Fixing equipment for livestock slaughtering

CN224112033UActive Publication Date: 2026-04-14WEIXIAN XINSHENG MEAT FOOD CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-27
Publication Date
2026-04-14

AI Technical Summary

Technical Problem

Existing livestock slaughtering restraints are not secure when livestock struggle or are startled, which may lead to them falling off or being damaged. They also have poor load-bearing capacity, affecting the safety and efficiency of the slaughtering process.

Method used

A livestock slaughtering restraint device was designed, comprising a fixing mechanism, a buffer assembly, and a protective mechanism. The device achieves multi-point restraint of livestock through a drive shaft and threaded structure, and provides buffering and stability by combining hydraulic springs and inclined plates, thereby preventing equipment damage and improving slaughtering accuracy.

Benefits of technology

It improves the safety and precision of the slaughtering process, reduces equipment vibration and impact, extends service life, reduces the risk of operator injury, and increases slaughtering efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a fixing device for livestock slaughtering, which relates to the technical field of livestock transportation and comprises a trolley, a bearing platform is arranged at the top of the trolley, a plurality of fence frames in linear arrangement are arranged on two sides of the top of the bearing platform, a plurality of mounting frames are arranged at the tops of the fence frames, and fixing mechanisms are arranged in the mounting frames. A buffering assembly is arranged in the middle in the bearing table. A protection mechanism is arranged around the bearing table. According to the livestock slaughtering device, the fixing mechanisms are arranged, the livestock can be rapidly and stably fixed to the slaughtering device through the multiple sets of fixing mechanisms, the moving and adjusting time in the operation process is shortened in the process, and the slaughtering efficiency is remarkably improved; by fixing livestock through the multiple sets of fixing mechanisms, the slaughtering precision and accuracy are improved, fixing is firm, the risk that operators are injured is reduced, and accidental damage to slaughtering equipment is avoided.
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Description

Technical Field

[0001] This utility model relates to the field of livestock transportation technology, and more specifically, to a fixed device for livestock slaughtering. Background Technology

[0002] Livestock slaughter refers to a series of operations involving the slaughter and processing of livestock (especially pigs, cattle, and sheep) to obtain meat products. This process involves multiple stages, the first of which is selecting suitable livestock for slaughter. The slaughter of pigs, in particular, is a precise operation aimed at obtaining pork. Because pigs may move around during the slaughter process, specialized equipment is needed to stabilize them and ensure the safety and smooth progress of the process.

[0003] A prior art pig slaughtering restraint device, disclosed in patent application CN222516065U, features a base plate with a fixedly connected mounting frame and iron frame. The mounting frame has side plates, and the iron frame has multiple fixing plate assemblies, all of which engage with the side plates. While this device can restrain pigs, during manual restraint, if the animal struggles or moves, the engagement effect between the limiting sleeve and the ratchet plate is affected, leading to insecure restraint and even pig detachment. Furthermore, if pigs are startled or exhibit agitated behavior when entering the device, the load-bearing capacity is poor, potentially damaging the device.

[0004] Most existing restraint devices may fail to securely hold livestock in place when they struggle or are startled, leading to restraint failure and the possibility of livestock falling off or escaping. Furthermore, the load-bearing plates of most restraint devices are of poor quality, resulting in equipment damage during the restraint process.

[0005] There are currently no effective solutions to the problems in the relevant technologies. Utility Model Content

[0006] In view of the problems in the related technologies, this utility model proposes a fixed device for livestock slaughtering to overcome the above-mentioned technical problems existing in the existing related technologies.

[0007] Therefore, the specific technical solution adopted by this utility model is as follows:

[0008] A fixed device for livestock slaughtering includes a handcart with a support platform on top. Several fence frames arranged in a linear pattern are provided on both sides of the top of the support platform. Several mounting frames are provided on top of the fence frames, and a fixing mechanism is provided inside the mounting frames. A buffer component is provided in the middle of the inside of the support platform. A protective mechanism is provided around the support platform.

[0009] Furthermore, to reduce movement and adjustment time during operation, improve slaughtering efficiency, and reduce the risk of operator injury, the fixing mechanism includes a drive shaft installed inside the mounting frame. A first thread and a second thread are respectively provided on both sides of the drive shaft, with a limit block between the first and second threads. A first slider is fitted onto the first thread, and a concave frame is fitted around the outside of the first slider, with a connecting plate at the bottom of the concave frame. A second slider is fitted onto the second thread, with movable plates on both sides of the second slider. The first and second sliders are connected to the two sets of movable plates and the top sides of the concave frame via pins. A fixing post is fixedly connected to the bottom of both the connecting plate and the movable plate. An end block is provided on both sides of the fixing post, and a fixing block is provided at the bottom of the end block. An arc-shaped fixing plate is provided on both sides of the fixing block, and an installation block is provided at the bottom of the arc-shaped fixing plate. A telescopic spring is installed inside the installation block, and a pressing block is provided at the top of the telescopic spring. Moving blocks are provided at both ends of the arc-shaped fixing plate, and a limit rod is provided on the moving block and located between two adjacent sets of fence frames. A drive motor is connected to one side of the drive shaft, passing through the mounting frame. The first and second threads have opposite thread directions. The pressing block has a cross-shaped structure and cooperates with the arc-shaped fixing plate.

[0010] Furthermore, in order to reduce the vibration and impact on the equipment, extend the service life of the equipment and reduce maintenance costs, the buffer assembly includes a bottom groove inside the mounting frame, and several hydraulic springs arranged in a rectangular and linear pattern are installed inside the bottom groove. The top of the several hydraulic springs is jointly provided with a bearing plate.

[0011] Furthermore, to enhance the overall safety of the slaughterhouse and effectively collect and block splashes generated during slaughter, facilitating their removal, the protective mechanism includes an inlet plate at one end of the support platform. The inlet plate, near the fixing mechanism, has inclined grooves arranged linearly from top to bottom, with anti-slip protrusions between adjacent sets of inclined grooves. An arc-shaped groove is located on the other side of the inlet plate. A fixing plate is located at the other end of the support platform, with slots at the bottom of both the fixing plate and the inlet plate. Symmetrical baffles are located on both sides of the support platform, with locking posts at the bottom of the baffles near the fixing mechanism; the slots and locking posts engage. Installation slots are provided around the support platform, with movable columns inside. The bottoms of the inlet plate, the two sets of fixing plates, and the baffles all engage with the movable columns. The inlet plate, the two sets of fixing plates, and the tops of the baffles are all fixedly connected by inserts. The arc-shaped groove has the same curvature as the trolley end, preventing damage to the inlet plate.

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

[0013] 1. During the slaughtering and processing of livestock (especially pigs, cattle, and sheep), securing equipment is required. This equipment, incorporating securing mechanisms, buffer components, and protective mechanisms, ensures that when livestock enter the platform, the inclined plates and anti-slip protrusions of the protective mechanism allow for a quick and smooth entry. The closing of the entry plate not only enhances the overall safety of the slaughterhouse but also effectively collects and blocks splashes generated during slaughter, facilitating subsequent cleanup. During the entry process, the buffer components cushion the impact of the livestock, reducing vibration and shock to the equipment, thus extending its lifespan and lowering maintenance costs. Once the livestock is fully inside, multiple securing mechanisms quickly and stably secure them to the slaughtering equipment. This process reduces movement and adjustment time during operation, significantly improving slaughtering efficiency. Furthermore, by securing the livestock at three locations (top, bottom, and middle), the multiple securing mechanisms not only improve slaughtering precision and accuracy but also provide a secure hold, greatly reducing the risk of injury to operators and effectively preventing accidental damage to the slaughtering equipment.

[0014] 2. By setting up a fixing mechanism, when the drive motor is started, it drives the drive shaft to rotate, and then the first and second threads on the drive shaft begin to work. The first and second threads have opposite directions, and they will drive the first and second sliders to move towards the center respectively. As the sliders move, the concave frame and movable plate connected to them also move closer to the center. At the same time, the movable plate and connecting plate drive the bottom arc-shaped fixing plate to move downward, realizing the pressing and fixing of the livestock. This improves the precision and accuracy of slaughtering. Moreover, the curvature of the arc-shaped fixing plate can better adapt to the body shape of the livestock, ensuring the firmness of the fixing. The telescopic spring and pressing block play a second pressing and fixing role, further enhancing the fixing effect and reducing the possibility of the livestock struggling during the slaughtering process, thereby reducing the risk of injury to the operators.

[0015] 3. By setting up a buffer assembly, the hydraulic spring and the bearing plate work together with the inclined groove plate and anti-slip protrusions on the feed plate to buffer the impact force brought by livestock, reduce the vibration and impact on the equipment, and thus extend the service life of the equipment.

[0016] 4. By incorporating a protective mechanism, when livestock are pushed into the carrying platform, they come into contact with the inclined slats on the feed plate, allowing them to enter the platform more easily and quickly, reducing the pushing force and time required by the operator. Anti-slip protrusions between the inclined slats provide additional friction, ensuring that livestock will not slip or be injured due to excessive speed during the sliding process, increasing stability. The arc-shaped groove on the other side of the feed plate is designed to match the curvature of the handcart end. When the handcart pushes the livestock onto the carrying platform, the arc-shaped groove guides the handcart smoothly, preventing damage to the feed plate due to uneven force. Once the livestock are fully inside the carrying platform, the fixing plate and baffle, through the cooperation of slots and posts, firmly fix the feed plate to both ends of the carrying platform, preventing livestock from escaping or causing accidents during slaughter. The feed plate, two sets of fixing plates, and the top of the baffle are fixedly connected by inserts, further enhancing the overall stability and robustness. Attached Figure Description

[0017] 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.

[0018] Figure 1 This is one of the schematic diagrams of a fixed slaughtering device for livestock according to an embodiment of the present utility model;

[0019] Figure 2 This is a second schematic diagram of a fixed slaughtering device for livestock according to an embodiment of the present utility model;

[0020] Figure 3 This is a schematic diagram of one side of the fixing mechanism in a livestock slaughtering fixing device according to an embodiment of the present utility model;

[0021] Figure 4 This is a schematic diagram of the structure of the other side of the fixing mechanism in a livestock slaughtering fixing device according to an embodiment of the present utility model;

[0022] Figure 5 This is a schematic diagram of the structure of a buffer component in a fixed equipment for slaughtering livestock according to an embodiment of the present utility model;

[0023] Figure 6 This is a schematic diagram of the protective mechanism in a fixed equipment for slaughtering livestock according to an embodiment of the present utility model;

[0024] Figure 7 This is a schematic diagram of one side of the feed plate in a fixed equipment for slaughtering livestock according to an embodiment of the present utility model;

[0025] Figure 8 This is a schematic diagram of the other side of the feed plate in a fixed equipment for slaughtering livestock according to an embodiment of the present utility model.

[0026] In the picture:

[0027] 1. Handcart; 2. Support platform; 201. Mounting slot; 202. Movable column; 3. Fence frame; 4. Mounting bracket; 5. Fixing mechanism; 501. Drive shaft; 502. First thread; 503. Second thread; 504. Limiting block; 505. First slider; 506. Concave frame; 507. Connecting plate; 508. Second slider; 509. Movable plate; 510. Fixed column; 511. End block; 512. Fixing block; 513. Arc-shaped fixing plate; 514. Mounting block 515. Telescopic spring; 516. Pressing block; 517. Moving block; 518. Limiting rod; 519. Drive motor; 6. Buffer assembly; 601. Bottom groove; 602. Hydraulic spring; 603. Bearing plate; 7. Protective mechanism; 701. Inlet plate; 702. Inclined groove plate; 703. Anti-slip protrusion; 704. Arc groove; 705. Fixing plate; 706. Slot; 707. Baffle; 708. Locking post; 8. Insert; 9. Control panel; 10. Pressure sensor. Detailed Implementation

[0028] 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.

[0029] According to an embodiment of the present invention, a fixed device for livestock slaughtering is provided.

[0030] The present invention will now be further described in conjunction with the accompanying drawings and specific embodiments, such as... Figures 1-8 As shown, a fixed device for slaughtering livestock according to an embodiment of the present utility model includes a handcart 1, a support platform 2 on the top of the handcart 1, a plurality of fence frames 3 arranged in a linear pattern on both sides of the top of the support platform 2, a plurality of mounting frames 4 on the top of the fence frames 3, and a fixing mechanism 5 inside the mounting frame 4; a buffer component 6 is provided in the middle position inside the support platform 2; and a protective mechanism 7 is provided around the support platform 2.

[0031] Furthermore, in practical applications, the control panel 9 is electrically connected to multiple sets of fixing mechanisms 5. At the same time, in order to prevent the fixing mechanisms 5 from being overloaded (i.e. to avoid excessive force applied to the livestock by the arc-shaped fixing plate 513 and the pressing block 516, which could cause stress to the livestock), a pressure sensor 10 electrically connected to the control panel 9 is installed on the pressing block 516.

[0032] With the help of the above-mentioned technical solution of this utility model, when livestock (especially pigs, cattle, sheep, etc.) are slaughtered and processed, a fixing device is needed to fix the livestock. By setting up a fixing mechanism 5, a buffer component 6, and a protective mechanism 7, when the livestock enters the carrying platform 2, the inclined plate and anti-slip protrusion of the protective mechanism 7 allow the livestock to enter the carrying platform 2 quickly and smoothly. Then the entry plate is closed, which not only improves the overall safety of the slaughtering site, but also effectively collects and blocks the splashes generated during the slaughtering process, facilitating subsequent cleaning work; during the process of the livestock entering, the buffer component... 6 can buffer the impact force brought by livestock, reduce the vibration and impact on the equipment, thereby extending the service life of the equipment and reducing maintenance costs; after the livestock are fully inside, the multiple fixing mechanisms 5 can quickly and stably fix the livestock on the slaughtering equipment. This process reduces the time for movement and adjustment during operation and significantly improves slaughtering efficiency; at the same time, by fixing the livestock in three positions (top, bottom and middle), the multiple fixing mechanisms 5 not only improve the precision and accuracy of slaughtering, but also fix it firmly, greatly reducing the risk of injury to operators and effectively avoiding accidental damage to the slaughtering equipment.

[0033] In one embodiment, the fixing mechanism 5 includes a drive shaft 501 disposed inside the mounting bracket 4. A first thread 502 and a second thread 503 are respectively disposed on both sides of the drive shaft 501, and a limit block 504 is disposed between the first thread 502 and the second thread 503. A first slider 505 is fitted onto the first thread 502, and a concave frame 506 is fitted onto the outer side of the first slider 505. A connecting plate 507 is disposed at the bottom of the concave frame 506. A second slider 508 is fitted onto the second thread 503, and movable plates 509 are disposed on both sides of the second slider 508. The first slider 505 and the second slider 508 are connected to the two sets of movable plates 509 and the top of the concave frame 506. The two sides of the section are connected by a pin shaft; the bottom of the connecting plate 507 and the movable plate 509 are both fixedly connected to a fixing post 510. The fixing post 510 has end blocks 511 on both sides, a fixing block 512 at the bottom of the end block 511, and an arc-shaped fixing plate 513 on both sides of the fixing block 512. The bottom of the arc-shaped fixing plate 513 has a mounting block 514, inside which is a telescopic spring 515, and at the top of the telescopic spring 515 is a pressing block 516. The arc-shaped fixing plate 513 has moving blocks 517 at both ends, and each moving block 517 has a limiting rod 518 located between two adjacent sets of fence frames 3. A drive motor 519 is connected to one side of the drive shaft 501, which passes through the mounting frame 4. The first thread 502 and the second thread 503 have opposite thread directions. The pressing block 516 has a cross structure and cooperates with the arc-shaped fixing plate 513, thereby reducing the movement and adjustment time during operation, improving slaughtering efficiency, and reducing the risk of injury to operators.

[0034] Working principle of fixing mechanism 5: When livestock enter the support platform 2, the control panel 9 controls the drive motor 519 to start and drive the drive shaft 501 to rotate. The first thread 502 and the second thread 503 on the drive shaft 501 start working, and the thread directions of the first thread 502 and the second thread 503 are opposite. The first thread 502 and the second thread 503 will respectively drive the first slider 505 and the second slider 508 to move towards the center, and the limiting block 504 restricts the movement position of the first slider 505 and the second slider 508. As the first slider 505 and the second slider 508 move, the concave frame 506 and the two sets of movable plates 509 connected to each other move closer to the center, and the fixing block 512 on the arc-shaped fixing plate 513, and the fixing block 512 tops... There are fixed posts 510 between the end blocks 511 of the part, and at the same time, the fixed posts 510 between the two sets of movable plates 509 and connecting plates 507 move downward. The movable blocks 517 and the limiting rods 518 on both ends of the arc-shaped fixed plate 513 are located between the two adjacent sets of fence frames 3 to limit the movement and trajectory of the arc-shaped fixed plate 513, so as to achieve the initial pressing and fixing of livestock. The telescopic springs 515 and pressing blocks 516 inside the mounting blocks 514 at the bottom of both sides of the arc-shaped fixed plate 513 play a second pressing and fixing role, further enhancing the effect of fixing livestock. Conversely, after pressing and slaughtering, the control panel 9 controls the drive motor 519 to start and drive the arc-shaped fixed plate 513 and pressing blocks 516 to move upward.

[0035] In one embodiment, the buffer assembly 6 includes a bottom groove 601 inside the mounting frame 4. The bottom groove 601 is provided with a plurality of hydraulic springs 602 arranged in a rectangular and linear pattern. The top of the plurality of hydraulic springs 602 is provided with a bearing plate 603, thereby reducing the vibration and impact on the equipment and extending the service life and maintenance cost of the equipment.

[0036] In one embodiment, the protective mechanism 7 includes an inlet plate 701 at one end of the support platform 2. The inlet plate 701, near the fixing mechanism 5, has inclined groove plates 702 arranged linearly from top to bottom, with anti-slip protrusions 703 between adjacent sets of inclined groove plates 702. An arc-shaped groove 704 is provided on the other side of the inlet plate 701. A fixing plate 705 is provided at the other end of the support platform 2, with slots 706 formed at the bottom of both the fixing plate 705 and the inlet plate 701. Baffles 707 are symmetrically arranged on both sides of the support platform 2, with locking posts 708 at the bottom of the side of the baffles 707 near the fixing mechanism 5. The slots 706 and locking posts 708 cooperate with each other. Installation grooves 201 are formed around the support platform 2, and movable posts 202 are provided inside the installation grooves 201. The bottoms of the inlet plate 701, the two sets of fixing plates 705, and the baffles 707 all cooperate with the movable posts 202. The inlet plate 701, the two sets of fixing plates 705, and the top of the baffle 707 are all fixedly connected by inserts 8. The arc groove 704 has the same arc as one end of the handcart 1, which is used to prevent damage to the inlet plate 701, thereby improving the overall safety of the slaughtering site, and effectively collecting and blocking the splashes generated during the slaughtering process, making it easy to clean up the splashes.

[0037] The working principle of the protective mechanism 7 is as follows: When livestock are pushed into the support platform 2, they come into contact with the inclined groove plate 702 on the inlet plate 701, allowing them to quickly enter the interior of the support platform 2. The anti-slip protrusions 703 set between the inclined groove plates 702 provide friction. The arc groove 704 on the other side of the inlet plate 701 matches the arc of one end of the handcart. The arc groove 704 can guide the handcart 1 to transition smoothly and prevent the inlet plate 701 from being damaged due to uneven force. After the livestock have completely entered the support platform 2, the fixing plate 705 and the baffle 707 are fixed to both ends of the support platform 2 through the cooperation of the slot 706 and the locking post 708. The inlet plate 701, the two sets of fixing plates 705 and the top of the baffle 707 are fixedly connected by the insert 8, which increases the sturdiness and safety of the protective mechanism 7.

[0038] 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.

[0039] In practical applications, when livestock (especially pigs, cattle, sheep, etc.) are being slaughtered and processed, people drive the livestock onto the support platform 2. When entering, the inclined plate 702 on the inlet plate 701 of the protective mechanism 7, and the anti-slip protrusions 703 set between the inclined plates 702 provide friction, allowing them to quickly enter the interior of the support platform 2. Then, the inlet plate 701, the two sets of fixing plates 705, and the top of the baffle 707 of the protective mechanism 7 are fixed by the insert 8 (the working principle of the protective mechanism 7 is as described above). Then, upon entry, the hydraulic spring 602 of the buffer assembly 6 and the bearing plate 603 reduce the impact force on the livestock. Finally, the control panel 9 controls the drive motors 519 of multiple fixing mechanisms 5 to start and drive the drive shaft 501 to rotate. A pressure sensor 10 is installed on the pressing block 516. When the first thread 502 and the second thread 503 on the drive shaft 501 drive the arc-shaped fixing plate 513 on the first slider 505 and the second slider 508, in conjunction with the telescopic spring 515 and the pressing block 516, to perform secondary fixing of the livestock, one of the... When the pressure of the pressing block 516 of the fixing mechanism 5 reaches the set pressure threshold when pressing the livestock, the pressure is transmitted to the control panel 9 through the pressure sensor 10. The control panel 9 controls one of the drive motors 519 to stop rotating. At this time, the arc-shaped fixing plate 513, in cooperation with the telescopic spring 515 and the pressing block 516, performs a secondary fixation of the livestock. When the remaining fixing mechanisms 5 continue to press down, the pressure of the remaining pressing blocks 516 when pressing the livestock reaches the set pressure threshold, and the pressure is transmitted to the control panel 9 again through the pressure sensor 10. Then the control panel 9 stops the remaining drive motors 519 to fix them. After fixing, the staff pushes the handcart 1 to pull it away for slaughter. Conversely, the control panel 9 controls multiple drive motors 519 to drive the first thread 502 and the second thread 503 on the drive shaft 501 to drive the arc-shaped fixing plate 513, the telescopic spring 515 and the pressing block 516 on the first slider 505 and the second slider 508 to move upward (the working principle of the fixing mechanism 5 is as described above), and release the fixation for processing.

[0040] 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.

[0041] 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 fixed device for livestock slaughtering, comprising a handcart (1), characterized in that, The handcart (1) is provided with a support platform (2) on the top. Several railing frames (3) are arranged in a linear pattern on both sides of the top of the support platform (2). Several mounting frames (4) are provided on the top of the railing frames (3). A fixing mechanism (5) is provided inside the mounting frame (4). A buffer assembly (6) is provided in the middle of the inside of the support platform (2); The support platform (2) is surrounded by a protective mechanism (7).

2. The fixed equipment for livestock slaughtering according to claim 1, characterized in that, The fixing mechanism (5) includes a drive shaft (501) disposed inside the mounting bracket (4). A first thread (502) and a second thread (503) are respectively disposed on both sides of the drive shaft (501). A limit block (504) is disposed between the first thread (502) and the second thread (503). A first slider (505) is sleeved on the first thread (502), and a concave frame (506) is sleeved on the outside of the first slider (505). A connecting plate (507) is provided at the bottom of the concave frame (506). A second slider (508) is sleeved on the second thread (503), and movable plates (509) are provided on both sides of the second slider (508); The first slider (505) and the second slider (508) are connected to the two sets of movable plates (509) and the top two sides of the concave frame (506) by pins; The bottom of the connecting plate (507) and the movable plate (509) are both fixedly connected to a fixing post (510). The fixing post (510) is provided with end blocks (511) on both sides. The bottom of the end block (511) is provided with a fixing block (512). The fixing block (512) is provided with an arc-shaped fixing plate (513) on both sides. The bottom of the arc-shaped fixing plate (513) is provided with an installation block (514). The installation block (514) is provided with a telescopic spring (515) inside. The top of the telescopic spring (515) is provided with a pressing block (516). The arc-shaped fixing plate (513) is provided with movable blocks (517) at both ends, and the movable blocks (517) are provided with limiting rods (518) located between two adjacent sets of fence frames (3). The drive shaft (501) is connected to a drive motor (519) through the mounting bracket (4) on one side.

3. A fixed slaughtering device for livestock according to claim 2, characterized in that, The first thread (502) has the opposite thread direction to the second thread (503).

4. A fixed slaughtering device for livestock according to claim 2, characterized in that, The pressing block (516) has a cross structure and cooperates with the arc-shaped fixing plate (513).

5. A fixed slaughtering device for livestock according to claim 1, characterized in that, The buffer assembly (6) includes a bottom groove (601) opened inside the mounting frame (4). The bottom groove (601) is provided with a plurality of hydraulic springs (602) arranged in a rectangular distribution and in a linear arrangement. The top of the plurality of hydraulic springs (602) is provided with a bearing plate (603).

6. A fixed slaughtering device for livestock according to claim 1, characterized in that, The protective mechanism (7) includes an inlet plate (701) provided at one end of the support platform (2). The inlet plate (701) is provided with inclined groove plates (702) arranged in a linear direction from top to bottom on the side near the fixing mechanism (5). Anti-slip protrusions (703) are provided between two adjacent sets of inclined groove plates (702). An arc-shaped groove (704) is provided on the other side of the inlet plate (701); The other end of the support platform (2) is provided with a fixing plate (705), and the bottom of the fixing plate (705) and the inlet plate (701) are both provided with slots (706). The support platform (2) is symmetrically provided with baffles (707) on both sides, and a locking post (708) is provided at the bottom of the side of the baffle (707) near the fixing mechanism (5). The slot (706) cooperates with the pin (708).

7. A fixed slaughtering device for livestock according to claim 6, characterized in that, The support platform (2) has mounting slots (201) around its perimeter, and movable columns (202) are provided inside the mounting slots (201).

8. A fixed slaughtering device for livestock according to claim 7, characterized in that, The bottom of the inlet plate (701), the two sets of fixed plates (705) and the baffle (707) are all in cooperation with the movable column (202).

9. A fixed slaughtering device for livestock according to claim 6, characterized in that, The tops of the inlet plate (701), the two sets of fixing plates (705), and the baffle (707) are all fixedly connected by inserts (8).

10. A fixed device for livestock slaughtering according to claim 6, characterized in that, The arc groove (704) has the same curvature as one end of the handcart (1) and is used to prevent damage to the feed plate (701).