CN113115802A - Can carry out unrestrained device of candy bits to not cake of equidimension - Google Patents

Can carry out unrestrained device of candy bits to not cake of equidimension Download PDF

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Publication number
CN113115802A
CN113115802A CN202110419897.1A CN202110419897A CN113115802A CN 113115802 A CN113115802 A CN 113115802A CN 202110419897 A CN202110419897 A CN 202110419897A CN 113115802 A CN113115802 A CN 113115802A
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frame
spring
fixedly connected
sliding
wedge
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CN202110419897.1A
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CN113115802B (en
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李叶云
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Zhangjiajie Fuji Kaixin Food Co ltd
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Individual
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    • AHUMAN NECESSITIES
    • A21BAKING; EDIBLE DOUGHS
    • A21CMACHINES OR EQUIPMENT FOR MAKING OR PROCESSING DOUGHS; HANDLING BAKED ARTICLES MADE FROM DOUGH
    • A21C15/00Apparatus for handling baked articles
    • A21C15/002Apparatus for spreading granular material on, or sweeping or coating the surface of baked articles

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  • Life Sciences & Earth Sciences (AREA)
  • Engineering & Computer Science (AREA)
  • Food Science & Technology (AREA)
  • Confectionery (AREA)

Abstract

The invention relates to the field of cake processing, in particular to a device capable of sprinkling candy particles to cakes with different sizes, which comprises a support frame, a support plate, a first support plate, a material sprinkling assembly, a size testing assembly and the like; the support frame is fixedly connected with a support plate, the first support plate is fixedly connected to the support frame, the material scattering assembly is arranged on the support frame, and the size testing assembly is connected to the first support plate in a sliding mode. Through spilling the material subassembly, the support frame promotes fluting frame downstream, and the second spring is compressed, and fluting frame promotes card post downstream for the swinging plate downswing, the swinging plate no longer blocks the reel, and the candy crumb in the reel spills to the cake surface, and the slip backup pad drives the reel and rotates, and the reel rotates and spills the candy crumb evenly on the cake surface.

Description

Can carry out unrestrained device of candy bits to not cake of equidimension
Technical Field
The invention relates to the field of cake processing, in particular to a device capable of sprinkling broken candy particles to cakes with different sizes.
Background
The cake is a food which is prepared by taking one or more of food materials such as grains, beans, potatoes, grease, sugar, eggs and the like as main raw materials, adding or not adding other raw materials, and carrying out the working procedures of modulation, molding, cooking and the like, wherein cream, protein, candy, jam and the like are often added on the surface of the product or in the cooked product before or after cooking, and the candy particles are scattered in the later processing of the cake, so that the cake is attractive in appearance and the taste of the cake is more delicious.
In the existing cake processing technology, the cake is usually processed by pure manual work, the moulds with different specifications are manually adopted to spread the candy particles on the cakes on the cake counting trays with different specifications, the process is complicated, and the candy particles cannot be uniformly spread on the cake.
Disclosure of Invention
Aiming at the defects in the prior art, the invention aims to provide a device capable of scattering candy particles on the surfaces of cakes in cake trays with different sizes and uniformly scattering the candy particles on the cakes, and the device can be used for scattering the candy particles of the cakes with different sizes.
The technical scheme of the invention is as follows: the utility model provides a can carry out unrestrained device of candy bits to cake of equidimension not, including the support frame, the supporting disk, first backup pad, spill the material subassembly, big or small test component, spill adjusting part and reset assembly, the rigid coupling has the supporting disk on the support frame, the same rigid coupling of first backup pad is on the support frame, spill on the material subassembly locates the support frame, big or small test component sliding connection is on first backup pad, be equipped with on the supporting disk and spill adjusting part, reset assembly locates on spilling the material subassembly.
Optionally, the spreading assembly comprises a motor, a hole opening shaft, a rotating frame, a first spring, a sliding support plate, a second support plate, a swinging plate, a clamping column, a slotting frame, a second spring, a first wedge frame, a third spring and a screen frame, the motor is fixedly installed at the top of the support frame, the hole opening shaft is fixedly connected to an output shaft of the motor, the hole opening shaft is rotatably connected to the support frame, the rotating frame is slidably connected to the hole opening shaft, the first spring is fixedly connected to the rotating frame, one end of the first spring is fixedly connected to the hole opening shaft, the sliding support plate is slidably connected to the rotating frame, the second support plate is fixedly connected to the bottom of the sliding support plate in a distributed manner, the swinging plates are rotatably connected to the second support plate, adjacent sliding plates are in contact with each other, the clamping column is fixedly connected to the swinging plate, the slotting frame is slidably connected to the sliding support plate, the slotting frame is matched with, one end of the second spring is fixedly connected with the sliding support plate, the first wedge-shaped frame is connected to the sliding support plate in a sliding mode, the first wedge-shaped frame is fixedly connected with the third spring, one end of the third spring is fixedly connected with the sliding support plate, the screen frame is fixedly connected to the sliding support plate, and the screen frame is in contact with the swinging plate.
Optionally, the size testing assembly comprises a disc frame, a fourth spring, a first annular frame, a fifth spring, a first wedge block, a second annular frame, a sixth spring and a second wedge block, the disc frame is slidably connected to the first supporting plate, the disc frame is fixedly connected with the fourth spring, one end of the fourth spring is fixedly connected with the first supporting plate, the first annular frame is also slidably connected to the first supporting plate, the first annular frame and the disc frame are in contact with each other, the first annular frame is fixedly connected with a pair of fifth springs, one end of the fifth spring is fixedly connected with the first supporting plate, the bottom end of the first annular frame is fixedly connected with the first wedge block, the second annular frame is also slidably connected to the first supporting plate, the second annular frame is in contact with the first annular frame, the second annular frame is connected with the supporting plate in a sliding manner, the second annular frame is fixedly connected with a pair of sixth springs, one end of the sixth springs is fixedly connected with the first supporting plate, the bottom end of the second ring-shaped frame is fixedly connected with a second wedge-shaped block.
Optionally, the scattering and adjusting assembly comprises a second wedge frame, a seventh spring, a third wedge frame, an eighth spring, a fixed limiting frame, a first sliding pushing frame, a ninth spring, a second sliding pushing frame, a tenth spring, a slotted swinging frame, a push rod, a first torsion spring, a ratchet rack, a pawl and a second torsion spring, the second wedge frame is slidably connected to the first supporting plate, the second wedge frame is in contact with the first wedge block, the second wedge frame is fixedly connected to the seventh spring, one end of the seventh spring is fixedly connected to the first supporting plate, the first supporting plate is slidably connected to the third wedge frame, the third wedge frame is in contact with the second wedge block, the third wedge frame is fixedly connected to the eighth spring, one end of the eighth spring is fixedly connected to the first supporting plate, the bottom surface of the supporting plate is fixedly connected to the fixed limiting frame, the fixed limiting frame is slidably connected to the first sliding pushing frame, the first sliding pushing frame is in contact with the third wedge frame, the first sliding push frame is fixedly connected with a ninth spring, one end of the ninth spring is fixedly connected with the supporting disc, the first sliding push frame is slidably connected with a second sliding push frame, the second sliding push frame is in contact with the second wedge-shaped frame, the second sliding push frame is fixedly connected with a tenth spring, one end of the tenth spring is fixedly connected with the supporting disc, the rotating frame is rotatably connected with a slotted swing frame, the slotted swing frame is in contact with a fixed limiting frame, the slotted swing frame is in contact with the first sliding push frame, the slotted swing frame is also in contact with the second sliding push frame, the push rod is fixedly connected onto the sliding supporting plate, the slotted swing frame is fixedly connected with a first torsion spring, one end of the first torsion spring is fixedly connected with the rotating frame, the slotted swing frame is in sliding fit with the push rod, the sliding supporting plate is fixedly connected with a ratchet bar, the pawl is rotatably connected onto the rotating frame, the pawl is in contact with the ratchet bar, and a second torsion spring is connected.
Optionally, the reset assembly includes a first pushing frame, an eleventh spring, a supporting column, a second pushing frame and a twelfth spring, the first pushing frame is slidably connected to the sliding support plate, the eleventh spring is fixedly connected to the bottom surface of the first pushing frame, one end of the eleventh spring is fixedly connected to the sliding support plate, the supporting column is fixedly connected to the rotating frame, the second pushing frame is slidably connected to the supporting column, and the twelfth spring is connected between the second pushing frame and the rotating frame.
Optionally, the vibration assembly is arranged on the support frame and comprises a support cylinder and a lug, the support cylinder is fixedly connected to the support frame and is in contact with the rotating frame, and the lug is fixedly connected to the bottom surface of the support cylinder in a distributed mode.
The invention has the following advantages: through spilling the material subassembly, the support frame promotes fluting frame downstream, and the second spring is compressed, and fluting frame promotes card post downstream for the swinging plate downswing, the swinging plate no longer blocks the reel, and the candy crumb in the reel spills to the cake surface, and the slip backup pad drives the reel and rotates, and the reel rotates and spills the candy crumb evenly on the cake surface.
Through the cooperation of big or small test assembly and the adjusting part that spills, can adjust slip backup pad and device and cake point dish centre of a circle skew distance on it, can spill the cake surface of candy crumb in cake point dish outer lane when the reel rotates for this equipment can spill the candy crumb to the cake surface in the cake point dish of equidimension not.
Through the vibration subassembly, the trompil axle continuously drives rotating turret and the device rotation on it for rotating turret and the device reciprocal shake from top to bottom on it, and the reciprocal shake of reel makes the candy particle spill evenly on the cake surface.
Drawings
Fig. 1 is a schematic perspective view of a first embodiment of the present invention.
Fig. 2 is a schematic perspective view of a second embodiment of the present invention.
Fig. 3 is a schematic view of a first partially separated body structure of the spreading assembly of the present invention.
Fig. 4 is a schematic view of a second partially separated body structure of the spreading assembly of the present invention.
Fig. 5 is a schematic view of a partially separated perspective structure of the spreading assembly of the present invention.
Fig. 6 is a schematic perspective view of a portion of the material spreading assembly and the spreading adjustment assembly of the present invention.
FIG. 7 is a schematic diagram of a separated three-dimensional structure of a size testing assembly according to the present invention.
Fig. 8 is a partially separated perspective view of the drop adjustment assembly of the present invention.
Fig. 9 is a schematic perspective view of a portion of a spill regulating assembly of the present invention.
Fig. 10 is a perspective view of the reduction assembly of the present invention.
Fig. 11 is a schematic perspective view of the vibration assembly of the present invention.
Reference numbers in the drawings: 1-support frame, 2-support frame, 3-first support plate, 4-material scattering component, 41-motor, 42-perforated shaft, 43-rotating frame, 44-first spring, 45-sliding support plate, 46-second support plate, 47-swinging plate, 48-clamping column, 49-slotted frame, 410-second spring, 411-first wedge frame, 412-third spring, 413-screen frame, 5-size testing component, 51-disc frame, 52-fourth spring, 53-first ring frame, 54-fifth spring, 55-first wedge block, 56-second ring frame, 57-sixth spring, 58-second wedge block, 6-scattering adjusting component, 61-second wedge frame, 62-seventh spring, 63-third wedge frame, 64-eighth spring, 65-fixed limit frame, 66-first sliding pushing frame, 67-ninth spring, 68-second sliding pushing frame, 69-tenth spring, 610-slotted swinging frame, 611-push rod, 612-first torsion spring, 613-ratchet bar, 614-pawl, 615-second torsion spring, 7-reset component, 71-first pushing frame, 72-eleventh spring, 73-support column, 74-second pushing frame, 75-twelfth spring, 8-vibration component, 81-support cylinder and 82-lug.
Detailed Description
The standard parts used in the invention can be purchased from the market, the special-shaped parts can be customized according to the description and the description of the attached drawings, and the specific connection mode of each part adopts the conventional means of mature bolts, rivets, welding, sticking and the like in the prior art, and the detailed description is not repeated.
Example 1
The utility model provides a can carry out unrestrained device of candy grit to not cake of equidimension, as shown in fig. 1-10, including support frame 1, supporting disk 2, first backup pad 3, spill material subassembly 4, big or small test component 5, spill adjusting part 6 and reset assembly 7, the rigid coupling has supporting disk 2 on the support frame 1, the same rigid coupling of first backup pad 3 is on support frame 1, a material subassembly 4 that spills the candy grit for the cake on the cake dotting plate locates on support frame 1, big or small test component 5 is used for placing not cake dotting plate of equidimension, big or small test component 5 sliding connection is on first backup pad 3, be equipped with on the supporting disk and spill adjusting part 6, spill adjusting part 6 and be used for making the candy grit can spill the cake surface of equidimension not on cake dotting plate, reset assembly 7 locates on spilling material subassembly 4.
The spreading component 4 comprises a motor 41, a hole-opening shaft 42, a rotating frame 43, a first spring 44, a sliding support plate 45, a second support plate 46, a swinging plate 47, a clamping column 48, a slotting frame 49, a second spring 410, a first wedge-shaped frame 411, a third spring 412 and a screen frame 413, wherein the motor 41 is fixedly installed at the top of the support frame 1, the hole-opening shaft 42 is fixedly connected to an output shaft of the motor 41, the hole-opening shaft 42 is rotatably connected with the support frame 1, the hole-opening shaft 42 far away from the motor 41 is slidably connected with the rotating frame 43, the rotating frame 43 is fixedly connected with the first spring 44, one end of the first spring 44 far away from the rotating frame 43 is fixedly connected with the hole-opening shaft 42, the sliding support plate 45 is slidably connected to the rotating frame 43, the second support plate 46 is fixedly connected to the bottom surface of the sliding support plate 45 in a distributed manner, the swinging plate 47 is rotatably connected to the second support plate 46, the, the sliding support plate 45 is connected with a slotting frame 49 in a sliding mode, the slotting frame 49 is matched with the clamping column 48 in a sliding mode, the slotting frame 49 is used for pushing the clamping column 48 to move downwards, a second spring 410 is fixedly connected to the slotting frame 49, one end, far away from the slotting frame 49, of the second spring 410 is fixedly connected with the sliding support plate 45, a first wedge-shaped frame 411 is connected to the sliding support plate 45 close to the slotting frame 49 in a sliding mode, the first wedge-shaped frame 411 is used for blocking the slotting frame 49, a third spring 412 is fixedly connected to the first wedge-shaped frame 411, one end, far away from the first wedge-shaped frame 411, of the third spring 412 is fixedly connected with the sliding support plate 45, a sieve frame 413 used for scattering candy particles on a cake tray is fixedly connected to the sliding support plate 45, the sieve frame 413 is in contact with the swinging plate 47, and the swinging plate 47 is used for.
The size testing component 5 comprises a disk frame 51, a fourth spring 52, a first annular frame 53, a fifth spring 54, a first wedge-shaped block 55, a second annular frame 56, a sixth spring 57 and a second wedge-shaped block 58, the disk frame 51 for placing cake dishes is connected with the first supporting plate 3 in a sliding way, the fourth spring 52 is fixedly connected with the disk frame 51, one end of the fourth spring 52 far away from the disk frame 51 is fixedly connected with the first supporting plate 3, the first annular frame 53 is also connected with the first supporting plate 3 in a sliding way, the first annular frame 53 is contacted with the disk frame 51, the first annular frame 53 is fixedly connected with a pair of fifth springs 54, one end of the fifth spring 54 far away from the first annular frame 53 is fixedly connected with the first supporting plate 3, the bottom end of the first annular frame 53 near the first supporting plate 3 is fixedly connected with the first wedge-shaped block 55, the second annular frame 56 is also connected with the first supporting plate 3 in a sliding way, the second annular frame 56 is contacted with the first annular frame 53, the second annular frame 56 is connected with the support disc 2 in a sliding way, a pair of sixth springs 57 is fixedly connected to the second annular frame 56, one end of the sixth spring 57 far away from the second annular frame 56 is fixedly connected with the first support plate 3, and a second wedge-shaped block 58 is fixedly connected to the bottom end of the second annular frame 56 close to the first support plate 3.
The scattering and adjusting assembly 6 comprises a second wedge frame 61, a seventh spring 62, a third wedge frame 63, an eighth spring 64, a fixed limiting frame 65, a first sliding pushing frame 66, a ninth spring 67, a second sliding pushing frame 68, a tenth spring 69, a slotted swinging frame 610, a pushing rod 611, a first torsion spring 612, a ratchet rack 613, a pawl 614 and a second torsion spring 615, wherein the second wedge frame 61 is slidably connected to the first supporting plate 3, the second wedge frame 61 is in contact with the first wedge 55, the seventh spring 62 is fixedly connected to the second wedge frame 61, one end of the seventh spring 62 is fixedly connected to the first supporting plate 3, the third wedge frame 63 is slidably connected to the first supporting plate 3, the third wedge frame 63 is in contact with the second wedge 58, the eighth spring 64 is fixedly connected to the third wedge frame 63, one end of the eighth spring 64 far away from the first sliding pushing frame 66 is fixedly connected to the first supporting plate 3, a fixed limit frame 65 is fixedly connected to the bottom surface of the support disc 2, a first sliding push frame 66 is slidably connected to the fixed limit frame 65 far away from the support disc 2, the first sliding push frame 66 is contacted with a third wedge frame 63, a ninth spring 67 is fixedly connected to the first sliding push frame 66, one end of the ninth spring 67 far away from the first sliding push frame 66 is fixedly connected with the support disc 2, a second sliding push frame 68 is slidably connected to the first sliding push frame 66, the second sliding push frame 68 is contacted with the second wedge frame 61, the second wedge frame 61 is used for blocking the second sliding push frame 68, a tenth spring 69 is fixedly connected to the second sliding push frame 68, one end of the tenth spring 69 far away from the second sliding push frame 68 is fixedly connected with the support disc 2, a slotted swing frame 610 is rotatably connected to the rotary frame 43, the slotted swing frame 610 is contacted with the fixed limit frame 65 far away from the support disc 2, and the slotted swing frame 610 is contacted with the first sliding push frame 66, the first sliding and pushing frame 66 is used for pushing the slotted swing frame 610 to swing, the slotted swing frame 610 is also in contact with the second sliding and pushing frame 68, the second sliding and pushing frame 68 is used for pushing the slotted swing frame 610 to swing, the push rod 611 is fixedly connected to the sliding support plate 45, the slotted swing frame 610 is fixedly connected with the first torsion spring 612, one end of the first torsion spring 612 far away from the slotted swing frame 610 is fixedly connected with the rotating frame 43, the slotted swing frame 610 is in sliding fit with the push rod 611, the sliding support plate 45 is fixedly connected with the ratchet rack 613, the pawl 614 is rotatably connected to the rotating frame 43, the pawl 614 is in contact with the ratchet rack 613, the pawl 614 is used for clamping the ratchet rack 613, and the second torsion spring 615 is connected between the pawl 614 and the rotating frame 43.
The reset assembly 7 includes a first pushing frame 71, an eleventh spring 72, a supporting column 73, a second pushing frame 74 and a twelfth spring 75, the sliding support plate 45 is slidably connected to the first pushing frame 71, the first pushing frame 71 is used for pushing the first sliding pushing frame 66 and the second sliding pushing frame 68, the eleventh spring 72 is fixedly connected to the bottom surface of the first pushing frame 71, one end of the eleventh spring 72 is fixedly connected to the sliding support plate 45, the supporting column 73 is fixedly connected to the rotating frame 43, the supporting column 73 is slidably connected to the second pushing frame 74, the second pushing frame 74 is used for pushing the pawl 614 to swing, the second pushing frame 74 is further used for pushing the first pushing frame 71 to move downwards, the second pushing frame 74 is slidably connected to the first pushing frame 71, and the twelfth spring 75 is connected between the second pushing frame 74 and the rotating frame 43.
When the candy particles are required to be spread on the surface of a cake, a user places the candy particles in the sieve frame 413, then places a cake plate on the disk frame 51, when the cake plate is small, the cake plate is just placed on the disk frame 51, the gravity on the disk frame 51 is increased, so that the cake plate presses the disk frame 51 to move downwards, the fourth spring 52 is compressed, when the cake plate is medium, the cake plate is placed on the disk frame 51 and the first annular frame 53, the cake plate presses the disk frame 51 and the first annular frame 53 to move downwards, the fourth spring 52 and the fifth spring 54 are compressed, the first wedge-shaped block 55 pushes the second wedge-shaped frame 61 to move away from the fixed limiting frame 65, the seventh spring 62 is compressed, the second wedge-shaped frame 61 does not block the second sliding pushing frame 68 any more, the tenth spring 69 in a stretching state is reset to drive the second sliding pushing frame 68 to move upwards, the second sliding pushing frame 68 moves upwards to push the slotted swinging frame 610 to swing, the first torsion spring 612 is compressed, the slotted swing frame 610 pushes the push rod 611 to move away from the rotating frame 43, so that the center of the sliding support plate 45 and the device thereon is deviated from the center of the cake plate, the ratchet rack 613 pushes the pawl 614 to swing, the second torsion spring 615 is compressed, and then the compressed second torsion spring 615 is reset to drive the pawl 614 to swing and reset, so that the pawl 614 catches the ratchet rack 613.
When the cake dish is large, the cake dish can press the second annular frame 56 to move downwards, the second wedge-shaped block 58 can push the third wedge-shaped frame 63 to move towards the direction away from the fixed limiting frame 65, the eighth spring 64 is compressed, the third wedge-shaped frame 63 does not block the first sliding pushing frame 66 any more, the ninth spring 67 in a stretching state resets to drive the first sliding pushing frame 66 to move upwards, the upward movement distance of the first sliding pushing frame 66 is greater than the upward movement distance of the second sliding pushing frame 68, the first sliding pushing frame 66 pushes the slotted swinging frame 610 to swing, therefore, the swinging amplitude of the slotted swinging frame 610 is increased, the distance between the circle center of the sliding support plate 45 and the circle center of the device thereon is greater than the distance between the circle center of the cake dish and the circle center of the second sliding pushing frame 68, and the equipment can scatter the crushed candy on the cake surfaces in the cake dishes with different sizes.
After the adjustment is completed, the user manually starts the motor 41, the output shaft of the motor 41 drives the hole opening shaft 42 to rotate clockwise, the hole opening shaft 42 drives the rotating frame 43 to rotate, the rotating frame 43 drives the sliding support plate 45 and the upper device thereof to rotate, when the slotted frame 49 and the support frame 1 are contacted with each other, the support frame 1 pushes the slotted frame 49 to move downwards, the second spring 410 is compressed, the slotted frame 49 pushes the clamping column 48 to move downwards, so that the swinging plate 47 swings downwards, the swinging plate 47 does not block the screen frame 413 any more, the candy particles in the screen frame 413 fall to the surface of the cake, the slotted frame 49 moves downwards to push the first wedge frame 411 to move away from the screen frame 413, the third spring 412 is stretched, then the slotted frame 49 is separated from the first wedge frame 411, the stretched third spring 412 is reset to drive the first wedge frame 411 to move towards the direction close to the screen frame 413, the first wedge frame 411 blocks the slotted frame 49, after the slotted frame 49 is separated from the supporting frame 1, the swinging plate 47 is always in a downward swinging state, the sliding supporting plate 45 continues to drive the sieve frame 413 to rotate, the sieve frame 413 rotates to uniformly scatter the crushed candy particles on the surface of the cake, and when the crushed candy particles on the surface of the cake reach a certain amount, a user manually presses the closing button on the second pushing frame 74, so that the motor 41 stops operating.
After the cake counting tray is used, the cake counting tray is taken away from the disc frame 51, the fourth spring 52, the fifth spring 54 and the sixth spring 57 in the compressed state are all reset, so that the disc frame 51, the first annular frame 53 and the second annular frame 56 all move upwards and reset, the second wedge-shaped block 58 is separated from the third wedge-shaped frame 63, the compressed eighth spring 64 resets to drive the third wedge-shaped frame 63 to move towards the direction close to the fixed limiting frame 65, the first wedge-shaped block 55 is separated from the second wedge-shaped frame 61, and the compressed seventh spring 62 moves towards the direction close to the fixed limiting frame 65. Then, the user manually presses the second pushing frame 74 downwards, the eleventh spring 72 is compressed, the second pushing frame 74 pushes the first pushing frame 71 to move downwards, the twelfth spring 75 is compressed, the first pushing frame 71 pushes the first wedge frame 411 to move away from the screen frame 413, the third spring 412 is stretched, the first wedge frame 411 no longer clamps the slotting frame 49, the compressed second spring 410 is reset to drive the slotting frame 49 to move upwards, the slotting frame 49 drives the clamping columns 48 to move upwards, and the swinging plate 47 swings upwards to block the screen frame 413. The second pushing frame 74 moves downward to push the pawl 614 to swing, the second torsion spring 615 is compressed, the pawl 614 no longer catches the ratchet rack 613, meanwhile, the first pushing frame 71 pushes the first sliding pushing frame 66 and the second sliding pushing frame 68 downward, the first sliding pushing frame 66 and the second sliding pushing frame 68 are separated from the slotted swinging frame 610, the compressed first torsion spring 612 resets to drive the slotted swinging frame 610 to swing and reset, the first sliding pushing frame 66 and the second sliding pushing frame 68 move downward, the ninth spring 67 and the tenth spring 69 are stretched, the first sliding pushing frame 66 pushes the third wedge frame 63 to move away from the fixed limiting frame 65, the eighth spring 64 is compressed, the second sliding pushing frame 68 pushes the second wedge frame 61 to move away from the fixed limiting frame 65, the seventh spring 62 is compressed, and then the compressed seventh spring 62 resets to drive the second wedge frame 61 to move towards the fixed limiting frame 65, the second wedge frame 61 clamps the second sliding push frame 68, the compressed eighth spring 64 resets to drive the third wedge frame 63 to move and reset towards the direction close to the fixed limiting frame 65, and the third wedge frame 63 clamps the first sliding push frame 66. Finally, the second pushing frame 74 is released, the first pushing frame 71 is separated from the first wedge frame 411, the stretched third spring 412 is reset to drive the first wedge frame 411 to move towards the direction close to the screen frame 413, the compressed eleventh spring 72 is reset to drive the first pushing frame 71 and the devices thereon to move upwards and reset, so that the second pushing frame 74 moves upwards and is not contacted with the pawl 614 any more, the compressed second torsion spring 615 drives the pawl 614 to swing and reset, and the pawl 614 clamps the ratchet rack 613 again.
Example 2
Based on the embodiment 1, as shown in fig. 11, the cake pastry machine further includes a vibrating assembly 8, the vibrating assembly 8 is used for vibrating the sieve frame 413 up and down to shake the candy pieces evenly on the surface of the cake, the vibrating assembly 8 is arranged on the support frame 1, the vibrating assembly 8 includes a support cylinder 81 and a protrusion 82, the support cylinder 81 is fixedly connected to the support frame 1, the support cylinder 81 is in contact with the rotating frame 43, the protrusion 82 is fixedly connected to the bottom surface of the support cylinder 81 in a distributed manner, and the protrusion 82 is used for pushing the rotating frame 43 and the upper device thereof to move downwards.
When the opening shaft 42 drives the rotating frame 43 and the upper device to rotate, the bump 82 pushes the rotating frame 43 and the upper device to move downwards, the first spring 44 is compressed, the rotating frame 43 continues to rotate and is separated from the bump 82, the compressed first spring 44 resets to drive the rotating frame 43 and the upper device to move upwards and reset, the opening shaft 42 continuously drives the rotating frame 43 and the upper device to rotate, the rotating frame 43 and the upper device shake up and down in a reciprocating mode, and the sieve frame 413 shakes up and down in a reciprocating mode to enable the crushed candy particles to be uniformly scattered on the surface of the cake.
The foregoing shows and describes the general principles and broad features of the present invention and advantages thereof. It will be understood by those skilled in the art that the present invention is not limited to the embodiments described above, which are described in the specification and illustrated only to illustrate the principle of the present invention, but that various changes and modifications may be made therein without departing from the spirit and scope of the present invention, which fall within the scope of the invention as claimed. The scope of the invention is defined by the appended claims and equivalents thereof.

Claims (6)

1. The utility model provides a can carry out unrestrained device of candy bits to not cake of equidimension, characterized by: including support frame (1), supporting disk (2), first backup pad (3), spill material subassembly (4), big or small test subassembly (5), spill adjusting part (6) and reset assembly (7), the rigid coupling has supporting disk (2) on support frame (1), the same rigid coupling of first backup pad (3) is on support frame (1), spill on material subassembly (4) locate support frame (1), big or small test subassembly (5) sliding connection is on first backup pad (3), be equipped with on supporting disk (2) and spill adjusting part (6), reset assembly (7) are located and are spilt on material subassembly (4).
2. The device for sprinkling the candy crumbs of the pastries with different sizes as claimed in claim 1, wherein: the spreading component (4) comprises a motor (41), a hole-opening shaft (42), a rotating frame (43), a first spring (44), a sliding support plate (45), a second support plate (46), a swinging plate (47), a clamping column (48), a slotting frame (49), a second spring (410), a first wedge-shaped frame (411), a third spring (412) and a screen frame (413), wherein the motor (41) is fixedly installed at the top of the support frame (1), the hole-opening shaft (42) is fixedly connected to an output shaft of the motor (41), the hole-opening shaft (42) is rotatably connected with the support frame (1), the rotating frame (43) is slidably connected to the hole-opening shaft (42), the first spring (44) is fixedly connected to the rotating frame (43), one end of the first spring (44) is fixedly connected to the hole-opening shaft (42), the sliding support plate (45) is slidably connected to the rotating frame (43), the second support plate (46) is fixedly connected to the bottom surface of the sliding support, swing plates (47) are rotatably connected to the second supporting plate (46), adjacent swing plates (47) are in contact with each other, clamping columns (48) are fixedly connected to the swing plates (47), slotting frames (49) are slidably connected to the sliding supporting plate (45), the slotting frames (49) are in sliding fit with the clamping columns (48), second springs (410) are fixedly connected to the slotting frames (49), one ends of the second springs (410) are fixedly connected to the sliding supporting plate (45), the first wedge frames (411) are slidably connected to the sliding supporting plate (45), third springs (412) are fixedly connected to the first wedge frames (411), one ends of the third springs (412) are fixedly connected to the sliding supporting plate (45), the screen frames (413) are fixedly connected to the sliding supporting plate (45), and the screen frames (413) are in contact with the swing plates (47).
3. The device for sprinkling the candy crumbs of the pastries with different sizes as claimed in claim 2, wherein: the size testing component (5) comprises a disc frame (51), a fourth spring (52), a first annular frame (53), a fifth spring (54), a first wedge-shaped block (55), a second annular frame (56), a sixth spring (57) and a second wedge-shaped block (58), the disc frame (51) is connected to the first supporting plate (3) in a sliding manner, the fourth spring (52) is fixedly connected to the disc frame (51), one end of the fourth spring (52) is fixedly connected to the first supporting plate (3), the first annular frame (53) is also connected to the first supporting plate (3) in a sliding manner, the first annular frame (53) is in mutual contact with the disc frame (51), a pair of fifth springs (54) is fixedly connected to the first annular frame (53), one end of the fifth spring (54) is fixedly connected to the first supporting plate (3), the first wedge-shaped block (55) is fixedly connected to the bottom end of the first annular frame (53), and the second annular frame (56) is also connected to the first supporting plate (3) in a sliding manner, the second annular frame (56) is in contact with the first annular frame (53), the second annular frame (56) is in sliding connection with the supporting disc (2), a pair of sixth springs (57) is fixedly connected to the second annular frame (56), one end of each sixth spring (57) is fixedly connected with the first supporting plate (3), and a second wedge-shaped block (58) is fixedly connected to the bottom end of the second annular frame (56).
4. The device for sprinkling the candy crumbs of the pastries with different sizes as claimed in claim 3, wherein: the scattering and adjusting assembly (6) comprises a second wedge-shaped frame (61), a seventh spring (62), a third wedge-shaped frame (63), an eighth spring (64), a fixed limiting frame (65), a first sliding pushing frame (66), a ninth spring (67), a second sliding pushing frame (68), a tenth spring (69), a slotting swinging frame (610), a push rod (611), a first torsion spring (612), a ratchet rack (613), a pawl (614) and a second torsion spring (615), wherein the second wedge-shaped frame (61) is connected to the first supporting plate (3) in a sliding manner, the second wedge-shaped frame (61) is in mutual contact with the first wedge-shaped block (55), the seventh spring (62) is fixedly connected to the second wedge-shaped frame (61), one end of the seventh spring (62) is fixedly connected to the first supporting plate (3), the third wedge-shaped frame (63) is connected to the first supporting plate (3) in a sliding manner, and the third wedge-shaped frame (63) is in mutual contact with the second wedge-shaped block (58), an eighth spring (64) is fixedly connected to the third wedge frame (63), one end of the eighth spring (64) is fixedly connected with the first supporting plate (3), a fixed limiting frame (65) is fixedly connected to the bottom surface of the supporting plate (2), a first sliding push frame (66) is slidably connected to the fixed limiting frame (65), the first sliding push frame (66) and the third wedge frame (63) are in contact with each other, a ninth spring (67) is fixedly connected to the first sliding push frame (66), one end of the ninth spring (67) is fixedly connected to the supporting plate (2), a second sliding push frame (68) is slidably connected to the first sliding push frame (66), the second sliding push frame (68) is in contact with the second wedge frame (61), a tenth spring (69) is fixedly connected to the second sliding push frame (68), one end of the tenth spring (69) is fixedly connected to the supporting plate (2), a slotted swing frame (43) is rotatably connected to the slotted swing frame (610), the slotted swing frame (610) is in mutual contact with the fixed limiting frame (65), the slotted swing frame (610) is in mutual contact with the first sliding pushing frame (66), the slotted swing frame (610) is also in mutual contact with the second sliding pushing frame (68), the push rod (611) is fixedly connected to the sliding support plate (45), the slotted swing frame (610) is fixedly connected with a first torsion spring (612), one end of the first torsion spring (612) is fixedly connected with the rotating frame (43), the slotted swing frame (610) is in sliding fit with the push rod (611), the sliding support plate (45) is fixedly connected with a ratchet rack (613), the pawl (614) is rotatably connected to the rotating frame (43), the pawl (614) is in mutual contact with the ratchet rack (613), and the second torsion spring (615) is connected between the pawl (614) and the rotating frame (43).
5. The device for sprinkling the candy crumbs of the pastries with different sizes as claimed in claim 4, wherein: the reset assembly (7) comprises a first pushing frame (71), an eleventh spring (72), a supporting column (73), a second pushing frame (74) and a twelfth spring (75), wherein the sliding supporting plate (45) is connected with the first pushing frame (71) in a sliding mode, the bottom surface of the first pushing frame (71) is fixedly connected with the eleventh spring (72), one end of the eleventh spring (72) is fixedly connected with the sliding supporting plate (45), the supporting column (73) is fixedly connected onto the rotating frame (43), the supporting column (73) is connected with the second pushing frame (74) in a sliding mode, the second pushing frame (74) is connected with the first pushing frame (71) in a sliding mode, and the twelfth spring (75) is connected between the second pushing frame (74) and the rotating frame (43).
6. The device for sprinkling the candy crumbs of the pastries with different sizes as claimed in claim 5, wherein: still including vibration subassembly (8), on support frame (1) was located in vibration subassembly (8), vibration subassembly (8) including supporting drum (81) and lug (82), support drum (81) rigid coupling on support frame (1), support drum (81) and rotating turret (43) contact each other, support drum (81) bottom surface distributing type rigid coupling has lug (82).
CN202110419897.1A 2021-04-19 2021-04-19 Can carry out unrestrained device of candy bits to not cake of equidimension Active CN113115802B (en)

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Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
GB796969A (en) * 1956-01-24 1958-06-25 Baker Perkins Ltd An improved apparatus for stacking biscuits
CN105309534A (en) * 2015-11-29 2016-02-10 中山弗雷德机械有限公司 Automatic powder sprinkling machine for pastry production
CN107455408A (en) * 2017-10-11 2017-12-12 顾亚明 A kind of biscuit material-strewing device
CN212697454U (en) * 2020-06-15 2021-03-16 胡娟 Material scattering device for production
CN112493357A (en) * 2020-12-03 2021-03-16 曾福林 Device for sprinkling various nuts on ice cream surfaces with different weights

Patent Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
GB796969A (en) * 1956-01-24 1958-06-25 Baker Perkins Ltd An improved apparatus for stacking biscuits
CN105309534A (en) * 2015-11-29 2016-02-10 中山弗雷德机械有限公司 Automatic powder sprinkling machine for pastry production
CN107455408A (en) * 2017-10-11 2017-12-12 顾亚明 A kind of biscuit material-strewing device
CN212697454U (en) * 2020-06-15 2021-03-16 胡娟 Material scattering device for production
CN112493357A (en) * 2020-12-03 2021-03-16 曾福林 Device for sprinkling various nuts on ice cream surfaces with different weights

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