A reciprocating food processing fabric device

By designing the starter components, limiting components and collection components of the reciprocating food processing cloth device, the problem of sesame granules being mixed into other batches of products is solved, and the automated transportation and efficient production of hamburger bread slices are realized, and the accuracy of production inspection is improved.

CN120039675BActive Publication Date: 2025-07-22CHENGDU CHUANYI MASCH CO LTD
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Patent Information

Application Number
CN202510505550.7
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-04-22
Publication Date
2025-07-22
Estimated Expiration
2045-04-22

AI Technical Summary

Technical Problem

When the existing food processing cloth device conveys hamburger bread slices, sesame granules are prone to fall off and mixed into other batches of products, resulting in inaccurate product ingredient labels, affecting product quality and production inspection accuracy.

Method used

A reciprocating food processing cloth device is designed to realize the screening and peeling and automatic collection of sesame granules through the combination of starter components, limiting components and collection components, avoid sesame granules being mixed into other batches of products, and to realize the automatic transportation and collection of hamburger bread slices through transmission components.

Benefits of technology

It effectively avoids sesame granules being mixed into other batches of products, improves the delivery efficiency of hamburger bread slices and the accuracy of production detection, reduces the amount of manual labor, and realizes the automated production of hamburger bread slices.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention relates to the technical field of cloth devices, and particularly to a reciprocating food processing cloth device, which includes a cloth machine body. A starting component for filtering sesame seeds on the hamburger bun is provided on the first connecting block. A transmission component is provided on the bearing plate. A collection component is provided on the placement plate. A limiting component is provided on the second positioning block. Two fixing components are provided at positions corresponding to the two limiting strips on the positioning plate. A linkage component for triggering the collection component is provided on the top of the placement plate. Through the combined use of the starting component and the limiting component, when conveying the hamburger dough sheets, the sesame seed particles that fall can be screened and peeled off through the cooperation of the inclined column and the twisting block, thereby avoiding the situation that the residual sesame seeds in the hamburger bread are mixed into other batches of products, resulting in inaccurate product ingredient labels, improving the conveying efficiency of the hamburger bread, and avoiding the residual sesame seed particles from affecting the overall quality of the hamburger bread, thus affecting the accuracy of production inspection.
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Description

Technical Field

[0001] The present invention relates to the technical field of fabric devices, and particularly to a reciprocating food processing fabric device. Background Art

[0002] A food processing fabric device is a mechanical device used to evenly distribute materials into processing equipment. When the food processing fabric device conveys a batch of bread slices used for making hamburgers, since the bread slices used for making hamburgers are usually dotted with some sesame seeds to improve the taste of the hamburger, the dotted sesame seeds need to be diluted with honey and water, and then evenly applied on the bread slices with a brush or a small spray bottle, and then sesame seeds are sprinkled. The sesame seeds are adhered to the hamburger bread through the honey water. When the hamburger bread is conveyed on the fabric device, since the fabric device itself needs to drive an eccentric wheel or a vibrator through a motor to generate vibration to move the materials on the platform, when the fabric device vibrates and conveys, due to the weak viscosity of the honey water, the sesame seeds on the hamburger bread will fall and remain on the machine. When the remaining sesame seeds are mixed into other batches of products, it will cause the product ingredient label to be inaccurate and affect the product quality. Summary of the Invention

[0003] In order to overcome the deficiencies of the prior art, the present invention provides a reciprocating food processing fabric device.

[0004] To solve the above technical problems, the present invention provides the following technical solutions: It includes a fabric machine body, and two legs are correspondingly fixedly connected to the outside of the fabric machine body. Two connecting bars are correspondingly fixedly connected to the two legs. A bearing bar is provided between the two connecting bars, and both connecting bars are fixedly connected to the bearing bar. A first connecting block is provided on one side of the bearing bar. An activation component for filtering sesame seeds on the hamburger bun is provided on the first connecting block. An inclined plate and an inclined column for promoting the twisting effect are provided inside the activation component. With the cooperation of the inclined plate and the inclined column, the strength of filtering sesame seeds on the hamburger bun can gradually increase with the distance. A placement plate is fixedly connected to the top of the bearing bar. A collection component for collecting the hamburger buns is provided on the placement plate. Two fitting pieces for collecting the hamburger bread slices and conveying them to the next link are provided inside the collection component. A bearing plate is fixedly connected to the side of the bearing bar away from the first connecting block. A transmission component for providing power is provided on the bearing plate. A transmission shaft and a double-headed gear column for transmitting power to the whole device are provided in the transmission component, and the transmission shaft can provide the same power for the cooperation of the two fitting pieces to achieve closing and opening.

[0005] The starting component includes: an inclined plate, an inclined column, a rotating piece, a bearing column, a first positioning block, a U-shaped strip, a twisting block, a rubber ring, and a single-headed gear column; among them, a bearing is provided on the first connecting block, the single-headed gear column is fixedly connected to the inner ring of the bearing on the first connecting block, the end of the single-headed gear column away from the gear is fixedly connected to the inclined plate, the end of the inclined plate away from the single-headed gear column is fixedly connected to the inclined column, the end of the inclined column away from the inclined plate is fixedly connected to the rotating piece, a bearing is provided on the first positioning block, the bearing column is fixedly connected to the inner ring of the bearing on the first positioning block, the end of the rotating piece away from the inclined column is fixedly connected to the bearing column, a rubber ring is fixed inside the twisting block, the rubber ring is sleeved on the inclined column, a support strip is provided on one side of the first positioning block, there are two support strips in total, the support strip is fixedly connected to the first positioning block, and the end of the support strip away from the first positioning block is fixedly connected to the second positioning block. The U-shaped strip is in a U shape and is fixedly connected to the twisting block. A limiting component for limiting the starting component is provided on the second positioning block;

[0006] The limiting component includes: a placing piece, an anti-detachment column, a movable column, a moving block, and a second connecting block; among them, the placing piece is fixedly connected to the bottom of the second positioning block, the two ends of the other support strip are respectively fixedly connected to the first connecting block and the second connecting block, the two ends of the anti-detachment column are respectively fixedly connected to the second connecting block and the placing piece, a bearing is provided on the second connecting block, the movable column is fixedly connected to the inner ring of the bearing on the second connecting block, the end of the movable column away from the second connecting block is fixedly connected to the second positioning block, the moving block is sleeved on the movable column, a round hole corresponding to the anti-detachment column is provided at the bottom of the moving block, the anti-detachment column passes through the round hole on the moving block, and the moving block is fixedly connected to the U-shaped strip. A positioning plate is inserted into the U-shaped strip, two limiting strips are fixedly connected correspondingly on the positioning plate, a filtering chassis is fixedly connected to the top of the positioning plate, four filtering plates are correspondingly provided on the top of the filtering chassis, the four filtering plates are fixedly connected correspondingly, a number of round holes for filtering sesame grains are provided on both the four filtering plates and the filtering chassis, and the bottom of each filtering plate is fixedly connected to the positioning plate. Two fixing components for fixing the positioning plate are provided at the positions corresponding to the two limiting strips on the positioning plate;

[0007] Each fixing component includes: a positioning shell, a telescopic column, a spring, a positioning piece, a bolt and a nut; wherein, the positioning shell is fixedly connected to the positioning plate, and the positioning shell corresponds to the limiting strip. There is a spring inside the positioning shell, the spring is sleeved on the telescopic column, and the two ends of the spring are fixedly connected to the top inner wall of the positioning shell and the positioning piece respectively. The positioning piece is fixedly connected to the telescopic column. There is a plugging hole corresponding to the telescopic column on the limiting strip, the telescopic column is plugged into the plugging hole of the limiting strip, there are several threaded holes for fixing the bolt on the telescopic column, there are connection holes for bolt connection on the limiting strip, and the bolt is threadedly connected to the limiting strip and the telescopic column. The nut is threadedly connected to the bolt. There are two telescopic holes on the filter chassis, and the positions of the two telescopic holes correspond to the two telescopic columns.

[0008] Preferably, through the coordinated use of the starting component, the limiting component and the fixing component, when it is necessary to convey the hamburger bread slices, insert the positioning plate into the U-shaped strip, press the two telescopic columns to move towards the position of the limiting strip, and then the movement of the two telescopic columns drives the spring to stretch. When the telescopic columns enter the corresponding positions of the limiting strip, rotate the bolt, and then the bolt fixes the telescopic columns inside the limiting strip. Rotate the nut to fix the bolt. When a batch of hamburger bread slices enter the inside of the filter chassis, rotate the inclined plate. Then, when the inclined plate rotates, it drives the inclined column to rotate. When the inclined column rotates, it drives the rotating piece to rotate. When the rotating piece rotates, it drives the twisting block on the rotating piece to twist. Then, while the twisting block is twisting, it drives the filter chassis on the twisting block to move towards the position of the second positioning block. While the twisting block is moving, it drives the moving block along the movable column and the anti-detachment column towards the second positioning block through the U-shaped strip. When the positioning plate gets closer and closer to the direction of the first positioning block, due to the increasing inclination of the inclined column, the larger the twisting amplitude of the twisting block is when it is closer to the position of the first positioning block. When the twisting block twists to the position of the first positioning block, the hamburger bread slices inside the filter chassis are unloaded to the placement boxes on both sides in the twisting state of the twisting block. Then, the inclined column rotates in the reverse direction to drive the twisting block to reciprocate towards the direction of the first connecting block. When it is necessary to clean the filter chassis, rotate the nut, and then the nut releases the threaded connection state with the bolt, pull out the bolt, and then the bolt releases the limiting effect on the telescopic column. The spring rebounds and resets to drive the telescopic column to reset, and then remove the positioning plate to clean the filter chassis.

[0009] As a preferred technical solution of the present invention, the collection assembly on the placement plate includes: two support columns, two S-shaped bars, two limiting columns, two rotating columns, two transmission gears, two fitting pieces and a placement frame; wherein, two limiting columns are fixedly connected corresponding to one end of the placement plate away from the bearing bar, a rotating column is movably connected to the top of each limiting column, two transmission gears are fixedly connected to the two rotating columns, two fitting pieces are fixedly connected to the two rotating columns, two support columns are fixedly connected to the placement plate corresponding to each other, an S-shaped bar is fixedly connected to each support column, the tops of the two support columns are fixedly connected to the placement frame, one end of each of the two S-shaped bars away from the support column is fixedly connected to the placement frame, a falling object hole corresponding to the two fitting pieces is provided on the placement frame, and the two fitting pieces correspond to the falling object hole on the placement frame. The transmission assembly includes: a transmission shaft, a double-headed gear column, a machine housing and a stepping motor; wherein, a bearing is provided on the bearing plate, the transmission shaft is fixedly connected to the inner ring of the bearing on the bearing plate, the double-headed gear column is movably connected to the bearing bar, and the two ends of the double-headed gear column are respectively meshed with the single-headed gear column and the transmission shaft. The machine housing is fixedly connected to the bottom of the bearing plate, the stepping motor is arranged inside the machine housing, and the output shaft of the stepping motor is fixedly connected to the transmission shaft. A linkage assembly for triggering the collection assembly is provided on the top of the placement plate;

[0010] The linkage assembly includes: a rotating disk, a fixed column, a limiting frame, a round hole block, a translation column, a translation plate and a plurality of tooth blocks; wherein, a bearing is provided at one end of the placement plate away from the support column, the transmission shaft is fixedly connected to the inner ring of the bearing on the placement plate, the top of the transmission shaft is fixedly connected to the rotating disk, the fixed column is fixedly connected to the rotating disk, the round hole block is fixedly connected to the top of the placement plate, the translation column penetrates through the round hole block, one end of the translation column close to the rotating disk is fixedly connected to the limiting frame, an activity groove for the fixed column to move is provided on the limiting frame, and the fixed column is inserted into the activity groove of the fixed column. One end of the translation column away from the limiting frame is fixedly connected to the translation plate, a plurality of tooth blocks are fixedly connected to the outer side of the translation plate, and the plurality of tooth blocks are meshed with the two transmission gears. When the rotating disk on the rotating disk moves to the maximum distance close to the round hole block, the plurality of tooth blocks on the translation plate drive the two meshed transmission gears to make the two fitting pieces on the rotating column fit together.

[0011] Preferably, through the combined use of the collection component and the linkage component, when the hamburger buns on the main body of the cloth feeder are transported to the placement frame and reach the specified quantity, the stepping motor is started. Then, the rotation of the stepping motor drives the transmission shaft to rotate. When the transmission shaft rotates, it drives the fixed column to rotate away from the round hole block. Further, the fixed column drives the translation column to move towards the round hole block through the limit frame. Then, the translation column drives the translation plate to move towards the round hole block. When the translation plate moves, it drives the two transmission gears to rotate through the tooth block. When the two transmission gears rotate, they drive the two attached fitting pieces to open. Further, when the two fitting pieces open, the hamburger buns on the fitting pieces fall into the filter chassis. Then, when it is necessary to collect the second batch of hamburger buns, the stepping motor drives the translation plate to reset. Further, the reset of the translation plate drives the fitting pieces on the rotating column to reset and fit. When the casing rotates, it drives the single-headed gear column to rotate through the double-headed gear column. When the single-headed gear column rotates, it drives the inclined plate to rotate.

[0012] Compared with the prior art, the beneficial effects that the present invention can achieve are as follows:

[0013] 1. Through the combined use of the starting component and the limiting component, when transporting the hamburger dough pieces, through the cooperation of the inclined column and the twisting block, the dropped sesame grains can be screened and peeled off, thereby avoiding the situation that the remaining sesame in the hamburger buns is mixed into other batches of products, resulting in inaccurate product ingredient labels, improving the transportation efficiency of the hamburger buns, and avoiding the influence of the remaining sesame grains on the overall quality of the hamburger buns, thus affecting the accuracy of production inspection.

[0014] 2. Through the combined use of the collection component and the linkage component, when transporting the hamburger buns, through the cooperation of the fitting pieces and the rotating disk, the hamburger buns of the same batch can be collected and automatically transferred to the next link after collection, effectively reducing the number of times of manual contact with the hamburger buns and reducing the workload of manual labor.

[0015] 3. Through the combined use of the starting component, the limiting component and the linkage component, when transporting the hamburger buns, through the cooperation of the double-headed gear column and the single-headed gear column, the automation of the cyclic operation of collecting the hamburger buns and cleaning the sesame grains is realized, improving the efficiency of production inspection of the hamburger buns. BRIEF DESCRIPTION OF THE DRAWINGS

[0016] Figure 1 is a schematic structural diagram of the present invention;

[0017] Figure 2 is a schematic structural diagram of the load-bearing strip of the present invention;

[0018] Figure 3 is a schematic structural diagram of the inclined column of the present invention;

[0019] Figure 4 is a schematic structural diagram of the bearing plate of the present invention;

[0020] Figure 5 Schematic diagram of the placement frame structure of the present invention;

[0021] Figure 6 Schematic diagram of the twisting block structure of the present invention;

[0022] Figure 7 Schematic diagram of the moving block structure of the present invention;

[0023] Figure 8 Schematic diagram of the rubber ring structure of the present invention;

[0024] Figure 9 Schematic diagram of the filter chassis structure of the present invention;

[0025] Figure 10 Schematic diagram of the telescopic column structure of the present invention

[0026] Figure 11 Schematic diagram of the fitting piece structure of the present invention;

[0027] Figure 12 Schematic diagram of the translation plate structure of the present invention.

[0028] Wherein: 1. Cloth machine body; 2. Legs; 3. Connecting strip; 4. Bearing strip; 5. Placing plate; 6. First connecting block; 7. Tilt plate; 8. Tilt column; 9. Rotating piece; 10. Bearing column; 11. First positioning block; 12. Second positioning block; 13. Placing piece; 14. Anti-detachment column; 15. Movable column; 16. Moving block; 17. Second connecting block; 18. Support strip; 19. U-shaped strip; 20. Twisting block; 21. Rubber ring; 22. Positioning plate; 23. Positioning shell; 24. Limiting strip; 25. Telescopic column; 26. Spring; 27. Positioning piece; 28. Bolt; 29. Nut; 30. Filter chassis; 31. Filter plate; 32. Telescopic hole; 33. Support column; 34. S strip; 35. Limiting column; 36. Rotating column; 37. Transmission gear; 38. Fitting piece; 39. Placing frame; 40. Bearing plate; 41. Transmission shaft; 42. Double-headed gear column; 43. Single-headed gear column; 44. Rotating disk; 45. Fixed column; 46. Limiting frame; 47. Round hole block; 48. Translation column; 49. Translation plate; 50. Tooth block; 51. Machine shell; 52. Stepper motor. Detailed implementation manners

[0029] In order to make the technical means, creative features, achieved purposes and effects realized by the present invention easy to understand, the present invention will be further described below in conjunction with specific embodiments. However, the following embodiments are only the preferred embodiments of the present invention, not all of them. Based on the embodiments in the implementation manners, other embodiments obtained by those skilled in the art without making creative efforts all fall within the protection scope of the present invention. The experimental methods in the following embodiments are all conventional methods unless otherwise specified. The materials, reagents, etc. used in the following embodiments can all be obtained from commercial channels unless otherwise specified.

[0030] Embodiment: As Figure 1 , Figure 2 , Figure 3 and Figure 4 shown, a reciprocating food processing fabricating device includes a fabricating machine body 1. Two legs 2 are fixedly connected correspondingly to the outside of the fabricating machine body 1. Two connecting bars 3 are fixedly connected correspondingly to the two legs 2. A bearing bar 4 is arranged between the two connecting bars 3. The two connecting bars 3 are both fixedly connected to the bearing bar 4. A first connecting block 6 is arranged on one side of the bearing bar 4. An activation assembly for filtering sesame seeds on the hamburger bun is arranged on the first connecting block 6. An inclined plate 7 and an inclined column 8 for promoting the twisting effect are arranged inside the activation assembly. With the cooperation of the inclined plate 7 and the inclined column 8, the strength of filtering sesame seeds on the hamburger bun can increase gradually with the distance. A placement plate 5 is fixedly connected to the top of the bearing bar 4. A collection assembly for collecting the hamburger buns is arranged on the placement plate 5. Two fitting pieces 38 for collecting the hamburger bread slices and conveying them to the next step are arranged inside the collection assembly. A bearing plate 40 is fixedly connected to the side of the bearing bar 4 away from the first connecting block 6. A transmission assembly for providing power is arranged on the bearing plate 40. A transmission shaft 41 and a double-headed gear column 42 for transmitting power to the whole device are arranged in the transmission assembly. The transmission shaft 41 can provide the same power for the cooperation of the two fitting pieces 38 to achieve closing and opening.

[0031] As Figure 1 , Figure 2 , Figure 3 and Figure 4As shown, when the hamburger slices on the fabricating machine body 1 are conveyed to the placing frame 39 and reach the specified quantity, the stepping motor 52 is started. Then, the rotation of the stepping motor 52 drives the transmission shaft 41 to rotate. When the transmission shaft 41 rotates, it drives the fixed column 45 to rotate in a direction away from the round hole block 47. Further, the fixed column 45 drives the translation column 48 to move towards the round hole block 47 through the limiting frame 46. Then, the translation column 48 drives the translation plate 49 to move towards the round hole block 47. When the translation plate 49 moves, it drives the two transmission gears 37 to rotate through the tooth block 50. When the two transmission gears 37 rotate, they drive the two fitting pieces 38 in contact to open. Then, when the two fitting pieces 38 open, the hamburger slices on the fitting pieces 38 fall into the filtering chassis 30.

[0032] As Figure 1 , Figure 2 , Figure 3 , Figure 7 and Figure 8 As shown, the starting component includes: an inclined plate 7, an inclined column 8, a rotating piece 9, a bearing column 10, a first positioning block 11, a U-shaped strip 19, a twisting block 20, a rubber ring 21, and a single-headed gear column 43. Among them, a bearing is provided on the first connecting block 6, and the single-headed gear column 43 is fixedly connected to the inner ring of the bearing on the first connecting block 6. The end of the single-headed gear column 43 away from the gear is fixedly connected to the inclined plate 7. The end of the inclined plate 7 away from the single-headed gear column 43 is fixedly connected to the inclined column 8. The end of the inclined column 8 away from the inclined plate 7 is fixedly connected to the rotating piece 9. A bearing is provided on the first positioning block 11, and the bearing column 10 is fixedly connected to the inner ring of the bearing on the first positioning block 11. The end of the rotating piece 9 away from the inclined column 8 is fixedly connected to the bearing column 10. A rubber ring 21 is fixed inside the twisting block 20, and the rubber ring 21 is sleeved on the inclined column 8. A support bar 18 is provided on one side of the first positioning block 11. There are two support bars 18 in total. The support bar 18 is fixedly connected to the first positioning block 11. The end of the support bar 18 away from the first positioning block 11 is fixedly connected to the second positioning block 12. The U-shaped strip 19 is in a U shape and is fixedly connected to the twisting block 20. A limiting component for limiting the starting component is provided on the second positioning block 12.

[0033] As Figure 1 , Figure 2 , Figure 3 , Figure 7 and Figure 8As shown, when it is necessary to collect the second batch of hamburger bread slices, the stepping motor 52 drives the translation plate 49 to reset. Furthermore, the reset of the translation plate 49 drives the fitting piece 38 on the rotating column 36 to reset and fit. When the casing 51 rotates, it drives the single-headed gear column 43 to rotate through the double-headed gear column 42. When the single-headed gear column 43 rotates, it drives the inclined plate 7 to rotate, inserts the positioning plate 22 on the U-shaped strip 19, and presses the two telescopic columns 25 to move towards the position of the limiting strip 24.

[0034] As Figure 1 , Figure 2 , Figure 3 , Figure 7 and Figure 8 As shown, the limiting component includes: a placing piece 13, a anti-detachment column 14, a movable column 15, a moving block 16 and a second connecting block 17; wherein, the placing piece 13 is fixedly connected to the bottom of the second positioning block 12, and both ends of another support bar 18 are fixedly connected to the first connecting block 6 and the second connecting block 17 respectively. Both ends of the anti-detachment column 14 are fixedly connected to the second connecting block 17 and the placing piece 13 respectively. A bearing is provided on the second connecting block 17, and the movable column 15 is fixedly connected to the inner ring of the bearing on the second connecting block 17. One end of the movable column 15 away from the second connecting block 17 is fixedly connected to the second positioning block 12. The moving block 16 is sleeved on the movable column 15. A round hole corresponding to the anti-detachment column 14 is provided at the bottom of the moving block 16. The anti-detachment column 14 passes through the round hole on the moving block 16, and the moving block 16 is fixedly connected to the U-shaped strip 19. A positioning plate 22 is inserted on the U-shaped strip 19. Two limiting strips 24 are fixedly connected correspondingly on the positioning plate 22. A filter chassis 30 is fixedly connected to the top of the positioning plate 22. Four filter plates 31 are correspondingly provided on the top of the filter chassis 30. The four filter plates 31 are fixedly connected correspondingly. A number of round holes for filtering sesame grains are provided on both the four filter plates 31 and the filter chassis 30. And the bottom of each filter plate 31 is fixedly connected to the positioning plate 22. Fixed components for fixing the positioning plate 22 are provided at the positions corresponding to the two limiting strips 24 on the positioning plate 22.

[0035] As Figure 1 , Figure 2 , Figure 3 , Figure 7 and Figure 8 As shown, when the two telescopic columns 25 move to drive the spring 26 to stretch, when the telescopic columns 25 enter the position corresponding to the limiting strip 24, rotate the bolt 28. Furthermore, the bolt 28 fixes the telescopic column 25 inside the limiting strip 24, and rotate the nut 29 to fix the bolt 28. When a batch of hamburger bread slices enter the inside of the filter chassis 30, rotate the inclined plate 7. Furthermore, when the inclined plate 7 rotates, it drives the inclined column 8 to rotate. When the inclined column 8 rotates, it drives the rotating piece 9 to rotate. When the rotating piece 9 rotates, it drives the twisting block 20 on the rotating piece 9 to twist.

[0036] As Figure 1 , Figure 2 , Figure 3 , Figure 4 , Figure 5 , Figure 6 , Figure 7 , Figure 8 and Figure 10 shown, each fixed component includes: a positioning shell 23, a telescopic column 25, a spring 26, a positioning piece 27, a bolt 28 and a nut 29; wherein, the positioning shell 23 is fixedly connected to the positioning plate 22, and the positioning shell 23 corresponds to the limiting strip 24. A spring 26 is arranged inside the positioning shell 23. The spring 26 is sleeved on the telescopic column 25. Two ends of the spring 26 are respectively fixedly connected to the top inner wall of the positioning shell 23 and the positioning piece 27. The positioning piece 27 is fixedly connected to the telescopic column 25. A plugging hole corresponding to the telescopic column 25 is arranged on the limiting strip 24. The telescopic column 25 is plugged in the plugging hole of the limiting strip 24. A plurality of threaded holes for fixing the bolt 28 are arranged on the telescopic column 25. A connection hole for connecting the bolt 28 is arranged on the limiting strip 24. And the bolt 28 is in threaded connection with the limiting strip 24 and the telescopic column 25. The nut 29 is in threaded connection with the bolt 28. Two telescopic holes 32 are arranged on the filter chassis 30, and the positions of the two telescopic holes 32 correspond to the two telescopic columns 25.

[0037] As Figure 1 , Figure 2 , Figure 3 , Figure 4 , Figure 5 , Figure 6 , Figure 7 , Figure 8 and Figure 10 shown, when the twisting block 20 twists and at the same time drives the filter chassis 30 on the twisting block 20 to move towards the position of the second positioning block 12, while the twisting block 20 moves, it drives the moving block 16 along the movable column 15 and the anti-disengagement column 14 towards the second positioning block 12 through the U-shaped strip 19.

[0038] As Figure 1 , Figure 2 , Figure 3 , Figure 4 , Figure 5 , Figure 6 , Figure 7 , Figure 8 , Figure 9 and Figure 10As shown in the figure, a reciprocating food processing fabricating device, the collecting assembly on the placing plate 5 includes: two support columns 33, two S-shaped strips 34, two limiting columns 35, two rotating columns 36, two transmission gears 37, two fitting pieces 38 and a placing frame 39; wherein, at one end of the placing plate 5 away from the bearing strip 4, two limiting columns 35 are correspondingly and fixedly connected, the top of each limiting column 35 is movably connected with a rotating column 36, two transmission gears 37 are fixedly connected to the two rotating columns 36, two fitting pieces 38 are correspondingly fixedly connected to the two rotating columns 36, two support columns 33 are correspondingly fixedly connected to the placing plate 5, each support column 33 is fixedly connected with an S-shaped strip 34, the tops of the two support columns 33 are fixedly connected to the placing frame 39, one end of each S-shaped strip 34 away from the support column 33 is fixedly connected to the placing frame 39, a falling object hole corresponding to the two fitting pieces 38 is provided on the placing frame 39, and the two fitting pieces 38 correspond to the falling object hole on the placing frame 39;

[0039] The transmission assembly includes: a transmission shaft 41, a double-headed gear column 42, a machine housing 51 and a stepping motor 52; wherein, a bearing is provided on the bearing plate 40, the transmission shaft 41 is fixedly connected to the inner ring of the bearing on the bearing plate 40, the double-headed gear column 42 is movably connected to the bearing strip 4, and the two ends of the double-headed gear column 42 are respectively meshed with the single-headed gear column 43 and the transmission shaft 41, the machine housing 51 is fixedly connected to the bottom of the bearing plate 40, the stepping motor 52 is arranged inside the machine housing 51, the output shaft of the stepping motor 52 is fixedly connected to the transmission shaft 41, and a linkage assembly for triggering the collecting assembly is provided on the top of the placing plate 5.

[0040] As Figure 1 、 Figure 2 、 Figure 3 、 Figure 4 、 Figure 5 、 Figure 6 、 Figure 7 、 Figure 8 、 Figure 9 and Figure 10 As shown in

[0041] As Figures 1 to 12As shown in the figure, the linkage assembly includes: a rotating disk 44, a fixed column 45, a limiting frame 46, a round hole block 47, a translation column 48, a translation plate 49, and several tooth blocks 50; among them, one end of the placing plate 5 away from the support column 33 is provided with a bearing, the transmission shaft 41 is fixedly connected to the inner ring of the bearing on the placing plate 5, the top of the transmission shaft 41 is fixedly connected to the rotating disk 44, the fixed column 45 is fixedly connected to the rotating disk 44, the round hole block 47 is fixedly connected to the top of the placing plate 5, the translation column 48 passes through the round hole block 47, one end of the translation column 48 close to the rotating disk 44 is fixedly connected to the limiting frame 46, the limiting frame 46 is provided with a moving groove for the movement of the fixed column 45, the fixed column 45 is inserted into the moving groove of the fixed column 45, one end of the translation column 48 away from the limiting frame 46 is fixedly connected to the translation plate 49, several tooth blocks 50 are fixedly connected to the outer side of the translation plate 49, and several tooth blocks 50 are engaged with two transmission gears 37. When the rotating disk 44 on the rotating disk 44 moves to the maximum distance close to the round hole block 47, several tooth blocks 50 on the translation plate 49 drive the two engaged transmission gears 37 to make the two fitting pieces 38 on the rotating column 36 fit together.

[0042] As Figures 1 to 12 shown, when the inclined column 8 rotates in the reverse direction to drive the twisting block 20 to reciprocate towards the direction of the first connecting block 6, when it is necessary to clean the filter chassis 30, rotate the nut 29, and then the nut 29 releases the threaded connection state with the bolt 28, pull out the bolt 28, and then the bolt 28 releases the limiting effect on the telescopic column 25. The spring 26 rebounds and resets to drive the telescopic column 25 to reset, and then remove the positioning plate 22 to clean the filter chassis 30.

[0043] Working principle:

[0044] In the first step, when the hamburger bread slices on the fabricating machine body 1 are conveyed to the placing frame 39 and reach the specified quantity, start the stepping motor 52. Then the stepping motor 52 rotates to drive the transmission shaft 41 to rotate. When the transmission shaft 41 rotates, it drives the fixed column 45 to rotate in the direction away from the round hole block 47. Then the fixed column 45 drives the translation column 48 to move towards the round hole block 47 through the limiting frame 46. Then the translation column 48 drives the translation plate 49 to move towards the round hole block 47. When the translation plate 49 moves, it drives the two transmission gears 37 to rotate through the tooth blocks 50. When the two transmission gears 37 rotate, they drive the two fitting pieces 38 that are in contact to open. Then when the two fitting pieces 38 open, they drive the hamburger bread slices on the fitting pieces 38 to fall into the filter chassis 30.

[0045] In the second step, when it is necessary to collect the second batch of hamburger bread slices, the stepper motor 52 drives the translation plate 49 to reset. Further, the reset of the translation plate 49 drives the fitting piece 38 on the rotating column 36 to reset and fit. When the machine housing 51 rotates, it drives the single-headed gear column 43 to rotate through the double-headed gear column 42. When the single-headed gear column 43 rotates, it drives the inclined plate 7 to rotate, inserts the positioning plate 22 onto the U-shaped strip 19, and presses the two telescopic columns 25 to move towards the position of the limiting strip 24;

[0046] In the third step, when the two telescopic columns 25 move to drive the spring 26 to stretch, when the telescopic column 25 enters the position corresponding to the limiting strip 24, rotate the bolt 28. Further, the bolt 28 fixes the telescopic column 25 inside the limiting strip 24, and rotate the nut 29 to fix the bolt 28. When a batch of hamburger bread slices enter the filter chassis 30, rotate the inclined plate 7. Further, when the inclined plate 7 rotates, it drives the inclined column 8 to rotate. When the inclined column 8 rotates, it drives the rotating piece 9 to rotate. When the rotating piece 9 rotates, it drives the twisting block 20 on the rotating piece 9 to twist;

[0047] In the fourth step, when the twisting block 20 twists, it drives the filter chassis 30 on the twisting block 20 to move towards the position of the second positioning block 12. While the twisting block 20 moves, it drives the moving block 16 along the movable column 15 and the anti-disengagement column 14 towards the second positioning block 12 through the U-shaped strip 19;

[0048] In the fifth step, when the positioning plate 22 gets closer and closer to the first positioning block 11, due to the increasing inclination of the inclined column 8, the larger the amplitude of the twist of the twisting block 20 is when it gets closer to the position of the first positioning block 11. When the twisting block 20 twists to the position of the first positioning block 11, the twisting block 20 unloads the hamburger bread slices inside the filter chassis 30 into the placement boxes on both sides in the twisting state;

[0049] In the sixth step, when the inclined column 8 rotates in the reverse direction to drive the twisting block 20 to reciprocate towards the direction of the first connecting block 6, when it is necessary to clean the filter chassis 30, rotate the nut 29. Further, the nut 29 releases the threaded connection state with the bolt 28, pull out the bolt 28. Further, the bolt 28 releases the limiting effect on the telescopic column 25, and the spring 26 rebounds and resets to drive the telescopic column 25 to reset. Further, remove the positioning plate 22 to clean the filter chassis 30.

[0050] The embodiments of the present invention have been described in detail above with reference to the accompanying drawings. However, the present invention is not limited to this. Various changes can be made without departing from the spirit of the present invention within the knowledge of those skilled in the art to which the present invention pertains.

Claims

1. A reciprocating food processing fabric device, comprising a fabric machine body (1), two legs (2) are fixedly connected correspondingly to the outside of the fabric machine body (1), and two connecting bars (3) are fixedly connected correspondingly to the two legs (2), characterized in that ; There is a bearing strip (4) between two connecting strips (3). Both connecting strips (3) are fixedly connected to the bearing strip (4). On one side of the bearing strip (4), there is a first connecting block (6). On the first connecting block (6), there is a starting component for filtering sesame seeds on the hamburger bun. Inside the starting component, there are an inclined plate (7) and an inclined column (8) for promoting the twisting effect. With the cooperation of the inclined plate (7) and the inclined column (8), the intensity of filtering sesame seeds on the hamburger bun can gradually increase with the distance. At the top of the bearing strip (4), there is a placement plate (5) fixedly connected. On the placement plate (5), there is a collecting component for collecting the hamburger bun. Inside the collecting component, there are two fitting pieces (38) for collecting the hamburger slices and transporting them to the next process. On the side of the bearing strip (4) away from the first connecting block (6), there is a bearing plate (40) fixedly connected. On the bearing plate (40), there is a transmission component for providing power. In the transmission component, there are a transmission shaft (41) and a double-headed gear column (42) for transmitting power to the whole device. And the transmission shaft (41) can provide the same power for the cooperation of the two fitting pieces (38) to close and open. The starting component includes: an inclined plate (7), an inclined column (8), a rotating piece (9), a bearing column (10), a first positioning block (11), a U-shaped strip (19), a twisting block (20), a rubber ring (21), and a single-headed gear column (43); Among them, there is a bearing on the first connecting block (6). The single-headed gear column (43) is fixedly connected to the inner ring of the bearing on the first connecting block (6). The end of the single-headed gear column (43) away from the gear is fixedly connected to the inclined plate (7). The end of the inclined plate (7) away from the single-headed gear column (43) is fixedly connected to the inclined column (8). The end of the inclined column (8) away from the inclined plate (7) is fixedly connected to the rotating piece (9). There is a bearing on the first positioning block (11). The bearing column (10) is fixedly connected to the inner ring of the bearing on the first positioning block (11). The end of the rotating piece (9) away from the inclined column (8) is fixedly connected to the bearing column (10). Inside the twisting block (20), there is a rubber ring (21) fixed. The rubber ring (21) is sleeved on the inclined column (8). On one side of the first positioning block (11), there is a support strip (18). There are two support strips (18) in total. The support strip (18) is fixedly connected to the first positioning block (11). The end of the support strip (18) away from the first positioning block (11) is fixedly connected to the second positioning block (12). The U-shaped strip (19) is U-shaped. The U-shaped strip (19) is fixedly connected to the twisting block (20). On the second positioning block (12), there is a limiting component for limiting the starting component; The limiting component includes: a placement piece (13), an anti-detachment column (14), a movable column (15), a moving block (16), and a second connecting block (17); Among them, the placement piece (13) is fixedly connected to the bottom of the second positioning block (12). Both ends of the other support bar (18) are fixedly connected to the first connection block (6) and the second connection block (17) respectively. Both ends of the anti - detachment column (14) are fixedly connected to the second connection block (17) and the placement piece (13) respectively. A bearing is provided on the second connection block (17). The movable column (15) is fixedly connected to the inner ring of the bearing on the second connection block (17). One end of the movable column (15) far from the second connection block (17) is fixedly connected to the second positioning block (12). The moving block (16) is sleeved on the movable column (15). A circular hole corresponding to the anti - detachment column (14) is provided at the bottom of the moving block (16). The anti - detachment column (14) penetrates through the circular hole on the moving block (16), and the moving block (16) is fixedly connected to the U - shaped strip (19).

2. The reciprocating food processing fabric device according to claim 1, wherein A positioning plate (22) is inserted into the U - shaped strip (19). Two limiting strips (24) are fixedly connected correspondingly on the positioning plate (22). A filter chassis (30) is fixedly connected to the top of the positioning plate (22). Four filter plates (31) are correspondingly provided on the top of the filter chassis (30). The four filter plates (31) are fixedly connected correspondingly. A number of circular holes for filtering sesame grains are provided on both the four filter plates (31) and the filter chassis (30). And the bottom of each filter plate (31) is fixedly connected to the positioning plate (22). At the positions corresponding to the two limiting strips (24) on the positioning plate (22), two fixing components for fixing the positioning plate (22) are provided; Each fixing component includes: a positioning shell (23), a telescopic column (25), a spring (26), a positioning piece (27), a bolt (28) and a nut (29); Among them, the positioning shell (23) is fixedly connected to the positioning plate (22), and the positioning shell (23) corresponds to the limiting strip (24). A spring (26) is provided inside the positioning shell (23). The spring (26) is sleeved on the telescopic column (25). Both ends of the spring (26) are fixedly connected to the top inner wall of the positioning shell (23) and the positioning piece (27) respectively. The positioning piece (27) is fixedly connected to the telescopic column (25). A plug - in hole corresponding to the telescopic column (25) is provided on the limiting strip (24). The telescopic column (25) is inserted into the plug - in hole of the limiting strip (24). A number of threaded holes for fixing the bolt (28) are provided on the telescopic column (25). A connection hole for connecting the bolt (28) is provided on the limiting strip (24). And the bolt (28) is in threaded connection with the limiting strip (24) and the telescopic column (25). The nut (29) is in threaded connection with the bolt (28). Two telescopic holes (32) are provided on the filter chassis (30), and the positions of the two telescopic holes (32) correspond to the two telescopic columns (25).

3. A reciprocating food processing fabric device according to claim 2, characterized in that, The collection component on the placement plate (5) includes: two support columns (33), two S - shaped strips (34), two limiting columns (35), two rotating columns (36), two transmission gears (37), two fitting pieces (38) and a placement frame (39); Wherein, at one end of the placement plate (5) away from the bearing bar (4), two limiting columns (35) are fixedly connected correspondingly. At the top of each limiting column (35), a rotating column (36) is movably connected. Two transmission gears (37) are fixedly connected to the two rotating columns (36). Two fitting pieces (38) are fixedly connected to the two rotating columns (36) correspondingly. Two support columns (33) are fixedly connected to the placement plate (5) correspondingly. On each support column (33), an S-shaped bar (34) is fixedly connected. The tops of the two support columns (33) are fixedly connected to the placement frame (39). One end of the two S-shaped bars (34) away from the support columns (33) is fixedly connected to the placement frame (39). A falling object hole corresponding to the two fitting pieces (38) is provided on the placement frame (39), and the two fitting pieces (38) correspond to the falling object hole on the placement frame (39).

4. A reciprocating food processing fabric device according to claim 3, characterized in that, The transmission assembly includes: a transmission shaft (41), a double-headed gear column (42), a machine housing (51), and a stepping motor (52). Wherein, a bearing is provided on the bearing plate (40). The transmission shaft (41) is fixedly connected to the inner ring of the bearing on the bearing plate (40). The double-headed gear column (42) is movably connected to the bearing bar (4), and the two ends of the double-headed gear column (42) are meshed with the single-headed gear column (43) and the transmission shaft (41) respectively. The machine housing (51) is fixedly connected to the bottom of the bearing plate (40). The stepping motor (52) is arranged inside the machine housing (51), and the output shaft of the stepping motor (52) is fixedly connected to the transmission shaft (41).

5. A reciprocating food processing fabric device according to claim 4, characterized in that, A linkage assembly for triggering the collection assembly is provided on the top of the placement plate (5). The linkage assembly includes: a rotating disk (44), a fixed column (45), a limiting frame (46), a round hole block (47), a translation column (48), a translation plate (49), and several tooth blocks (50). Wherein, a bearing is provided at one end of the placement plate (5) away from the support column (33). The transmission shaft (41) is fixedly connected to the inner ring of the bearing on the placement plate (5). The top of the transmission shaft (41) is fixedly connected to the rotating disk (44). The fixed column (45) is fixedly connected to the rotating disk (44). The round hole block (47) is fixedly connected to the top of the placement plate (5). The translation column (48) penetrates through the round hole block (47). One end of the translation column (48) close to the rotating disk (44) is fixedly connected to the limiting frame (46). An activity slot for the fixed column (45) to move is provided on the limiting frame (46). The fixed column (45) is inserted into the activity slot of the fixed column (45). One end of the translation column (48) away from the limiting frame (46) is fixedly connected to the translation plate (49). Several tooth blocks (50) are fixedly connected to the outer side of the translation plate (49), and the several tooth blocks (50) are meshed with the two transmission gears (37).

6. A reciprocating food processing fabric device according to claim 5, characterized in that, When the rotating disk (44) on the rotating disk (44) moves to the maximum distance close to the round hole block (47), the several tooth blocks (50) on the translation plate (49) drive the two meshed transmission gears (37) to make the two fitting pieces (38) on the rotating column (36) fit together.

Citation Information

Patent Citations

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