Rabbit meat processing device for rabbit meat processing

By designing an automated processing device for rabbit meat processing, the problem of low efficiency of the pressure meat process in the prior art is solved, and the automatic pressure and puncture of rabbit meat is realized, and the pearing penetration efficiency and production efficiency are improved.

CN120078046AInactive Publication Date: 2025-06-03HUNAN TIANLICHENG AGRI CO LTD
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Patent Information

Application Number
CN202510488142.5
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-04-18
Publication Date
2025-06-03
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

In the existing rabbit meat processing technology, the meat pressing process mainly relies on manual operations, which leads to workers being prone to fatigue and inefficient, making it difficult to meet the eating needs of different groups of people.

Method used

A rabbit meat treatment device is designed, including support frame, extrusion area, puncture area, slider, power storage spring, connecting frame, fixture, extrusion plate, pull handle, pressure spring and other components. Through the cooperation of these components, automatic clamping of rabbits, limbs, extrusion and puncture are achieved, and processing efficiency is improved.

Benefits of technology

Automatic meat pressing and puncture of rabbit meat is realized, which improves the pesticide efficiency, reduces the fatigue and time of manual operation, and improves production efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to the field of meat processing, in particular to a rabbit meat processing device for rabbit meat processing, which comprises a support frame, a collecting frame arranged on the support frame, a sliding piece arranged on the support frame, a force storage spring arranged between the sliding piece and the support frame, a connecting frame arranged on the sliding piece, a fixing piece arranged on the connecting frame, a connecting plate arranged on the connecting frame, and a pull handle arranged on the connecting plate. A pressure spring is arranged between the extrusion plate and the connecting plate; a connecting piece is arranged on the sliding piece; a positioning frame is arranged on the supporting frame; a slideway is formed in the positioning frame, a first rolling piece is arranged on the slideway, a second gear is arranged on the first rolling piece, the second gear is meshed with a third gear through a sliding plate, and a telescopic rod is arranged on the sliding plate; a compression spring is arranged between the telescopic rod and the sliding plate, a fixing plate is arranged on the positioning frame, a second rolling piece is arranged on the fixing plate, a fourth gear is arranged on the second rolling piece, a chain is wound among the fourth gear, the first gear and the third gear, and automatic meat pressing is achieved through cooperation of the first rolling piece and the second rolling piece, so that efficiency is improved.
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Description

Technical Field

[0001] The invention relates to the field of meat processing, and in particular to a rabbit meat processing device for processing rabbit meat. Background Art

[0002] Rabbit meat is a high-nutrition, low-fat, high-quality meat. Compared with other common meats, it has the advantages of high protein and low fat. It is suitable for people who want to build muscle and lose fat.

[0003] In order to meet the dietary needs of different groups of people, rabbits are slaughtered, deboned, pressed, and divided, and then various seasoning oils are added for processing. In the meat pressing process, most of the time, the meat is pressed manually with the help of a clapper to relax the muscle structure of the rabbit meat and make it easier for the marinade to penetrate. This meat pressing method is prone to fatigue for workers, inefficient, time-consuming and labor-intensive.

[0004] Therefore, the device provides a rabbit meat processing device which can automatically press the meat and automatically pierce holes to accelerate the pickling rate of rabbit meat. Summary of the invention

[0005] According to the problems raised in the background technology, the present invention provides a rabbit meat processing device for processing rabbit meat to solve the problems. The present invention will be further described below.

[0006] A rabbit meat processing device for processing rabbit meat comprises two support frames, a collecting frame is arranged between the two support frames, the support frames are respectively provided with an extrusion area and a puncture area for rabbit meat, a sliding member is arranged on the support frame, a force storage spring is compressed between the sliding member and the support frame, a connecting frame is arranged on the sliding member, a fixing member is arranged on the connecting frame, a connecting plate is arranged on the connecting frame, a handle is arranged on the connecting plate, an extrusion plate is arranged on the handle, a pressure spring is arranged between the extrusion plate and the connecting plate, a connecting member is arranged on the sliding member, a positioning frame is arranged on the support frame, and a fixing member is arranged on the connecting frame. A slideway is provided, and a first rolling member is slidably connected between the slideways of the two positioning frames, a second gear is provided on the first rolling member, the second gear is meshed with a third gear through a sliding plate, the second gear and the third gear are both connected to the sliding plate, a telescopic rod is connected to the sliding plate, the telescopic rod is fixed in the slideway of the positioning frame, a compression spring is provided between the telescopic rod and the sliding plate, a fixed plate is provided on the positioning frame, a second rolling member is provided between the two fixed plates, a fourth gear is provided on the second rolling member, and a chain is wound between the fourth gear, the first gear and the third gear, so as to clamp and squeeze the whole rabbit.

[0010] Preferably, an electronic weighing device is installed on the support frame to bear the weight of the whole rabbit and facilitate the addition of materials for subsequent processing.

[0011] Preferably, the fixing member is provided with spikes, and screws are provided on the spikes. The screws are connected to the fixing member in a penetrating manner. A worm gear is provided on the screws. Four grooves are formed in the fixing member, and telescopic members are slidably connected in the four grooves. The telescopic members are all connected to racks through short rods, and the racks are meshed with the adjacent worm gears. A worm is connected to the fixing member through a support rod. A second helical gear is provided on the worm. A motor is installed on the fixing member, and a first helical gear is provided on the output shaft of the motor. The first helical gear is meshed with the second helical gear, aiming to spread the limbs of the whole rabbit.

[0012] Preferably, sliding grooves are formed in the positioning frames. A first connecting rod is provided between the sliding grooves of the two positioning frames. The first connecting rod penetrates through the sliding grooves of the positioning frames and extends to the outside. A first gear and a lifting member are provided on the first connecting rod. The lifting member and the connecting member are both connected by a pulling rope. The length of the pulling rope is fixed. A pulley is fixedly connected to the positioning frame. The two ends of the pulling rope are respectively fixedly connected to the lifting member and the connecting member and bypass the pulley. A handle is provided on the lifting member. A bolt is provided on the handle. A tension spring is provided between the bolt and the lifting member. A clamping groove is provided on the positioning frame. The bolt is clamped and matched with the clamping groove, aiming to make the lifting member and the connecting member move in opposite directions through the pulling rope.

[0013] Preferably, moving plates are provided on the sliding plates. A first puncturing member is provided between the two moving plates. A second puncturing member is provided on the first connecting rod, aiming to perform a puncturing process on the whole rabbit through the first puncturing member and the second puncturing member.

[0014] Beneficial effects: Compared with the prior art, the present invention can clamp the rabbit through the fixing member and the pressing plate, and through the cooperation of the worm gear and the worm, the telescopic member is moved to spread the limbs of the rabbit, which is convenient for uniform pressing and puncturing; the sliding member is driven by the gravity of the rabbit to move down to the pressing area, and by means of the pulling rope, the triangular structure of the fourth gear, the first gear, the third gear and the chain realizes the separation of the first rolling member and the second rolling member and forms a space to press the rabbit, and simultaneously drives the separation of the first puncturing member and the second puncturing member and forms a space to perform a puncturing action on the rabbit, realizing the effects of automatic meat pressing and automatic puncturing, and improving the subsequent pickling and penetration efficiency. Description of the Drawings

[0015] Figure 1 : Three-dimensional structure schematic diagram of the present invention;

[0016] Figure 2 : Structural schematic diagram of the components related to spreading the limbs of the rabbit in the present invention;

[0017] Figure 3 : Structural schematic diagram of the components related to the triangular structure in the present invention;

[0018] Figure 4: Schematic structural diagram of components related to the locking structure of the present invention;

[0019] Figure 5 : Schematic structural diagram of the relevant structure for puncturing and locking a rabbit in the present invention;

[0020] Figure 6 : Schematic structural diagram of components such as the second gear, third gear, and sliding plate of the present invention;

[0021] In the figure: 1 - support frame, 11 - weighing member, 12 - collection box, 13 - connecting frame, 14 - fixing member, 15 - extrusion plate, 16 - pressure spring, 17 - connecting plate, 18 - pull handle, 19 - sliding member, 110 - connecting member, 111 - pull rope, 1111 - energy storage spring, 112 - pulley, 113 - positioning frame, 114 - bolt, 1141 - card slot, 115 - tension spring, 116 - grip, 117 - lifting member, 118 - first gear, 119 - fourth gear, 121 - chain, 122 - fixing plate, 1221 - first connecting rod, 1222 - first rolling member, 1223 - second rolling member, 123 - second gear, 124 - third gear, 125 - sliding plate, 126 - moving plate, 1261 - first puncturing member, 127 - telescopic rod, 128 - compression spring, 129 - second puncturing member, 2 - motor, 21 - first helical gear, 22 - worm, 221 - second helical gear, 23 - worm gear, 24 - spike, 25 - telescopic member, 26 - rack, 27 - screw. Detailed implementation manners

[0022] Next, a specific embodiment of the present invention will be elaborated in detail with reference to the accompanying drawings.

[0023] Refer to the attached Figures 1-6 , a rabbit meat processing device for processing rabbit meat, including symmetrically distributed support frames 1. A collection box 12 for collecting processed rabbit meat is detachably clamped between the bottoms of the two support frames 1. The support frames 1 are respectively provided with an extrusion area and a puncturing area for rabbit meat. The whole rabbit (hereinafter generally referred to as: whole rabbit) after slaughtering and decapitation is pressed to thin the rabbit meat through the extrusion area, and then microporous channels are formed on the surface of the rabbit meat through the puncturing area, which is convenient for improving the subsequent pickling and penetration efficiency.

[0024] A sliding member 19 is slidably connected to the two support frames 1, and a force storage spring 1111 is compressed between the sliding member 19 and the support frame 1. A connecting frame 13 is fixedly connected to the top of the two sliding members 19, and a clamping component for arranging the rabbit is provided on the connecting frame 13. Specifically: a fixing member 14 is fixedly connected to one side of the connecting frame 13, and a connecting plate 17 is fixedly connected to the other side of the connecting frame 13. A handle 18 passes through and is slidably connected to the connecting plate 17. An extrusion plate 15 that can cooperate with the fixing member 14 to form a grip is fixedly connected to the end of the handle 18. The extrusion plate 15 is parallel to the handle 18 and close to each other, which means that the extrusion plate 15 is driven to move by the sliding action of the handle 18, and then the distance between the extrusion plate 15 and the fixing member 14 is adjusted to achieve the clamping effect. A pressure spring 16 is compressed between the extrusion plate 15 and the connecting plate 17, and the pressure spring 16 is wound around the handle 18.

[0025] The whole rabbit after preliminary processing can be placed between the squeezing plate 15 and the fixing part 14. In the initial state, the squeezing plate 15 and the fixing part 14 are close to each other. In order to facilitate the clamping of the rabbit, the pull handle 18 is pulled outward to drive the squeezing plate 15 to move backward, the pressure spring 16 is deformed, and the whole rabbit is placed between the squeezing plate 15 and the fixing part 14. The pull handle 18 is reset, and the squeezing plate 15 is controlled to move forward and reset. Due to the existence of the pressure spring 16, the squeezing plate 15 maintains a forward thrust, thereby realizing the squeezing plate 15 and the fixing part 14 to clamp the whole rabbit.

[0026] In order to facilitate the stretching of the limbs of the whole rabbit after slaughter, the device is configured as follows: four spikes 24 are slidably connected to the fixing member 14, so that the whole rabbit can be pierced and locked on the fixing member 14 through the spikes 24 to prevent the whole rabbit from sliding off between the fixing member 14 and the extrusion plate 15. The spikes 24 are symmetrically distributed on the upper and lower sides of the central axis of the fixing member 14, which means that the spikes 24 pierce and lock the abdominal area of ​​the whole rabbit. A screw 27 is threadedly connected to each of the spikes 24, and the screw 27 is connected to the fixing member 14 through, which means that the rotation of the screw 27 can drive the spike 24 to rotate.

[0027] The ends of the screw rods 27 are fixedly connected with worm wheels 23, and the worm wheels 23 are used to drive the screw rods 27 to rotate. Four grooves are formed in the fixing member 14, and telescopic members 25 are slidably connected in the four grooves. The purpose is to spread the limbs of the whole rabbit through the sliding action of the telescopic members 25. The telescopic members 25 are fixedly connected with a rack 26 through short rods. The rack 26 is attached to the inner wall of the fixing member 14, and the rack 26 meshes with the adjacent worm wheel 23. A worm 22 is rotatably connected to the fixing member 14 through a support rod. A second bevel gear 221 is fixedly connected to the bottom of the worm 22. A motor 2 is also installed on the fixing member 14, and a first bevel gear 21 is fixedly connected to the output shaft of the motor 2. The first bevel gear 21 meshes with the second bevel gear 221. The purpose is to drive the worm 22 to rotate through the meshing action of the first bevel gear 21 and the second bevel gear 221, and then drive the worm wheel 23 to rotate.

[0028] In the initial placement stage, the pull handle 18 is pulled outwards to drive the pressing plate 15 to move backwards, and the compression spring 16 deforms. After the whole rabbit is placed between the pressing plate 15 and the fixing member 14, the relevant personnel puncture and lock the abdomen of the slaughtered whole rabbit through the spikes 24. The four limbs of the rabbit are respectively extended on the sides of the telescopic members 25. Then the pull handle 18 is reset to make the pressing plate 15 and the fixing member 14 maintain the clamping force on the whole rabbit. At this time, the motor 2 is started to drive the first bevel gear 21 to rotate. The second bevel gear 221 meshes and rotates. The rotation of the second bevel gear 221 drives the worm 22 to rotate. After the worm wheel 23 meshes with the worm 22, it rotates. The rotation of the worm wheel 23 then meshes with the adjacent rack 26 and drives the racks 26 to move outwards. The telescopic members 25 are controlled to slide outwards, thereby achieving the effect of spreading the limbs of the whole rabbit. As the worm wheel 23 rotates, the screw rod 27 is controlled to rotate, and then drives the spikes 24 to retract towards the direction of the worm wheel 23. Then the spikes 24 retract and cancel the puncture and locking effect on the whole rabbit, facilitating subsequent squeezing actions.

[0029] To facilitate calculating the subsequent pickling material dosage according to the individual differences of the whole rabbit, a weighing component is set in this clamping step of the device to achieve this. An electronic weighing component 11 is installed on the support frame 1. In the initial state, the value of the weighing component 11 has been zeroed and calibrated. When the whole rabbit is placed between the pressing plate 15 and the fixing member 14, the change in the value of the weighing component 11 is the weight display of the whole rabbit. The relevant personnel can calculate the subsequent processing material dosage according to the value display of the weighing component 11.

[0030] After the weighing action is completed, the fixing member 14 and the squeezing plate 15 still maintain the clamping action on the whole rabbit. Based on the weight of the whole rabbit, the sliding member 19 slides downward, and the force storage spring 1111 is deformed, thereby driving the whole rabbit to move down to the meat pressing area, changing the muscle structure through physical pressure, and improving the pickling permeability. Specifically: the two sliding members 19 are fixedly connected with a connecting member 110, and the support frame 1 is fixedly connected with a positioning frame 113, and the positioning frame 113 is provided with a slideway. A first connecting rod 1221 is slidably connected between the slideways of the two positioning frames 113, and the first connecting rod 1221 passes through the slideway on the positioning frame 113 and extends to the outside. The end of the first connecting rod 1221 does not contact the end of the connecting member 110, and the first gear 118 and the lifting member 117 are fixedly connected to the two ends of the first connecting rod 1221. The lifting member 117 and the end of the connecting member 110 are connected by a pull rope 111. The rope 111 is of fixed length, and a pulley 112 is fixedly connected to the positioning frame 113. The two ends of the pull rope 111 are respectively fixedly connected to the lifting member 117 and the connecting member 110 and pass around the pulley 112, so that the connecting member 110 and the lifting member 117 can move in opposite directions based on the existence of the pull rope 111. A handle 116 is slidably connected to the lifting member 117, and one end of the handle 116 passes through the lifting member 117 and is fixedly connected to a latch 114. A tension spring 115 is compressed between the latch 114 and the lifting member 117, so that the latch 114 can be driven to move by the handle 116. A plurality of slots 1141 are opened on the side of the positioning frame 113, and the latch 114 is engaged with the slots 1141. The slots 1141, 141, and the handle 116 can constitute a locking structure, so that the positioning effect of the lifting member 117 can be achieved by locking the latch 114 with the slot 1141.

[0031] The positioning frame 113 is also provided with a slideway, and a first rolling member 1222 is slidably connected between the slideways of the two positioning frames 113. The two ends of the first rolling member 1222 are fixedly connected with the second gear 123, and the second gear 123 is meshed with the third gear 124 through the sliding plate 125. The first rolling member 1222 passes through the sliding plate 125, and the sliding plate 125 is also rotatably connected with the third gear 124. The sliding plate 125 is built into the positioning frame 113 and slides in the slideway of the positioning frame 113. The sliding plate 125 is fixedly connected with the telescopic end of the telescopic rod 127, and the telescopic rod 127 is fixed in the slideway of the positioning frame 113. A compression spring 128 is compressed between the telescopic rod 127 and the sliding plate 125.

[0032] Fixed plates 122 are fixedly connected to both positioning frames 113. A second rolling member 1223 is rotatably connected between the two fixed plates 122. The second rolling member 1223 passes through the positioning frame 113 and extends to the outside. A fourth gear 119 is fixedly connected to each end of the second rolling member 1223 that passes through the positioning frame 113 and extends to the outside. A chain 121 is wound around the fourth gear 119, the first gear 118, and the third gear 124. The fourth gear 119, the first gear 118, the third gear 124, and the chain 121 maintain a static triangular structure.

[0033] In the initial state, the bolt 114 is locked with the card slot 1141. The first rolling member 1222 and the second rolling member 1223 are in contact. The telescopic part of the telescopic rod 127 is compressed, and the compression spring 128 deforms. The rabbit is clamped by the fixing member 14 and the pressing plate 15. Pull the handle 116 outwards to disengage the bolt 114 from the card slot 1141. Based on the weight of the rabbit, the sliding member 19 moves downwards, and the connecting member 110 is controlled to move downwards. Due to the existence of the pull rope 111, the pull rope 111 generates an upward pulling force on the lifting member 117, thereby driving the lifting member 117 to move upwards. The first connecting rod 1221 and the first gear 118 are controlled to move upwards, breaking the static triangular structure of the fourth gear 119, the first gear 118, the third gear 124, and the chain 121. During this process, the fourth gear 119, the first gear 118, and the third gear 124 rotate, driving the first connecting rod 1221 and the second rolling member 1223 to rotate. The third gear 124 rotates and meshes with the second gear 123. Then, the second gear 123 rotates in the opposite direction relative to the third gear 124, thereby driving the first rolling member 1222 to rotate in the opposite direction. Thus, relative rotation between the first rolling member 1222 and the second rolling member 1223 is achieved. The purpose is that the first rolling member 1222 and the second rolling member 1223 squeeze the whole rabbit and make the whole rabbit fall to the puncture area through the relative rotation action.

[0034] Under the action of the compression spring 128, the third gear 124 slides in the direction away from the fourth gear 119, thereby driving the sliding plate 125 and the second gear 123 to move. The first rolling member 1222 is controlled to move in the direction away from the second rolling member 1223, separating the first rolling member 1222 and the second rolling member 1223 and forming a gap, facilitating the whole rabbit to fall and be pressed between the first rolling member 1222 and the second rolling member 1223.

[0035] Subsequently, relevant personnel can, according to the body size of the whole rabbit, control the height of the clamping fit between the bolt 114 and the card slot 1141 to adjust the upward movement height of the lifting member 117, and further adjust the moving stroke of the first rolling member 1222, and further adjust the squeezing force of the first rolling member 1222 and the second rolling member 1223 on the whole rabbit.

[0036] The whole rabbit moves downward and is clamped between the first connecting rod 1221 and the second rolling member 1223, and the physical extrusion effect is achieved through the first connecting rod 1221 and the second rolling member 1223. After the extrusion action of the first connecting rod 1221 and the second rolling member 1223, the shape of the rabbit meat is uniform and regular. With the relative rotation of the first connecting rod 1221 and the second rolling member 1223, the pressed rabbit meat falls to the puncture area for puncture treatment. Specifically, moving plates 126 are fixedly connected to the sliding plate 125, and a first puncturing member 1261 is rotatably connected between the two moving plates 126, aiming to drive the first puncturing member 1261 to move through the movement of the sliding plate 125. A second puncturing member 129 is fixedly connected to the outer surface of the first connecting rod 1221. Initially, the first puncturing member 1261 and the second puncturing member 129 are close to each other.

[0037] With the movement of the sliding plate 125 and the second gear 123, the first puncturing member 1261 moves away from the second puncturing member 129, and a gap is formed between the first puncturing member 1261 and the second puncturing member 129 to facilitate the whole rabbit to fall therein. With the locking of the pin 114 and the card slot 1141, the movement of the sliding plate 125 stops, and then the movement of the first puncturing member 1261 stops. Then, the pressed whole rabbit is placed between the first puncturing member 1261 and the second puncturing member 129 and is squeezed, causing the first puncturing member 1261 and the second puncturing member 129 to rotate. Through the squeezing and puncturing actions of the first puncturing member 1261 and the second puncturing member 129, micropores are formed on the surface of the rabbit meat to facilitate subsequent pickling. With the rotation of the first puncturing member 1261 and the second puncturing member 129 and the gravity of the rabbit itself, the punctured rabbit meat falls into the collection box 12, which is convenient for collection and transportation to the next process.

[0038] The above are only the preferred embodiments of the present invention and are not used to limit the present invention. For those skilled in the art, the present invention can have various changes and modifications. Any modification, equivalent replacement, improvement, etc. made within the spirit and principle of the present invention shall be included within the protection scope of the present invention.

Claims

1. A rabbit meat processing device for processing rabbit meat, comprising symmetrically distributed support frames (1), a collecting frame (12) being arranged between two support frames (1), characterized in that: The support frame (1) is provided with a squeezing area and a piercing area for rabbit meat, respectively; the support frame (1) is provided with a sliding member (19); a force storage spring (1111) is compressed between the sliding member (19) and the support frame (1); the sliding member (19) is provided with a connecting frame (13); the connecting frame (13) is provided with a fixing member (14); the connecting frame (13) is also provided with a connecting plate (17); the connecting plate (17) is provided with a pull handle (18); the pull handle (18) is provided with a squeezing plate (15); a pressure spring (16) is provided between the squeezing plate (15) and the connecting plate (17); the sliding member (19) is provided with a connecting member (110); the support frame (1) is provided with a positioning frame (113); a slideway is provided on the positioning frame (113); a first rolling member (1222) is slidably connected between the slideways of the two positioning frames (113); the first rolling member (1222) is slidably connected to the first rolling member (1222); A second gear (123) is provided on the positioning frame (113), the second gear (123) is meshed with a third gear (124) via a sliding plate (125), the second gear (123) and the third gear (124) are both connected to the sliding plate (125), the sliding plate (125) is built in the slideway of the positioning frame (113), the sliding plate (125) is connected to a telescopic rod (127), and the telescopic rod (127) is fixed to the positioning frame (113). In the slideway, a compression spring (128) is provided between the telescopic rod (127) and the sliding plate (125), a fixing plate (122) is provided on the positioning frame (113), a second rolling member (1223) is provided between the two fixing plates (122), a fourth gear (119) is provided on the second rolling member (1223), and a chain (121) is wound between the fourth gear (119), the first gear (118) and the third gear (124).

2. The rabbit meat processing device for processing rabbit meat according to claim 1, characterized in that: An electronic weighing component (11) is installed on the support frame (1).

3. The rabbit meat processing device for processing rabbit meat according to claim 1, characterized in that: The fixing member (14) is provided with a spike (24), the spike (24) is provided with a screw (27), the screw (27) is connected to the fixing member (14) in a through-type manner, the screw (27) is provided with a worm gear (23), the fixing member (14) is provided with four grooves, the four grooves are all slidably connected with telescopic members (25), the telescopic members (25) are all connected with racks (26) through short rods, the racks (26) are meshed with adjacent worm gears (23), the fixing member (14) is connected with a worm (22) through a supporting rod, the worm (22) is provided with a second bevel gear (221), the fixing member (14) is mounted with a motor (2), the output shaft of the motor (2) is provided with a first bevel gear (21), the first bevel gear (21) is meshed with the second bevel gear (221), 4. The rabbit meat processing device for processing rabbit meat according to claim 1, characterized in that: The positioning frames (113) are each provided with a slideway, a first connecting rod (1221) is provided between the slideways of the two positioning frames (113), the first connecting rod (1221) passes through the slideway on the positioning frames (113) and extends to the outside, the first connecting rod (1221) is provided with a first gear (118) and a lifting member (117), the lifting member (117) and the connecting member (110) are both connected by a pull rope (111), the pull rope (111) is of a fixed length, and a pulley (118) is fixedly connected to the positioning frame (113). 12), the two ends of the pull rope (111) are respectively fixedly connected to the lifting member (117) and the connecting member (110) and pass around the pulley (112), the lifting member (117) is provided with a handle (116), the handle (116) is provided with a latch (114), a tension spring (115) is provided between the latch (114) and the lifting member (117), the positioning frame (113) is provided with a slot (1141), and the latch (114) is engaged with the slot (1141).

5. The rabbit meat processing device for processing rabbit meat according to claim 1, characterized in that: The sliding plates (125) are each provided with a moving plate (126), a first piercing member (1261) is provided between the two moving plates (126), and a second piercing member (129) is provided on the first connecting rod (1221).