Pig foot halving machine

By designing a pig's trotter splitting machine, the automated splitting process of pig's trotters has been achieved, solving the problem of low efficiency of manual splitting, improving production efficiency and product quality consistency, and reducing labor costs and health risks.

CN224098632UActive Publication Date: 2026-04-10FOSHAN BATING MASCH TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
FOSHAN BATING MASCH TECH CO LTD
Filing Date
2025-03-24
Publication Date
2026-04-10

AI Technical Summary

Technical Problem

Manually cutting pig's feet is inefficient, makes it difficult to meet the needs of large-scale production, and makes it difficult to guarantee product consistency and quality, while also posing occupational health risks.

Method used

A pig trotter splitting machine was designed, including a feeding mechanism, a clamping mechanism and a cutting mechanism. Powered by a power mechanism, the machine achieves automated splitting of pig trotters through automatic conveying, stable clamping and precise cutting.

Benefits of technology

It significantly improves production efficiency, ensures product uniformity and quality, reduces labor costs, avoids product inconsistencies caused by human factors, and reduces occupational health risks.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The utility model relates to the technical field of meat processing equipment, and provides a pig foot halving machine which comprises a workbench, the workbench comprises a power mechanism and is provided with a feeding mechanism, one side of the feeding mechanism is provided with a clamping mechanism, one end of the feeding mechanism is provided with a cutting mechanism, and the other end of the feeding mechanism is provided with a conveying mechanism. The feeding mechanism is used for conveying the pig feet towards the cutting mechanism, the clamping mechanism is used for clamping the pig feet in the conveying process, and the cutting mechanism is used for cutting the pig feet in half. According to the pig trotter cutting device, the feeding mechanism is used for stably conveying pig trotters to a cutting area, the pig trotters are stably clamped by the clamping mechanism, it is ensured that the positions of the pig trotters are fixed in the cutting process, and finally the cutting mechanism driven by the power mechanism carries out accurate halving cutting. Compared with a traditional manual cutting method, the pig trotter halving machine has the advantages that the processing time is greatly shortened, and the uniformity and quality of each batch of products are guaranteed.
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Description

TECHNICAL FIELD

[0001] The utility model relates to meat processing equipment technical field especially relates to a pig's trotter divides half machine. BACKGROUND

[0002] In the food processing industry, the processing of pig's trotter is an important link, which usually includes steps such as cleaning, segmentation and packaging. Traditional pig's trotter segmentation mainly relies on manual operation, and workers need to manually fix pig's trotter and cut it with a knife. Although this method is direct, it has many limitations in large-scale production. With the growth of market demand and the improvement of product quality consistency requirements, the traditional manual segmentation method gradually shows the disadvantages of low efficiency and unstable quality

[0003] Currently, the method of manually segmenting pig's trotter faces multiple challenges. First, manual operation is slow and inefficient, which is difficult to meet the needs of large-scale production. Secondly, due to the different skill levels and operation habits of each worker, it is difficult to ensure the consistency and quality of the products. In addition, long-time manual operation not only increases the labor intensity of workers, but also easily causes occupational health problems such as muscle strain and cutting injury. These problems not only affect production efficiency, but also restrict the further development and market competitiveness of enterprises.

[0004] The utility model aims at solving the problem of low efficiency of manual pig's trotter segmentation. UTILITY MODEL CONTENT

[0005] The utility model aims at solving the problem of low efficiency of manual pig's trotter segmentation, and adopts the following technical scheme:

[0006] A pig's trotter halfing machine, including workbench, the workbench includes power mechanism, the workbench is installed with feeding mechanism, one side of the feeding mechanism is provided with clamping mechanism, one end of the feeding mechanism is provided with cutting mechanism, the feeding mechanism is used for conveying pig's trotter to the direction of the cutting mechanism, the clamping mechanism is used for clamping pig's trotter in the conveying process, the cutting mechanism is used for halfing cutting pig's trotter, the power mechanism is used for the feeding mechanism, the clamping mechanism, the cutting mechanism provides power.

[0007] A pig's trotter halfing machine as described above, the power mechanism includes motor, gear shaft, the gear shaft is transmission connection with the motor, the feeding mechanism includes conveying belt, drive shaft, the drive shaft is used to drive the conveying belt operation, the drive shaft is transmission connection with the gear shaft.

[0008] As described above, a pig's trotter splitting machine includes a clamping mechanism comprising a top plate on which a first clamping arm and a second clamping arm are mounted. The first clamping arm and the second clamping arm are mirror symmetrical. The structure and configuration of the second clamping arm are identical to those of the first clamping arm. The first clamping arm includes a clamping frame. A second hinge frame is hinged to one side of the clamping frame. A synchronous shaft is fixedly connected to one side of the second hinge frame. A sector gear is mounted on the synchronous shaft. The sector gear of the first clamping arm meshes with the sector gear of the second clamping arm. The first clamping arm and the second clamping arm open and close synchronously via the sector gear. A first hinge frame is hinged to the other side of the clamping frame. An elastic body is installed inside the first hinge frame, and one end of the elastic body is connected to the clamping frame.

[0009] As described above, a pig's feet splitting machine has a longitudinal conveying shaft on one side of the synchronous shaft, and a gear connected to the drive shaft is installed at the bottom of the longitudinal conveying shaft. The longitudinal conveying shaft is used to convey the pig's feet towards the middle of the first clamping arm and the first hinge frame.

[0010] As described above, a pig's feet splitting machine includes a cutting mechanism comprising a cutting blade, which is connected to a gear shaft. A horizontal conveying shaft is provided on one side of the cutting blade to convey the pig's feet toward the cutting blade. The horizontal conveying shaft is also connected to the gear shaft.

[0011] As described above, in a pig's feet splitting machine, the surface of the horizontal conveyor shaft is provided with several grooves.

[0012] In the pig's feet splitting machine described above, the elastic body is a gas spring.

[0013] As described above, a pig's feet splitting machine has a feeding hopper on one side of the workbench.

[0014] As described above, in a pig's trotter splitting machine, limiting components are provided on both sides of the cutting blade, and the limiting components are used to limit the cutting blade on both sides.

[0015] As described above, a pig's feet splitting machine includes a clamping frame with a rotating shaft, a feeding belt sleeved on the rotating shaft, the conveyor belt for conveying the pig's feet toward the cutting blade, and a longitudinal conveying shaft sleeved on one side of the conveyor belt for providing power for the rotation of the conveyor belt.

[0016] Implementing the embodiments of this utility model has the following beneficial effects:

[0017] 1. In the utility model, the pig trotter is stably transported to the cutting area by the feeding mechanism, and is stably clamped by the clamping mechanism, so that the position of the pig trotter is fixed during the cutting process, and finally the cutting mechanism driven by the power mechanism performs accurate half cutting. Compared with the traditional manual segmentation method, the pig trotter half cutting machine not only greatly shortens the processing time, but also ensures the uniformity and quality of each batch of products, reduces the labor cost and avoids the problem of inconsistent products caused by human factors, thereby improving the overall production efficiency and product quality.

[0018] In summary, the utility model solves the problem of low efficiency of manual pig trotter segmentation. BRIEF DESCRIPTION OF DRAWINGS

[0019] In order to more clearly illustrate the technical solutions in the embodiments of the present application, the drawings needed in the embodiment description will be briefly introduced. Obviously, the drawings in the following description are only some embodiments of the present application, and other drawings can be obtained by those skilled in the art without creative labor.

[0020] Figure 1 It is the overall structure schematic diagram of a pig trotter half cutting machine.

[0021] Figure 2 It is the structure schematic diagram of the pig trotter half cutting machine after removing the workbench cover plate.

[0022] Figure 3 It is the local structure schematic diagram of the pig trotter half cutting machine.

[0023] Figure 4 It is the structure schematic diagram of another angle of Figure 3 .

[0024] Figure 5 It is the structure schematic diagram of the clamping mechanism of the pig trotter half cutting machine.

[0025] Figure 6 It is the structure schematic diagram of the first clamping arm of the pig trotter half cutting machine.

[0026] In the drawings:

[0027] 1, workbench; 11, hopper; 2, feeding mechanism; 21, conveyor belt; 22, drive shaft; 3, clamping mechanism; 31, top plate; 32, first clamping arm; 321, first hinged frame; 322, second hinged frame; 323, clamping frame; 324, synchronous shaft; 325, sector gear; 326, elastic body; 327, longitudinal conveying shaft; 328, rotating shaft; 33, second clamping arm; 4, cutting mechanism; 41, cutting knife; 42, transverse conveying shaft; 5, power mechanism; 51, motor; 52, gear shaft; 53, slow machine; 6, limiting piece. DETAILED DESCRIPTION

[0028] The technical solutions in the embodiments of the utility model will be clearly and completely described below with reference to the drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, rather than all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the utility model.

[0029] As Figures 1 to 6 shown in the utility model provides a kind of pig feet halfing machine, including workbench 1, the workbench 1 includes power mechanism 5, the workbench 1 is equipped with feeding mechanism 2, one side of the feeding mechanism 2 is provided with clamping mechanism 3, one end of the feeding mechanism 2 is provided with cutting mechanism 4, the feeding mechanism 2 is used to the direction of the cutting mechanism 4 to transport pig feet, the clamping mechanism 3 is used to clamp pig feet in the conveying process, the cutting mechanism 4 is used to half-cut pig feet, the power mechanism 5 is used to provide power for the feeding mechanism 2, the clamping mechanism 3, the cutting mechanism 4.Pig feet are automatically transported to the cutting area of machine by feeding mechanism 2, in this process, clamping mechanism 3 will stabilize pig feet, ensure its position fixed immovably in the cutting process.When pig feet reach specified position, cutting mechanism 4 driven by power mechanism 5 will execute accurate cutting operation, realize the half-processing of pig feet.The whole process reduces the demand of manual intervention, improves work efficiency and cutting consistency.

[0030] Compared with traditional manual segmentation method, pig feet halfing machine can significantly reduce processing time, and ensure the uniformity and quality of each batch of products.Secondly, since the dependence on manual skill is reduced, human cost is reduced, and product inconsistency problem caused by human factors is avoided.

[0031] Further, as a preferred embodiment of the present application but not limited, the power mechanism 5 comprises an electric motor 51, a gear shaft 52, the gear shaft 52 is in driving connection with the electric motor 51, the feeding mechanism 2 comprises a conveying belt 21, a driving shaft 22, the driving shaft 22 is used to drive the conveying belt 21 to run, the driving shaft 22 is in driving connection with the gear shaft 52. When the electric motor 51 is started, the power generated by the electric motor 51 is sequentially transmitted to the gear shaft 52 and the driving shaft 22, and finally the conveying belt 21 starts to run, and the pig feet are stably conveyed to the cutting position.

[0032] Optionally, in some embodiments, the electric motor 51 is in driving connection with a slow machine 53, and the slow machine 53 is in driving connection with the gear shaft 52. The electric motor 51 first provides initial power, then the power is decelerated and the torque is increased through the slow machine 53, and finally the adjusted power is transmitted to the gear shaft 52. The function of the slow machine 53 is to reduce the output rotating speed of the electric motor 51 and increase the torque, so as to ensure that the feeding mechanism 2, the clamping mechanism 3 and the cutting mechanism 4 run stably at a lower speed.

[0033] Optionally, in some embodiments, the driving shaft 22 is in driving connection with the gear shaft 52 through a chain.

[0034] Optionally, in some embodiments, the driving shaft 22 is in driving connection with the gear shaft 52 through a belt.

[0035] Further, as a preferred embodiment of the present application but not limited, the clamping mechanism 3 comprises a top plate 31, the top plate 31 is installed with a first clamping arm 32 and a second clamping arm 33, the first clamping arm 32 and the second clamping arm 33 are mirror-symmetric, the structure and specification of the second clamping arm 33 are the same as those of the first clamping arm 32, the first clamping arm 32 comprises a clamping frame 323, one side of the clamping frame 323 is hingedly connected with a second hinge frame 322, one side of the second hinge frame 322 is fixedly connected with a synchronous shaft 324, the synchronous shaft 324 is installed with a sector gear 325, the sector gear 325 of the first clamping arm 32 is engaged with the sector gear 325 of the second clamping arm 33, the first clamping arm 32 and the second clamping arm 33 are synchronized by the sector gear 325, the other side of the clamping frame 323 is hingedly connected with a first hinge frame 321, the first hinge frame 321 is installed with an elastic body 326, one end of the elastic body 326 is connected with the clamping frame 323. The working principle of the clamping mechanism 3 is based on a pair of mirror-symmetric first clamping arm 32 and second clamping arm 33, specifically, the two clamping arms are installed through the top plate 31, and their structure and specification are completely the same to ensure uniform clamping of the pig feet. Each clamping arm comprises a clamping frame 323, one side of the clamping frame 323 is hingedly connected with a second hinge frame 322, the second hinge frame 322 is fixedly connected with a synchronous shaft 324, and the synchronous shaft 324 is installed with a sector gear 325. The sector gears 325 of the two clamping arms are engaged with each other, so that the first clamping arm 32 and the second clamping arm 33 can move synchronously, ensuring that the pig feet are uniformly stressed when clamped, avoiding product damage caused by excessive unilateral pressure, at the same time, the two clamping arms move simultaneously, which can automatically center the clamped pig feet. The other side of the clamping frame 323 is hingedly connected with a first hinge frame 321, which is internally provided with an elastic body 326, one end of the elastic body 326 is connected with the clamping frame 323. When the pig feet are conveyed to the clamping position, the elastic body 326 provides the necessary elastic force to make the clamping frame 323 closely fit the pig feet, ensuring that it will not slide or shift during the cutting process, and also allowing the clamping mechanism 3 to adapt to the actual shape and size of the pig feet, improving the flexibility and versatility of the equipment.

[0036] Further, as a preferred embodiment of the present application but not limited, one side of the synchronous shaft 324 is provided with a longitudinal conveying shaft 327, the bottom of the longitudinal conveying shaft 327 is provided with a gear in transmission connection with the driving shaft 22, and the longitudinal conveying shaft 327 is used for conveying the pig feet to the middle direction of the first clamping arm 32 and the first hinged frame 321. The surface of the longitudinal conveying shaft 327 is provided with a plurality of grooves. When the driving shaft 22 operates, the longitudinal conveying shaft 327 is driven to rotate through the gear. The surface of the longitudinal conveying shaft 327 is provided with a plurality of grooves, which are designed to increase the friction. The clamping frame 323 comprises a rotating shaft 328, and the rotating shaft 328 is provided with a feeding belt. The feeding belt is used for conveying the pig feet to the direction of the cutting knife 41. One side of the feeding belt is provided with the longitudinal conveying shaft 327, and the longitudinal conveying shaft 327 is used for providing power for the rotation of the feeding belt. Specifically, when the driving shaft 22 operates, the longitudinal conveying shaft 327 is driven to rotate through the gear. In addition, the clamping frame 323 comprises a rotating shaft 328, and the rotating shaft 328 is provided with a feeding belt. One side of the feeding belt is provided with the longitudinal conveying shaft 327, so that the longitudinal conveying shaft 327 can provide power for the rotation of the feeding belt, thereby stably conveying the pig feet from the clamping area to the direction of the cutting knife 41, ensuring that the pig feet accurately enter the cutting position and complete the half-cutting operation. The grooves on the surface of the longitudinal conveying shaft 327 increase the friction between the feeding belt, and the design of the feeding belt further ensures the smooth transition of the pig feet from the clamping area to the direction of the cutting knife 41, thereby improving the accuracy and reliability of the entire conveying process.

[0037] Further, as a preferred embodiment of the present application but not limited, the cutting mechanism 4 comprises a cutting knife 41, the cutting knife 41 is in transmission connection with the gear shaft 52, one side of the cutting knife 41 is provided with a horizontal conveying shaft 42, the horizontal conveying shaft 42 is used for conveying the pig feet to the direction of the cutting knife 41, and the horizontal conveying shaft 42 is in transmission connection with the gear shaft 52. The surface of the horizontal conveying shaft 42 is provided with a plurality of grooves. When the motor 51 starts and drives through the gear shaft 52, the cutting knife 41 starts to rotate and prepares to perform the cutting operation. At the same time, the horizontal conveying shaft 42 is also in transmission connection with the gear shaft 52 and is provided with a plurality of grooves on the surface to increase the friction. After the pig feet are stably clamped by the clamping mechanism 3, the pig feet are conveyed to the cutting area. At this time, the horizontal conveying shaft 42 rotates and uses the grooves on the surface to grab and push the pig feet to move to the direction of the cutting knife 41, thereby ensuring that the pig feet accurately enter the cutting position and are cut in half by the high-speed rotating cutting knife 41.

[0038] Optionally, in some embodiments, the cutting knife 41 is in transmission connection with the gear shaft 52 through a chain.

[0039] Optionally, in some embodiments, the cutting knife 41 is in transmission connection with the gear shaft 52 through a belt

[0040] Further, as a preferred embodiment of the present application but not limited, the elastic body 326 is a gas spring.

[0041] Optionally, in some embodiments, the elastic body 326 is a spring.

[0042] Further, as a preferred embodiment of the present application but not limited, the workbench 1 is provided with a discharge hopper 11 on one side. When the pig feet are firmly clamped by the clamping mechanism 3 and the half-cutting is completed by the cutting knife 41, the cut pig feet will slide into the discharge hopper 11 under the action of gravity, which helps the pig feet to smoothly slide into the collection container below, thereby realizing automatic processing and collection.

[0043] Further, as a preferred embodiment of the present application but not limited, the cutting knife 41 is provided with a limiting piece 6 on both sides, which is fixedly connected with the workbench 1 and used for limiting the two sides of the cutting knife 41. It ensures the stability of the cutting knife 41 during high-speed rotation and cutting, preventing inaccurate cutting or equipment damage due to vibration or deviation.

[0044] Further, as a preferred embodiment of the present application but not limited, the top view of the clamping frame 323 is a right triangle. One of the right angle sides of the clamping frame 323 is in close contact with one side of the pig feet, and the other right angle side is connected with the first and second hinge frames 321 and 322, and the clamping frame 323 can firmly fix the pig feet through the pressure provided by the gas spring. Due to the stability of the right triangle structure, the clamping frame 323 can provide uniform and reliable clamping force on pig feet of different sizes and shapes, preventing the pig feet from sliding or shifting during cutting.

[0045] Example one:

[0046] The utility model provides a pig foot divides half machine, including work table 1, work table 1 includes power mechanism 5, work table 1 is equipped with feeding mechanism 2, and one side of feeding mechanism 2 is provided with clamping mechanism 3, and one end of feeding mechanism 2 is provided with cutting mechanism 4, and feeding mechanism 2 is used to the direction of cutting mechanism 4 delivery pig foot, and clamping mechanism 3 is used for clamping pig foot in the conveying process, and cutting mechanism 4 is used for dividing half cutting of pig foot, and power mechanism 5 is used for the power of feeding mechanism 2, clamping mechanism 3, cutting mechanism 4. Pig foot is automatically transported to the cutting area of machine through feeding mechanism 2, in this process, clamping mechanism 3 will stabilize pig foot, ensure its position fixed immobile in the cutting process. When pig foot reaches the designated position, cutting mechanism 4 driven by power mechanism 5 will perform accurate cutting operation, realize the division of half processing of pig foot. The whole process reduces the demand of manual intervention, improves work efficiency and the consistency of cutting. Compared with traditional manual segmentation method, pig foot divides half machine can significantly reduce the processing time, and ensures the uniformity and quality of each batch product. Secondly, because the dependence on manual skill is reduced, the human cost is reduced, and the product inconsistency problem caused by human factors is avoided.

[0047] Power mechanism 5 includes motor 51, gear shaft 52, gear shaft 52 is connected with motor 51 transmission, feeding mechanism 2 includes conveying belt 21, drive shaft 22, drive shaft 22 is used to drive conveying belt 21 operation, and drive shaft 22 is connected with gear shaft 52 transmission. When motor 51 starts, the power generated by it passes through gear shaft 52, drive shaft 22 in turn, and finally makes conveying belt 21 start operation, and pig foot is stably transported to the cutting position. Motor 51 is connected with slow machine 53 in transmission, and slow machine 53 is connected with gear shaft 52 in transmission. Motor 51 provides initial power first, and then increases torque through slow machine 53, and finally transmits the adjusted power to gear shaft 52. The function of slow machine 53 is to reduce the output speed of motor 51, and increase the torque at the same time, which can ensure that feeding mechanism 2, clamping mechanism 3 and cutting mechanism 4 run stably at a low speed. Drive shaft 22 is connected with gear shaft 52 in transmission through chain.

[0048] The clamping mechanism 3 comprises a top plate 31, the first clamping arm 32 and the second clamping arm 33 are installed on the top plate 31, the first clamping arm 32 is mirror-symmetrical with the second clamping arm 33, the structure and specification of the second clamping arm 33 are the same as those of the first clamping arm 32, the first clamping arm 32 comprises a clamping frame 323, one side of the clamping frame 323 is hingedly connected with a second hinge frame 322, the second hinge frame 322 is fixedly connected with a synchronous shaft 324, the synchronous shaft 324 is installed with a sector gear 325, the sector gear 325 of the first clamping arm 32 is engaged with the sector gear 325 of the second clamping arm 33, the first clamping arm 32 and the second clamping arm 33 are synchronous opening and closing through the sector gear 325, the other side of the clamping frame 323 is hingedly connected with a first hinge frame 321, the first hinge frame 321 is installed with an elastic body 326, one end of the elastic body 326 is connected with the clamping frame 323. The working principle of the clamping mechanism 3 is based on a pair of mirror-symmetrical first clamping arms 32 and second clamping arms 33, specifically, the two clamping arms are installed through the top plate 31, and their structure and specification are completely the same, so as to ensure uniform clamping of the pig feet. Each clamping arm comprises a clamping frame 323, one side of the clamping frame 323 is hingedly connected with a second hinge frame 322, the second hinge frame 322 is fixedly connected with a synchronous shaft 324, and the synchronous shaft 324 is installed with a sector gear 325. The sector gears 325 of the two clamping arms are engaged with each other, so that the first clamping arm 32 and the second clamping arm 33 can move synchronously, ensuring that the pig feet are uniformly stressed when clamped, avoiding product damage caused by excessive unilateral pressure, and at the same time, the two clamping arms move simultaneously, which can automatically center the clamped pig feet. The other side of the clamping frame 323 is hingedly connected with a first hinge frame 321, and an elastic body 326 is arranged in the first hinge frame 321, one end of the elastic body 326 is connected with the clamping frame 323. When the pig feet are conveyed to the clamping position, the elastic body 326 provides the necessary elastic force to make the clamping frame 323 closely fit the pig feet, ensuring that it will not slide or shift during the cutting process, and also allowing the clamping mechanism 3 to adapt to the actual shape and size of the pig feet, improving the flexibility and versatility of the equipment. One side of the synchronous shaft 324 is provided with a longitudinal conveying shaft 327, the bottom of the longitudinal conveying shaft 327 is installed with a gear in transmission connection with the driving shaft 22, and the longitudinal conveying shaft 327 is used for conveying the pig feet to the middle of the first clamping arm 32 and the first hinge frame 321. A plurality of grooves are formed in the surface of the longitudinal conveying shaft 327. When the driving shaft 22 operates, the longitudinal conveying shaft 327 is driven to rotate through the gear feeding. A plurality of grooves are formed in the surface of the longitudinal conveying shaft 327, which are designed to increase the friction. The clamping frame 323 comprises a rotating shaft 328, the rotating shaft 328 is sleeved with a feeding belt, the feeding belt is used for conveying the pig feet to the direction of the cutting knife 41, one side of the feeding belt is sleeved with the longitudinal conveying shaft 327, and the longitudinal conveying shaft 327 is used for providing power for the rotation of the feeding belt. Specifically, when the driving shaft 22 operates, the longitudinal conveying shaft 327 is driven to rotate through the gear transmission.In addition, the clamping frame 323 comprises a rotating shaft 328, which is sleeved with a feeding belt. One side of the feeding belt is sleeved on the longitudinal conveying shaft 327, so that the longitudinal conveying shaft 327 can provide power for the rotation of the feeding belt, thereby stably conveying the pig feet from the clamping area to the direction of the cutting knife 41, ensuring that the pig feet accurately enter the cutting position and complete the half-cutting operation. The grooves on the surface of the longitudinal conveying shaft 327 increase the friction between the feeding belt, and the design of the feeding belt further ensures the smooth transition of the pig feet from the clamping area to the direction of the cutting knife 41, thereby improving the accuracy and reliability of the entire conveying process. The top view of the clamping frame 323 is a right-angled triangle. One of the right-angled sides of the clamping frame 323 is close to one side of the pig feet, and the other right-angled side is connected with the first hinged frame 321 and the second hinged frame 322, and the clamping frame 323 can firmly fix the pig feet through the pressure provided by the air spring. Due to the stability of the right-angled triangle structure, the clamping frame 323 can provide uniform and reliable clamping force on pig feet of different sizes and shapes, preventing the pig feet from slipping or shifting during cutting.

[0049] The cutting mechanism 4 comprises a cutting knife 41, which is in transmission connection with the gear shaft 52. One side of the cutting knife 41 is provided with a horizontal conveying shaft 42, which is used for conveying the pig feet to the direction of the cutting knife 41. The horizontal conveying shaft 42 is in transmission connection with the gear shaft 52. A plurality of grooves are formed on the surface of the horizontal conveying shaft 42. When the motor 51 is started and driven through the gear shaft 52, the cutting knife 41 starts to rotate and is ready to perform the cutting operation. At the same time, the horizontal conveying shaft 42 is also in transmission connection with the gear shaft 52, and a plurality of grooves are formed on the surface of the horizontal conveying shaft 42 to increase the friction. After being stably clamped by the clamping mechanism 3, the pig feet are conveyed to the cutting area. At this time, the horizontal conveying shaft 42 rotates and uses the grooves on the surface thereof to grab and push the pig feet to move to the direction of the cutting knife 41, so as to ensure that the pig feet accurately enter the cutting position and are cut in half by the high-speed rotating cutting knife 41.

[0050] A feeding hopper 11 is arranged on one side of the workbench 1. After the pig feet are stably clamped by the clamping mechanism 3 and cut in half by the cutting knife 41, the cut pig feet are slid into the feeding hopper 11 under the action of gravity, which helps the pig feet to smoothly slide into the collecting container below, thereby realizing automatic processing and collection. Limiting pieces 6 are arranged on both sides of the cutting knife 41, and the limiting pieces 6 are fixedly connected with the workbench 1. The limiting pieces 6 are used for limiting both sides of the cutting knife 41. The cutting knife 41 can be stably maintained during high-speed rotation and cutting, so as to prevent inaccurate cutting or equipment damage caused by vibration or deviation.

[0051] Specifically, the working principle of the present application is as follows:

[0052] The pig trotter halfing machine automatically transports the pig trotter to the cutting area through the feeding mechanism 2. The driving shaft 22 is powered by the motor 51 through the gear shaft 52 and the slow machine 53, which drives the conveying belt 21 to operate, ensuring that the pig trotter moves stably to the cutting direction. The two clamping arms realize synchronous movement through the fan gears 325 on the synchronous shaft 324, and the pressure provided by the elastic body (air spring) ensures that the pig trotter remains stable during cutting and does not slip or shift.

[0053] When the pig trotter is firmly clamped, the cutting mechanism 4 starts to work. The cutting knife 41 is connected by the gear shaft 52, and rotates at high speed to prepare for cutting operation. At the same time, the horizontal conveying shaft 42 is also connected with the gear shaft 52, and the surface is provided with a plurality of grooves to increase the friction. When the horizontal conveying shaft 42 rotates, the pig trotter is grabbed and pushed by the grooves on the surface, ensuring that the pig trotter enters the working area of the cutting knife 41 accurately. In addition, limit pieces 6 are arranged on both sides of the cutting knife 41, which ensures that the cutting knife 41 remains stable during high-speed rotation and cutting, preventing inaccurate cutting or equipment damage caused by vibration or deviation.

[0054] After cutting, the cut pig trotter parts slide into the discharge hopper 11 arranged on one side of the workbench 1 by gravity. The discharge hopper 11 is usually designed to be inclined, which helps the pig trotter to slide smoothly into the lower collecting container or conveying belt, realizing automatic processing and collection. The whole process reduces the need for manual intervention, improves work efficiency and cutting consistency.

[0055] In summary, the utility model solves the problem of low efficiency of manual pig trotter cutting.

[0056] It should be understood that the terms "first", "second" and the like are used in the utility model to describe various information, but these information should not be limited to these terms, and these terms are only used to distinguish the same type of information from each other. For example, without departing from the scope of the utility model, the "first" information can also be called "second" information, and similarly, the "second" information can also be called "first" information. In addition, the orientation or position relationship indicated by the terms "center", "upper", "lower", "left", "right", "vertical", "horizontal", "inner", "outer" and the like is based on the orientation or position relationship shown in the drawings, and is only for the convenience of describing the utility model and simplifying the description, and therefore cannot be understood as limiting or implying that the indicated device or element must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as limiting or implying that the indicated device or element must have a particular orientation, be constructed and operated in a particular orientation.

[0057] The above is the preferred embodiment of the utility model, and it should be pointed out that for ordinary skilled persons in the art, without departing from the principle of the utility model, a number of improvements and modifications can be made, which are also considered as the protection scope of the utility model.

Claims

1. A pig feet halving machine comprising a worktable (1), the worktable (1) comprising a power mechanism (5), characterized in that, The workbench (1) is provided with a feeding mechanism (2), one side of the feeding mechanism (2) is provided with a clamping mechanism (3), one end of the feeding mechanism (2) is provided with a cutting mechanism (4), the feeding mechanism (2) is used for conveying pig feet to the direction of the cutting mechanism (4), the clamping mechanism (3) is used for clamping the pig feet in the conveying process, the cutting mechanism (4) is used for cutting the pig feet in half, and the power mechanism (5) is used for providing power for the feeding mechanism (2), the clamping mechanism (3) and the cutting mechanism (4).

2. The hog foot splitting machine of claim 1, wherein, The power mechanism (5) comprises a motor (51) and a gear shaft (52), the gear shaft (52) is in transmission connection with the motor (51), the feeding mechanism (2) comprises a conveying belt (21) and a driving shaft (22), the driving shaft (22) is used for driving the conveying belt (21) to operate, and the driving shaft (22) is in transmission connection with the gear shaft (52).

3. The hog foot splitting machine of claim 2, wherein, The clamping mechanism (3) comprises a top plate (31), the top plate (31) is provided with a first clamping arm (32) and a second clamping arm (33), the first clamping arm (32) is mirror-symmetric with the second clamping arm (33), the structure and the size of the second clamping arm (33) are same with the first clamping arm (32), the first clamping arm (32) comprises a clamping frame (323), one side of the clamping frame (323) is hingedly connected with a second hinge frame (322), one side of the second hinge frame (322) is fixedly connected with a synchronous shaft (324), the synchronous shaft (324) is provided with a sector gear (325), the sector gear (325) of the first clamping arm (32) is in mesh with the sector gear (325) of the second clamping arm (33), the first clamping arm (32) and the second clamping arm (33) are synchronous opening and closing through the sector gear (325), the other side of the clamping frame (323) is hingedly connected with a first hinge frame (321), the first hinge frame (321) is internally provided with an elastic body (326), and one end of the elastic body (326) is connected with the clamping frame (323).

4. The hog foot splitting machine of claim 3 wherein, One side of the synchronous shaft (324) is provided with a longitudinal conveying shaft (327), the bottom of the longitudinal conveying shaft (327) is provided with a gear in transmission connection with the driving shaft (22), and the longitudinal conveying shaft (327) is used for conveying the pig feet to the middle of the first clamping arm (32) and the first hinge frame (321).

5. The hog foot splitting machine of claim 2 wherein, The cutting mechanism (4) comprises a cutting knife (41), the cutting knife (41) is in transmission connection with the gear shaft (52), one side of the cutting knife (41) is provided with a horizontal conveying shaft (42), the horizontal conveying shaft (42) is used for conveying the pig feet to the direction of the cutting knife (41), and the horizontal conveying shaft (42) is in transmission connection with the gear shaft (52).

6. The hog foot splitting machine of claim 5 wherein, A plurality of grooves are formed in the surface of the horizontal conveying shaft (42).

7. The hog foot splitting machine of claim 3 wherein, The elastic body (326) is a gas spring.

8. The hog foot splitting machine of claim 1 wherein, One side of the workbench (1) is provided with a discharging hopper (11).

9. The hog foot splitting machine of claim 5 wherein, The cutting knife (41) is provided with a limiting piece (6) on both sides, which is used for limiting the two sides of the cutting knife (41).

10. The hog foot splitting machine of claim 3 wherein, The clamping frame (323) comprises a rotating shaft (328), and the rotating shaft (328) is externally sleeved with a feeding belt. The feeding belt is used for conveying pig feet to the direction of the cutting knife (41). One side of the feeding belt is sleeved with a longitudinal conveying shaft (327), and the longitudinal conveying shaft (327) is used for providing power for rotation of the feeding belt.