Automatic continuous chicken claw opening machine device

By utilizing the design of the automatic continuous chicken claw splitting machine, the efficient and accurate splitting and rinsing of chicken claws is achieved through the design of the transmission components and clamping parts. This solves the consistency and safety issues in existing technologies, improves production efficiency, and reduces costs.

CN119522957BActive Publication Date: 2025-11-21JIANGSU CHAOYUE AGRI DEV CO LTD
View PDF 2 Cites 0 Cited by

Patent Information

Application Number
CN202411758342.X
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-12-03
Publication Date
2025-11-21
Estimated Expiration
2044-12-03

AI Technical Summary

Technical Problem

Existing chicken feet splitting technology suffers from inconsistencies, safety hazards, and low processing efficiency, making it difficult to meet the needs of mass production.

Method used

Design an automatic continuous chicken claw splitting machine device. The transmission component drives the clamping component to move synchronously. Combined with the cutting blade and rinsing device, it can accurately split and rinse the chicken claws. The clamping component is equipped with a positioning column and an ejector plate to ensure stability and automated production.

Benefits of technology

It improved the accuracy and efficiency of splitting chicken feet, reduced the difficulty of operation, enabled mass production, and reduced production costs through the rational control of water resources.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN119522957B_ABST
    Figure CN119522957B_ABST
Patent Text Reader

Abstract

The present application relates to the technical field of chicken claw opening, and specifically relates to an automatic continuous chicken claw opening device, which comprises a rack, a transmission component arranged on the top of the rack, the transmission component comprising a plurality of transmission sprockets, a transmission assembly arranged in the rack and used for driving the transmission sprockets to rotate, a cutting blade arranged on the top end of the rack and used for opening the chicken claw, a transmission shaft arranged at each end of the rack and used for mounting the plurality of transmission sprockets, and a plurality of clamping components mounted on the transmission chain and used for clamping the chicken claw body. The present application can control the lifting of the trapezoidal push block, change the clamping position, change the clamping distance at the corresponding position, reduce the difficulty of placing, reduce the operation difficulty of workers, improve the work efficiency, control the opening of the flushing component through the synchronous sliding of the guide block and the clamping block, reduce the waste of water resources, and reduce the production cost.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] This invention relates to the field of chicken claw splitting technology, and specifically to an automatic continuous chicken claw splitting machine device. Background Technology

[0002] After the chicken feet are split open, seasonings can penetrate more easily into the interior, making them more flavorful. The split chicken feet also heat more evenly during cooking, contributing to better results. Furthermore, split chicken feet can be sold as a standalone food item or as an ingredient, increasing the product's added value.

[0003] In chicken feet processing, the splitting method is mostly done manually or using reciprocating splitting machines or guillotine splitting machines. Manual splitting may result in inconsistencies in the shape and size of the split chicken feet, affecting the overall product quality. Reciprocating splitting machines, which use a manually pulled slider to split the chicken feet, may not be able to meet the requirements for the shape and size of the chicken feet. Guillotine splitting machines may pose safety hazards during the splitting process, and all of the above methods may have low processing efficiency and cannot be used for mass production.

[0004] Therefore, it is necessary to invent an automatic continuous chicken claw splitting machine to solve the above problems. Summary of the Invention

[0005] The purpose of this invention is to provide an automatic continuous chicken claw splitting machine device. By improving the clamping device, the operation difficulty is reduced and the work efficiency is improved, and the splitting position of the chicken claw is accurately processed.

[0006] To achieve this objective, the present invention adopts the following technical solution:

[0007] An automatic continuous chicken claw splitting machine is provided, comprising a frame, a transmission component at the top of the frame including multiple transmission sprockets, a transmission assembly inside the frame for driving the transmission sprockets to rotate, a cutting blade for splitting the chicken claws at the top of the frame, and transmission shafts at both ends of the frame for mounting multiple transmission sprockets. A transmission chain is meshed with the outer side of each transmission sprocket, and multiple clamping components for gripping the chicken claw body are mounted on the transmission chain. The transmission chain can drive the clamping components to move synchronously. Each clamping component includes an ejector plate for ejecting the chicken claw body, and multiple positioning posts located on both sides of the ejector plate for synchronously clamping inwards.

[0008] As a preferred embodiment of an automatic continuous chicken claw splitting machine, a rinsing component is provided at the top of the frame. The rinsing component includes a rinsing pipe connected to an external water source and nozzles located on both sides of the cutting blade.

[0009] As a preferred embodiment of an automatic continuous chicken claw splitting machine, the clamping component includes a bottom mounting plate detachably mounted on one side of the transmission chain, a top mounting plate detachably mounted on the top of the bottom mounting plate, a trapezoidal push block at the bottom end of the bottom mounting plate, and multiple lifting columns fixedly connected to the ejector plate at the top of the trapezoidal push block. A return spring is sleeved on the portion of the lifting column located at the bottom end of the bottom mounting plate. Multiple adjusting devices for adjusting the position of the trapezoidal push block are installed at the top of the frame. The adjusting device includes an ejector block one located at the chicken claw placement end and an ejector block two located at the unloading end. The ejector block one is located on the right side of the rinsing component, and the ejector block two is located on the left side of the rinsing component.

[0010] When the clamping component is located to the right of the flushing component, the ejector block pushes the trapezoidal pusher upward;

[0011] When the clamping component is located to the left of the flushing component, the ejector block two pushes the trapezoidal pusher upward.

[0012] As a preferred embodiment of an automatic continuous chicken claw splitting machine, the clamping component further includes two clamping blocks that are simultaneously fixedly connected to multiple positioning posts. Each clamping block has a triangular slider at the bottom end of the bottom mounting plate. The two triangular sliders are located on both sides of the trapezoidal push block, and the trapezoidal push block can drive the two triangular sliders to slide outward synchronously.

[0013] As a preferred embodiment of an automatic continuous chicken claw splitting machine, the clamping block is provided with multiple transverse extension rods fixedly connected to the positioning column, the clamping block is provided with multiple vertical extension rods in the vertical direction, the top of the vertical extension rods is equipped with guide blocks, and the top of the bottom mounting plate is provided with multiple guide grooves for the clamping block to slide inward or outward.

[0014] As a preferred embodiment of an automatic continuous chicken claw splitting machine, the top mounting plate is hollow, the ejector plate is located inside the top mounting plate, the top of the bottom mounting plate is detachably mounted with a limiting mounting block located at the bottom of the ejector plate, the two ends of the limiting mounting block are detachably mounted with limiting plates, one end of the transverse extension rod passes through the limiting plate, a locking block is provided on the outside of the transverse extension rod, and a compression spring for inward clamping is sleeved on the part of the transverse extension rod between the locking block and the limiting plate. Both the limiting mounting block and the ejector plate are provided with guide grooves for the positioning column to slide inward or outward.

[0015] As a preferred embodiment of an automatic continuous chicken claw splitting machine, the bottom end of the positioning column is provided with a guide slider to prevent tilting, and the bottom end of the limiting mounting block is provided with a guide groove for the guide slider to slide.

[0016] As a preferred embodiment of an automatic continuous chicken claw splitting machine, the rinsing component further includes a valve for controlling the rinsing pipe. The valve includes a columnar handle, and a rotatable transmission wheel is provided at the bottom end of the columnar handle. The transmission wheel can contact a guide block. A limit block is provided on one side of the valve, and a return spring is connected to the bottom end of the limit block for driving the columnar handle to reset.

[0017] When the guide block is not in contact with the guide wheel, the columnar handle is in a vertical position and the flushing pipe is closed;

[0018] When the guide block contacts the guide wheel and continues to push, the guide block pushes the guide wheel to rotate, and the columnar handle rotates clockwise, opening the flushing pipe;

[0019] When the guide block and guide wheel are pushed to the separation state, the reset spring pulls the columnar handle to rotate counterclockwise, the columnar handle is reset, and the flushing pipe is closed.

[0020] As a preferred embodiment of an automatic continuous chicken claw splitting machine, the transmission component further includes multiple bearing seats for mounting the transmission shaft. A collection bin for storing processed products is also provided on one side of the machine frame. Multiple connecting seats are provided at the portion of the transmission chain that contacts the bottom mounting plate. A screw, detachably connected to the connecting seats, is located at the center of the bottom mounting plate. When the transmission chain is horizontal, the multiple connecting seats jointly support the bottom mounting plate. When the transmission chain is rotating, the bottom mounting plate is fixed by the connecting seats at the center.

[0021] The beneficial effects of this invention are as follows: By configuring the transmission components, two parallel transmission chains can synchronously drive multiple different clamping components. The clamping components move towards the cutting blade, and rinsing devices are provided on both sides of the cutting blade, thereby achieving the opening and rinsing of the chicken feet. Continuous cyclic conveying of the clamping components enables mass production. The clamping components are equipped with positioning posts that slide synchronously inward or outward, achieving the clamping of the chicken feet, improving cutting accuracy and meeting usage requirements. The ejector plate allows the chicken feet to be pushed out at a designated position, facilitating automated production. By controlling the ejection of the ejector plate and the sliding of the positioning posts to both sides using a trapezoidal pusher, the clamping position can be changed by controlling the lifting of the trapezoidal pusher, thus changing the clamping distance at the corresponding position, reducing placement difficulty, lowering the operator's workload, and improving work efficiency. The synchronous sliding of the guide block and clamping block allows the positioning post to adjust its position, thereby controlling the opening of the rinsing components, reducing water waste, and lowering production costs. Attached Figure Description

[0022] To more clearly illustrate the technical solutions of the embodiments of the present invention, the accompanying drawings used in the embodiments of the present invention will be briefly described below. Obviously, the drawings described below are merely some embodiments of the present invention. For those skilled in the art, other drawings can be obtained based on these drawings without any creative effort.

[0023] Figure 1 This is a schematic diagram of the overall structure of an automatic continuous chicken claw splitting machine device according to the present invention.

[0024] Figure 2 This is a top view schematic diagram of an automatic continuous chicken claw splitting machine device according to the present invention.

[0025] Figure 3 This is a side view of the automatic continuous chicken claw splitting machine device of the present invention.

[0026] Figure 4 This is the present invention. Figure 1 Enlarged structural diagram at point A in the middle.

[0027] Figure 5 This is the present invention. Figure 2 Enlarged structural diagram at point B.

[0028] Figure 6 This is a schematic diagram of the unfolded state of the clamping component of the present invention.

[0029] Figure 7 This is a schematic diagram of the overall structure of the clamping component of the present invention.

[0030] Figure 8 This is a schematic diagram of the overall clamping component after the ejector plate is removed in this invention.

[0031] Figure 9 This is a partial cross-sectional view of the clamping component of the present invention.

[0032] Figure 10 This is a front view schematic diagram of the clamping component of the present invention.

[0033] Figure 11 This is a schematic diagram of the assembly relationship structure of the clamping block of the present invention.

[0034] Figure 12 This is a top view of the clamping component of the present invention.

[0035] Figure 13 This is a partial cross-sectional structural diagram of the limiting mounting block of the present invention.

[0036] Figure 14 This is an enlarged structural diagram of the valve part of the present invention.

[0037] In the picture:

[0038] 1. Frame; 2. Transmission assembly; 3. Cutting blade;

[0039] 4. Transmission components; 401. Bearing housing; 402. Transmission sprocket; 403. Transmission chain; 4031. Connecting seat; 4032; 404. Transmission shaft;

[0040] 5. Flushing components; 501. Flushing pipe; 502. Nozzle; 503. Valve; 504. Columnar handle; 505. Drive wheel; 506. Limit block; 507. Return spring one;

[0041] 6. Clamping components; 601. Bottom mounting plate; 602. Trapezoidal push block; 603. Top mounting plate; 604. Positioning post; 605. Guide groove one; 606. Guide block; 607. Limiting plate; 608. Reset spring two; 609. Ejection plate; 6091. Guide groove two; 610. Lifting column; 611. Clamping block; 6111. Triangular slider; 6112. Vertical extension rod; 6113. Horizontal extension rod; 6114. Locking block; 6115. Guide slider; 612. Compression spring; 613. Limiting mounting block; 6131. ​​Guide groove three; 7. Collection bucket; 8. Adjustment device; 801. Ejection block one; 802. Ejection block two; 9. Chicken claw body. Detailed Implementation

[0042] The technical solution of the present invention will be further described below with reference to the accompanying drawings and specific embodiments.

[0043] The accompanying drawings are for illustrative purposes only and are schematic diagrams, not actual images. They should not be construed as limiting the scope of this patent. To better illustrate the embodiments of the present invention, some parts in the drawings may be omitted, enlarged, or reduced, and do not represent the actual dimensions of the product. It is understandable to those skilled in the art that some well-known structures and their descriptions may be omitted in the drawings.

[0044] In the accompanying drawings of the embodiments of the present invention, the same or similar reference numerals correspond to the same or similar components. In the description of the present invention, it should be understood that if terms such as "upper," "lower," "left," "right," "inner," and "outer" indicate the orientation or positional relationship based on the orientation or positional relationship shown in the drawings, they are only for the convenience of describing the present invention and simplifying the description, and do 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, the terms used to describe positional relationships in the drawings are only for illustrative purposes and should not be construed as limiting the present patent. For those skilled in the art, the specific meaning of the above terms can be understood according to the specific circumstances.

[0045] In the description of this invention, unless otherwise explicitly specified and limited, the term "connection" or similar designation indicating a connection between components should be interpreted broadly. For example, it can refer to a fixed connection, a detachable connection, or an integral part; it can be a mechanical connection or an electrical connection; it can be a direct connection or an indirect connection through an intermediate medium; it can refer to the internal communication between two components or the interaction between two components. Those skilled in the art can understand the specific meaning of the above terms in this invention based on the specific circumstances.

[0046] refer to Figures 1 to 13 This invention provides an automatic continuous chicken claw splitting machine, comprising a frame 1, a transmission component 4 at the top of the frame 1, the transmission component 4 including multiple transmission sprockets 402, a transmission assembly 2 for driving the transmission sprockets 402 to rotate inside the frame 1, a cutting blade 3 for splitting the chicken claw at the top of the frame 1, and transmission shafts 404 at both ends of the frame 1 respectively, each mounting multiple transmission sprockets 402. A transmission chain 403 is meshed with the outer side of each transmission sprocket 402, and multiple clamping components 6 for clamping the chicken claw body 9 are mounted on the transmission chain 403. The moving chain 403 can drive the clamping component 6 to move synchronously. The clamping component 6 includes an ejector plate 609 for ejecting the chicken claw body 9. The clamping component 6 also includes multiple positioning posts 604 located on both sides of the ejector plate 609 that can clamp inward synchronously. The positioning posts 604 can also be in an inward tilted state to improve the clamping effect on the chicken claw body 9. The placement of the positioning posts 604 is adapted to the general outline of the chicken claw body 9, and can clamp different shapes of the chicken claw body 9. During placement, the placement direction and position of the chicken claw body 9 should be adapted to the placement of the positioning posts 604 to avoid falling off during the cutting process.

[0047] The top of the frame 1 is equipped with a rinsing component 5, which includes a rinsing pipe 501 connected to an external water source and nozzles 502 located on both sides of the cutting blade 3. The nozzles 502 are located on both sides of the blade. By controlling the opening and closing of the valve 503, the blade and chicken feet are rinsed during the cutting process. The nozzles dissipate heat from the blade and remove blood and debris generated during the cutting process, which facilitates subsequent processing. Multiple nozzles 502 can be set so that each chicken foot can be rinsed during the splitting process, thereby improving the rinsing effect.

[0048] The clamping component 6 includes a bottom mounting plate 601 detachably mounted on one side of the transmission chain 403. A top mounting plate 603 is detachably mounted on the top of the bottom mounting plate 601. A trapezoidal push block 602 is provided at the bottom end of the bottom mounting plate 601. A plurality of lifting columns 610 fixedly connected to the ejector plate 609 are provided at the top of the trapezoidal push block 602. A second return spring 608 is sleeved on the part of the lifting column 610 located at the bottom end of the bottom mounting plate 601. A plurality of adjusting devices 8 for adjusting the position of the trapezoidal push block 602 are installed at the top of the frame 1. The adjusting device 8 includes an ejector block 801 located at the chicken claw placement end and an ejector block 802 located at the unloading end. The adjusting device 8 is installed inside the transmission chain 403. The ejector block 801 is located on the right side of the rinsing component 5, and the ejector block 802 is located on the left side of the rinsing component 5.

[0049] When the clamping component 6 is located to the right of the flushing component 5, the ejector block 801 pushes the trapezoidal pusher block 602 upward;

[0050] When the clamping component 6 is located on the left side of the flushing component 5, the second ejector block 802 pushes the trapezoidal pusher block 602 upward. During the transmission process, it will not affect the rotation of the transmission chain 403. The second ejector block 802 is arc-shaped and set at the turning point of the transmission chain 403 to ensure that the trapezoidal pusher block 602 can be continuously squeezed during the turning process.

[0051] The chicken feet placement end is located on the side away from the cutting blade 3, and the unloading end is located on the side close to the collection bucket 7. The adjustment device 8 is installed in the cavity inside the transmission chain 403. The ejector block 2 802 is installed on the outside of one of the transmission shafts 404. Both ejector block 2 802 and ejector block 1 801 can lift the trapezoidal push block 602. The purpose of ejector block 2 802 is to drive the positioning pins 604 on both sides to slide outward when it is close to the collection bucket 7, before and after the clamping component 6 flips. At the same time, the ejector plate 609 pushes out the chicken feet body 9, so that it falls into the collection bucket 7 during the flipping process, thereby collecting the split chicken feet.

[0052] The purpose of the ejector block 801 is to allow the triangular slider 6111 to slide to both sides by slightly raising the trapezoidal push block 602 during the placement and installation of the chicken feet, so that the positioning post 604 can slide outwards simultaneously, making it easier to place the chicken foot body 9. When the clamping component 6 moves away from the ejector block 801, the positioning post 604 can clamp the chicken foot body 9, achieving the purpose of centering the chicken feet, reducing the difficulty of placement, and improving processing efficiency.

[0053] The clamping component 6 also includes two clamping blocks 611 that are fixedly connected to multiple positioning posts 604. Each clamping block 611 has a triangular slider 6111 at the bottom end of the bottom mounting plate 601. The two triangular sliders 6111 are located on both sides of the trapezoidal push block 602. The trapezoidal push block 602 can drive the two triangular sliders 6111 to slide outward synchronously. The top of the triangular slider 6111 is provided with a slider, which can slide at the bottom end of the bottom mounting plate 601 to reduce the force required for the compression spring 612 to drive the positioning posts 604 to slide. The size of the triangular slider 6111 needs to be set to avoid interference with the second reset spring 608 and ensure the normal operation of the equipment.

[0054] The clamping block 611 is provided with a plurality of transverse extension rods 6113 fixedly connected to the positioning post 604. The clamping block 611 is provided with a plurality of vertical extension rods 6112 in the vertical direction. A guide block 606 is installed at the top of the vertical extension rod 6112. The top of the bottom mounting plate 601 is provided with a plurality of guide grooves 605 for the clamping block 611 to slide inward or outward. The opening of the guide grooves 605 can ensure that the clamping block 611 slides in a specified direction. The vertical edge of the guide block 606 can contact the side wall of the transmission wheel 505, ensuring that the transmission wheel 505 and the columnar handle 504 can be tilted and rotated during the sliding of the clamping component 6.

[0055] The top mounting plate 603 is hollow, and the ejector plate 609 is located inside the top mounting plate 603. A limiting mounting block 613 located at the bottom end of the ejector plate 609 is detachably mounted on the top of the bottom mounting plate 601. Limiting plates 607 are detachably mounted on both ends of the limiting mounting block 613. One end of the transverse extension rod 6113 passes through the limiting plate 607. A locking block 6114 is provided on the outer side of the transverse extension rod 6113. The transverse extension rod 6113 is positioned at the locking block 6114. A compression spring 612 for inward clamping is sleeved between 114 and the limiting plate 607. The limiting mounting block 613 and the ejector plate 609 are both provided with guide grooves 6091 for the positioning post 604 to slide inward or outward. When the clamping component 6 is not in contact with the adjusting device 8, under the action of the gravity of the trapezoidal push block 602, the top of the ejector plate 609 is flush with the top of the top mounting plate 603, thereby ensuring the stability of the chicken claw body 9 and improving the processing accuracy during the opening process.

[0056] The bottom end of the positioning post 604 is provided with a guide slider 6115 to prevent tilting, and the bottom end of the limiting mounting block 613 is provided with a guide groove 6131 for the guide slider 6115 to slide. The guide slider 6115 is used to prevent the positioning post 604 from tilting during the clamping process, which would cause the chicken claw body 9 to fall off, thereby improving the accuracy of clamping.

[0057] The flushing component 5 also includes a valve 503 for controlling the flushing pipe 501. The valve 503 includes a columnar handle 504. The bottom end of the columnar handle 504 is provided with a rotatable transmission wheel 505. The transmission wheel 505 can contact the guide block 606. A limit block 506 is provided on one side of the valve 503. The bottom end of the limit block 506 is connected to a return spring 507 for driving the columnar handle 504 to reset.

[0058] When the columnar handle 504 in the valve 503 is in a vertical position, the flushing pipe 501 is in a closed position; when the columnar handle 504 is in an inclined position, the flushing pipe 501 is in an open position.

[0059] When the clamping component 6 in the clamping state contacts the transmission wheel 505, it can tilt the columnar handle 504 and open the flushing pipe 501. When the guide block 606 of the clamping component 6 separates from the transmission wheel 505, the return spring 507 drives the columnar handle 504 to return to the vertical state and close the flushing pipe 501. When the clamping component 6 in the non-clamping state passes by, the guide block 606 does not contact the transmission wheel 505, and the flushing pipe 501 is in the closed state.

[0060] By controlling the opening and closing of the flushing pipe 501, the water consumption during the opening process can be reduced, thereby reducing production costs while ensuring processing quality.

[0061] The transmission component 4 also includes multiple bearing seats 401 for mounting the transmission shaft 404. A collection bin 7 for storing processed products is also provided on one side of the interior of the frame 1. Multiple connecting seats 4031 are provided at the portion of the transmission chain 403 that contacts the bottom mounting plate 601. A screw 4032, which forms a detachable connection with the connecting seats 4031, is provided at the center of the bottom mounting plate 601. When the transmission chain 403 is horizontal, the multiple connecting seats 4031 jointly support the bottom mounting plate 601. When the transmission chain 403 is rotating, the bottom mounting plate 601 is fixed by the connecting seats 4031 at its center. The connecting seats 4031 ensure that multiple clamping components 6 can be mounted on the transmission chain 403, while preventing interference during rotation and flipping, thus enabling long-term operation.

[0062] This invention, through the arrangement of the transmission assembly 2, enables two parallel transmission chains 403 to simultaneously drive multiple different clamping components 6. The clamping components 6 move towards the cutting blade 3, and rinsing devices are provided on both sides of the cutting blade 3, thereby achieving the opening and rinsing of chicken feet. The continuous cyclic conveying of the clamping components 6 enables mass production. The clamping components 6 are equipped with positioning posts 604 that slide synchronously inward or outward, achieving clamping of the chicken feet, improving cutting accuracy, and meeting usage requirements. The ejector plate 609 further enables… The purpose of pushing the chicken feet out when they reach the designated position is to facilitate automated production. By controlling the ejection of the ejector plate 609 by the trapezoidal pusher 602 and controlling the sliding of the positioning column 604 to both sides, the clamping position can be changed by controlling the lifting of the trapezoidal pusher 602, thereby changing the clamping distance at the corresponding position, reducing the difficulty of placement, reducing the difficulty of operation for workers, and improving work efficiency. By setting the guide block 606 and the clamping block 611 to slide synchronously, the position can be adjusted according to the positioning column 604, thereby controlling the opening of the rinsing component 5, reducing water waste and reducing production costs.

[0063] It should be stated that the above-described specific embodiments are merely preferred embodiments of the present invention and the technical principles employed. Those skilled in the art should understand that various modifications, equivalent substitutions, and variations can be made to the present invention. However, such variations, as long as they do not depart from the spirit of the present invention, should be within the scope of protection of the present invention. Furthermore, some terminology used in this specification and claims is not limiting, but merely for ease of description.

Claims

1. An automatic continuous chicken claw unscrambler device, characterized in that: The utility model provides a chicken claw automatic cutting and washing device, including frame (1), the top of frame (1) is provided with transmission part (4), transmission part (4) includes a plurality of transmission sprocket (402), the inside of frame (1) is provided with the transmission assembly (2) for driving transmission sprocket (402) rotation, the top of frame (1) is further provided with cutting blade (3) for chicken claw open petal, the both ends of frame (1) are provided with transmission shaft (404) for installing a plurality of transmission sprocket (402) respectively, the outside of transmission sprocket (402) is engaged with transmission chain (403), transmission chain (403) is installed with a plurality of clamping parts (6) for clamping chicken claw body (9), transmission chain (403) can drive clamping part (6) synchronous motion, clamping part (6) includes the ejection plate (609) for ejecting chicken claw body (9), clamping part (6) further includes a plurality of positioning column (604) on the both sides of ejection plate (609) and can be synchronous inward clamping, The top of frame (1) is provided with washing part (5), the washing part (5) includes the washing pipeline (501) of external connection water source and the spray head (502) on the both sides of cutting blade (3); The clamping part (6) includes the bottom mounting plate (601) that can be detachably installed to one side of transmission chain (403), the top of bottom mounting plate (601) can detachably install top mounting plate (603), the bottom of bottom mounting plate (601) is provided with trapezoidal push block (602), the top of trapezoidal push block (602) is provided with a plurality of fixed connection's top-up column (610) of ejection plate (609), the part of top-up column (610) at the bottom of bottom mounting plate (601) is covered with reset spring two (608), the top of frame (1) is installed with a plurality of adjusting devices (8) for adjusting the position of trapezoidal push block (602), the adjusting device (8) includes the ejection block one (801) on the chicken claw placement end and the ejection block two (802) on the discharge end, the ejection block one (801) is located at the right side of washing part (5), and the ejection block two (802) is located at the left side of washing part (5); When clamping part (6) is located at the right side of washing part (5), ejection block one (801) upwardly lifts trapezoidal push block (602); When clamping part (6) is located at the left side of washing part (5), ejection block two (802) upwardly lifts trapezoidal push block (602); The clamping component (6) further comprises two clamping blocks (611) fixedly connected with the plurality of positioning columns (604), each of the clamping blocks (611) is provided with a triangular sliding block (6111) at the bottom end of the bottom mounting plate (601), the two triangular sliding blocks (6111) are respectively located at the two sides of the trapezoidal push block (602), and the trapezoidal push block (602) can drive the two triangular sliding blocks (6111) to slide outward synchronously; the clamping block (611) is provided with a plurality of transversely extending rods (6113) fixedly connected with the positioning columns (604), and the clamping block (611) is provided with a plurality of vertically extending rods (6112) in the vertical direction, the top end of the vertically extending rod (6112) is provided with a guide block (606), and the top end of the bottom mounting plate (601) is provided with a plurality of guide grooves I (605) for sliding of the clamping block (611) inward or outward.

2. The automatic continuous chicken claw unscrambling device according to claim 1, characterized in that: The top mounting plate (603) is hollow, the ejection plate (609) is arranged in the inside of the top mounting plate (603), the top end of the bottom mounting plate (601) is detachably provided with a limiting mounting block (613) located at the bottom end of the ejection plate (609), the two ends of the limiting mounting block (613) are detachably provided with limiting plates (607), one end of the transversely extending rod (6113) penetrates the limiting plate (607), the outer side of the transversely extending rod (6113) is provided with a clamping block (6114), the part of the transversely extending rod (6113) between the clamping block (6114) and the limiting plate (607) is sleeved with a compression spring (612) for inward clamping, and the limiting mounting block (613) and the ejection plate (609) are all provided with guide grooves II (6091) for sliding of the positioning column (604) inward or outward.

3. An automatic continuous chicken claw unscrambling device according to claim 2, characterized in that: The bottom end of the positioning column (604) is provided with a guide sliding block (6115) for preventing tilting, and the bottom end of the limiting mounting block (613) is provided with a guide groove III (6131) for sliding of the guide sliding block (6115).

4. The automatic continuous chicken foot unscrambling device according to claim 3, characterized in that: The flushing component (5) further comprises a valve (503) for controlling the flushing pipeline (501), the valve (503) comprises a columnar handle (504), the bottom end of the columnar handle (504) is provided with a rotatable transmission wheel (505), the transmission wheel (505) can be in contact with the guide block (606), one side of the valve (503) is provided with a limiting block (506), the bottom end of the limiting block (506) is connected with a reset spring I (507) for driving the columnar handle (504) to reset; When the guide block (606) is not in contact with the transmission wheel (505), the columnar handle (504) is in a vertical state, and the flushing pipeline (501) is closed; When the guide block (606) is in contact with the transmission wheel (505) and continues to push, the guide block (606) pushes the transmission wheel (505) to rotate, the columnar handle (504) rotates clockwise, and the flushing pipeline (501) is opened; When the guide block (606) is pushed away from the transmission wheel (505), the reset spring (507) pulls the columnar handle (504) to rotate counterclockwise, and the columnar handle (504) is reset, and the flush pipeline (501) is closed.

5. An automatic continuous chicken foot unscrambling device according to claim 4, characterized in that: The transmission part (4) further comprises a plurality of bearing seats (401) for mounting a transmission shaft (404), one side of the interior of the rack (1) is further provided with a collection barrel (7) for accommodating processed products, and the part of the transmission chain (403) in contact with the bottom mounting plate (601) is provided with a plurality of connecting seats (4031), and the center position of the bottom mounting plate (601) is provided with a screw (4032) which is detachably connected with the connecting seat (4031). When the transmission chain (403) is in a horizontal state, the plurality of connecting seats (4031) jointly support the bottom mounting plate (601), and when the transmission chain (403) is in a rotating state, the bottom mounting plate (601) is fixed through the connecting seat (4031) at the center position.

Citation Information

Patent Citations

  • Automatic cutting device for surfaces of chicken claws

    CN112088924A

  • Cutting and cleaning device for chicken foot food

    CN114770620A