CN216674481U - Pastry making device - Google Patents

Pastry making device Download PDF

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Publication number
CN216674481U
CN216674481U CN202123327972.6U CN202123327972U CN216674481U CN 216674481 U CN216674481 U CN 216674481U CN 202123327972 U CN202123327972 U CN 202123327972U CN 216674481 U CN216674481 U CN 216674481U
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dough
pastry
point
unit
face
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CN202123327972.6U
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Inventor
王卫刚
王鹏
范静
于波
苏子旭
楚宁可
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Miss Food Henan Co ltd
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Miss Food Co ltd
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Abstract

The invention discloses a pastry making device, which aims to solve the technical problems that in the prior art, the making efficiency is low, the appearance is not standard, and patterns are not easy to take out. The dough sheet rolling mechanism is arranged on the dough sheet conveying component, the dough sheet sticking mechanism is arranged above the conveying mechanism and comprises a mold component and a moving component, the mold component is used for obtaining dough sheets on the dough sheet conveying component to manufacture dough point patterns, and the moving component is used for driving the mold component to move from the dough sheet conveying component to the dough point conveying component so as to stick the dough point patterns to the dough points of the dough point conveying component. The invention has the beneficial effects that: the production efficiency is high, the dough cover is convenient to obtain, and the product quality is good.

Description

Pastry making device
Technical Field
The invention relates to the technical field of food machinery, in particular to a pastry making device.
Background
When the prior art is used for manufacturing the face dot patterns, the patterns are usually carved manually and then pasted on the face dots, so that the mode has low efficiency and insufficient product consistency. Related technicians provide a cartoon bag skin pasting machine, when a dough point green body is conveyed to a set position along with a conveying belt, a dough sheet is pressed by a dough pressing mechanism, the pressed dough sheet is conveyed to the lower part of the skin pasting mechanism by a stepping mechanism, a mould at the end part of a top core extends out along with the top core to stamp the dough sheet and make a small sample of five sense organs, and then a vacuum generator extracts air in a cavity in the middle of the top core to pick up the small sample of five sense organs on the mould at the end part of the top core. And the top core continuously extends to the position near the dough point green body, and then the top core is inflated by a vacuum generator, so that the facial features sample at the end part can be blown onto the dough point green body. But above-mentioned scheme pattern preparation and laminating go on successively, and the continuity is not enough, influences the preparation speed, in addition because the unsettled pressure of face skin can not too big when the pattern punching press, leads to the pattern to take place the adhesion with the face skin easily, influences the shaping effect.
Disclosure of Invention
The invention provides a pastry making device, which aims to solve the technical problems that in the prior art, making efficiency is low, appearance quality is not standard, and patterns are not easy to take out.
In order to solve the technical problems, the invention adopts the following technical scheme:
the utility model provides a millet cake making devices, including conveying mechanism, reason material mechanism, spray the mechanism, face skin calendering mechanism, face skin pasting mechanism, conveying mechanism includes parallel arrangement's face point conveyor components and face skin conveyor components, reason material mechanism with spray the mechanism and set up on face point conveyor components, face skin calendering mechanism sets up on face skin conveyor components, face skin pasting mechanism sets up in the conveying mechanism top, it includes mould subassembly and removal subassembly, the mould subassembly is used for acquireing the face skin on the face skin conveyor components and in order to make the face point pattern, it is used for driving the mould subassembly and removes to face point conveyor components by face skin conveyor components in order to paste the face point pattern on the face point conveyor components's face point.
Further, the movable assembly comprises a top plate, a rotary plate and a power unit, the power unit is fixed on the top plate, the rotary plate is correspondingly connected with the power unit through a rotary shaft, the mold assembly is arranged on the edge of the bottom surface of the rotary plate, and the power unit is used for driving the rotary plate and the mold assembly to rotate.
Further, the mould subassembly is provided with two, and it is located the face point conveyor assembly respectively and conveys the subassembly with the face skin top.
Further, the mould assembly comprises a static mould module and a movable mould module, the movable mould module is connected with a turnover unit, the end part of the movable mould module is arranged in the arc-shaped groove, the turnover unit is used for driving the movable mould module to overturn along the arc-shaped groove, the static mould module and the movable mould module respectively comprise a top core and a pattern template, and the top core is used for ejecting the dough cover filled in the pattern template.
Furthermore, the bottom of the dough sheet sticking mechanism is provided with a dough sheet jacking unit and a dough point height adjusting unit, the dough sheet jacking unit is arranged below the dough sheet conveying assembly, the dough point height adjusting unit is arranged below the dough point conveying assembly, the dough sheet jacking unit comprises a jacking cylinder, the dough point height adjusting unit comprises a jacking rod and an adjusting rod, and the jacking rod is connected with the adjusting rod through a bevel gear.
Furthermore, the material arranging mechanism comprises a feeding channel, the inlet width of the feeding channel is larger than the outlet width, and the side wall of the feeding channel consists of a plurality of rollers.
Further, the spraying mechanism comprises a sprayer, the dough point conveying assembly comprises a front conveying belt, a middle conveying belt and a rear conveying belt, the sprayer is arranged on two sides of the middle conveying belt, and the middle conveying belt comprises conveying belt strips arranged at intervals.
Further, the dough sheet calendering mechanism comprises a feeding hole, a dough pressing roller and a discharging hole, the dough pressing roller comprises an upper roller and a lower roller, and the discharging hole is formed above the dough sheet conveying assembly.
Furthermore, a flour scattering unit is arranged between the discharging port and the dough sheet conveying assembly, the flour scattering unit comprises a flour box and a hairbrush, a flour scattering hole is formed in the bottom of the flour box, the hairbrush covers the flour scattering hole, and the hairbrush comprises a driving portion so that the driving portion can rotate to take out flour in the flour box through the flour scattering hole.
Compared with the prior art, the invention has the beneficial technical effects that:
1. the invention is provided with two parallel conveying belts which simultaneously convey the dough points and the dough sheet, when the dough points and the dough sheet simultaneously move to the dough sheet pasting mechanism, the pushing cylinder pushes the dough sheet to the die assembly to press the dough point pattern, then the dough sheet pasting mechanism is rotated to push the dough point pattern out and paste the dough point pattern on the dough points, the die assembly is provided with two, when one of the die assemblies is used for pasting the pattern, the other die assembly can simultaneously punch the pattern on the dough sheet, the continuity of making the dough point pattern is ensured, and the efficiency is improved.
2. The mould assembly comprises the static mould template and the movable mould templates on the two sides of the static mould template, when the skin is taken, the three mould templates are in a plane state, the dough skin with the corresponding shape can be conveniently and smoothly taken, when the skin is pasted, the movable mould templates on the two sides are firstly turned for about 45 degrees to be positioned on the two sides of the dough point, the static mould templates are kept positioned on the top surface of the dough point, and the quality of the pasted skin is favorably improved.
3. According to the invention, when the wrapper is jacked up, the wrapper is not suspended on the conveying belt, so that a larger squeezing force can be used, and the condition that the pattern of the dough point completely enters the die and is not adhered is ensured.
4. According to the invention, the material arranging mechanism is arranged at the inlet of the dough point conveying component, and all dough point blanks entering the conveying belt are arranged on the same straight line through the parallel rollers, so that the consistency of products is ensured.
5. According to the invention, the spraying mechanism is arranged on the conveying mechanism, and the dough point raw blank is sprayed with water to be wet, so that the dough cover and the dough points can generate better adhesiveness and are not easy to fall off.
6. According to the invention, the dough sheet firstly enters the dough belt rolling structure, the dough sheet is rolled to be a proper thickness, the product quality is improved, one end of the dough sheet conveying mechanism is also provided with the dough scattering unit, and flour is scattered on the dough sheet conveying mechanism to prevent adhesion.
Drawings
FIG. 1 is a top view of the device for making pastries of the present invention.
FIG. 2 is a front view of the device for making pastries of the present invention.
FIG. 3 is a rear view of the device for making pastries of the present invention.
Fig. 4 is a schematic structural view of a material arranging mechanism of the pastry making device of the invention.
FIG. 5 is a schematic structural view of a dough sheet attaching mechanism of the device for making pastries of the present invention.
FIG. 6 is a top view of the mold assembly of the device for making pastries of the invention.
FIG. 7 is a right side view of the mold assembly of the pastry making device of the present invention.
FIG. 8 is a rear view of the dough sheet rolling mechanism of the device for producing pastries in accordance with the present invention.
FIG. 9 is a right side view of the dough sheet rolling mechanism of the device for producing pastries in accordance with the present invention.
In the figure, a material arranging mechanism 1, a vertical plate 101, a fixed rod 102, a mounting plate 103, a roller 104, a dough point conveying belt 2, a front conveying belt 201, a middle conveying belt 202, a rear conveying belt 203, a spraying mechanism 3, an atomizer 301, a nozzle 302, a dough sheet pasting mechanism 4, a driving motor 401, a top plate 402, a dough point height adjusting surface 403, an adjusting rod 4031, a mandril 4032, a conical gear 4033, a pushing cylinder 404, a lower plate 4041, a buffer spring 4042, an upper plate 4043, a speed reducer 405, a turntable 406, a mold component 407, a movable mold module 4071, a static mold module 4072, a pressure plate 4073, a mandril 4074, a middle pushing rod 4075, a joint bearing 4076, a turning roller 4077, a pattern template 4078, a template fixing plate 4079, an arc-shaped groove 4080, a roller 408, a left bending bracket 4171, a left bending cylinder 4172, a right bending bracket 4173, a right bending cylinder 4174, a left turning cylinder 4175, a left fixing plate 4176, a right fixing plate 4177, a right turning cylinder 4178, a middle pushing cylinder 4179, a dough sheet rolling mechanism 5, a roller motor 501, a discharge port 502, a dough box 503, a dough sheet conveying roller 504, a feed port 505, an upper roller 506, a lower roller 507, a brush motor 508, a dough sheet conveying belt 6, a rear recovery box 7, a front recovery box 8 and a dough point blank 9.
Detailed Description
The following examples are intended to illustrate the present invention in detail and should not be construed as limiting the scope of the present invention in any way.
Example 1: the utility model provides a millet cake making devices, refers to fig. 1 to 3, including reason material mechanism 1, millet cake conveyer belt 2, spray mechanism 3, face skin paste mechanism 4, face skin calendering mechanism 5, face skin conveyer belt 6, wherein, millet cake conveyer belt 2 and face skin conveyer belt 6 parallel arrangement, reason material mechanism 1 and spray mechanism 3 set up on millet cake conveyer belt 2, face skin paste mechanism 4 strides and locates millet cake conveyer belt 2 and face skin conveyer belt 6 top, face skin calendering mechanism 5 sets up in the entrance of face skin conveyer belt 6. A front recovery box 8 is arranged at the tail end of the dough point conveying belt 2 and is used for recovering the flour scraps, moisture and the like on the dough point conveying belt 2, and a rear recovery box 7 is arranged at the tail end of the dough cover conveying belt 6 and is used for recovering the redundant dough belt after the dough cover patterns are manufactured for reuse.
The pastry conveyor belt 2 is divided into a front conveyor belt 201, a middle conveyor belt 202 and a rear conveyor belt 203, the arranging mechanism 1 is arranged on the front conveyor belt 201, the structure of the arranging mechanism is shown in fig. 4, vertical plates 101 are installed on frames on two sides of the front conveyor belt 201, a fixing rod 102 is bridged between the two vertical plates 101, a bending-shaped mounting plate 103 is installed below the fixing rod 102, rollers 104 are fixed below the mounting plate 103, two rows of rollers 104 arranged side by side along the length direction of the mounting plate 103 form a feeding channel, the inlet width of the feeding channel is larger than the outlet width, pastry raw blanks 9 conveniently enter the channel from a wide inlet on the left side, gradually draw close to the middle along with movement in the feeding channel, and finally, all the pastry raw blanks 9 are guaranteed to be on a straight line when being sent out from the outlet.
The rear end of the front conveyor belt 201 is butted with a spraying mechanism 3, the structure of which is shown in fig. 2, and the spraying mechanism comprises sprayers 301 arranged on the racks on two sides, the front ends of the sprayers 301 are columnar nozzles 302, and the tops of the nozzles 302 are provided with water spray nozzles capable of radiating water mist outwards. The spraying mechanism 3 further comprises a middle conveying belt 202, wherein the middle conveying belt 202 is composed of a plurality of belt strips arranged at intervals, and water accumulation can be avoided through gaps among the belt strips.
The rear end of the middle conveyor 202 abuts against the rear conveyor 203, and the dough sheet sticking mechanism 4 is mounted above the rear conveyor 203, and its structure is shown in fig. 7 to 8, and for convenience of explanation, the top plate 402 and the conveyor are not shown in fig. 7. The dough cover pasting mechanism 4 comprises a rectangular support, the middle conveying belt 202 penetrates through the bottom of the support, a driving motor 401 is mounted on a top plate 402 of the support, a speed reducer 405 is mounted at the bottom of the top plate 402, a rotary disc 406 is connected to the speed reducer 405, the driving motor 401 drives the rotary disc 406 to rotate through the speed reducer 405, and a roller 408 is arranged between the rotary disc 406 and the top plate 402 to ensure the stability of the rotary disc 406. A die assembly 407 is installed in the diameter direction of the turntable 406 for making a pattern from the right dough cover conveyer 6, and then the pattern is pasted on the dough point blank 9 as the turntable 406 rotates to the dough point conveyer 2.
The structure of the mold assembly 407 is shown in fig. 5 to 7, the bottom of the mold assembly is provided with two movable mold modules 4071 and a stationary mold module 4072, the stationary mold module 4072 is located in the middle, the two movable mold modules 4071 are located on two sides of the stationary mold module, the movable mold module 4071 and the stationary mold module 4072 both include a template fixing plate 4079 located in the middle, pattern holes are provided on the template fixing plate 4079, and an outlet of the pattern holes is tapered. A pattern template 4078 is fixed below the template fixing plate 4079, a top core 4074 is arranged above the template fixing plate 4079, the top core 4074 is fixed on the pressing plate 4073, and the top core 4074 ejects the dough skin in the pattern hole of the template fixing plate 4079 to be adhered to the dough point blank 9. The two sides of the movable mold module 4071 are provided with turning rollers 4077 so that the movable mold module can be turned by about 45 degrees along the arc-shaped grooves 4080 on the two sides of the rack. The top core of the static mold module 4072 is driven by a middle push rod 4075, the middle push rod 4075 is connected with a middle pushing cylinder 4179 of the mold assembly 407, a left bending frame 4171 and a right bending frame 4173 are arranged on two sides of the mold assembly 407, the left bending frame 4171 and the right bending frame 4173 are respectively provided with the left pushing cylinder 4172 and the right pushing cylinder 4174, a left fixing plate 4176 and a right fixing plate 4177 are further arranged above the mold assembly 407, the left fixing plate 4176 and the right fixing plate 4177 are respectively provided with a left overturning cylinder 4175 and a right overturning cylinder 4178, and the left overturning cylinder 4175 and the right overturning cylinder 4178 are rotatably connected with the pressure plate 4073 of the movable mold module 4071 through a joint bearing 4076.
The bottom of the dough sheet sticking mechanism 4 is provided with a dough sheet jacking unit and a surface point height adjusting unit, the dough sheet jacking unit is arranged below the dough sheet conveying belt 6 and comprises a jacking cylinder 404 and a top plate connected with the jacking cylinder, the structure of the top plate is shown in fig. 5 and comprises a lower plate 4041 and an upper plate 4043, and a buffer spring 4042 is arranged between the lower plate 4041 and the upper plate 4043. When the dough point raw blank 9 is detected to reach the lower part of the mold assembly 407, the pushing cylinder 404 pushes up the dough sheet conveyer belt 6 and the dough sheets thereon, the dough sheets are pushed into the mold fixing plate 4079 of the mold assembly 407 on the right side, then the turntable 406 drives the mold assembly 407 to rotate to the upper part of the dough point raw blank 9, the left overturning cylinder 4175 and the right overturning cylinder 4178 push the movable mold modules 4071 on the two sides to overturn for 45 degrees to reach the side surface of the dough point, and then the middle pushing cylinder 4179, the left pushing cylinder 4172 and the right pushing cylinder 4174 push the dough sheet patterns in the mold assembly 407 out to the dough point raw blank 9 through the top core 4074. Then, the movable mold module 4071 is reset to wait for the next dough sheet taking. Because the mould components 407 are provided with two groups, the mould components 407 above the dough point conveyor belt 2 can stick dough skin patterns, and the mould components 407 above the dough skin conveyor belt 6 can take the dough skin to make the patterns, so that the continuity of dough point making is kept, and the production efficiency is improved. The noodle point height adjusting unit is arranged below the noodle point conveying belt 2 and comprises a push rod 4032 and an adjusting rod 4031, the push rod 4032 and the adjusting rod 4031 are meshed through a bevel gear 4033, the noodle point height adjusting unit adjusts the height of noodle point blanks 9 in different shapes, and the heights of the noodle point blanks are kept unchanged in the manufacturing process of the same kind of noodle points.
The dough sheet rolling mechanism 5 is arranged at the inlet of the dough sheet conveyer belt 6, referring to fig. 8 and 9, the dough sheet rolling mechanism 5 comprises a feed inlet 505 and a discharge outlet 502, a dough pressing roller is arranged in the dough sheet rolling mechanism 5, the dough pressing roller comprises an upper roller 506 and a lower roller 507, the upper roller is driven by a roller motor 501 above the dough pressing roller, the discharge outlet 2 is arranged above the dough sheet conveyer assembly, a dough sheet conveyer roller 504 is arranged on the feed inlet 505, and the dough sheet fed into the feed inlet 505 by the dough pressing roller is pressed to be thin to a proper thickness. A flour scattering unit is arranged below the discharging port 502 and comprises a flour box 503, a brush is arranged in the flour box 503, a flour scattering hole is formed in the bottom of the flour box 503 and covers the flour scattering hole, a brush motor 508 is connected to one end of the brush to enable the brush to rotate, so that flour in the flour box 503 is taken out of the flour skin conveying belt 6 through the flour scattering hole, and flour skins are prevented from being adhered to the conveying belt.
Example 2: a method for making pastries by using the pastries making device comprises the following steps:
s1: the dough point raw blank 9 enters the dough point conveying belt 2 through the material arranging mechanism 1, and meanwhile, the dough sheet enters the dough sheet rolling mechanism 5 to be rolled to be thin to a proper thickness;
s2: the dough point raw blank 9 is conveyed forwards, water is sprayed onto the dough point through the spraying mechanism 3, and meanwhile, the dough sheet is input to the dough sheet conveying belt 6 from the dough sheet rolling mechanism 5;
s3: the dough point blank 9 and the dough sheet are simultaneously conveyed forwards to the dough sheet sticking mechanism 4, and the dough sheet is jacked upwards and filled into the pattern template on the right side;
s4: and the right pattern template is brought above the left side surface point green blank 9 by rotating the turntable, and the dough skin in the pattern template is ejected to the surface points through the ejection core, so that the surface point pattern is manufactured. Meanwhile, the original left pattern template is rotated to the right, and the next face point pattern is synchronously manufactured when the face skin is pasted on the left side.
While the present invention has been described in detail with reference to the drawings and the embodiments, those skilled in the art will appreciate that various changes and modifications can be made to the specific parameters in the above embodiments without departing from the spirit of the present invention, and it is intended to cover various embodiments within the scope of the present invention, and detailed descriptions thereof will be omitted.

Claims (9)

1. The utility model provides a millet cake making devices, its characterized in that includes conveying mechanism, reason material mechanism, sprays mechanism, face skin calendering mechanism, face skin adhesion mechanism, conveying mechanism includes parallel arrangement's face point conveyor components and face skin conveyor components, reason material mechanism with spray the mechanism set up in on the face point conveyor components, face skin calendering mechanism set up in on the face skin conveyor components, face skin adhesion mechanism set up in the conveying mechanism top, it includes mould subassembly and removal subassembly, the mould subassembly is used for acquireing face skin on the face skin conveyor components is in order to make the face point pattern, it is used for driving to remove the subassembly the mould subassembly by face skin conveyor components removes extremely face point conveyor components is in order to paste in the face point of face point conveyor components.
2. The pastry making device of claim 1, wherein the moving assembly comprises a top plate, a turntable and a power unit, the power unit is fixed on the top plate, the turntable is correspondingly connected with the power unit through a rotating shaft, the die assembly is arranged on the edge of the bottom surface of the turntable, and the power unit is used for driving the turntable and the die assembly to rotate.
3. The device of claim 2, wherein there are two of the mold assemblies located above the dough point delivery assembly and the dough cover delivery assembly.
4. The pastry making device of claim 2, wherein the die assembly comprises a static die module and a movable die module, the movable die module is connected with a turnover unit, the end portion of the movable die module is arranged in an arc-shaped groove, the turnover unit is used for driving the movable die module to turn over along the arc-shaped groove, the static die module and the movable die module both comprise a top core and a pattern template, and the top core is used for ejecting a wrapper filled in the pattern template.
5. The pastry making device according to claim 1, wherein a pastry jacking unit and a pastry height adjusting unit are arranged at the bottom of the pastry pasting mechanism, the pastry jacking unit is arranged below the pastry conveying assembly, the pastry height adjusting unit is arranged below the pastry conveying assembly, the pastry jacking unit comprises a jacking cylinder, the pastry height adjusting unit comprises a jacking rod and an adjusting rod, and the jacking rod is connected with the adjusting rod through a bevel gear.
6. The device of claim 1, wherein the material arranging mechanism comprises a feed channel, the feed channel has an inlet width greater than an outlet width, and the feed channel side walls are formed by a plurality of rollers.
7. The device of claim 1, wherein the spray mechanism comprises a sprayer, the noodle transport assembly comprises a front conveyor belt, a middle conveyor belt and a rear conveyor belt, the sprayer is arranged on two sides of the middle conveyor belt, and the middle conveyor belt comprises conveyor belt strips arranged at intervals.
8. The pastry making device of claim 1, wherein the dough sheet rolling mechanism comprises a feeding port, a dough pressing roller and a discharging port, the dough pressing roller comprises an upper roller barrel and a lower roller barrel, and the discharging port is arranged above the dough sheet conveying assembly.
9. The device for making pastries as claimed in claim 8, wherein a flour scattering unit is arranged between the discharge port and the dough conveying assembly, the flour scattering unit comprises a dough box and a brush, a flour scattering hole is formed in the bottom of the dough box, the brush covers the flour scattering hole, and the brush comprises a driving part so as to be capable of rotating to take flour in the dough box out through the flour scattering hole.
CN202123327972.6U 2021-12-06 2021-12-28 Pastry making device Active CN216674481U (en)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
CN202123036383 2021-12-06
CN2021230363832 2021-12-06

Publications (1)

Publication Number Publication Date
CN216674481U true CN216674481U (en) 2022-06-07

Family

ID=81844775

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202123327972.6U Active CN216674481U (en) 2021-12-06 2021-12-28 Pastry making device

Country Status (1)

Country Link
CN (1) CN216674481U (en)

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Effective date of registration: 20230821

Address after: No. 13 Yingcai Street, Yingbin Road Street, Huiji District, Zhengzhou City, Henan Province, 450000

Patentee after: Miss Food (Henan) Co.,Ltd.

Address before: 450000 room A22, No. 9-2, Liudong Road, Zhengzhou area (Jinshui), Henan pilot Free Trade Zone, Zhengzhou City, Henan Province

Patentee before: Miss Food Co.,Ltd.