A chicken feet processing equipment

CN224611722UActive Publication Date: 2026-08-11WEIFANG HUAHAI REFRIGERATION PURIFICATION EQUIP CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-09-12
Publication Date
2026-08-11

AI Technical Summary

Technical Problem

若工作人员操作不熟练,会使生产效率低下,同时切割效果也差,产品合格率低,若工作人员操作不当还会出现切刀伤人事件

Benefits of technology

[0016]本实用新型的鸡爪加工设备要加工的待加工物料包括鸡爪、脚筋和鸡腿根。鸡爪加工设备包括机架,在机架上设置有物料输送机构,物料输送机构包括两相对设置的输送件,输送件用于输送待加工物料,两输送件之间设置有暂存待加工物料的塑料网链;沿输送件的输送方向,从后往前,在机架上依次设置有用于割断脚筋的脚筋割断机构、用于将脚筋切割下来的脚筋切割机构和用于将鸡爪切割下来的鸡爪切割机构。使用本实用新型的鸡爪加工设备能够对鸡爪进行切割,提高切割效率,降低工作人员的劳动强度,提高工作人员的人身安全性。

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Abstract

This utility model discloses a chicken feet processing device. The materials to be processed by this device include chicken feet, tendons, and chicken leg roots. The chicken feet processing device includes a frame, on which a material conveying mechanism is arranged. The material conveying mechanism includes two oppositely arranged conveyor components for conveying the materials to be processed. A plastic mesh chain is arranged between the two conveyor components to temporarily store the materials to be processed. Along the conveying direction of the conveyor components, from back to front, a tendon cutting mechanism, a tendon severing mechanism, and a chicken feet cutting mechanism are sequentially arranged on the frame. Using this chicken feet processing device, chicken feet can be cut, improving cutting efficiency, reducing the labor intensity of workers, and improving the personal safety of workers.
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Description

Technical Field

[0001] This utility model belongs to the technical field of poultry processing equipment, specifically relating to a chicken feet processing equipment. Background Technology

[0002] Chicken feet, also known as phoenix claws, are a popular food in my country. During food production, chicken feet are further subdivided into chicken feet, chicken tendons, and chicken leg bones, with the chicken tendons being considered the most valuable.

[0003] Currently, most food processing companies process chicken feet manually, separating the feet, tendons, and leg bones. If workers are not skilled, this leads to low production efficiency, poor cutting results, and a low product qualification rate. Improper operation can also cause knife injuries. Summary of the Invention

[0004] The technical problem to be solved by this utility model is to provide a chicken feet processing equipment that can cut chicken feet, improve cutting efficiency, reduce the labor intensity of workers, and improve the personal safety of workers.

[0005] To solve the above-mentioned technical problems, the technical solution of this utility model is: a chicken feet processing equipment, the material to be processed includes chicken feet, tendons, and chicken leg roots; it includes: a frame, on which a material conveying mechanism is provided, the material conveying mechanism includes two oppositely arranged conveying components, the conveying components are used to convey the material to be processed, and a plastic mesh chain is provided between the two conveying components to temporarily store the material to be processed; along the conveying direction of the conveying components, from back to front, on the frame are sequentially arranged a tendon cutting mechanism for cutting the tendons, a tendon cutting mechanism for cutting off the tendons, and a chicken feet cutting mechanism for cutting off the chicken feet.

[0006] Furthermore, the material conveying mechanism includes a power component A, a driving shaft and a driven shaft rotatably mounted on the frame. The power output end of the power component A is fixedly connected to the driving shaft. A driving sprocket A and a driving sprocket B are fixedly mounted on the driving shaft, and a driven sprocket A and a driven sprocket B are fixedly mounted on the driven shaft. The two conveying components are defined as plate chain one and plate chain two, respectively. Plate chain one is wound around the driving sprocket A and the driven sprocket A, and plate chain two is wound around the driving sprocket B and the driven sprocket B. Multiple fixtures one are fixedly mounted on plate chain one, and multiple fixtures two are fixedly mounted on plate chain two. Fixtures one and fixtures two are mirror images of each other. Fixtures one and fixtures two are used to place the material to be processed.

[0007] Furthermore, the tendon cutting mechanism includes a power component B, which is mounted on the frame via a mounting plate A. A drive wheel A is provided at the power output end of the power component B. A connecting shaft A is rotatably mounted on the mounting plate A, located below the mounting plate A. A driven wheel A is fixedly mounted on the connecting shaft A. A synchronous belt A is wound around the drive wheel A and the driven wheel A. Cutting blade one and cutting blade two are respectively provided at both ends of the connecting shaft A. Cutting blade one is located above the plate chain one, and cutting blade two is located above the plate chain two.

[0008] Furthermore, the tendon cutting mechanism includes two tendon cutting assemblies, which are respectively disposed on the outer sides of the first plate chain and the second plate chain. Each tendon cutting assembly includes a multi-joint blade handle disposed on the frame, and a cutting blade is disposed on the multi-joint blade handle. A nylon plate is also disposed on the frame, and the nylon plate is disposed opposite to the cutting blade. Alternatively, the tendon cutting assembly includes a power component E disposed on the frame, and a tendon blade is disposed at the lower end of the power component E.

[0009] Furthermore, the chicken claw cutting mechanism includes a power component C, which is mounted on the frame via a mounting plate B. The power output end of the power component C is provided with a drive wheel B. A connecting shaft B is also rotatably mounted on the mounting plate B, located below the mounting plate B. A driven wheel B is also fixedly mounted on the connecting shaft B. A synchronous belt B is wound around the drive wheel B and the driven wheel B. Cutting blade one and cutting blade two are respectively provided at both ends of the connecting shaft B. Cutting blade one is located above the plate chain one, and cutting blade two is located above the plate chain two.

[0010] Furthermore, the first fixture is provided with a V-shaped cavity, in which the material to be processed is placed. The upper surface of the first fixture is also provided with a chicken foot pressing part A receiving groove, a chicken leg pressing part A receiving groove, and a cutting groove of the first fixture. The second fixture is provided with a V-shaped cavity, in which the material to be processed is placed. The upper surface of the second fixture is also provided with a chicken foot pressing part B receiving groove, a chicken leg pressing part B receiving groove, and a cutting groove of the second fixture.

[0011] Furthermore, the chicken feet processing equipment also includes a chicken leg pressing component A and a chicken foot pressing component A. The chicken leg pressing component A is simultaneously disposed on both mounting plate A and mounting plate B, and the chicken foot pressing component A is simultaneously disposed on both mounting plate A and mounting plate B. The chicken leg pressing component A is inserted into the receiving groove of the chicken leg pressing component A, and the chicken foot pressing component A is inserted into the receiving groove of the chicken foot pressing component A. The chicken feet processing equipment also includes a chicken leg pressing component B and a chicken foot pressing component B. The chicken leg pressing component B is simultaneously disposed on both mounting plate A and mounting plate B, and the chicken foot pressing component B is simultaneously disposed on both mounting plate A and mounting plate B. The chicken leg pressing component B is inserted into the receiving groove of the chicken leg pressing component B, and the chicken foot pressing component B is inserted into the receiving groove of the chicken foot pressing component B.

[0012] Furthermore, the chicken feet processing equipment also includes a chicken leg pressing component C and a chicken leg pressing component D. The chicken leg pressing component C is installed on both the mounting plate B and the frame, and is located on the outside of the first cutting blade. The chicken leg pressing component D is installed on both the mounting plate B and the frame, and is located on the outside of the second cutting blade.

[0013] Furthermore, the frame is provided with positioning rod A and positioning rod B, with positioning rod A located on the outside of fixture one and positioning rod B located on the outside of fixture two.

[0014] Furthermore, two foot tendon chutes are fixedly installed on the frame, each foot tendon chute being located below the corresponding foot tendon cutting component; the frame is also provided with a discharge chute, the discharge chute being located at the front end of the frame and below the first plate chain and the second plate chain, the discharge chute including mutually independent chicken leg root channel A, chicken claw channel and chicken leg root channel B.

[0015] Due to the adoption of the above technical solution, the beneficial effects of this utility model are:

[0016] This invention relates to a chicken feet processing device for processing chicken feet, tendons, and chicken leg roots. The device includes a frame with a material conveying mechanism mounted on it. The material conveying mechanism comprises two opposing conveyor components for transporting the materials to be processed. A plastic mesh chain is positioned between the two conveyor components to temporarily store the materials. Along the conveying direction of the conveyor components, from back to front, the frame is sequentially equipped with a tendon-cutting mechanism, a tendon-severing mechanism, and a chicken feet-cutting mechanism. Using this invention, chicken feet can be cut, improving cutting efficiency, reducing the labor intensity of workers, and enhancing worker safety. Attached Figure Description

[0017] Figure 1 This is a perspective view of a first embodiment of the chicken feet processing equipment of this utility model;

[0018] Figure 2 This is a perspective view of another embodiment of the chicken feet processing equipment of this utility model;

[0019] Figure 3 This is a schematic diagram of the structure of a first embodiment of the chicken feet processing equipment of this utility model;

[0020] Figure 4 yes Figure 3 A top view (with operators);

[0021] Figure 5 yes Figure 4 Sectional view along the middle AA direction;

[0022] Figure 6 yes Figure 1 Enlarged 3D view of the middle tendon cutting mechanism;

[0023] Figure 7 yes Figure 1 A magnified 3D view of the middle tendon cutting mechanism from another angle;

[0024] Figure 8 yes Figure 1 Enlarged 3D view of the middle leg cutting mechanism and nylon patch;

[0025] Figure 9 yes Figure 1 An enlarged 3D view of the Chinese-made tool;

[0026] Figure 10 yes Figure 1 A schematic diagram of the structure of the central control tool;

[0027] Figure 11 yes Figure 10 Side view;

[0028] Figure 12 yes Figure 1 Schematic diagram of the structure of materials processed by China Central Depot;

[0029] Figure 13 This is a perspective view of Embodiment 2 of the chicken feet processing equipment of this utility model;

[0030] Figure 14 yes Figure 13 Enlarged 3D view of the middle leg tendon cutting mechanism;

[0031] In the diagram, 1. Frame; 21. Power component A; 22. Plate chain one; 23. Plate chain two; 24. Fixture one; 241. V-shaped cavity of fixture one; 242. Chicken claw pressing part A receiving groove; 243. Chicken leg pressing part A receiving groove; 244. Cutting groove of fixture one; 25. Fixture two; 31. Power component B; 32. Mounting plate A; 33. Cutting blade one; 34. Cutting blade two; 35. Connecting shaft A; 36. Synchronous belt A; 37. Drive wheel A; 38. Driven wheel A; 41. Positioning rod A; 42. Positioning rod B; 51. Power component C; 52. Mounting plate B; 53. Cutting blade one; 54. Cutting blade two; 55. Connecting shaft B; 56. Synchronous belt B; 57. Drive wheel B; 58. Driven wheel B; 61. Connecting plate 1; 611. Arc-shaped hole 1; 62. Nylon plate 1; 63. Bracket 1; 631. Strip hole 1; 71. Power component D; 72. Plastic mesh chain; 81. Multi-joint knife handle 1; 82. Cutting knife 1; 81a. Power component E; 82a. Foot tendon blade 1; 9. Material to be processed; 91. Chicken feet; 92. Foot tendons; 93. Chicken leg roots; 10. Chicken leg root pressing component A; 11. Chicken feet pressing component A; 12. Chicken leg root pressing component B; 13. Chicken feet pressing component B; 14. Foot tendon chute A; 15. Foot tendon chute B; 161. Chicken feet channel; 162. Chicken leg root channel A; 163. Chicken leg root channel B; 17. Chicken leg root pressing component C; 18. Operator; 19. Feed chute; 20. Screw. Detailed Implementation

[0032] The present invention will be further described below with reference to the accompanying drawings and embodiments.

[0033] Example 1:

[0034] Combination Figure 1 as well as Figure 12 As shown in the figure, the material to be processed 9 using the chicken feet processing equipment of this embodiment includes chicken feet 91, tendons 92 and chicken leg roots 93.

[0035] Combination Figure 1 , Figure 2 , Figure 3 , Figure 4 As shown in Figure 5, the chicken feet processing equipment includes a frame 1, on which a material conveying mechanism is provided. The material conveying mechanism includes two oppositely arranged conveying components for conveying the material to be processed 9. A plastic mesh chain 72 is provided between the two conveying components to temporarily store the material to be processed. The plastic mesh chain 72 moves under the drive of a driving mechanism. Both the plastic mesh chain 72 and the driving mechanism are existing technologies, and the working principle and process of the plastic mesh chain 72 under the drive of the driving mechanism are common knowledge to those skilled in the art, and will not be described in detail here. The driving mechanism may be a power component D 71.

[0036] Along the conveying direction of the conveyor, from back to front, the frame 1 is sequentially equipped with a tendon cutting mechanism for cutting the tendon 92, a tendon cutting mechanism for cutting off the tendon 92, and a chicken claw cutting mechanism for cutting off the chicken claw 91.

[0037] Preferably, the material conveying mechanism includes a power component A 21, a drive shaft and a driven shaft rotatably mounted on the frame 1. The power output end of the power component A 21 is fixedly connected to the drive shaft. A drive sprocket A and a drive sprocket B are fixedly mounted on the drive shaft, and a driven sprocket A and a driven sprocket B are fixedly mounted on the driven shaft. The two conveying components are defined as plate chain one 22 and plate chain two 23, respectively. Plate chain one 22 is wound around the drive sprocket A and the driven sprocket A, and plate chain two 23 is wound around the drive sprocket B and the driven sprocket B. Multiple jigs one 24 are fixedly mounted on plate chain one 22, and multiple jigs two 25 are fixedly mounted on plate chain two 23. The jigs one 24 and jigs two 25 are mirror images of each other. The jigs one 24 and jigs two 25 are used to place the material 9 to be processed.

[0038] Combination Figure 1 , Figure 6 as well as Figure 7 As shown, the tendon cutting mechanism includes a power component B 31, which is mounted on the frame 1 via a mounting plate A 32. A drive wheel A 37 is provided at the power output end of the power component B 31. A connecting shaft A 35 is rotatably mounted on the mounting plate A 32, located below the mounting plate A 32. A driven wheel A 38 is fixedly mounted on the connecting shaft A 35. A synchronous belt A 36 is wound around the drive wheel A 37 and the driven wheel A 38. Cutting blade 1 33 and cutting blade 2 34 are respectively provided at both ends of the connecting shaft A 35. Cutting blade 1 33 is located above the plate chain 22, and cutting blade 2 34 is located above the plate chain 23.

[0039] Combination Figure 1 as well as Figure 8As shown in the diagram, preferably, the tendon cutting mechanism includes two tendon cutting assemblies, which are respectively disposed on the outer sides of plate chain 22 and plate chain 23. The two tendon cutting assemblies are defined as tendon cutting assembly one and tendon cutting assembly two, respectively. Tendon cutting assembly one includes a multi-joint blade handle 81 disposed on the frame 1, and a cutter 82 is disposed on the multi-joint blade handle 81. The multi-joint blade handle 81 and the cutter 82 are purchased components and will not be described in detail here. A nylon plate 62 is also disposed on the frame 1, and the nylon plate 62 is disposed opposite to the cutter 82. The nylon plate 62 is mounted on a connecting plate 61, and the connecting plate 61 is mounted on a bracket 63. A bracket 63 is fixedly installed on the frame 1. An arc-shaped hole 611 is provided on the connecting plate 61, through which the installation angle of the nylon plate 62 can be adjusted. The foot rib cutting assembly 2 includes a multi-joint knife handle 2 set on the frame 1. The multi-joint knife handle 2 is equipped with a cutting blade 2. The multi-joint knife handle 2 and the cutting blade 2 are purchased parts and will not be described in detail here. A nylon plate 2 is also set on the frame 1. The nylon plate 2 is set opposite to the cutting blade 2. The nylon plate 2 is installed on the connecting plate 2. The connecting plate 2 is installed on the bracket 2. The bracket 2 is fixedly installed on the frame 1. An arc-shaped hole 2 is provided on the connecting plate 2, through which the installation angle of the nylon plate 2 can be adjusted.

[0040] Preferably, the tendon cutting mechanism includes a power component C 51, which is mounted on the frame 1 via a mounting plate B 52. The power output end of the power component C 51 is provided with a drive wheel B 57. A connecting shaft B 55 is also rotatably mounted on the mounting plate B 52, located below the mounting plate B 52. A driven wheel B 58 is also fixedly mounted on the connecting shaft B 55. A synchronous belt B 56 is wound around the drive wheel B 57 and the driven wheel B 58. A first cutting blade 53 and a second cutting blade 54 are respectively provided at both ends of the connecting shaft B 55. The first cutting blade 53 is located above the first plate chain 22, and the second cutting blade 54 is located above the second plate chain 23.

[0041] Combination Figure 1 , Figure 9 , Figure 10 as well as Figure 11 As shown, a V-shaped cavity 241 is provided on the fixture 24, and the material to be processed 9 is placed in the V-shaped cavity 241. The upper surface of the fixture 24 is also provided with a chicken claw part A receiving groove 242, a chicken leg part A receiving groove 243, and a fixture cutting groove 244.

[0042] The fixture 25 is provided with a V-shaped cavity, and the material to be processed 9 is placed in the V-shaped cavity. The upper surface of the fixture 2 is also provided with a chicken claw part B receiving groove, a chicken leg part B receiving groove, and a fixture 2 cutting groove.

[0043] Cutting blade 1 53 is located above cutting groove 244 of fixture 1, and cutting blade 2 54 is located above cutting groove of fixture 2.

[0044] Combination Figure 1 as well as Figure 2 As shown in the diagram, preferably, the chicken feet processing equipment further includes a chicken leg root pressing component A10 and a chicken foot pressing component A11. The chicken leg root pressing component A10 is simultaneously mounted on mounting plate A32 and mounting plate B52, and the chicken foot pressing component A11 is simultaneously mounted on mounting plate A32 and mounting plate B52.

[0045] 10 is inserted into the receiving groove 242 of the pressing chicken leg root component A, and 11 is inserted into the receiving groove 243 of the pressing chicken claw component A. The chicken claw processing equipment also includes pressing chicken leg root component B12 and pressing chicken claw component B13. Pressing chicken leg root component B12 is simultaneously mounted on mounting plate A32 and mounting plate B52, and pressing chicken claw component B13 is simultaneously mounted on mounting plate A32 and mounting plate B52. Pressing chicken leg root component B12 is inserted into the receiving groove of pressing chicken leg root component B, and pressing chicken claw component B13 is inserted into the receiving groove of pressing chicken claw component B.

[0046] More preferably, in order to prevent the chicken leg root 93, which is separated from the chicken leg 91, from flying out when the chicken leg cutting mechanism cuts the chicken leg 91, the chicken leg processing equipment also includes a chicken leg root pressing component C17 and a chicken leg root pressing component D. The chicken leg root pressing component C17 is installed on both the mounting plate B 52 and the frame 1, and is located on the outside of the first cutting blade 53. The chicken leg root pressing component D is installed on both the mounting plate B 52 and the frame 1, and is located on the outside of the second cutting blade 54.

[0047] Preferably, a positioning rod A 41 and a positioning rod B 42 are provided on the frame 1. Positioning rod A 41 is located outside the first fixture 24, and positioning rod B 42 is located outside the second fixture 25. Positioning rod A 41 is used to position the material 9 to be processed placed on the first fixture 24, and positioning rod B 42 is used to position the material 9 to be processed placed on the second fixture 25.

[0048] Preferably, two foot tendon chutes are fixedly installed on the frame 1. The two foot tendon chutes are defined as foot tendon chutes A14 and foot tendon chutes B15, respectively. Foot tendon chutes A14 is located below foot tendon cutting component one, and foot tendon chutes B15 is located below foot tendon cutting component two.

[0049] A discharge chute is also provided on the frame 1. The discharge chute is located at the front end of the frame 1 and below the first plate chain 22 and the second plate chain 23. The discharge chute includes an independent chicken leg root channel A 162, a chicken foot channel 161 and a chicken leg root channel B 163. The chicken leg root channel A 162 and the chicken leg root channel B 163 are located on both sides of the chicken foot channel 161.

[0050] The chicken feet processing equipment also includes a feed chute 19, which is located at the rear end of the frame 1 and is arranged at an angle. The material to be processed 9 entering through the feed chute 19 slides onto the plastic mesh chain 72. The feed chute 19 is hinged to the frame 1 and is also connected to a vertically arranged screw 20. The angle of inclination of the feed chute 19 is adjusted by the screw 20 to facilitate better feeding. Adjusting the angle of inclination using the screw 19 is common knowledge to those skilled in the art, and its structure, working process, and working principle are existing technology and will not be described in detail here.

[0051] In this embodiment, power components A 21, B 31, C 51, and D 71 can be motor reducers or other power components that can provide power, which will not be described in detail here.

[0052] The process of processing chicken feet using the chicken feet processing equipment of this utility model is described in detail below:

[0053] Adjust the chicken feet processing equipment according to the specifications of the material to be processed 9. Drop the material to be processed 9 from the elevator or production line into the feed chute 19. The height of the feed chute 19 can be adjusted by the screw 20 to match elevators or production lines of different heights.

[0054] The material to be processed 9 slides from the feed chute 19 onto the plastic mesh chain 72, which is driven by the drive mechanism to move the material to be processed 9 forward.

[0055] The manual operation area is located outside of the first chain 22 and the second chain 23. In the manual operation area, the operator 18 places the material to be processed 9 on the plastic mesh chain 72 into the fixture 1 24 and the fixture 2 25 as required. At the same time, the chicken leg root 93 needs to be aligned with the corresponding positioning rod A 41 or positioning rod B 42, and the chicken claw 91 and the tendon 92 need to be placed facing upwards.

[0056] Driven by power component A 21, the material conveying mechanism moves plate chains 22 and 23, which in turn moves fixtures 24 and 25 forward. The material to be processed 9 placed in fixtures 24 and 25 also moves together.

[0057] After the material to be processed 9 enters the cutting area, fixture 1 24 and fixture 2 25 carry the material to be processed 9 under the pressing chicken leg root component A10, pressing chicken foot component A11, pressing chicken leg root component B12 and pressing chicken foot component B14, so that pressing chicken foot component A11, pressing chicken leg root component A10, pressing chicken leg root component B12 and pressing chicken foot component B13 tightly press the material to be processed 9, ensuring that the material to be processed 9 remains stationary during the cutting process.

[0058] Driven by the material conveying mechanism, the material to be processed 9 continues to move forward. When the material to be processed 9 moves to the bottom of the tendon cutting mechanism, the cutting blade 33 cuts the tendon 92 of the material to be processed 9 placed on the fixture 24. At the same time, the cutting blade 34 cuts the tendon 92 of the material to be processed 9 placed on the fixture 25.

[0059] The material to be processed 9 continues to move forward, reaching the tendon cutting mechanism. The positions of cutter 1 82 and cutter 2 have been pre-adjusted so that the tip of cutter 1 82 points to the cutting position of the corresponding tendon 92 on the material to be processed 9, and simultaneously the tip of cutter 2 points to the cutting position of the corresponding tendon 92 on the material to be processed 9. As the material to be processed 9 continues to move forward, cutter 1 82 and cutter 2 simultaneously cut the corresponding tendon 92 off the chicken claw 91. Nylon plate 1 62 is in close contact with cutter 1 82, forming an angle, ensuring that the tendon 92 is completely cut off from the material to be processed 9. The cut tendon 92 falls through the corresponding tendon chute A14 and is collected. Nylon plate 2 is in close contact with cutter 2, forming an angle, ensuring that the tendon 92 is completely cut off from the material to be processed 9. The cut tendon 92 falls through the tendon chute B15 and is collected.

[0060] After the tendon 92 is cut off, the material to be processed 9 continues to move forward. When it moves to the bottom of the chicken foot cutting mechanism, the pressing chicken leg root component C17 and pressing chicken leg root component D also play a pressing role at the same time. The chicken foot 91 is cut off, and the chicken leg root 93 falls into the corresponding chicken leg root channel A 162 and chicken leg root channel B 163 respectively. The chicken foot 91 falls into the chicken foot channel 161 and is collected respectively.

[0061] The chicken feet processing is complete.

[0062] Example 2:

[0063] Combination Figure 13 as well as Figure 14 As shown, the first shank cutting assembly of this embodiment includes a power component E-81a mounted on the frame 1, and a shank blade 82a is provided at the lower end of the power component E-81a. The second shank cutting assembly includes a power component E-2 mounted on the frame 1, and a shank blade 2 is provided at the lower end of the power component E-2.

[0064] Power components E-81a and E-2 can be motor reducers or other power components that can provide power, which will not be described in detail here.

[0065] The remaining structures are the same as in Embodiment 1, and will not be described in detail here.

[0066] The technical features in this specification that are named with serial numbers (such as Power Component A, Plate Chain 1, Plate Chain 2, Fixture 1, Fixture 1 V-Cavity, Fixture 1 Chicken Claw Part A Receiving Slot, Fixture 1 Chicken Leg Part A Receiving Slot, Fixture 1 Cutting Slot, Fixture 2, Power Component B, Mounting Plate A, Cutting Blade 1, Cutting Blade 2, Connecting Shaft A, Synchronous Belt A, Driven Wheel A, Driven Wheel A, Positioning Rod A, Positioning Rod B, Power Component C, Mounting Plate B, Cutting Blade 1, Cutting Blade 2, Connecting Shaft B, Synchronous Belt B) The following components are listed: drive wheel B, driven wheel B, connecting plate 1, arc-shaped hole 1, nylon plate 1, bracket 1, strip hole 1, power component D, multi-joint knife handle 1, cutter 1, power component E, tendon blade 1, chicken leg root pressing component A, chicken claw pressing component A, chicken leg root pressing component B, chicken claw pressing component B, tendon chute A, tendon chute B, chicken leg root channel A, chicken leg root channel B, chicken leg root pressing component C, etc. These components are listed merely to distinguish the technical features and do not represent the positional relationship, installation sequence, or working sequence between the technical features.

[0067] In this specification, it should be noted that the orientation or positional relationship described by terms such as "from back to front", "front end", "rear end", and "vertical" is based on the orientation or positional relationship shown in the accompanying drawings. It is only for the convenience of describing this utility model and simplifying the description, and does not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, it should not be construed as a limitation on this utility model.

[0068] While specific embodiments of this utility model have been described above, those skilled in the art should understand that the described embodiments are merely some, not all, embodiments of this utility model. These are merely illustrative examples, and the scope of protection of this utility model is defined by the appended claims. Those skilled in the art can make various changes or modifications to these embodiments without departing from the principles and essence of this utility model and without any inventive effort, but all such changes and modifications fall within the scope of protection of this utility model.

Claims

1. A chicken feet processing device, wherein the materials to be processed include chicken feet, tendons, and chicken leg roots; characterized in that, include: A frame is provided with a material conveying mechanism, which includes two oppositely arranged conveying components for conveying the material to be processed. A plastic mesh chain is provided between the two conveying components to temporarily store the material to be processed. Along the conveying direction of the conveying components, from back to front, a tendon cutting mechanism for cutting the tendons, a tendon cutting mechanism for cutting off the tendons, and a chicken claw cutting mechanism for cutting off the chicken feet are sequentially arranged on the frame.

2. The chicken feet processing equipment as described in claim 1, characterized in that, The material conveying mechanism includes a power component A, a driving shaft and a driven shaft rotatably mounted on the frame. The power output end of the power component A is fixedly connected to the driving shaft. A driving sprocket A and a driving sprocket B are fixedly mounted on the driving shaft, and a driven sprocket A and a driven sprocket B are fixedly mounted on the driven shaft. The two conveying components are defined as plate chain one and plate chain two, respectively. Plate chain one is wound around the driving sprocket A and the driven sprocket A, and plate chain two is wound around the driving sprocket B and the driven sprocket B. Multiple fixtures one are fixedly mounted on plate chain one, and multiple fixtures two are fixedly mounted on plate chain two. Fixtures one and fixtures two are mirror images of each other. Fixtures one and fixtures two are used to place the material to be processed.

3. The chicken feet processing equipment as described in claim 2, characterized in that, The tendon cutting mechanism includes a power component B, which is mounted on the frame via a mounting plate A. A drive wheel A is provided at the power output end of the power component B. A connecting shaft A is rotatably mounted on the mounting plate A, located below the mounting plate A. A driven wheel A is fixedly mounted on the connecting shaft A. A synchronous belt A is wound around the drive wheel A and the driven wheel A. Cutting blade one and cutting blade two are respectively provided at both ends of the connecting shaft A. Cutting blade one is located above the plate chain one, and cutting blade two is located above the plate chain two.

4. The chicken feet processing equipment as described in claim 2, characterized in that, The tendon cutting mechanism includes two tendon cutting assemblies, which are respectively disposed on the outer sides of the first plate chain and the second plate chain. Each tendon cutting assembly includes a multi-joint blade handle disposed on the frame, and a cutting blade is disposed on the multi-joint blade handle. A nylon plate is also disposed on the frame, and the nylon plate is disposed opposite to the cutting blade. Alternatively, the tendon cutting assembly includes a power component E disposed on the frame, and a tendon blade is disposed at the lower end of the power component E.

5. The chicken feet processing equipment as described in claim 3, characterized in that, The chicken claw cutting mechanism includes a power component C, which is mounted on the frame via a mounting plate B. The power output end of the power component C is provided with a drive wheel B. A connecting shaft B is also rotatably mounted on the mounting plate B, located below the mounting plate B. A driven wheel B is also fixedly mounted on the connecting shaft B. A synchronous belt B is wound around the drive wheel B and the driven wheel B. A first cutting blade and a second cutting blade are respectively provided at both ends of the connecting shaft B. The first cutting blade is located above the first plate chain, and the second cutting blade is located above the second plate chain.

6. The chicken feet processing equipment as described in claim 5, characterized in that, The first fixture is provided with a V-shaped cavity, in which the material to be processed is placed. The upper surface of the first fixture is also provided with a chicken foot pressing part A receiving groove, a chicken leg pressing part A receiving groove, and a cutting groove of the first fixture. The second fixture is provided with a V-shaped cavity, in which the material to be processed is placed. The upper surface of the second fixture is also provided with a chicken foot pressing part B receiving groove, a chicken leg pressing part B receiving groove, and a cutting groove of the second fixture.

7. The chicken feet processing equipment as described in claim 6, characterized in that, The chicken feet processing equipment further includes a chicken leg pressing component A and a chicken foot pressing component A. The chicken leg pressing component A is simultaneously disposed on both mounting plate A and mounting plate B. The chicken foot pressing component A is inserted into the receiving groove of the chicken leg pressing component A. The chicken foot pressing component A is also inserted into the receiving groove of the chicken foot pressing component A. The chicken feet processing equipment further includes a chicken leg pressing component B and a chicken foot pressing component B. The chicken leg pressing component B is simultaneously disposed on both mounting plate A and mounting plate B. The chicken foot pressing component B is inserted into the receiving groove of the chicken leg pressing component B.

8. The chicken feet processing equipment as described in claim 7, characterized in that, The chicken feet processing equipment also includes a chicken leg pressing component C and a chicken leg pressing component D. The chicken leg pressing component C is installed on both the mounting plate B and the frame, and is located on the outside of the first cutting blade. The chicken leg pressing component D is installed on both the mounting plate B and the frame, and is located on the outside of the second cutting blade.

9. The chicken feet processing equipment as described in claim 2, characterized in that, The frame is provided with positioning rod A and positioning rod B. Positioning rod A is located on the outside of fixture one, and positioning rod B is located on the outside of fixture two.

10. The chicken feet processing equipment as described in claim 4, characterized in that, Two foot tendon chutes are fixedly installed on the frame, and each foot tendon chute is located below the corresponding foot tendon cutting component; the frame is also provided with a discharge chute, which is located at the front end of the frame and below the first plate chain and the second plate chain. The discharge chute includes an independent chicken leg root channel A, a chicken claw channel and a chicken leg root channel B.