Efficient cleaning and slitting device for quick-frozen meat product raw materials

By designing a laterally movable cutting section and a cutting saw ring driven by a drive motor, combined with heating preheating and pressure roller design, the low efficiency and wear problems of traditional quick-frozen meat product cutting equipment have been solved, realizing an efficient and stable cutting process, and improving production efficiency and product quality.

CN121533428AInactive Publication Date: 2026-02-17ANHUI XIAXING FOOD
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Patent Information

Application Number
CN202511591618.4
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-11-03
Publication Date
2026-02-17
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

Traditional frozen meat product cutting equipment suffers from problems such as low cutting efficiency, easy jamming of teeth, severe equipment wear and high energy consumption, which affect production efficiency and product quality.

Method used

It adopts a cutting part that can move laterally, a cutting saw ring driven by a drive motor and gearbox, and a design that combines heating plate preheating and upper and lower pressure rollers to achieve efficient cutting of frozen meat, and achieves automatic feeding through electric push rods and toothed chains.

Benefits of technology

It improves cutting efficiency, reduces energy consumption, extends blade life, avoids jamming and meat residue, and enhances production efficiency and product quality.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to the technical field of quick-frozen meat slitting equipment, in particular to a quick-frozen meat product raw material efficient cleaning and slitting device which comprises a processing table set, a feeding part is arranged on the right side of the top end of the processing table set, a movable part is movably installed on the right side of the top end of the processing table set, and a cutting part is arranged above the movable part; the machining table set comprises a table base, a reinforcing plate is arranged at the bottom end of the inner wall of the table base, and an electric push rod A is connected between the column plate ends of the reinforcing plate. By arranging the cutting part capable of transversely moving and the cutting saw ring driven by the driving motor B and the gearbox, quick-frozen meat products can be efficiently and continuously cut, sawteeth of the cutting saw ring are arranged in a micro-inclined mode, in cooperation with the grinding stone end of the upper pressing wheel, automatic edge grinding can be achieved in the cutting process, high-frequency vibration is generated, and the cutting efficiency is improved. The cutting efficiency and the cutting surface quality are further improved, and tooth clamping and meat scrap residues are avoided.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of quick-frozen meat cutting equipment, and in particular to a high-efficiency quick-frozen meat product raw material cleaning and cutting device. BACKGROUND

[0002] In the food processing industry, cleaning and cutting of quick-frozen meat products are two crucial links. The entire process is as follows: whole raw meat after thawing or semi-thawing, cutting (meat particles, meat slices, or meat paste are made by a meat grinder, a dicing machine, a slicing machine, etc.), cleaning, dehydration (a centrifuge is commonly used), and subsequent processing. The specific surface area of the material after cutting is greatly increased, so that each face of each small meat particle can be fully washed, and surface grease, blood water, bone residues, and other impurities can be efficiently removed. The cleanliness is significantly higher than that of the process of cleaning first and then cutting. In order to improve the cleaning efficiency, the surface area of the quick-frozen meat after cutting is generally increased, and a transverse cutting is usually used. However, there are certain defects in the transverse cutting process.

[0003] Traditional cutting saws often face low cutting efficiency and tooth jamming during transverse cutting of frozen meat. These problems not only affect production efficiency, but also can lead to a decrease in product quality. Specifically, during the processing of quick-frozen meat product raw materials, the hardness of the frozen meat is high, and a large force is required during the cutting process. This not only increases the energy consumption of the equipment, but also can cause rapid wear of the blade and shorten its service life. In addition, during the cutting process of the frozen meat, debris can be easily generated, which can be jammed between the blades, causing tooth jamming. Tooth jamming not only reduces the cutting efficiency, but also can damage the equipment and increase maintenance costs. Therefore, a high-efficiency quick-frozen meat product raw material cleaning and cutting device is needed to solve the above problems. SUMMARY

[0004] The purpose of the present application is to solve the problems raised in the background.

[0005] In order to achieve the above purpose, the present application adopts the following technical scheme: A high-efficiency quick-frozen meat product raw material cleaning and cutting device, comprising a processing table group, a feeding part is arranged at the top right side of the processing table group, a movable part is movably installed at the top right side of the processing table group, and a cutting part is arranged above the movable part; The processing table group comprises a pedestal, a reinforcing plate is arranged at the bottom inner wall of the pedestal, an electric push rod A is connected between the column plate ends of the reinforcing plate, the top end of the electric push rod A is connected and fixed with the center of the bottom end of the movable table plate through a through hole penetrating the top end beam plate end of the pedestal, a plate group is arranged at the top end of the movable table plate, and a guide plate box is installed at the right side of the pedestal; The active part includes an n-shaped frame movably installed at the right side of the top end of the pedestal through a guide groove, the left and right sides of the n-shaped frame are respectively connected and fixed with the inner end face of the outer connecting plate and the side support, the top end of the outer connecting plate is provided with a driving motor A, the shaft end of the driving motor A penetrates through the outer connecting plate and is connected and fixed with the shaft end of the gear on the side of the n-shaped frame, the gear is rotatably installed in the n-shaped frame, and the bottom end of the inner wall of the pedestal guide groove is provided with teeth at equal intervals and is meshed with the teeth on the surface of the gear, when the gear rolls on the surface of the rack in the pedestal guide groove through the teeth, the n-shaped frame can conveniently drive the side support to move, the overall cutting part is controlled to translate, and the cutting part can realize the slitting operation on the frozen meat. The cutting part includes a plate bin fixed at the top end of the side support, two movable wheels are rotatably installed in the plate bin, the surface of the two movable wheels is provided with a cutting saw ring, the shaft end of one of the movable wheels penetrates through the plate bin and is butted with the shaft end of the gear in the gearbox, the outer side of the gearbox is provided with a driving motor B, the driving motor B is used as a power source, the two speed change wheels in the gearbox are used for increasing the speed change, and the smoothness of the cutting saw ring during slitting of the frozen meat is ensured.

[0006] Preferably, the plate group includes a supporting plate movably installed at the left side of the top end of the movable table plate, the top end of the supporting plate is provided with a concave surface, and a plurality of hook tooth plates are distributed on the surface of the concave surface at equal intervals, guide shafts are inserted into the left and right sides of the front face of the movable table plate through the through holes, and the top end of the guide shaft is connected with a limiting plate, the hook tooth plate end of the top end of the supporting plate is designed to increase the stability of the frozen meat placed on the surface of the supporting plate, the hook tooth plate end can limit the frozen meat, and the probability of sliding of the frozen meat during cutting is effectively reduced.

[0007] Preferably, the adjacent two hook tooth plate ends of the supporting plate are provided with a lower leakage groove, and the right side of the front face of the supporting plate is provided with a water outlet hole connected and penetrating the lower leakage groove, the hook tooth plate end on the surface of the supporting plate is designed to prevent displacement of the frozen meat during slitting, and the lower leakage grooves on the left and right sides of the supporting plate can conveniently guide the washing water flow.

[0008] Preferably, an electric push rod B is movably installed at the right side of the bottom end of the supporting plate, a slot for the tilting movement of the electric push rod B is formed in the surface of the movable table plate, the outer side of the cylinder seat end of the electric push rod B is movably installed on the surface of a supporting plate, and the top end of the supporting plate is fixed on the surface of the bottom end of the movable table plate through bolts, the supporting plate can be pushed by the extension and retraction of the piston rod end of the electric push rod B, the supporting plate can be controlled to rotate at the left side of the top end of the movable table plate, and the tilting slitting angle of the frozen meat placed on the surface of the supporting plate is changed.

[0009] Preferably, the feeding part includes an arm base fixed on the left side of the pedestal, and a hanging plate is inserted from top to bottom at the end of the vertical plate on the left side of the arm base, the top end of the hanging plate is connected with a shelf plate on the right side, two groups of chain disc groups can be installed by rotating inside the shelf plate, and a tooth chain is installed on the surface of the chain disc group, a driving device is arranged at the shaft end of one of the chain disc groups penetrating through the rear of the shelf plate, an electric push rod C is installed on the left side of the arm base, and the piston rod end of the electric push rod C is fixed in butt joint with the plate end on the left side of the hanging plate, the rotation of the chain disc group is driven by starting the motor end to drive the belt pulley group, and then the rotation of the chain disc group is controlled, the tooth chain rotates to push the cut frozen meat slices, facilitating the discharging operation of the frozen meat slices, and under the control of the programming program, the extension time of the piston rod end of the electric push rod C is changed to ensure the cutting degree.

[0010] Preferably, the bottom end of the plate bin is provided with a preheating element, the preheating element includes two connection seats fixedly connected with the bottom end of the plate bin, a hanging rod is movably installed inside each of the two connection seats, a heating plate is installed on the inner side of each of the two hanging rods, a transformer is installed on the side of one of the hanging rods, a battery pack is installed at a position close to the transformer at the bottom end of the plate bin, a reset spring is connected to the back of the hanging rod, and the end of the reset spring is fixed to the back of the plate bin through an extension plate, when the cutting saw ring teeth end abuts against the side of the frozen meat, the heating plate can be suspended at the next pre-cutting point, electrode sheets are arranged on the contact surfaces of the battery pack and the transformer, the heating plate can be heated through the wires, and the contact surface of the heating plate and the frozen meat can be softened to a certain extent.

[0011] Preferably, two tension components are movably installed inside the top end of the plate bin in a symmetrical manner, the tension component includes a movable frame, two T-shaped blocks are symmetrically connected to the top end of the movable frame on the front and back sides, the T-shaped blocks are movably installed in the inner wall of the plate bin through sliding grooves, upper and lower wheel groups are arranged inside the movable frame, a threaded rotating shaft is rotatably installed at the top end of the movable frame, and the threaded rotating shaft penetrates through the top end of the plate bin through a threaded hole, the two T-shaped blocks are fixed at the top end positions of the front and back sides of the movable frame, when the threaded rotating shaft rotates and moves in the threaded hole of the plate bin, the movable frame can be pushed down, and then the upper and lower wheel groups push down the cutting saw ring, so that the tightness of the cutting saw ring is adjusted and changed.

[0012] Preferably, the lower wheel set comprises a U-shaped plate movably mounted inside the movable frame through a guide slot, a lower pressing wheel is rotatably mounted inside the U-shaped plate, a threaded rotating rod is rotatably mounted at the bottom end of the U-shaped plate, the threaded rotating rod penetrates the bottom end of the movable frame through a threaded hole, a through square slot is formed at the bottom end of the plate bin and matched with the movable frame, a plurality of oblique blocks are arranged around the side of the lower pressing wheel, and the interval of the oblique blocks is matched with the gap of the cutting saw ring ring saw tooth end, the U-shaped plate can be pushed by rotating the threaded rotating rod in the threaded hole at the bottom end of the movable frame, the interval between the upper pressing wheel and the lower pressing wheel can be controlled and adjusted, the upper pressing wheel and the lower pressing wheel can be attached to the surface of the cutting saw ring, the stability of cutting during the rotation of the cutting saw ring is ensured, and the through square slot at the bottom end of the plate bin can facilitate the rotation of the threaded rotating rod inside the plate bin.

[0013] Preferably, the upper wheel set comprises an upper pressing wheel built in the movable frame, the shaft end of the upper pressing wheel is inserted into the inside of the side wheel plate, two guide plates are symmetrically arranged on the left and right sides of the side wheel plate, and the guide plates are movably mounted on the inner wall of the movable frame through guide slots, the top end of the side wheel plate is connected with a supporting spring, and the top end of the supporting spring is fixed to the inner wall of the guide slot of the movable frame, the guide plates are fixed on the left and right sides of the side wheel plate through the guide slots on the inner side of the movable frame, and the guide slots on the inner side of the movable frame can guide the guide plates to ensure the stability of the side wheel plate when moving up and down in the movable frame.

[0014] Preferably, the side of the upper wheel set is provided with a grinding stone end corresponding to the position of the cutting saw ring saw tooth end, and the saw tooth end of the cutting saw ring is arranged in a slightly inclined manner, so that when the cutting saw ring rotates to drive the upper pressing wheel to rotate by friction, the grinding stone end of the upper pressing wheel can be ground with the opening side of the saw tooth end of the cutting saw ring, thereby ensuring the sharpness of the cutting saw ring during use.

[0015] The application has at least the following advantages: By arranging the cutting part capable of moving horizontally and the cutting saw ring driven by the driving motor B and the gearbox, efficient and continuous cutting of the quick-frozen meat products is realized, the saw teeth of the cutting saw ring are arranged in a slightly inclined manner, the grinding stone end of the upper pressing wheel is matched, the blade can be automatically sharpened and high-frequency vibration can be generated during cutting, the cutting efficiency and cutting surface quality are further improved, and tooth jamming and meat residue are avoided.

[0016] The heating plate is arranged in the preheating part, can locally preheat and soften the pre-cut area of the frozen meat before cutting, reduces the cutting resistance, and reduces the energy consumption and blade wear. Through the linkage structure of the lifting rod and the reset spring, the heating plate and the cutting action are synchronously started and stopped, the meat quality is prevented from being denatured due to excessive heating, and the stability of the cutting process and the product quality are ensured.

[0017] The tightness of the cutting saw ring can be adjusted by the screw shaft to prevent slipping or breaking. The lower pressing wheel is provided with an inclined block matched with the saw tooth gap, which can automatically remove the meat scraps between the teeth during operation to keep the saw ring clean. The upper pressing wheel has the functions of pressing and sharpening, further prolonging the service life of the cutting saw ring.

[0018] The feeding part automatically pushes and discharges the cut meat slices through the electric push rod C and the toothed chain. Combined with the tiltable loading plate structure, it can realize various processing methods such as flat cutting and oblique cutting, and can also tilt and guide after cutting to avoid meat slice jamming and improve the automation degree and production efficiency of the overall process. BRIEF DESCRIPTION OF DRAWINGS

[0019] In order to more clearly illustrate the technical solutions of 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 some embodiments of the present application, and other drawings can also be obtained by those skilled in the art without creative labor.

[0020] Figure 1 An external structure schematic diagram of a high-efficiency cleaning and cutting device for raw materials of quick-frozen meat products is provided. Figure 2 A perspective bottom view structural schematic diagram of a feeding part in a high-efficiency cleaning and cutting device for raw materials of quick-frozen meat products is provided. Figure 3 A perspective exploded structural schematic diagram of a processing table group in a high-efficiency cleaning and cutting device for raw materials of quick-frozen meat products is provided. Figure 4 A partial exploded structural schematic diagram of a plate group in a high-efficiency cleaning and cutting device for raw materials of quick-frozen meat products is provided. Figure 5 A perspective exploded structural schematic diagram of a movable part in a high-efficiency cleaning and cutting device for raw materials of quick-frozen meat products is provided. Figure 6 A perspective connection structural schematic diagram of a movable part and a cutting part in a high-efficiency cleaning and cutting device for raw materials of quick-frozen meat products is provided. Figure 7 An internal exploded structural schematic diagram of a cutting part in a high-efficiency cleaning and cutting device for raw materials of quick-frozen meat products is provided. Figure 8 A partial exploded structural schematic diagram of a preheating part in a high-efficiency cleaning and cutting device for raw materials of quick-frozen meat products is provided. Figure 9 A perspective exploded structural schematic diagram of a tightness part in a high-efficiency cleaning and cutting device for raw materials of quick-frozen meat products is provided. Figure 10 It is a partial cut structure schematic view of the lower wheel group of a high-efficiency cleaning and cutting device for frozen meat product raw materials.

[0021] In the figure: 1, processing station group; 11, pedestal; 12, reinforcing plate; 13, electric push rod A; 14, movable table plate; 15, plate group; 151, supporting plate; 152, electric push rod B; 153, supporting plate; 16, guide shaft; 17, limiting plate; 2, feeding part; 21, arm seat; 22, suspension plate; 23, electric push rod C; 24, rack plate; 25, chain disc group; 26, toothed chain; 27, driving device; 3, movable part; 31, side support; 32, n-shaped frame; 33, gear; 34, driving motor A; 35, external plate; 4, cutting part; 41, plate bin; 42, movable wheel; 43, cutting saw ring; 44, gearbox; 45, driving motor B; 46, preheating part; 461, adapter seat; 462, boom; 463, heating plate; 464, return spring; 465, voltage converter; 466, battery pack; 5, tensioning component; 51, movable frame; 52, threaded rotating shaft; 53, upper wheel group; 531, upper pressure wheel; 532, side wheel plate; 533, supporting spring; 534, guide plate; 54, lower wheel group; 541, U-shaped plate; 542, lower pressure wheel; 543, threaded rotating rod; 55, T-shaped block; 6, guide plate box. DETAILED DESCRIPTION

[0022] In order to make the purpose, technical scheme and advantages of the present application clearer and more understandable, the present application will be further described in detail below in combination with the drawings and examples. It should be understood that the specific examples described herein are only used to explain the present application and do not limit the present application.

[0023] Referring to Figures 1-10 A high-efficiency cleaning and cutting device for frozen meat product raw materials, comprising a processing station group 1, a feeding part 2 is arranged at the top right side of the processing station group 1, a movable part 3 is movably installed at the top right side of the processing station group 1, and a cutting part 4 is arranged above the movable part 3; The processing station group 1 comprises a pedestal 11, a reinforcing plate 12 is arranged at the bottom end of the inner wall of the pedestal 11, and an electric push rod A 13 is connected between the column plate ends of the reinforcing plate 12, the top end of the electric push rod A 13 is connected and fixed with the bottom end center of a movable table plate 14 through a through hole penetrating the top end beam plate end of the pedestal 11, the movable table plate 14 is provided with a plate group 15, and a guide plate box 6 is installed at the right side of the pedestal 11; The movable part 3 includes an n-shaped frame 32 that is movably installed on the right side of the top of the base 11 via a guide groove. The left and right sides of the n-shaped frame 32 are respectively connected and fixed to the inner end face of the outer plate 35 and the side support 31. The top of the outer plate 35 is equipped with a drive motor A34, and the shaft end of the drive motor A34 passes through the outer plate 35 and one side of the n-shaped frame 32 and is connected and fixed to the shaft end of the gear 33. The gear 33 is rotatably installed inside the n-shaped frame 32. The bottom of the inner wall of the guide groove of the base 11 is provided with teeth at equal intervals and meshes with the teeth on the surface of the gear 33. The base 11 is provided with a guide groove that is compatible with the n-shaped frame 32. By setting a rack at the bottom of the guide groove, when the gear 33 rolls on the rack surface in the guide groove of the base 11 through the teeth, the n-shaped frame 32 can easily drive the side support 31 to move, control the overall translation of the cutting part 4, and realize the cutting operation of the cutting part 4 on the frozen meat. The cutting part 4 includes a plate compartment 41 fixed to the top of the side bracket 31. Two movable wheels 42 are rotatably installed inside the plate compartment 41. Cutting saw rings 43 are fitted on the surface of the two movable wheels 42. The shaft end of one of the movable wheels 42 passes through the plate compartment 41 and connects with the gear shaft end inside the gearbox 44. A drive motor B45 is provided on the outside of the gearbox 44.

[0024] The plate assembly 15 includes a mounting plate 151 movably mounted on the left side of the top of the movable platform 14. The top of the mounting plate 151 has a concave surface, and a number of hook-tooth plate ends are evenly distributed on the surface of the concave surface. The left and right sides of the front of the movable platform 14 are provided with guide shafts 16 through through holes, and the top of the guide shafts 16 are connected to limit plates 17.

[0025] A lower drain groove is provided between the two adjacent hook tooth plate ends of the mounting plate 151, and a water outlet hole connected to and communicating with the lower drain groove is provided on the right side of the front of the mounting plate 151.

[0026] An electric push rod B152 is movably installed on the right side of the bottom end of the mounting plate 151. A slot is opened on the surface of the movable platform 14 for the electric push rod B152 to tilt and move. The outer side of the cylinder seat end of the electric push rod B152 is movably installed on the surface of the support plate 153. The top of the support plate 153 is fixed to the bottom surface of the movable platform 14 by bolts.

[0027] The feeding part 2 includes an arm seat 21 fixed on the left side of the base 11, and a suspension plate 22 is inserted from top to bottom on the left vertical plate end of the arm seat 21. The top of the suspension plate 22 is connected to the right side of the frame plate 24, and two sets of chain discs 25 can be installed inside the frame plate 24. A toothed chain 26 is fitted on the surface of the chain discs 25. One of the chain discs 25 has a drive device 27 after the shaft end passes through the frame plate 24. An electric push rod C23 is installed on the left side of the arm seat 21, and the piston rod end of the electric push rod C23 is connected and fixed to the left plate end of the suspension plate 22.

[0028] A preheating component 46 is provided at the bottom of the silo 41. The preheating component 46 includes two connecting seats 461 that are fixed to the bottom of the silo 41. A lifting rod 462 is movably installed inside each of the two connecting seats 461. A heating plate 463 is installed on the inner side of the two lifting rods 462. A transformer 465 is installed on the side of one of the lifting rods 462. A battery pack 466 is installed at the bottom of the silo 41 near the transformer 465. A return spring 464 is connected to the back of the lifting rod 462, and the end of the return spring 464 is fixed to the back of the silo 41 by an extension plate.

[0029] Two tensioning components 5 are symmetrically and movably installed inside the top of the silo 41. The tensioning components 5 include a movable frame 51. Two T-shaped blocks 55 are symmetrically connected to the front and back sides of the top of the movable frame 51. The T-shaped blocks 55 are movably installed on the inner wall of the silo 41 through a sliding groove. An upper wheel set 53 and a lower wheel set 54 are provided inside the movable frame 51. A threaded shaft 52 is rotatably installed on the top of the movable frame 51. The threaded shaft 52 passes through the top of the silo 41 through a threaded hole.

[0030] The lower wheel assembly 54 includes a U-shaped plate 541 that is movably installed inside the movable frame 51 via a guide groove. A lower pressure wheel 542 is rotatably installed inside the U-shaped plate 541. A threaded rod 543 is rotatably installed at the bottom end of the U-shaped plate 541, and the threaded rod 543 passes through the bottom end of the movable frame 51 through a threaded hole. A through square groove adapted to the movable frame 51 is opened at the bottom end of the plate compartment 41. Several inclined blocks are arranged around the side of the lower pressure wheel 542, and the spacing between the inclined blocks is adapted to the gap at the end of the saw teeth of the cutting saw ring 43.

[0031] The upper wheel assembly 53 includes an upper pressure wheel 531 built into the movable frame 51. The shaft end of the upper pressure wheel 531 is inserted into the side wheel plate 532. Two guide plates 534 are symmetrically arranged on the left and right sides of the side wheel plate 532. The guide plates 534 are movably installed on the inner wall of the movable frame 51 through guide grooves. A support spring 533 is connected to the top of the side wheel plate 532, and the top of the support spring 533 is fixed to the inner wall of the guide groove of the movable frame 51.

[0032] A grinding stone end is provided on the side of the upper wheel assembly 53 at the position corresponding to the saw tooth end of the cutting saw ring 43, and the saw tooth end of the cutting saw ring 43 is arranged at a slight inclination.

[0033] Powered by a drive motor B45, the gearbox 44 uses two gearbox wheels to increase torque and change speed, ensuring the smoothness of the cutting saw ring 43 when cutting frozen meat. The design of the hook-tooth plate at the top of the mounting plate 151 increases the stability of the frozen meat placed on the surface of the mounting plate 151. The hook-tooth plate can limit the frozen meat, effectively reducing the chance of slippage during cutting. The guide shaft 16 can be pulled out of the through hole of the movable platform 14 and change the position of the limiting plate 17 to facilitate blocking the frozen meat. The guide shaft 16 can move in the through hole of the movable platform 14 and be fixed to the side of the movable platform 14 with bolts to prevent the limiting plate 17 from easily loosening. The hook-tooth plate design on the surface of the mounting plate 151 can prevent the frozen meat from shifting during cutting. The mounting plate 151 has lower drainage grooves on the left and right sides to facilitate the guidance of the rinsing water flow, allowing the water to flow down along the outlet hole and preventing water accumulation.

[0034] The slotted design of the movable platform 14 facilitates the tilting movement of the electric push rod B152. The extension and retraction of the piston rod end of the electric push rod B152 pushes the mounting plate 151, controlling its rotation to the left side of the top of the movable platform 14. This changes the tilting angle at which frozen meat is placed on the mounting plate 151. When the mounting plate 151 tilts to the right (left higher than right), the hook-tooth end of the mounting plate 151 forms a guide plate structure, facilitating the sliding of frozen meat from the right side of the mounting plate 151. The drive device 27 consists of a motor and a pulley assembly. The motor shaft of the drive device 27 is connected to the shaft end of one of the pulleys. The two pulleys... A connecting belt is installed between the components. The motor starts the pulley assembly, which rotates the chain wheel assembly 25, causing the chain wheel assembly 25 to rotate and drive the toothed chain 26 to rotate. The toothed chain 26 can push the cut frozen meat slices during rotation, facilitating the feeding operation of the frozen meat slices. Under the control of the programming program, the extension and retraction time of the piston rod end of the electric push rod C23 can be changed to ensure the cutting degree. To ensure accuracy, a sensor can also be installed at the bottom of the horizontal plate end of the suspension plate 22. At the same time, the vertical plate end of the suspension plate 22 passes through the inside of the arm seat 21. The arm seat 21 can guide the suspension plate 22 to ensure the stability of the suspension plate 22 during up and down movement.

[0035] When the saw teeth of the cutting saw ring 43 are in contact with the side of the frozen meat, the heating plate 463 can be suspended at the next pre-cutting point. Electrode plates are provided on the contact surfaces of the battery pack 466 and the transformer 465, and the heating plate 463 can be heated by wires. The contact surface of the heating plate 463 with the frozen meat can perform a certain degree of softening operation. When the cutting saw ring 43 moves to cut, it is guided by the frozen meat, which allows the boom 462 to rotate under force, controlling the electrode plates of the transformer 465 to separate and cut off the power. After the cutting saw ring 43 completes the cutting and resets, the boom... When the pressure is released, the battery pack 466 can contact the inner electrode plate of the transformer 465, driving the heating plate 463 to operate. At the same time, the trapezoidal structure design of the heating plate 463 can concentrate the preheating part on a line on the side of the frozen meat, avoiding the accelerated melting of the frozen meat as a whole, which would affect the subsequent cutting state. When the heating plate 463 moves with the cutting saw ring 43, the return spring 464 is placed at the cutting surface of the frozen meat and the meat slice, which can lift the meat slice and improve the cutting effect. At the same time, in conjunction with the toothed chain 26, it can improve the feeding efficiency of the meat slices.

[0036] Two T-shaped blocks 55 are fixed at the top of the front and back sides of the movable frame 51. When the threaded shaft 52 rotates and moves in the threaded hole of the plate compartment 41, it can push the movable frame 51 down, which in turn causes the lower wheel group 54 and the upper wheel group 53 to press down on the cutting saw ring 43, adjust and change the tension of the cutting saw ring 43, and prevent the cutting saw ring 43 from slipping or breaking during use, thereby improving the safety of the cutting saw ring 43.

[0037] The U-shaped plate 541 can be guided by the guide groove of the movable frame 51 to ensure the stability of the U-shaped plate 541 during movement. The U-shaped plate 541 can be pushed by rotating and moving the threaded rod 543 in the threaded hole at the bottom of the movable frame 51. The distance between the lower pressure roller 542 and the upper pressure roller 531 can be controlled and adjusted so that the upper pressure roller 531 and the lower pressure roller 542 can fit against the surface of the cutting saw ring 43 to ensure the cutting stability when the cutting saw ring 43 rotates. The through square groove at the bottom of the plate bin 41 is designed with The design allows for easy adjustment of the internal threaded rod 543 of the plate bin 41 using tools. The inclined block on the side of the lower pressure roller 542 is adapted to the tooth gap of the cutting saw ring 43. During the rotation of the cutting saw ring 43, the inclined block of the lower pressure roller 542 can push out the debris in the tooth gap of the cutting saw ring 43, ensuring the cleanliness of the cutting saw ring 43. At the same time, when the grinding wheel of the upper pressure roller 531 contacts the tooth of the cutting saw ring 43, it will cause the tooth end to vibrate, further improving the effect of chip removal.

[0038] The guide plate 534 is fixed to the left and right sides of the side wheel plate 532. The guide groove on the inner side of the movable frame 51 can guide the guide plate 534 to ensure the stability of the side wheel plate 532 when it moves up and down in the movable frame 51. The guide groove on the surface of the movable frame 51 can allow the side wheel plate 532 to move slightly and short distance, so that the upper pressure roller 531 can fit against the surface of the cutting saw ring 43. This facilitates the sharpening operation of the grinding stone end on the side of the upper pressure roller 531 on the cutting saw ring 43, and maintains the smoothness of the cutting saw ring 43 during slitting. When the cutting saw ring 43 rotates, driving the upper pressure roller 531 to rotate due to friction, the grinding stone end of the upper pressure roller 531 can grind the serrated edge of the cutting saw ring 43, ensuring the sharpness of the cutting saw ring 43 during use. At the same time, the inclined design of the serrated edge of the cutting saw ring 43 can generate a small-amplitude high-frequency vibration when colliding with the grinding stone end of the upper pressure roller 531, enabling the cutting saw ring 43 to quickly slice frozen meat pieces. The two designs work together to significantly improve the slicing efficiency of frozen meat pieces. Working principle: According to Figure 2 , Figure 5 and Figure 7 As shown, during use, frozen meat can be placed in the recessed area of ​​the mounting plate 151. The hook teeth in the recessed area can hook the bottom of the frozen meat. The cutting and pushing direction of the frozen meat can be limited by the limiting plate 17. The forward and reverse rotation of the drive motor A34 shaft is controlled by the programming program. When the drive motor A34 starts, it drives the gear 33 to roll on the toothed plate end surface of the guide groove of the base 11. The rolling of the gear 33 can drive the n-shaped frame 32 to move, which in turn drives the side support 31 to move. The side support 31 can control the displacement of the cutting part 4. After the drive motor B45 shaft rotates and the gearbox 44 increases the torque, it drives the movable wheel 42 to rotate. The movable wheel 42 can drive the cutting saw ring 43 to rotate. At this time, the displacement of the movable part 3 can drive the cutting part 4 to move. The cutting saw ring 43 in the cutting part 4 moves and moves to make a transverse cut on the frozen meat. When the cutting part 4 moves to the other side of the frozen meat, according to Figure 2 As shown, after the electric push rod C23 is started, the piston rod of the electric push rod C23 retracts, which can drive the vertical end of the suspension plate 22 to move down in the through groove of the arm seat 21. The suspension plate 22 can drive the frame plate 24 to move. The frame plate 24 can drive the toothed chain 26 to press down on the surface of the sliced ​​frozen meat through the chain disk assembly 25. At this time, the motor end of the drive device 27 can drive the chain disk assembly 25 to rotate. The chain disk assembly 25 drives the toothed chain 26 to rotate and push the frozen meat, so that the toothed chain 26 can slide down from the guide plate box 6. At this time, the above operation is repeated, so that the piston rod end of the electric push rod C23 moves up to push the suspension plate 22, so that the suspension plate 22 drives the frame plate 24 to move up, and controls the chain disk assembly 25 and the toothed chain 26 to move up and raise it above the top of the cutting part 4. At the same time, when the drive motor A34 rotates in the opposite direction, the above operation is repeated to reset the cutting part 4. Secondly, when performing the two-stage transverse cut, according to Figure 6 andFigure 8 As shown, when the cutting saw ring 43 contacts the frozen meat, the preheating element 46 below the hopper 41 is in contact with the frozen meat. When the cutting saw ring 43 moves with the hopper 41 to cut the frozen meat, the heating plate 463 below can be energized to preheat and temporarily melt the next pre-cut surface on the side of the frozen meat. When the hopper 41 moves, the heating plate 463 is forced to rotate the hanging rod 462. The movement of the hanging rod 462 can compress the return spring 464. At this time, after the heating plate 463 rotates, it is kept on the same horizontal line as the cutting saw ring 43. The heating plate 463 moves along the cutting surface of the frozen meat, which can lift the cut meat slices to a certain extent and avoid... The large contact area of ​​the non-cutting surface makes it difficult to push and unload the material. This is beneficial for the toothed chain 26 to push and unload the sliced ​​frozen meat in the above operation. When the lifting rod 462 flips, it can drive the transformer 465 to move, control the inner electrode plate of the transformer 465 to separate from the inner electrode plate of the battery pack 466, thereby cutting off the power and preventing the frozen meat from melting due to continuous heating. When the cutting part 4 is reset, the lifting rod 462 is supported by the elastic force of the reset spring 464. The battery pack 466 contacts the inner electrode plate of the transformer 465 and is energized, controlling the heating plate 463 to reheat and preheat the horizontal area of ​​the next pre-cutting position. Secondly, according to Figure 3 and Figure 4 As shown, the movable platform 14 is pushed by the piston rod of the electric push rod A13, which extends to activate the electric push rod A13. To ensure stability, two sets of positioning pins can be installed on the lower side of the movable platform 14 as needed. The positioning pins pass through the crossbeam plate of the base 11 through through holes to prevent the movable platform 14 from tilting. This is a well-known and commonly used technology, and will not be described in detail. When it is necessary to cut frozen meat at an angle, the piston rod of the electric push rod B152 extends to lift the mounting plate 151, controlling the mounting plate 151 on the movable platform. 14. The top left side is flipped to control the mounting plate 151 to tilt to the left. At this time, the hook teeth on the surface of the mounting plate 151 can tilt and hook the frozen meat. The tilting of the mounting plate 151 to the left can prevent it from slipping when cutting at an angle. In daily flat cutting, after the cutting is completed, the pneumatic electric push rod B152 can be used to retract the piston rod end of the electric push rod B152 and drive the mounting plate 151 to flip and tilt to the right. The hook teeth on the surface of the mounting plate 151 can form a sliding track effect because the top is flat, which facilitates the sliding of the last remaining frozen meat. In conjunction with the toothed chain 26, it can effectively prevent the frozen meat at the bottom from getting stuck. Finally, according to Figure 9 and Figure 10As shown, the movable frame 51 can be pushed down by the rotation of the threaded shaft 52 within the thread of the hopper 41. The tension of the cutting saw ring 43 can be adjusted by controlling the upper wheel assembly 53 and the lower wheel assembly 54. When the tension is appropriate, it will not be too tight or too loose. The saw teeth on the surface of the cutting saw ring 43 are inclined. A cleaning block, matching the tooth pitch of the cutting saw ring 43, is arranged around the side of the lower pressure roller 542. This cleaning block can drive the lower pressure roller 542 to rotate as the cutting saw ring 43 rotates, and can push out meat scraps from the tooth grooves of the cutting saw ring 43. Simultaneously, the specially designed saw teeth of the cutting saw ring 43 can rub against the friction stones on the side of the upper pressure roller 531. Friction at the ends ensures the sharpness of the saw teeth. Due to the angled position of the specially designed saw teeth of the upper pressure roller 531, the saw teeth vibrate when the cutting saw ring 43 touches the upper pressure roller 531. The vibration accelerates the falling of meat scraps between the teeth. At the same time, the vibrating saw teeth of the cutting saw ring 43 can improve the separation effect on the cut surface of frozen meat. By twisting the threaded rod 543 with a tool, the threaded rod 543 rotates and moves upward in the threaded hole at the bottom of the movable frame 51, which can push the U-shaped plate 541 upward. The movement of the U-shaped plate 541 drives the lower pressure roller 542 to move, and the distance between the upper pressure roller 531 and the lower pressure roller 542 can be finely adjusted to improve the fit of the cutting saw ring 43.

[0039] The foregoing has shown and described the basic principles, main features, and advantages of the present invention. Those skilled in the art should understand that the present invention is not limited to the above embodiments. The embodiments and descriptions in the specification are merely principles of the invention. Various changes and modifications can be made to the invention without departing from its spirit and scope, and all such changes and modifications fall within the scope of the claimed invention. The scope of protection claimed by the appended claims and their equivalents is defined.

Claims

1. A high-efficiency cleaning and cutting device for quick-frozen meat product raw materials, comprising a processing table assembly (1), characterized in that, The processing table assembly (1) has a feeding part (2) on the right side of the top, and a movable part (3) is movably installed on the right side of the top of the processing table assembly (1), and a cutting part (4) is provided above the movable part (3). The processing table (1) includes a table (11), a reinforcing plate (12) is provided at the bottom of the inner wall of the table (11), and an electric push rod A (13) is connected between the column plate ends of the reinforcing plate (12). The piston rod end of the electric push rod A (13) passes through the top beam plate end of the table (11) through a through hole and is connected and fixed to the center of the bottom end of the movable table (14). A plate group (15) is provided at the top of the movable table (14), and a guide plate box (6) is installed on the right side of the table (11). The movable part (3) includes an n-shaped frame (32) that is movably installed on the right side of the top of the base (11) via a guide groove. The left and right sides of the n-shaped frame (32) are respectively connected and fixed to the inner end face of the outer plate (35) and the side support (31). The top of the outer plate (35) is equipped with a drive motor A (34), and the shaft end of the drive motor A (34) passes through the outer plate (35) and one side of the n-shaped frame (32) and is connected and fixed to the shaft end of the gear (33). The gear (33) is rotatably installed inside the n-shaped frame (32). The bottom of the inner wall of the guide groove of the base (11) is provided with teeth at equal intervals and meshes with the teeth on the surface of the gear (33). The cutting part (4) includes a plate compartment (41) fixed to the top of the side bracket (31). Two movable wheels (42) are rotatably installed inside the plate compartment (41). Cutting saw rings (43) are sleeved on the surface of the two movable wheels (42). The shaft end of one of the movable wheels (42) passes through the plate compartment (41) and connects with the gear shaft end inside the gearbox (44). A drive motor B (45) is provided on the outside of the gearbox (44).

2. The efficient cleaning and cutting device for quick-frozen meat product raw materials according to claim 1, characterized in that, The plate assembly (15) includes a mounting plate (151) movably mounted on the left side of the top of the movable platform (14). The top of the mounting plate (151) has a concave surface, and a number of hook-tooth plate ends are evenly distributed on the surface of the concave surface. The left and right sides of the front of the movable platform (14) are provided with guide shafts (16) through through holes, and the top of the guide shafts (16) is connected to a limiting plate (17).

3. The efficient cleaning and cutting device for quick-frozen meat product raw materials according to claim 2, characterized in that, A lower drain groove is provided between two adjacent hook-tooth plate ends of the mounting plate (151), and a water outlet hole connected to and communicating with the lower drain groove is provided on the right side of the front of the mounting plate (151).

4. The efficient cleaning and cutting device for quick-frozen meat product raw materials according to claim 3, characterized in that, An electric push rod B (152) is movably installed on the right side of the bottom end of the mounting plate (151). The surface of the movable platform (14) is provided with a slot for the electric push rod B (152) to tilt and move. The outer side of the cylinder seat end of the electric push rod B (152) is movably installed on the surface of the support plate (153). The top end of the support plate (153) is fixed to the bottom surface of the movable platform (14) by bolts.

5. The efficient cleaning and cutting device for quick-frozen meat product raw materials according to claim 1, characterized in that, The feeding part (2) includes an arm seat (21) fixed on the left side of the platform (11), and a suspension plate (22) is inserted from top to bottom on the left vertical plate end of the arm seat (21). The top of the suspension plate (22) is connected to the right side of the frame plate (24), and two sets of chain discs (25) can be installed inside the frame plate (24) by rotation. A toothed chain (26) is fitted on the surface of the chain discs (25). One of the chain discs (25) has a drive device (27) after the shaft end passes through the frame plate (24). An electric push rod C (23) is installed on the left side of the arm seat (21), and the piston rod end of the electric push rod C (23) is fixedly connected to the left plate end of the suspension plate (22).

6. The efficient cleaning and cutting device for quick-frozen meat product raw materials according to claim 1, characterized in that, The bottom of the silo (41) is provided with a preheating component (46). The preheating component (46) includes two connecting seats (461) that are fixed to the bottom of the silo (41). A lifting rod (462) is movably installed inside each of the two connecting seats (461). A heating plate (463) is installed on the inner side of the two lifting rods (462). A transformer (465) is installed on the side of one of the lifting rods (462). A battery pack (466) is installed at the bottom of the silo (41) near the transformer (465). A return spring (464) is connected to the back of the lifting rod (462), and the end of the return spring (464) is fixed to the back of the silo (41) by an extension plate.

7. The efficient cleaning and cutting device for quick-frozen meat product raw materials according to claim 6, characterized in that, Two tensioning components (5) are symmetrically and movably installed inside the top of the silo (41). The tensioning components (5) include a movable frame (51). Two T-shaped blocks (55) are symmetrically connected on the front and back sides of the top of the movable frame (51). The T-shaped blocks (55) are movably installed on the inner wall of the silo (41) through a sliding groove. An upper wheel group (53) and a lower wheel group (54) are provided inside the movable frame (51). A threaded shaft (52) is rotatably installed on the top of the movable frame (51). The threaded shaft (52) passes through the top of the silo (41) through a threaded hole.

8. The efficient cleaning and cutting device for quick-frozen meat product raw materials according to claim 7, characterized in that, The lower wheel assembly (54) includes a U-shaped plate (541) that is movably installed inside the movable frame (51) via a guide groove. A lower pressure wheel (542) is rotatably installed inside the U-shaped plate (541). A threaded rod (543) is rotatably installed at the bottom end of the U-shaped plate (541), and the threaded rod (543) passes through the bottom end of the movable frame (51) through a threaded hole. A through square groove adapted to the movable frame (51) is opened at the bottom end of the plate compartment (41). Several inclined blocks are arranged around the side of the lower pressure wheel (542), and the spacing between the inclined blocks is adapted to the gap at the end of the saw teeth of the cutting saw ring (43).

9. The efficient cleaning and cutting device for quick-frozen meat product raw materials according to claim 7, characterized in that, The upper wheel assembly (53) includes an upper pressure wheel (531) built into the movable frame (51). The shaft end of the upper pressure wheel (531) is inserted into the side wheel plate (532). Two guide plates (534) are symmetrically arranged on the left and right sides of the side wheel plate (532). The guide plates (534) are movably installed on the inner wall of the movable frame (51) through guide grooves. A support spring (533) is connected to the top of the side wheel plate (532). The top of the support spring (533) is fixed to the inner wall of the guide groove of the movable frame (51). A polishing stone end is provided on the side of the upper wheel assembly (53) at the position corresponding to the saw tooth end of the cutting saw ring (43). The saw tooth end of the cutting saw ring (43) is arranged in a slightly inclined manner.