Bowling device for livestock slaughtering

By combining the design of conveying, lifting and pressing mechanisms, the problem of inflexible fixation in traditional evisceration devices has been solved, enabling stable fixation and efficient evisceration of different poultry species, ensuring neat and smooth cuts, and improving product quality and the service life of the device.

CN224219321UActive Publication Date: 2026-05-12WEIXIAN XINSHENG MEAT FOOD CO LTD
View PDF 0 Cites 0 Cited by

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
WEIXIAN XINSHENG MEAT FOOD CO LTD
Filing Date
2025-06-11
Publication Date
2026-05-12

AI Technical Summary

Technical Problem

Traditional evisceration devices for livestock slaughtering are prone to causing excessive compression when fixing chickens or ducks. They are difficult to adjust flexibly according to different sizes and shapes, resulting in uneven cutting and poor smoothness, which affects product quality and market competitiveness.

Method used

It adopts a combined design of conveying mechanism, lifting mechanism, evisceration mechanism and pressing mechanism. The conveying, lifting and pressing are driven by motor to achieve stable fixation of poultry of different sizes and shapes. Infrared sensors and dust brushes are used to improve the accuracy and consistency of operation.

Benefits of technology

To ensure the accuracy and consistency of the grooving operation, reduce mechanical wear, extend equipment life, and improve product quality and market competitiveness.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN224219321U_ABST
    Figure CN224219321U_ABST
Patent Text Reader

Abstract

The utility model discloses an opening device for livestock slaughtering, and relates to the technical field of opening devices. The conveying mechanism is arranged at the top end of the workbench; the collecting box is arranged at one end of the conveying mechanism and is matched with the workbench; the lifting mechanism is arranged at one end of the workbench and matched with the conveying mechanism; the opening mechanism is arranged in the lifting mechanism; and the pressing mechanism is arranged on the outer side of the chamber opening mechanism, and the livestock is fixed through the pressing mechanism during chamber opening. Through cooperative arrangement of the conveying mechanism, the collecting box, the lifting mechanism, the bore opening mechanism and the pressing mechanism, efficient bore opening operation of livestock (such as chickens and ducks) can be achieved, stable fixing of livestock of different sizes and shapes can be achieved in the bore opening process, accuracy and consistency of bore opening operation are ensured, and the working efficiency is improved. Neat and smooth notches are ensured, and the product quality is further guaranteed.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] This utility model relates to the field of evisceration device technology, specifically to an evisceration device for livestock slaughtering. Background Technology

[0002] As people's living standards improve, the demand for meat continues to increase, especially for meat products from livestock such as chickens and ducks. Among the many stages involved in chicken or duck slaughtering, the most important is to perform the evisceration operation quickly and accurately. Therefore, in order to further improve slaughtering efficiency and reduce errors and risks caused by manual operation, livestock slaughtering evisceration devices are usually used to eviscerate chickens or ducks, ensuring the production efficiency and quality of meat products and meeting market demand for meat products from livestock such as chickens and ducks.

[0003] However, traditional evisceration devices for livestock slaughter typically rely on fixed limiting rods to hold chickens or ducks in place during the evisceration process. This method can easily cause excessive compression of poultry, leading to injury, and it is difficult to flexibly adjust the fixing method according to chickens or ducks of different sizes and shapes. This limitation makes it easy for livestock to move during the evisceration process, making it difficult to guarantee the consistency and accuracy of each cut. This results in uneven cuts and poor smoothness, increasing the defect rate and seriously affecting the appearance quality and market competitiveness of the product.

[0004] No effective solutions have yet been proposed to address the problems in the relevant technologies. Utility Model Content

[0005] In view of the problems in the related technologies, this utility model proposes a evisceration device for livestock slaughtering to overcome the above-mentioned technical problems existing in the existing related technologies.

[0006] Therefore, the specific technical solution adopted by this utility model is as follows:

[0007] A evisceration device for slaughtering livestock includes a workbench; a conveying mechanism disposed at the top of the workbench; a collection box disposed at one end of the conveying mechanism and cooperating with the workbench; a lifting mechanism disposed at one end of the workbench and cooperating with the conveying mechanism; an evisceration mechanism disposed inside the lifting mechanism; and a pressing mechanism disposed outside the evisceration mechanism, which is used to fix the livestock during evisceration.

[0008] Furthermore, in order to transport the gutted chicken or duck to the location of the gutting mechanism, the conveying assembly is rotated by the rotation of motor one, causing the chicken or duck to be gutted on the conveying assembly to move closer to the gutting mechanism. At the same time, the side plates on both sides ensure that the chicken or duck to be gutted will not deviate from the predetermined path during the conveying process. The conveying mechanism includes a conveying assembly set at the top of the workbench. Motor one is set at one end of the conveying assembly and connected to it. Side plates are connected to the top two sides of the conveying assembly. The top of one set of side plates is set with a support rod that cooperates with the pressing mechanism. The bottom of the support rod is set with an infrared sensor. The included angle between the two sets of side plates near the pressing mechanism is an acute angle. The cross-section of the support rod is L-shaped and the support rod is located in the middle of the pressing mechanism.

[0009] Furthermore, to achieve precise height adjustment of the evisceration mechanism, the rotation of motor two drives the threaded rod to rotate, thereby moving the evisceration mechanism and the pressing mechanism downwards together, thus realizing the evisceration operation of the chicken or duck to be eviscerated. Under the protection of the dust brush, dust and fine particles are effectively prevented from entering the limiting groove, greatly reducing the wear of the threaded rod and the frequency of maintenance, and extending the service life of the device. The lifting mechanism includes a support frame set at one end of the worktable, a control panel set on the outside of the support frame, a limiting groove opened at one end of the support frame, a threaded rod that penetrates the support frame inside the limiting groove, motor two set at the top of the threaded rod, and a moving block that engages with the evisceration mechanism on the outside of the threaded rod; dust brushes that engage with the support frame and the moving block are symmetrically arranged on the side of the limiting groove near the evisceration mechanism.

[0010] Furthermore, in order to perform the evisceration operation on chickens or ducks, the evisceration disc is rotated by the rotation of motor three, thereby enabling the evisceration operation on chickens or ducks. The evisceration mechanism includes motor three located at the top of the moving block. A protective shell is installed through one end of motor three, and an evisceration disc connected to the output shaft of motor three is installed inside the protective shell.

[0011] Furthermore, to achieve stable fixation without damaging the chicken or duck to be gutted, the pressing mechanism continuously moves downwards, causing several rollers to contact the top of the chicken or duck to be gutted. Through the elasticity of the spring and the coordinated rotation of the rotating block, rotating rod one, and rotating rod two, chickens or ducks of different sizes and shapes are fixed, ensuring the precision and consistency of the gutting operation, and guaranteeing a neat and smooth cut, thereby improving the product's market competitiveness. The pressing mechanism includes fixed plates located at the bottom of both sides of the protective shell. A connecting plate is connected to the side of the fixed plate away from the protective shell, and a baffle is provided on one side of the connecting plate. The top of the connecting plate is equipped with... There are several rotating blocks. The bottom end of each rotating block is symmetrically connected to a movable column that penetrates through a connecting plate. The movable column is connected to the top of the connecting plate by a spring. A roller is connected to the bottom of the movable column. Rotating rod 1 is connected to the outer side of the two sets of rotating blocks away from the collection box. The end of rotating rod 1 is connected to rotating rod 2, which is connected to a set of rotating blocks closer to the collection box. The middle of rotating rod 1 and the middle of rotating rod 2 are connected by a fixed frame. The protective shell is connected to the fixed frame by a connecting column on the side away from motor 3, and connected to the fixed frame by a bearing on the side of the protective shell closer to motor 3. The rotating blocks are evenly arranged and linearly distributed on the top of the connecting plate.

[0012] The beneficial effects of this utility model are as follows:

[0013] 1. This utility model, through the coordinated arrangement of a conveying mechanism, a collection box, a lifting mechanism, a evisceration mechanism, and a pressing mechanism, not only enables efficient evisceration of livestock (such as chickens and ducks), but also ensures the stable fixation of livestock of different sizes and shapes during the evisceration process, thereby ensuring the accuracy and consistency of the evisceration operation, ensuring neat and smooth cuts, and further guaranteeing product quality.

[0014] 2. The lifting mechanism, driven by the rotation of motor 2, drives the threaded rod to rotate, thereby moving the evisceration mechanism and the pressing mechanism downwards together, thus realizing the evisceration operation of the chicken or duck to be eviscerated. Under the protection of the dust brush, dust and fine particles are effectively blocked from entering the limit groove, greatly reducing the wear of the threaded rod and the frequency of maintenance, and extending the service life of the device.

[0015] 3. Through the pressing mechanism, under the continuous downward movement of the pressing mechanism, several rollers come into contact with the top of the chicken or duck to be gutted. Under the elasticity of the spring and the coordinated rotation of the rotating block, rotating rod one and rotating rod two, chickens or ducks of different sizes and shapes to be gutted are fixed, ensuring the accuracy and consistency of the gutting operation, ensuring the neatness and smoothness of the cut, thereby improving the market competitiveness of the product. Attached Figure Description

[0016] To more clearly illustrate the technical solutions in the embodiments of this utility model or the prior art, the drawings used in the embodiments will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0017] Figure 1 This is one of the structural schematic diagrams of a evisceration device for slaughtering livestock according to an embodiment of the present utility model;

[0018] Figure 2 This is a second schematic diagram of a evisceration device for slaughtering livestock according to an embodiment of the present utility model;

[0019] Figure 3 This is one of the partial sectional views of a evisceration device for slaughtering livestock according to an embodiment of the present utility model;

[0020] Figure 4 This is a second partial sectional view of a evisceration device for slaughtering livestock according to an embodiment of the present utility model;

[0021] Figure 5 This is a third partial sectional view of a evisceration device for slaughtering livestock according to an embodiment of the present utility model;

[0022] Figure 6 This is a fourth partial sectional view of a evisceration device for slaughtering livestock according to an embodiment of the present utility model;

[0023] Figure 7 This is a partial structural schematic diagram of the pressing mechanism in a evisceration device for slaughtering livestock according to an embodiment of the present utility model.

[0024] In the picture:

[0025] 1. Workbench; 2. Conveying mechanism; 201. Conveying assembly; 202. Motor 1; 203. Side plate; 204. Support rod; 205. Infrared sensor; 3. Collection box; 4. Lifting mechanism; 401. Support frame; 402. Control panel; 403. Limit groove; 404. Threaded rod; 405. Motor 2; 406. Moving block; 407. Dustproof brush; 5. Slitting mechanism; 501. Motor 3; 502. Protective shell; 503. Slitting cutter head; 6. Pressing mechanism; 601. Fixed plate; 602. Connecting plate; 603. Baffle; 604. Rotating block; 605. Moving column; 606. Spring; 607. Roller; 608. Rotating rod 1; 609. Rotating rod 2; 610. Fixed frame; 611. Connecting column; 612. Bearing. Detailed Implementation

[0026] To further illustrate the various embodiments, the present invention provides accompanying drawings, which are part of the disclosure of the present invention. These drawings are mainly used to illustrate the embodiments and can be used in conjunction with the relevant descriptions in the specification to explain the operating principles of the embodiments. With reference to these contents, those skilled in the art should be able to understand other possible implementation methods and the advantages of the present invention. The components in the figures are not drawn to scale, and similar component symbols are usually used to represent similar components.

[0027] According to an embodiment of the present invention, a evisceration device for slaughtering livestock is provided.

[0028] The present invention will now be further described in conjunction with the accompanying drawings and specific embodiments, such as... Figures 1-7 As shown, the livestock slaughtering evisceration device according to an embodiment of the present utility model includes a workbench 1; a conveying mechanism 2, disposed at the top of the workbench 1; a collection box 3, disposed at one end of the conveying mechanism 2 and cooperating with the workbench 1; a lifting mechanism 4, disposed at one end of the workbench 1 and cooperating with the conveying mechanism 2; an evisceration mechanism 5, disposed inside the lifting mechanism 4; and a pressing mechanism 6, disposed outside the evisceration mechanism 5, and used to fix the livestock during evisceration.

[0029] In one embodiment, the conveying mechanism 2 includes a conveying assembly 201 mounted on the top of the workbench 1. A motor 202 connected to one side of the conveying assembly 201 is mounted on one side end. Side plates 203 are mounted on both sides of the top of the conveying assembly 201. A support rod 204 cooperating with the pressing mechanism 6 is mounted on the top of one set of side plates 203. An infrared sensor 205 is mounted on the bottom of the support rod 204. The included angle formed between the two sets of side plates 203 near the pressing mechanism 6 is an acute angle. The cross-section of the support rod 204 is L-shaped and the support rod 204 is located in the middle of the pressing mechanism 6. Under the rotation of the motor 202, the conveying assembly 201 can be rotated, causing the chicken or duck to be gutted on the conveying assembly 201 to move towards the gutting mechanism 5. At the same time, the side plates 203 on both sides ensure that the chicken or duck to be gutted will not deviate from the predetermined path during the conveying process.

[0030] In addition, it should be noted that the above-mentioned conveying assembly 201 consists of a chain, a sprocket, a connecting plate and a support plate. The rotation of the motor 202 drives the sprocket to rotate, which in turn drives the chain to drive the connecting plate to transport livestock. The composition and working principle of the conveying assembly 201 are existing technologies and will not be elaborated on here.

[0031] In addition, it should be noted that the infrared sensor 205 mentioned above can be the WTU201F2 B004 MCU sensor. This infrared sensor 205 is existing technology and will not be discussed further here.

[0032] In one embodiment, the lifting mechanism 4 includes a support frame 401 disposed at one end of the worktable. A control panel 402 is disposed on the outer side of the support frame 401. A limiting groove 403 is formed at one end of the support frame 401. A threaded rod 404 penetrating the support frame 401 is disposed inside the limiting groove 403. A motor 405 is disposed at the top end of the threaded rod 404. A moving block 406 cooperating with the slit mechanism 5 is disposed on the outer side of the threaded rod 404. The limiting groove 403 is close to the slit mechanism 5. A dust brush 407 is symmetrically arranged on one side of the evisceration mechanism 5, which cooperates with the support frame 401 and the moving block 406. Under the rotation of the motor 405, the threaded rod 404 is driven to rotate, thereby driving the evisceration mechanism 5 and the pressing mechanism 6 to move downward together, so as to realize the evisceration operation of the chicken or duck to be eviscerated. Under the protection of the dust brush 407, dust and fine particles are effectively blocked from entering the limiting groove 403, which greatly reduces the wear and maintenance frequency of the threaded rod 404 and extends the service life of the device.

[0033] Furthermore, it should be noted that the aforementioned control panel 402 consists of control buttons, a display screen, a controller, and an interface connector. The control panel 402 is electrically connected to the infrared sensor 205, the conveying mechanism 2, the lifting mechanism 4, and the evisceration mechanism 5 in sequence. The operator inputs control commands through the buttons, and the controller processes them and sends signals to the conveying mechanism 2, the lifting mechanism 4, and the evisceration mechanism 5. The display screen shows the status information in real time, coordinating the work of the positioning device to realize the conveying, fixing, and evisceration of livestock such as chickens and ducks, thereby improving the efficiency and safety of operation. This control panel 402 is existing technology and will not be elaborated on further here.

[0034] In addition, it should be noted that the dust brush 407 is made of wear-resistant and elastic material. It can provide a sealing effect without affecting the normal operation of the device, prevent the intrusion of external pollutants, ensure the cleanliness of internal components, and thus improve the stability and reliability of the entire device. The dust brush 407 can effectively block dust and fine particles from entering the threaded rod 404, thereby reducing mechanical wear and maintenance frequency and extending the service life of the device.

[0035] In one embodiment, the evisceration mechanism 5 includes a motor 501 disposed at the top of the moving block 406. One end of the motor 501 is provided with a protective shell 502. Inside the protective shell 502 is an evisceration disc 503 connected to the output shaft of the motor 501. Under the rotation of the motor 501, the evisceration disc 503 can be driven to rotate, thereby realizing the evisceration operation of the chicken or duck to be eviscerated.

[0036] In one embodiment, the pressing mechanism 6 includes a fixed plate 601 disposed at the bottom of both sides of the protective shell 502. A connecting plate 602 is connected to the side of the fixed plate 601 away from the protective shell 502, and a baffle 603 is disposed on one side of the connecting plate 602. A plurality of rotating blocks 604 are disposed at the top of the connecting plate 602, and a movable column 605 penetrating the connecting plate 602 is symmetrically connected to the bottom end of the rotating blocks 604. The movable column 605 is connected to the top of the connecting plate 602 by a spring 606, and a roller 607 is connected to the bottom of the movable column 605. A rotating rod 608 is connected to the outer side of the two sets of rotating blocks 604 away from the collection box 3. A rotating rod 609 is disposed at the end of the rotating rod 608 and connected to a set of rotating blocks 604 near the collection box 3. The middle part is connected to the middle part of the rotating rod 609 via a fixing frame 610; the protective shell 502 is connected to the fixing frame 610 via a connecting column 611 on the side away from the motor 501, and connected to the fixing frame 610 via a bearing 612 on the side of the protective shell 502 closer to the motor 501; several rotating blocks 604 are evenly arranged and linearly distributed at the top of the connecting plate 602; under the continuous downward movement of the pressing mechanism 6, several rollers 607 are brought into contact with the top of the chicken or duck to be gutted, and under the elasticity of the spring 606 and the coordinated rotation of the rotating blocks 604, rotating rod 608 and rotating rod 609, chickens or ducks of different sizes and shapes to be gutted are fixed, ensuring the accuracy and consistency of the gutting operation, ensuring the neatness and smoothness of the cut, thereby improving the market competitiveness of the product.

[0037] Furthermore, it should be noted that the aforementioned rotating block 604 is connected to rotating rod 608, rotating block 604 is connected to rotating rod 609, fixed frame 610 is connected to rotating rod 608, and fixed frame 610 is connected to rotating rod 609 via pins.

[0038] In addition, it should be noted that the roller 607 is composed of a roller body, bearings, pins and elastic support components. When the roller 607 comes into contact with the poultry to be processed, the roller body can rotate freely around the pin through the bearings, making the roller move more smoothly on the surface of the poultry, reducing the risk of damage caused by friction or jamming, and effectively protecting the surface of the poultry from damage.

[0039] To facilitate understanding of the above-mentioned technical solutions of this utility model, the working principle or operation method of this utility model in actual process will be described in detail below.

[0040] In practical application, the operator places the chicken or duck to be gutted on the conveyor assembly 201 at the end away from the collection box 3, ensuring that the chicken or duck is positioned between the two sets of side plates 203. Then, the controller on the control panel 402 starts the motor 202. The rotation of the motor 202 causes the conveyor assembly 201 to rotate, moving the chicken or duck on the conveyor assembly 201 towards the end closer to the collection box 3. When the chicken or duck moves to the position of the support rod 204, the infrared sensor 205 at the bottom of the support rod 204 detects that it is to be gutted. The location signal of the chicken or duck is transmitted to the control panel 402. Then, the controller of the control panel 402 controls the start of the lifting mechanism 4 and the evisceration mechanism 5. Under the rotation of the motor 405, the threaded rod 404 is driven to rotate, causing the moving block 406, which meshes with the threaded rod 404, to move downward along the path of the limiting groove 403. This causes the evisceration mechanism 5 and the pressing mechanism 6 to move downward together. Under the continuous downward movement of the pressing mechanism 6, several rollers 607 come into contact with the top of the chicken or duck to be eviscerated. The elasticity of the spring 606 and the rotation of the rotating block 604, the rotating rod 608, and the rotating mechanism 606 are all controlled by the rollers. Under the coordinated rotation of the second moving rod 609, several moving columns 605 move, fixing the chicken or duck to be gutted and ensuring the accuracy and consistency of the gutting operation. Simultaneously, the gutting mechanism 5 moves to contact the chicken or duck to be gutted, and under the rotation of the third motor 501, drives the gutting disc 503 to rotate, thus realizing the gutting operation. When the infrared sensor 205 at the support rod 204 does not detect a chicken or duck signal, it indicates that the gutting operation is complete, and the signal indicating no chicken or duck detected is transmitted to the control panel 402. The control panel 402 then controls the process. The device controls the start of the lifting mechanism 4. Under the reverse rotation of the motor 405, the threaded rod 404 rotates in the opposite direction, causing the moving block 406, which meshes with the threaded rod 404, to move upward along the path of the limiting groove 403. This causes the evisceration mechanism 5 and the pressing mechanism 6 to move upward together. Under the elastic action of the spring 606, the pressing mechanism 6 returns to its original state. At the same time, the evisceration mechanism 5 is stopped by the controller of the control panel 402. After evisceration, the chicken or duck moves into the collection box 3 under the continuous conveying action of the conveying component 201, making it convenient for subsequent operators to process.

[0041] In summary, by utilizing the above-mentioned technical solution of this utility model, through the coordinated arrangement of the conveying mechanism 2, the collecting box 3, the lifting mechanism 4, the evisceration mechanism 5, and the pressing mechanism 6, not only can efficient evisceration of livestock such as chickens and ducks be achieved, but also stable fixation of livestock of different sizes and shapes can be achieved during the evisceration process, ensuring the accuracy and consistency of the evisceration operation, ensuring neat and smooth cuts, and further guaranteeing product quality; through the lifting mechanism 4, under the rotation of the motor 405, the threaded rod 404 is driven to rotate, thereby driving the evisceration mechanism 5 and the pressing mechanism 6 to move downward together, thus realizing the evisceration operation of the chicken or duck to be eviscerated, and Under the protection of the dust brush 407, dust and fine particles are effectively blocked from entering the limiting groove 403, greatly reducing the wear and maintenance frequency of the threaded rod 404 and extending the service life of the device. Through the pressing mechanism 6, under the continuous downward movement of the pressing mechanism 6, several rollers 607 are brought into contact with the top of the chicken or duck to be gutted. Under the elasticity of the spring 606 and the coordinated rotation of the rotating block 604, rotating rod one 608 and rotating rod two 609, chickens or ducks of different sizes and shapes to be gutted are fixed, ensuring the accuracy and consistency of the gutting operation, ensuring the neatness and smoothness of the cut, thereby improving the market competitiveness of the product.

[0042] In this utility model, unless otherwise explicitly specified and limited, the terms "installation", "setting", "connection", "fixing", "screw connection", etc., should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral part; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium; they can refer to the internal connection of two components or the interaction between two components. Unless otherwise explicitly limited, those skilled in the art can understand the specific meaning of the above terms in this utility model according to the specific circumstances.

[0043] The above description is only a preferred embodiment of the present utility model and is not intended to limit the present utility model. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present utility model should be included within the protection scope of the present utility model.

Claims

1. A evisceration device for slaughtering livestock, characterized in that, include: Workbench (1); A conveying mechanism (2) is disposed at the top of the workbench (1); A collection box (3) is disposed at one end of the conveying mechanism (2) and cooperates with the worktable (1); A lifting mechanism (4) is provided at one end of the workbench (1) and cooperates with the conveying mechanism (2); The ripping mechanism (5) is located inside the lifting mechanism (4); The pressing mechanism (6) is located on the outside of the evisceration mechanism (5) and is used to fix the animal during evisceration.

2. The evisceration device for livestock slaughtering according to claim 1, characterized in that, The conveying mechanism (2) includes a conveying assembly (201) disposed at the top of the workbench (1). A motor (202) connected to one side end of the conveying assembly (201) is provided. Side plates (203) are connected to both sides of the top of the conveying assembly (201). A support rod (204) cooperating with the pressing mechanism (6) is provided at the top of one set of the side plates (203). An infrared sensor (205) is provided at the bottom end of the support rod (204).

3. The evisceration device for livestock slaughtering according to claim 1, characterized in that, The lifting mechanism (4) includes a support frame (401) disposed at one end of the workbench. A control panel (402) is disposed on the outside of the support frame (401). A limit groove (403) is opened at one end of the support frame (401). A threaded rod (404) that penetrates the support frame (401) is disposed inside the limit groove (403). A motor (405) is disposed at the top of the threaded rod (404). A moving block (406) that cooperates with the grooving mechanism (5) is engaged on the outside of the threaded rod (404). The limiting groove (403) is symmetrically provided with a dustproof brush (407) that cooperates with the support frame (401) and the moving block (406) on the side near the grooving mechanism (5).

4. The evisceration device for livestock slaughtering according to claim 3, characterized in that, The grooving mechanism (5) includes a motor three (501) disposed at the top of the moving block (406). One end of the motor three (501) is provided with a protective shell (502). Inside the protective shell (502) is a grooving cutter disc (503) connected to the output shaft of the motor three (501).

5. The evisceration device for livestock slaughtering according to claim 4, characterized in that, The pressing mechanism (6) includes a fixing plate (601) disposed at the bottom of both sides of the protective shell (502). A connecting plate (602) is connected to the side of the fixing plate (601) away from the protective shell (502), and a baffle (603) is disposed on one side of the connecting plate (602). The top end of the connecting plate (602) is provided with a plurality of rotating blocks (604), and the bottom end of the rotating blocks (604) is symmetrically connected with movable columns (605) that penetrate the connecting plate (602). The movable columns (605) are connected to the top end of the connecting plate (602) by springs (606), and the bottom of the movable columns (605) is connected with rollers (607). Rotating rod one (608) is connected to the outer side of the two sets of rotating blocks (604) away from the collection box (3). The end of the rotating rod one (608) is provided with a rotating rod two (609) connected to the set of rotating blocks (604) close to the collection box (3). The middle part of the rotating rod one (608) and the middle part of the rotating rod two (609) are connected by a fixing frame (610). The protective shell (502) on the side away from the motor (501) is connected to the fixed frame (610) via a connecting column (611), and the protective shell (502) on the side closer to the motor (501) is connected to the fixed frame (610) via a bearing (612).

6. A evisceration device for livestock slaughtering according to claim 2, characterized in that, The included angle between the two sets of side plates (203) near the pressing mechanism (6) is an acute angle.

7. A evisceration device for livestock slaughtering according to claim 2, characterized in that, The cross-section of the support rod (204) is L-shaped, and the support rod (204) is located in the middle of the pressing mechanism (6).

8. A evisceration device for livestock slaughtering according to claim 5, characterized in that, The rotating blocks (604) are evenly arranged and linearly distributed at the top of the connecting plate (602).