A device for uniformly cutting and processing Huyang mutton

Through the mechanical linkage of the rotary cutting components and the post-treatment components, the problems of low efficiency and poor uniformity of the lake lamb cutting equipment are solved, and automated and uniform production of lake lamb pellets is achieved, manual cleaning is avoided, and production efficiency and product quality are improved.

CN119974087BActive Publication Date: 2025-08-22BENGBU COLLEGE
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Patent Information

Application Number
CN202510247183.5
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-03-04
Publication Date
2025-08-22
Estimated Expiration
2045-03-04

AI Technical Summary

Technical Problem

The existing lake lamb cutting equipment is low in efficiency, poor product uniformity, and requires manual regular cleaning of blades, which is difficult to meet the production requirements of high-evenness lamb pellet products.

Method used

A uniform cutting and processing equipment for lake lamb pellets is designed, using rotary cutting components and post-treatment components to achieve automated cutting and cleaning through mechanical linkage, the blade is cleaned by centrifugal force of the rotating cutting head, and the post-treatment components are controlled for transverse cutting and screening through the reciprocating motion of the guide rod.

Benefits of technology

It realizes efficient and even cutting of lake lamb pellets, has a high degree of automation, avoids manual cleaning, and improves production efficiency and product quality.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention relates to the technical field of processing granules of lake sheep meat, and more specifically, to a device for uniformly cutting and processing lake sheep meat particles, comprising a cutting box, a support frame, an intermediate box, a control center, a conveyor belt, a feed table and a conveyor motor, wherein the cutting box, the intermediate box and the feed table are sequentially arranged on the support frame, the control center is arranged on the intermediate box, the conveyor belt is movably arranged on the feed table, the conveyor motor is arranged on the feed table and its output end is connected to the conveyor belt, a group of distance measuring sensors are symmetrically arranged on the cutting box, the cutting and processing equipment also comprises a rotary cutting component and a post-processing component, the rotary cutting component is arranged in the intermediate box, and the post-processing component is arranged in the cutting box; compared with the traditional manual method of cutting lake sheep meat, the device is more efficient and the size of the cut lake sheep meat particles is more uniform, and there is no need for staff to stop the machine regularly to clean the rotating cutter head.
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Description

Technical Field

[0001] The invention relates to the technical field of processing mutton pellets, and more particularly to equipment for uniformly cutting and processing mutton pellets. Background Art

[0002] Hu mutton (Huyang) is highly sought after for its tender texture and unique flavor. However, current Huyang mutton cutting is largely manual, resulting in low production efficiency, poor product uniformity, and high processing costs. This is particularly true for products requiring highly uniform mutton cuts, such as frozen prepared foods, where traditional methods struggle to meet production requirements. Therefore, the development of efficient and automated Huyang mutton cutting equipment is essential.

[0003] The traditional Huyang mutton cutting equipment has a simple structure. The production process of Huyang mutton pellets requires two processes: horizontal cutting and vertical cutting. The entire cutting cycle is long. In addition, during the cutting process, the staff needs to stop the machine regularly to check whether there is mutton residue on the surface of the blade and clean it, which is very inconvenient. Summary of the Invention

[0004] The purpose of the present invention is to provide a device for uniformly cutting and processing Hu sheep meat particles to solve the problems raised in the above background technology.

[0005] To achieve the above object, the present invention provides the following technical solutions:

[0006] A device for uniformly cutting and processing Huyang mutton particles,

[0007] A further technical solution of the present application: includes a cutting box, a support frame, an intermediate box, a control center, a conveyor belt, a feed table and a conveyor motor, the cutting box, the intermediate box and the feed table are sequentially arranged on the support frame, the control center is arranged on the intermediate box, the conveyor belt is movably arranged on the feed table, the conveyor motor is arranged on the feed table and its output end is connected to the conveyor belt, a group of distance measuring sensors are symmetrically arranged on the cutting box, the cutting processing equipment also includes a rotary cutting component and a post-processing component, the rotary cutting component is arranged in the intermediate box for cutting the whole piece of lake sheep meat, and the post-processing component is arranged in the cutting box for granulating and screening the lake sheep meat after cutting;

[0008] The rotary cutting assembly includes a processing table, an execution structure and a blade spacing adjustment structure. The processing table is arranged in an intermediate box. Several blade head slots are equidistantly arranged on the processing table. The execution structure is arranged in the intermediate box and is located on one side of the processing table. It is used to perform cutting processing on lake sheep meat. The blade spacing adjustment structure is arranged in the intermediate box and is connected to the execution structure. It is used to adjust the cutting range of the execution structure.

[0009] A further technical solution of the present application is as follows: the execution structure includes a tool mounting seat, a drive shaft, a cutting motor, several rotating cutter heads and a cutter head mounting seat, the tool mounting seat is movably arranged in the intermediate seat through a guide rod, the tool mounting seat and the intermediate phase are elastically connected, the drive shaft is movably arranged on the tool mounting seat, the cutting motor is arranged on the tool mounting seat and its output end is connected to the drive shaft, there are several cutter head mounting seats and they are equidistantly movably arranged on the drive shaft, each cutter head mounting seat is detachably mounted with a rotating cutter head, the rotating cutter head is crescent-shaped, and the cutter head mounting seat is connected to the blade spacing adjustment structure.

[0010] A further technical solution of the present application is: the tool distance adjustment structure includes an adjusting tool sleeve, a slider, a guide shaft and a uniform adjustment unit, the guide shaft is arranged in the middle box, the number of the sliders is the same as the number of the rotating tool heads and they are equidistantly arranged on the guide shaft, each of the sliders is provided with an adjusting tool sleeve, the tool head mounting seat is provided on the inner side of the adjusting tool sleeve and the two are slidably fitted together, the uniform adjustment unit is provided on the tool mounting seat and connected to the slider, and is used to adjust the distance between two adjacent sliders.

[0011] The present application has a further technical solution: the uniform adjustment unit includes an electric telescopic rod, a push arm, an adjustment rod, a first driving arm and a sliding column, the push arm movably arranged on the tool mounting seat, the electric telescopic rod is arranged on the tool mounting seat and its movable end is connected to the push arm, one end of the adjustment rod is hinged to the middle position of the tool mounting seat, the other end of the adjustment rod is formed with a through groove, the sliding column is arranged on the push arm and slides with the through groove, the adjustment rod is arranged obliquely relative to the guide shaft, the adjustment rod is movably connected to the slider through the first driving arm, and the sizes of two adjacent adjustment rods change evenly.

[0012] The present application has a further technical solution: two blocking plates are movably and symmetrically arranged in the processing table, and a number of through windows cooperating with the tool head grooves are arranged on the blocking plates. The tool head grooves are arranged on the moving paths of the through windows, and the blocking plates are connected to any one of the adjusting tool sleeves on the same side thereof through a connecting rod.

[0013] The present application has a further technical solution: a blade groove and a blanking port are formed on one side of the processing table in the cutting box, and the blanking port is located on the side of the blade groove away from the middle box. An inclined surface is provided in the cutting box directly below the blanking port. The post-processing component includes a screening module and a vertical cutting module. The vertical cutting module is arranged in the cutting box and connected to the guide rod. When the guide rod moves, it controls the vertical cutting module to work synchronously and to granulate the mutton. The screening module is arranged in the cutting box and connected to the vertical cutting module. When the vertical cutting module works, it controls the screening module to work synchronously and to screen the mutton pellets.

[0014] A further technical solution of the present application is: the vertical cutting module includes a cylinder, a blade mounting seat, a cutting blade and a transmission structure, the blade mounting seat is movably arranged on the cutting box, the blade slot is arranged on one side of the blade mounting seat, the cutting blade is arranged on the blade mounting seat, the cylinder is arranged on the intermediate box and its movable end is connected to the blade mounting seat, the transmission structure is arranged on the intermediate box and connects the guide rod and the cylinder, and when the guide rod moves, the transmission structure controls the cylinder to repeatedly extend and retract.

[0015] A further technical solution of the present application is: the transmission structure includes a movable seat, an inflation tube, a piston rod and a third driving arm, the movable seat is movably arranged on the intermediate box and connected to the guide rod, the inflation tube is arranged on the intermediate box and connected to the cylinder, the piston rod is movably arranged in the inflation tube, and the third driving arm is movably connected between the piston rod and the movable seat.

[0016] A further technical solution of the present application is: the screening module includes a screening plate, a connecting block and a second driving arm, the screening plate is movably arranged in the cutting box, the connecting blocks are several in number and are symmetrically arranged on the screening plate, and the connecting blocks are movably connected to the blade mounting seat through the second driving arm.

[0017] A further technical solution of the present application is that the screening plate is arranged obliquely relative to the cutting box, and the side of the screening plate close to the inclined surface is flush with the lower end of the inclined surface.

[0018] Compared with the prior art, the technical solution provided by the embodiments of the present invention has the following beneficial effects:

[0019] The embodiment of the present invention provides a rotary cutting component and a post-processing component, and provides a mechanical linkage structure. When the rotary cutting component is working to control the rotation of the rotary cutter head, the specific structural characteristics of the rotary cutter head can be utilized to generate centrifugal force while the rotary cutter head rotates, thereby controlling the entire tool mounting seat to reciprocate in the vertical direction, so that the rotary cutter head vibrates in the vertical direction, thereby indirectly achieving the cleaning of the rotary cutter head and avoiding the adhesion of meat residues. At the same time, the reciprocating motion of the guide rod can be utilized to provide power for the post-processing component, and the post-processing component can be controlled to perform cross-cutting and screening of the mutton. The entire device has a high degree of automation. Compared with the traditional manual method of cutting mutton, the device is more efficient and the size of the cut mutton particles is more uniform. There is no need for staff to stop the machine regularly to clean the rotary cutter head. BRIEF DESCRIPTION OF THE DRAWINGS

[0020] Figure 1 Schematic diagram of the structure of the equipment for uniformly cutting and processing Huyang mutton cubes according to an embodiment of the present invention;

[0021] Figure 2Schematic diagram of the internal structure of the intermediate box in the equipment for uniformly cutting and processing Huyang meat particles according to an embodiment of the present invention;

[0022] Figure 3 Schematic diagram of the structure of the rotary cutting assembly in the equipment for uniformly cutting and processing mutton cubes according to an embodiment of the present invention;

[0023] Figure 4 Schematic diagram of the structure of the blade distance adjustment structure in the equipment for uniformly cutting and processing Huyang meat cubes according to an embodiment of the present invention;

[0024] Figure 5 This is a schematic diagram of the structure of the execution structure of the equipment for uniformly cutting and processing Huyang meat particles according to an embodiment of the present invention;

[0025] Figure 6 An exploded view of a processing table and a blocking plate in the equipment for uniformly cutting and processing mutton diced meat according to an embodiment of the present invention;

[0026] Figure 7 Schematic diagram of the structure of the post-processing components in the equipment for uniformly cutting and processing Huyang meat particles according to an embodiment of the present invention;

[0027] Figure 8 This is a schematic diagram of the internal structure of the cutting box in the equipment for uniformly cutting and processing mutton cubes in an embodiment of the present invention.

[0028] Explanation of the numbers in the schematic diagram:

[0029] 1- cutting box, 2- support frame, 3- feeding table, 4- transport belt, 5- transport motor, 6- control center, 7- middle box, 8- cutting motor, 9- processing table, 10- guide rod, 11- tool mounting seat, 12- drive shaft, 13- push arm, 14- electric telescopic rod, 15- slide block, 16- guide shaft, 17- adjustment rod, 18- slot, 19- slide column, 20- first drive arm, 21- adjustment tool sleeve, 22-rotating cutter head, 23-cutter head mounting seat, 24-cutter head slot, 25-sealing plate, 26-connecting rod, 27-screening plate, 28-connecting block, 29-second driving arm, 30-cylinder, 31-inflating tube, 32-piston rod, 33-moving seat, 34-third driving arm, 35-blade mounting seat, 36-measuring sensor, 37-cutting blade, 38-blade port, 39-blade slot, 40-inclined surface. DETAILED DESCRIPTION

[0030] The following will be combined with the accompanying drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention. The present invention is further described below in conjunction with the embodiments.

[0031] See also Figures 1-8 In one embodiment of the present application, a device for uniformly cutting and processing lake sheep meat particles includes a cutting box 1, a support frame 2, an intermediate box 7, a control center 6, a conveyor belt 4, a feeding table 3 and a conveyor motor 5. The cutting box 1, the intermediate box 7 and the feeding table 3 are sequentially arranged on the support frame 2, the control center 6 is arranged on the intermediate box 7, the conveyor belt 4 is movably arranged on the feeding table 3, the conveyor motor 5 is arranged on the feeding table 3 and its output end is connected to the conveyor belt 4, a group of distance measuring sensors 36 are symmetrically arranged on the cutting box 1, and the cutting and processing equipment further includes a rotary cutting component and a post-processing component, the rotary cutting component is arranged in the intermediate box 7, and is used to cut the whole piece of lake sheep meat into pieces, and the post-processing component is arranged in the cutting box 1, and is used to cut and screen the lake sheep meat after the cutting process;

[0032] The rotary cutting assembly includes a processing table 9, an execution structure and a blade spacing adjustment structure. The processing table 9 is arranged in the intermediate box 7. Several blade head slots 24 are equidistantly arranged on the processing table 9. The execution structure is arranged in the intermediate box 7 and is located on one side of the processing table 9. It is used to perform cutting processing on the lake sheep meat. The blade spacing adjustment structure is arranged in the intermediate box 7 and is connected to the execution structure. It is used to adjust the cutting range of the execution structure.

[0033] In this embodiment, the execution structure includes an exemplary tool mounting seat 11, a drive shaft 12, a cutting motor 8, several rotating cutter heads 22 and a tool head mounting seat 23. The tool mounting seat 11 is movably set in the intermediate seat through a guide rod 10. The tool mounting seat 11 and the intermediate phase are elastically connected. The drive shaft 12 is movably set on the tool mounting seat 11. The cutting motor 8 is set on the tool mounting seat 11 and its output end is connected to the drive shaft 12. There are several tool head mounting seats 23 and they are equidistantly movably set on the drive shaft 12. A rotating cutter head 22 is detachably mounted on each tool head mounting seat 23. The rotating cutter head 22 is crescent-shaped. The tool head mounting seat 23 is connected to the blade spacing adjustment structure.

[0034] In actual application, the whole piece of mutton is placed on the conveying belt 4, and the control center 6 controls the conveying motor 5 to be powered on and rotated, driving the conveying belt 4 to move the mutton toward the interior of the middle box 7. At the same time, the cutting motor 8 is controlled to be powered on and rotated, driving the drive shaft 12 to rotate. When the drive shaft 12 rotates, it can drive the cutter head mounting seat 23 and the rotating cutter head 22 to rotate, thereby realizing the horizontal cutting of the mutton passing through, cutting the whole piece of mutton into several long strips. Since the rotating cutter head 22 is as shown in FIG. Figure 5 The crescent shape shown in the figure can make the tool mounting seat 11 reciprocate relative to the intermediate box 7 under the action of centrifugal force when controlling the rotation of the rotary cutter head 22, and then can shake off the meat residue attached to the surface of the rotary cutter head 22 through vibration, thereby indirectly realizing the cleaning of the rotary cutter head 22. When the guide rod 10 follows the reciprocating movement of the tool mounting seat 11, the post-processing component can be controlled to work synchronously, thereby realizing the horizontal cutting of the mutton, thereby obtaining mutton grains, and finally the mutton grains are screened by the post-processing component, thereby obtaining mutton grains that finally meet the processing standards.

[0035] See also Figures 1-8 As another preferred embodiment of the present application, the tool distance adjustment structure includes an adjusting tool sleeve 21, a slider 15, a guide shaft 16 and a uniform adjustment unit. The guide shaft 16 is arranged in the middle box 7. The number of the sliders 15 is the same as the number of the rotating cutter heads 22 and they are equidistantly movably arranged on the guide shaft 16. Each of the sliders 15 is provided with an adjusting tool sleeve 21. The cutter head mounting seat 23 is arranged on the inner side of the adjusting tool sleeve 21 and the two are slidably fitted together. The uniform adjustment unit is arranged on the tool mounting seat 11 and is connected to the slider 15 for adjusting the distance between two adjacent sliders 15.

[0036] In a specific case of this embodiment, the uniform adjustment unit includes an electric telescopic rod 14, a push arm 13, an adjustment rod 17, a first drive arm 20 and a slide column 19. The push arm 13 is movably arranged on the tool mounting seat 11. The electric telescopic rod 14 is arranged on the tool mounting seat 11 and its movable end is connected to the push arm 13. One end of the adjustment rod 17 is hinged to the middle position of the tool mounting seat 11. The other end of the adjustment rod 17 is formed with a through groove 18. The slide column 19 is arranged on the push arm 13 and slides with the through groove 18. The adjustment rod 17 is arranged obliquely relative to the guide shaft 16. The adjustment rod 17 is movably connected to the slider 15 through the first drive arm 20, and the sizes of two adjacent adjustment rods 17 change uniformly.

[0037] In another specific case of this embodiment, two blocking plates 25 are movably and symmetrically arranged in the processing table 9, and a plurality of through windows cooperating with the tool head groove 24 are provided on the blocking plate 25. The tool head groove 24 is arranged on the moving path of the through window, and the blocking plate 25 is connected to any one of the adjusting tool sleeves 21 on the same side thereof through a connecting rod 26.

[0038] When the processing size of the mutton meat particles needs to be adjusted according to the processing requirements of the mutton meat particles, the control center 6 controls the electric telescopic rod 14 to extend or retract, thereby driving the movable seat 33 to move in the horizontal direction, and then under the action of the sliding column 19 and the through groove 18 slidingly cooperating, the adjusting rod 17 can be driven to rotate along its hinge, and under the action of the first driving arm 20, the slider 15 and the adjusting knife sleeve 21 can be driven to move along the guide shaft 16. Since the adjusting rod 17 is in an inclined setting and the lengths of the two adjacent first driving arms 20 are different, it is possible to ensure that the distance between the two adjacent sliders 15 and the adjusting knife sleeve 21 is always consistent, thereby ensuring that the size of the mutton meat particles finally cut is uniform, and by setting the blocking plate 25, the position of the window can be adjusted according to the position of the rotating cutter head 22, so that the unused cutter head slot 24 is in a blocked state, preventing the mutton meat particles from falling from the unused cutter head slot 24. When the slider 15 moves, the connecting rod 26 can be used to drive the blocking plate 25 to move synchronously.

[0039] See also Figures 1-8 As another preferred embodiment of the present application, a blade groove 39 and a blanking port 38 are formed on one side of the processing table 9 in the cutting box 1. The blanking port 38 is located on the side of the blade groove 39 away from the intermediate box 7. An inclined surface 40 is provided in the cutting box 1 directly below the blanking port 38. The post-processing component includes a screening module and a vertical cutting module. The vertical cutting module is arranged in the cutting box 1 and is connected to the guide rod 10. When the guide rod 10 moves, it controls the vertical cutting module to work synchronously and granulate the mutton. The screening module is arranged in the cutting box 1 and is connected to the vertical cutting module. When the vertical cutting module works, it controls the screening module to work synchronously and screen the mutton particles.

[0040] In a specific case of this embodiment, the vertical cutting module includes a cylinder 30, a blade mounting seat 35, a cutting blade 37 and a transmission structure. The blade mounting seat 35 is movably arranged on the cutting box 1, the blade slot 39 is arranged on one side of the blade mounting seat 35, and the cutting blade 37 is arranged on the blade mounting seat 35. The cylinder 30 is arranged on the intermediate box 7 and its movable end is connected to the blade mounting seat 35. The transmission structure is arranged on the intermediate box 7 and connects the guide rod 10 and the cylinder 30. When the guide rod 10 moves, the cylinder 30 is controlled by the transmission structure to repeatedly extend and retract.

[0041] In another specific case of this embodiment, the transmission structure includes a movable seat 33, an inflation tube 31, a piston rod 32 and a third driving arm 34. The movable seat 33 is movably set on the intermediate box 7 and connected to the guide rod 10. The inflation tube 31 is set on the intermediate box 7 and connected to the cylinder 30. The piston rod 32 is movably set in the inflation tube 31. The third driving arm 34 is movably connected between the piston rod 32 and the movable seat 33.

[0042] During the reciprocating motion of the guide rod 10 relative to the middle box 7 in the vertical direction, the movable seat 33 can be driven to move synchronously in the vertical direction. Under the action of the third driving arm 34, the piston rod 32 is driven to reciprocate relative to the inflation tube 31, and the air in the inflation tube 31 is continuously input into the cylinder 30, driving the cylinder 30 to extend and retract. When the cylinder 30 extends and retracts, the blade mounting seat 35 and the cutting blade 37 can be driven to reciprocate continuously relative to the blade slot 39, thereby being able to vertically cut the passing mutton. The mutton particles finally cut can fall from the drop port 38 onto the inclined surface 40, and while the blade mounting seat 35 moves, it can drive the screening module to work synchronously, thereby screening the mutton particles.

[0043] See also Figures 1-8 As another preferred embodiment of the present application, the screening module includes a screening plate 27, a connecting block 28 and a second driving arm 29. The screening plate is movably arranged in the cutting box 1. There are several connecting blocks 28 and they are symmetrically arranged on the screening plate 27. The connecting blocks 28 are movably connected to the blade mounting seat 35 through the second driving arm 29.

[0044] In this embodiment, the screening plate 27 is arranged obliquely relative to the cutting box 1 , and the side of the screening plate 27 close to the inclined surface 40 is flush with the lower end of the inclined surface 40 .

[0045] In actual application, when the blade mounting seat 35 reciprocates in the vertical direction to cut the mutton meat particles, it can drive the connecting block 28 and the screening plate 27 to reciprocate in the inclined downward direction under the action of the second driving arm 29, thereby screening the cut mutton meat particles and discharging meat residue or small pieces of mutton meat particles. By tilting the screening plate 27, the mutton meat particles can also be easily discharged from the cutting box 1.

[0046] How this application works:

[0047] The whole piece of mutton is placed on the conveyor belt 4, and the control center 6 controls the conveyor motor 5 to be powered on and rotated, driving the conveyor belt 4 to move the mutton toward the inside of the middle box 7. At the same time, the cutting motor 8 is controlled to be powered on and rotated, driving the drive shaft 12 to rotate. When the drive shaft 12 rotates, it can drive the cutter head mounting seat 23 and the rotating cutter head 22 to rotate, thereby realizing the horizontal cutting of the mutton passing through, cutting the whole piece of mutton into several long strips. Since the rotating cutter head 22 is as shown in FIG. Figure 5 The semi-crescent shape shown in the figure, therefore, when controlling the rotation of the rotary cutter head 22, the tool mounting seat 11 can be made to reciprocate relative to the intermediate box 7 under the action of centrifugal force, and then the meat residue attached to the surface of the rotary cutter head 22 can be shaken off by the vibration action, thereby indirectly realizing the cleaning of the rotary cutter head 22. When it is necessary to adjust the processing size of the mutton granules according to the processing requirements of the mutton granules, the electric telescopic rod 14 is controlled to extend or contract through the control center 6, thereby driving the movable seat 33 to move in the horizontal direction, and then under the action of the sliding cooperation between the slide column 19 and the through groove 18, the adjusting rod 17 can be driven to rotate along its hinge, and the first driving arm 20 Under the action of , the slider 15 and the adjusting knife sleeve 21 can be driven to move along the guide shaft 16. Since the adjusting rod 17 is in an inclined setting and the lengths of the two adjacent first driving arms 20 are different, it is possible to ensure that the distance between the two adjacent sliders 15 and the adjusting knife sleeve 21 is always consistent, thereby ensuring that the size of the mutton meat particles finally cut are uniform, and by setting the blocking plate 25, the position of the through window can be adjusted according to the position of the rotating cutter head 22, so that the unused cutter head slot 24 is in a blocked state, thereby preventing the mutton meat particles from falling from the unused cutter head slot 24. While the slider 15 moves, the connecting rod 26 can be used to drive the blocking plate 25 to move synchronously. When the guide rod 10 reciprocates relative to the middle box 7 in the vertical direction, it can drive the movable seat 33 to move synchronously in the vertical direction. Under the action of the third driving arm 34, the piston rod 32 is driven to reciprocate relative to the inflation tube 31, thereby continuously inputting the air in the inflation tube 31 into the cylinder 30, driving the cylinder 30 to expand and contract. When the cylinder 30 expands and contracts, it can drive the blade mounting seat 35 and the cutting blade 37 to continuously reciprocate relative to the blade slot 39, thereby vertically cutting the passing mutton. The mutton particles finally cut can fall onto the inclined surface 40 from the drop opening 38. When the blade mounting seat 35 reciprocates in the vertical direction to cut the mutton particles, it can drive the connecting block 28 and the screening plate 27 to reciprocate in the inclined downward direction under the action of the second driving arm 29, thereby screening the cut mutton particles, so that meat residue or small pieces of mutton particles are discharged. The inclined setting of the screening plate 27 can also facilitate the discharge of the mutton particles from the cutting box 1.

[0048] The above is a schematic description of the present invention and its embodiments, which is not restrictive. The drawings show only one embodiment of the present invention, and the actual structure is not limited thereto. Therefore, if a person skilled in the art is inspired by this and, without departing from the purpose of the present invention, designs a structure and embodiment similar to this technical solution without inventiveness, they shall fall within the scope of protection of the present invention.

[0049] In addition, it should be understood that although this specification is described in terms of implementation methods, not every implementation method contains only one independent technical solution. This narrative method of the specification is only for the sake of clarity. Those skilled in the art should regard the specification as a whole. The technical solutions in each embodiment can also be appropriately combined to form other implementation methods that can be understood by those skilled in the art.

Claims

1. A device for uniformly cutting and processing mutton diced meat, comprising a cutting box, a support frame, an intermediate box, a control center, a conveyor belt, a feed table and a conveyor motor, wherein the cutting box, the intermediate box and the feed table are sequentially arranged on the support frame, the control center is arranged on the intermediate box, the conveyor belt is movably arranged on the feed table, the conveyor motor is arranged on the feed table and its output end is connected to the conveyor belt, a group of distance measuring sensors are symmetrically arranged on the cutting box, and the invention is characterized in that: The cutting and processing equipment also includes a rotary cutting component and a post-processing component. The rotary cutting component is arranged in the middle box and is used to cut the whole piece of Hu mutton into pieces. The post-processing component is arranged in the cutting box and is used to granulate and screen the Hu mutton after the cutting process. The rotary cutting assembly includes a processing table, an execution structure and a blade spacing adjustment structure. The processing table is arranged in an intermediate box. A plurality of blade head slots are arranged at equal intervals on the processing table. The execution structure is arranged in the intermediate box and is located on one side of the processing table, and is used to perform the cutting work of the mutton. The blade spacing adjustment structure is arranged in the intermediate box and is connected to the execution structure, and is used to adjust the cutting range of the execution structure. The execution structure includes a tool mounting seat, a drive shaft, a cutting motor, a plurality of rotary cutter heads and a tool head mounting seat, the tool mounting seat is movably arranged in an intermediate box through a guide rod, the tool mounting seat and the intermediate box are elastically connected, the drive shaft is movably arranged on the tool mounting seat, the cutting motor is arranged on the tool mounting seat and its output end is connected to the drive shaft, the tool head mounting seats are in a plurality and are movably arranged on the drive shaft at equal intervals, a rotary cutter head is detachably mounted on each tool head mounting seat, the rotary cutter head is crescent-shaped, and the tool head mounting seat is connected to the tool pitch adjustment structure; A blade slot and a blanking port are formed on one side of the processing table in the cutting box, and the blanking port is located on the side of the blade slot away from the middle box. An inclined surface is provided in the cutting box just below the blanking port. The post-processing component includes a screening module and a vertical cutting module. The vertical cutting module is arranged in the cutting box and is connected to the guide rod. When the guide rod moves, it controls the vertical cutting module to work synchronously and diced the mutton. The screening module is arranged in the cutting box and is connected to the vertical cutting module. When the vertical cutting module works, it controls the screening module to work synchronously and sieve the mutton particles. The vertical cutting module includes a cylinder, a blade mounting seat, a cutting blade, and a transmission structure. The blade mounting seat is movably arranged on the cutting box, the blade slot is arranged on one side of the blade mounting seat, the cutting blade is arranged on the blade mounting seat, the cylinder is arranged on the intermediate box and its movable end is connected to the blade mounting seat, the transmission structure is arranged on the intermediate box and connects the guide rod and the cylinder, and when the guide rod moves, the transmission structure controls the cylinder to repeatedly extend and retract; The screening module includes a screening plate, a connecting block and a second driving arm. The screening plate is movably arranged in the cutting box. There are several connecting blocks that are symmetrically arranged on the screening plate. The connecting blocks are movably connected to the blade mounting seat through the second driving arm.

2. The uniform cutting and processing equipment for Huyang mutton according to claim 1 is characterized in that: The tool distance adjustment structure includes an adjusting tool sleeve, a slider, a guide shaft and a uniform adjustment unit. The guide shaft is arranged in the middle box. The number of the sliders is the same as the number of the rotating tool heads and they are equidistantly arranged on the guide shaft. Each of the sliders is provided with an adjusting tool sleeve. The tool head mounting seat is provided on the inner side of the adjusting tool sleeve and the two are slidably fitted together. The uniform adjustment unit is provided on the tool mounting seat and connected to the slider for adjusting the distance between two adjacent sliders.

3. The uniform cutting and processing equipment for Huyang mutton according to claim 2 is characterized in that: The uniform adjustment unit includes an electric telescopic rod, a push arm, an adjustment rod, a first driving arm and a sliding column. The push arm is movably arranged on the tool mounting seat. The electric telescopic rod is arranged on the tool mounting seat and its movable end is connected to the push arm. One end of the adjustment rod is hinged to the middle position of the tool mounting seat. The other end of the adjustment rod is formed with a through groove. The sliding column is arranged on the push arm and slides with the through groove. The adjustment rod is arranged obliquely relative to the guide shaft. The adjustment rod is movably connected to the slider through the first driving arm, and the sizes of two adjacent adjustment rods change evenly.

4. The uniform cutting and processing equipment for Huyang mutton according to claim 3 is characterized in that: Two blocking plates are movably and symmetrically arranged in the processing table, and a plurality of through windows cooperating with the tool head grooves are arranged on the moving path of the through windows. The blocking plate is connected to any one of the adjusting tool sleeves on the same side thereof through a connecting rod.

5. The uniform cutting and processing equipment for Huyang mutton according to claim 1 is characterized in that: The transmission structure includes a movable seat, an inflation tube, a piston rod and a third driving arm. The movable seat is movably arranged on the intermediate box and connected to the guide rod. The inflation tube is arranged on the intermediate box and connected to the cylinder. The piston rod is movably arranged in the inflation tube. The third driving arm is movably connected between the piston rod and the movable seat.

6. The uniform cutting and processing equipment for Huyang mutton according to claim 1 is characterized in that: The screening plate is arranged obliquely relative to the cutting box, and a side of the screening plate close to the inclined surface is flush with a lower end of the inclined surface.

Citation Information

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