connection be equipped with and take out of conveyer belt 21.This is taken out of conveyer belt 21 and plays the coated foods of receiving from described lifting supporter 19 is taken out of effect to next operation.
Described mounting parts 9 releasably are installed on the substrate 25 (with reference to figure 5) of involution unit 23, this involution unit 23 is behind material in 11 supplies of the crust material on these mounting parts 9, be used for the circumference of crust material 11 is collected to central portion and carries out involution, the upper surface of described mounting parts 9 be installed in equally substrate 25 above.Described substrate 25 in the described involution unit 23 releasably is installed on the front 7 of described main stand 5 by the suitable installed part 24 of for example mounting screw etc.
Described involution unit 23 be by each connecting rod 29 linkage be connected the structure of shaking a plurality of blade of knife switch 27 (with reference to figure 4) that are contained in freely on the described substrate 25 on the level, carry out the on-off action in the zone that surrounds into by described each blade of knife switch 27 by the reciprocating action of the drive rod 31 that moves back and forth by suitable transmission device.In addition, as the aforesaid plug-in strip structure of involution unit 23 1 examples because patent documentation 1 record as described is known, so omit detailed description to described involution unit 23.
For material in 11 supplies of the crust material on being positioned in described mounting parts 9, material feed unit 33 (with reference to figure 5) on described main stand 5, being equipped with.In more detail, in the top of described main stand 5 is equipped with, adorn the driving box 35 of motor (omitting diagram), be equipped with forwards (among Fig. 5 perpendicular to paper and to surface direction) a pair of steady arm 37 that level is outstanding in the front of this driving box 35.And, on this steady arm 37, forwards releasably support to be useful on the shell 41 in the pump 39 of material in sending.In addition, the rotating shaft of said pump 39 and the rotating shaft of described motor are waited by for example engagement cover and are connected, and are easy to carry out the loading and unloading to the described pump 39 of described driving box 35.
In the loading and unloading of the top of the shell 41 of described pump 39 hopper 43 is installed freely.That is, this structure is the fastening parts 45 that the L type is housed in the top of described shell 41 subtend, by hopper 43 being carried out 90 degree rotations, above-mentioned fastening parts 45 fastenings, disengaging is provided in the elliptical shape rib parts 47 of described hopper 43 bottoms.In addition, the structure as to shell 41 loading and unloading hoppers 43 is not limited to aforesaid structure, can adopt suitable structure.
The tube connector 49 of L word shape releasably is installed in the bottom of described pump 39 mesochites 41, on this tube connector 49, nozzle unit 51 is installed releasably.In more detail, possessing at described nozzle unit 51 has the urceolus 57 that is equipped with tube connector 55 integratedly, and tube connector 55 can easily be connected, break away from tube connector 49 via connecting pipe 53.Described two tube connectors 49 with 55 be connected and disengaging is as shown in Figure 5 in connection status the time, the right of described connecting pipe 53 in Fig. 5 moved, connecting pipe 53 is broken away from from tube connector 55, thereby can remove two tube connectors 49 and 55 be connected.
And, by carrying out and aforesaid action opposite action, can connect two tube connectors 49,55 via connecting pipe pipe 53 one.At this moment, because described two tube connectors the 49, the 55th, therefore metallic article can be interconnected into motionless state.And, even material exists under the situation of the tendency that pulsation takes place in sending by described pump 39, also can prevent the vibration of two tube connectors 49,55, can successfully carry out nozzle unit 51 is sent interior material.
Described nozzle unit 51 possesses and moves up and down the described jet element that connects freely in described urceolus 57 17 and move up and down the described blank pressing component 15 that is entrenched in described urceolus 57 lower outer periphery freely.Described urceolus 57 in this nozzle unit 51 releasably is installed on the nozzle unit holding components 59 that front upper was equipped with (with reference to Fig. 1~3) of described main stand 5 by the suitable installed part 61 of pinching screw etc.That is, described urceolus 57 forwards releasably is installed on the front 7 of main stand 5.
In described nozzle unit 51, flow in the described jet element 17 in order to make the interior materials that supply in the described urceolus 57 through described tube connector 49,55, part relative with described tube connector 55 in described jet element 17 forms the long slotted hole 63 of direction up and down.And, in described jet element 17, moving up and down freely and rotate and be equipped with elevating lever 67 freely, this elevating lever 67 is equipped with the open and close valve 65 that can open and close the discharge opening 17A that is located at jet element 17 lower ends freely in its bottom.
In order to move up and down and to rotate described elevating lever 67, downward direction is equipped with the drive rod 73 that can be connected with the upper end of described elevating lever 67, break away from highlightedly on driver element 71, and described driver element 71 is releasably to be installed on one to be provided on the support piece 69 of described jet element 17 upper ends.Above-mentioned driver element 71 possess be used to rotate described drive rod 73 as the rotary gearing 75 of motor etc. the time also possess be used to move up and down as described in the moving up and down of cylinder etc. of drive rod 73 with transmission device 77.
And described elevating lever 67 and described drive rod 73 move up and down and rotation integratedly with linking into an integrated entity.In more detail, combined block 79A, 79B be equipped with respectively integratedly in the upper end of described elevating lever 67 and the bottom of drive rod 73, this combined block 79A, 79B to be connecting easily, to break away from the outside of described jet element 17, and be subjected to the restriction of this jet element 17 in the inside of described jet element 17 and can be unmutually suitably be connected with a joggle in the mode of footpath direction, direction of principal axis disengaging.In addition, the structure as be connected with a joggle described combined block 79A, 79B is not limited to structure as shown in Figure 5, can be the recess of for example trough of belt and the locking relation of trough of belt protuberance, can adopt various structures.
In order to move up and down described jet element 17 and the blank pressing component 15 in the described nozzle unit 51, move up and down respectively on described main stand 5 and be equipped with from the front 7 outstanding elevating levers 81,83 (with reference to figure 3) of level forwards freely, the leading section of above-mentioned each elevating lever 81,83 is the fork-shaped element that the U word shape is installed 85,87 of one respectively.And, a side described fork-shaped element 85 with relatively forwards, backwards the direction mode and the one that cooperate, the break away from mating groove 89 (with reference to Fig. 5) that is provided in the fore-and-aft direction of formation on the above-mentioned support piece 59 of upper end of said nozzle parts 17 cooperate.And an other side's fork-shaped element 87 cooperates with the mating groove 91 of the fore-and-aft direction that is formed at described blank pressing component 15 tops in the mode of relatively direction cooperation forwards, backwards, disengaging.
Thereupon, by moving up and down described elevating lever 81,83 respectively, can move up and down jet element 17 and blank pressing component 15 respectively.
In order to move up and down described elevating lever 81,83, in described main stand 5, the lifting slider 95 of the lifting slider 93 (with reference to figure 6) of fixing described elevating lever 81 base portion side and fixing described elevating lever 83 base portion side is moved up and down guiding freely and is held in the guiding parts 97 that vertically is provided in the described main stand 5.In addition, described elevating lever 81,83 is outstanding to front 7 from the slotted hole 96 of the above-below direction that is formed on described main stand 5.And, in order to move up and down described lifting slider 93, the suitable rotary gearings 101 such as for example motor that are equipped with the pinion (omitting diagram) of rack rails 99 engagements of above-below direction are installed on the lifting slider 93 on output shaft.In addition, the rotary gearing 105 that has with the pinion (omitting diagram) of rack rails 103 engagement of above-below direction is installed on the described lifting slider 95.
Thereupon,, move up and down lifting slider 93,95 respectively, can move up and down described jet element 17, blank pressing component 15 respectively by driving described rotary gearing 101,105 respectively.In addition, by driving described rotary gearing 101,105 synchronously and simultaneously, described jet element 17 and blank pressing component 15 are moved up and down synchronously.Further, by controlling described rotary gearing 101,105 respectively, the relation of the position on the above-below direction of described jet element 17 and described blank pressing component 15 can be adjusted to desirable position relation.
All in the certain angle scope, come and go under the situation of the structure of rotating at described rotary gearing 101,105, promptly, the anglec of rotation of rotary gearing 101,105 can not controlled under the situation of desirable angle, then can concern by the upper-lower position between described jet element 17 of following structural adjustment and the blank pressing component 15.
Promptly, the following structure of preferred employing, can support described rack rails 99,103 up or down by the support piece 107 that is installed in the main stand 5, described rack rails 99,103 becomes the structure that can adjust the position up and down, adjusting rack rails up and down at 99,103 o'clock, the pinion that is provided on described each rotary gearing 101,105 is remained on lock-out state, move up and down 99,103 o'clock lifting sliders 93 of rack rails, rotary gearing 101 moves up and down integratedly with rack rails 99, lifting slider 95, rotary gearing 105 move up and down integratedly with rack rails 103.In addition, as the structure of the upper-lower position of adjusting described rack rails 99,103 respectively, can be that the adjustment screw 109,111 that rotation is supported in described main stand 5 tops freely is screwed together in structure on the nut portions (omitting diagram) that is provided in described rack rails 99,103.
According to above-mentioned structure,, adjust each rack rails 99,103 respectively up and down by respectively described adjustment screw 109,111 being rotated operation.Thereupon, when can adjust the working range that described jet element 17 moves up and down up and down, can adjust the working range that described blank pressing component 15 moves up and down up and down.
Yet, as described rotary gearing 101,105, can adopt position of rotation and rotary speed control servomotor freely etc., need not move up and down rack rails 99,103 in this case, by the rotation etc. of control rotary gearing 101,105, just can control freely lifting slider 93,95 the speed that moves up and down, move up and down the position, move up and down opportunity etc.
In structure as above, if mounting forms the crust material 11 of flat (discoid) on crust material supply unit 13, then crust material 11 be transported among Fig. 1 left to.And, be provided in optical pickocff 113 on the assigned position and detect crust material 11 on the crust material supply unit 13, under the control of control device 115, crust material 11 is positioned on the described mounting parts 9 in the mode that covers the peristome 9A on the mounting parts 9.As mentioned above, if crust material 11 is positioned on the mounting parts 9, the drive rod 31 that then drives involution unit 23 slightly comes and goes and moves, and a plurality of blade of knife switch 27 slightly open and close, and the periphery of crust material 11 is slightly pushed to central portion.That is, as one man felt relieved in the center of the center of crust material 11 and described peristome 9A and carry out work.
As mentioned above, carry out the centering of crust material 11 after, rotary gearing 105 is driven, blank pressing component 15 descends, and the outer peripheral edges of crust material 11 is pushed be fixed on the mounting parts 9.At this moment, by described rotary gearing 105 is remained certain anglec of rotation, thereby described blank pressing component 15 is remained certain down position, the thickness of crust material 11 outer peripheral edges portions also remains necessarily.
In addition,, can adjust the decline stop position of described blank pressing component 15, adjust the decline stop position of blank pressing component 15 according to the thickness of crust material 11 by described adjustment screw 111 is rotated operation.Thereupon, can make the thickness of the circumference of crust material 11 remain at desirable thickness.
Be in by described as the state of blank pressing component 15 by the outer peripheral edges of press fit crust material 11 under, by driving rotary gearing 101 decline jet elements 17, and drive and to move up and down with transmission device 77 rising open and close valves 65, the interior material from pump 39 feedings can be spued from discharge opening 17A is supplied on the crust material 11.And, material spues and closes discharge opening 17A by opening and closing valve 65 when supplying with in finishing, keep this closed condition, by the described open and close valve 65 of rotary gearing 75 rotations, by rising jet element 17, material is non-cohesive below opening and closing valve 65 in making, and material adheres to rising along with the rising of jet element 17 in can preventing.
Yet, when jet element 17 descends as the aforementioned, owing to individually carry out with the decline of described blank pressing component 15, thus can adjust decline opportunity, the decrease speed of jet element 17 make in the spuing to supply with and almost push crust material 11 and carry out simultaneously of material with described blank pressing component 15.In addition, can begin to rise with the spuing supply of material in described jet element 17 end almost begins the rising of described crust material pressing component 15 simultaneously, can improve production performance.
As previously mentioned, from jet element 17 to crust material 11 spue supply with in during material, the central portion of crust material 11 descends gradually from the peristome 9A of mounting parts 9.At this moment, crust material 11 supports that from the lifting supporter 19 that downside is moved up and down freely the part that crust material 11 can not take place is stretched and the situation of local attenuation.
As previously mentioned, if crust material 11 is in the state of being supported by lifting supporter 19 from downside, and interior material spues and supply with to finish, described jet element 17 and blank pressing component 15 rises, and then the involution unit 23 that is made of plug-in strip mechanism is collected to central portion with the circumference of crust material 11 and carries out involution.At this moment, because the thickness of crust material 11 circumferences remains certain thickness, also almost be certain all the time so be pooled to the thickness (amount) of the crust material 11 of involution portion, so can stablize and carry out exactly the involution of crust material 11.That is, produce the coated foods that coats interior material with crust material 11.
Be delivered to from lifting supporter 19 as the above-mentioned coated foods that produces and take out of on the conveyer belt 21, taken out of to next operation.
Can understand from foregoing explanation, jet element 17 and blank pressing component 15 are the parts that can move up and down respectively, and (control) decline stop position separately can be set respectively, so can eliminate foregoing problem in the past according to character adjustment (control) the decline stop position separately of crust material 11.
In addition, because jet element 17 moves up and down by different transmission device 101,105 with blank pressing component 15, so not only can adjust the relative upper-lower position relation of jet element 17 and 15 of blank pressing components according to the character of crust material 11, can also adjust beginning opportunity of moving up and down between (control) jet element 17 and the blank pressing component 15, move up and down speed, improve production performance thereby can do one's utmost to reduce waste of time.
And in described structure, each composed component such as involution unit 23, nozzle unit 51, pump 39 can carry out from the front side of main stand 5 with respect to the loading and unloading of main stand 5, carries out the cleaning and the maintenance inspection of each composed component easily.
Yet, the invention is not restricted to foregoing embodiment, also can otherwise implement by suitable variation.That is,, can adopt the open and close valve 65 that omits in the jet element 17 that is provided in nozzle unit 51, the structure of using transmission device 77, rotary gearing 75 etc. that moves up and down that is used to move up and down and rotate this open and close valve 65 for simplified structure.
In this case, spue when supplying with from the interior material of jet element 17 to crust material 11 finishing, stop the positive rotation of pump 39 when beginning to rise jet element 17, and suitably carry out reverse rotation, make the interior material adverse current slightly in the jet element 17.Thereupon, can suck have from the discharge opening 17A of jet element 17 spue the tendency remaining in material.The action that makes pump 39 carry out reverse rotation as described above when in addition, material spues supply in finishing also can be implemented in having the aforesaid structure of described open and close valve 65.
As mentioned above, material in reverse rotation pump 39 sucks when spuing supply by material in finishing can prevent effectively that remaining interior material from flowing out from the discharge opening 17A of jet element 17.
In addition, in aforesaid structure, can also stop dextrorotation then in stopping to supply with during material, combined block 79A, the 79B in the rising jet element 17 and interior material in the inlet nozzle parts 17 at pump 39.At this moment, when all being sucked upward owing to all the interior materials in the rising jet element 17 of combined block 79A, 79B, also the downside at open and close valve 65 produces negative pressure, sucks near the interior material of discharge opening 17A, and material flows out from discharge opening 17A in can effectively preventing.
In addition, all the elements of Japan's special permission application 2008-135732 number (application on May 23rd, 2008) are incorporated in the application's the specification by reference.
The invention is not restricted to aforesaid explanation, can implement with other various forms by suitable variation to the invention embodiment.

Claims (4)

1. one kind is used to make the coated foods manufacturing installation that wraps into the coated foods of interior equipment structure with the crust material, it is characterized in that, comprising:
Be used for the crust material of flat being delivered to crust material supply unit on the described mounting parts to cover the mode of mounting component openings portion that described coated foods manufacturing installation is provided in the front face side of main stand;
Push the outer peripheral edges portion that is positioned in the crust material on the described mounting parts freely, and move up and down blank pressing component freely;
The central portion of the crust material on the described mounting parts interior material that spues freely, and move up and down freely jet element;
Support the crust material that the described peristome by described mounting parts descends freely from downside, and move up and down lifting supporter freely;
And after described jet element and described blank pressing component rise, the circumference of described crust material is collected to the involution unit that central portion carries out involution,
In said structure, described jet element and blank pressing component can move up and down respectively and can adjust respectively and move up and down the position.
2. coated foods manufacturing installation according to claim 1 is characterized in that,
Described main stand possesses the nozzle reciprocating mechanism that is used to move up and down described jet element;
With respect to moving up and down the nozzle Lift Part that is provided in freely on the described nozzle reciprocating mechanism, can load and unload described jet element from the place ahead;
Described main stand possesses the pressing component reciprocating mechanism that is used to move up and down described blank pressing component; And,
With respect to moving up and down the pressing component Lift Part that is provided in freely on the described pressing component reciprocating mechanism, can load and unload described pressing component from the place ahead.
3. coated foods manufacturing installation according to claim 1 is characterized in that,
Can connect into motionless state with the interior material feed unit one that is provided in described main stand front, and, can in the urceolus of the place ahead loading and unloading ground installation, move up and down and be equipped with described jet element freely with respect to described main stand front;
Move up and down in the outside of described urceolus and to be equipped with described blank pressing component freely; And, constitute nozzle unit by described urceolus, jet element and blank pressing component.
4. coated foods manufacturing installation according to claim 1 is characterized in that,
Described involution unit and described interior material feed unit can load and unload from the place ahead with respect to described main stand.
CN2009801182413A 2008-05-23 2009-05-21 Crusted food product manufacturing device Active CN102036566B (en)

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PCT/JP2009/059339 WO2009142262A1 (en) 2008-05-23 2009-05-21 Crusted food product manufacturing device

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CN102036566B (en) 2012-09-26
TW201016147A (en) 2010-05-01
JP2009278936A (en) 2009-12-03
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MY152463A (en) 2014-10-15
TWI468118B (en) 2015-01-11

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