Meat mincing and cutting equipment

By designing a meat mincing equipment including meat slapping components and meat mincing components, the problems of incomplete meat mincing, easy to block and inefficient production in the prior art are solved, and more efficient meat mincing and better product quality are achieved.

CN222869756UActive Publication Date: 2025-05-16ZHUHAI ZHISHENG HAOKE HEALTH IND TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202421334398.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-06-12
Publication Date
2025-05-16
Estimated Expiration
2034-06-12

AI Technical Summary

Technical Problem

When existing meat mincing equipment deals with meat containing a large amount of fascia, the mincing is not thorough, easy to block and inefficient in production.

Method used

A meat mincing device is designed that includes a meat input component, a meat slap component and a meat mincing component. The meat slap assembly destroys the fascial structure in meat through the synergy between the slap cylinder and the meat slap panel; the meat slap assembly conveys the slap components through the meat fiber extrusion pinch wheel set and the meat conveying slap parts to achieve the slap and slap of meat.

Benefits of technology

Effectively destroy the fascial structure in meat, solve the problem of incomplete scrubbing of traditional equipment, significantly improve the fineness and uniformity of ground meat, improve the quality of the final product, and improve production efficiency.

✦ Generated by Eureka AI based on patent content.

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  • Figure CN222869756U_ABST
    Figure CN222869756U_ABST
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Abstract

The utility model provides meat mincing and cutting equipment which comprises a meat input assembly, a meat beating assembly and a meat mincing and cutting assembly, and the meat mincing and cutting assembly is arranged at the output end of the meat beating assembly. The meat beating assembly comprises a meat filling channel, a meat beating part arranged at the input end of the meat filling channel and a reel driving part arranged below the meat beating part, and the meat beating part breaks a fascia structure in meat input into the meat filling channel from the meat input assembly through beating; the meat mincing and cutting assembly comprises a meat fiber extruding and mincing wheel set and a meat conveying and mincing and cutting part, the mincing wheel driving part drives the meat fiber extruding and mincing wheel set to act through meshing of a first mincing wheel, and air in meat is extruded and discharged through meshing of the meat fiber extruding and mincing wheel set; and the meat is conveyed to the meat conveying and mincing part for mincing. The utility model relates to the technical field of meat reaming and cutting.
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Description

Technical Field

[0001] The utility model relates to the technical field of meat reaming, in particular to a meat reaming device. Background Art

[0002] In the prior art, meat mincing equipment often requires manual injection of meat into a mincing pipe so that the meat is squeezed into a spiral push rod in the mincing pipe, and the rotation of the spiral push rod drives the meat to be squeezed forward and sent to a mincing area at the other end for mincing, and the mincing area is sleeved with a large-mouth passing piece, a middle-mouth passing piece and a small-mouth passing piece, and mincing knives are provided between the large-mouth passing piece and the middle-mouth passing piece, and between the middle-mouth passing piece and the small-mouth passing piece. The meat first enters the mincing area between the large-mouth passing piece and the middle-mouth passing piece through a small number of large mouths on the large-mouth passing piece for cutting, and then the meat that has been cut for the first time is continuously pushed and squeezed by the spiral push rod into the middle-mouth of the middle-mouth passing piece and enters the mincing area between the middle-mouth passing piece and the small-mouth passing piece for mincing, and finally, the meat that has been cut for the second time is continuously pushed and squeezed by the spiral push rod into a large number of small mouths of the small-mouth passing piece and is output from the meat output port of the meat mincing equipment.

[0003] The inventors have discovered that this type of meat mincing equipment has a common problem, that is, when it comes to meat with a large amount of fascia, the effect is not ideal and the fascia of the meat cannot be completely minced, resulting in a large amount of meat being blocked in the mincing pipeline because the meat cannot be completely cut off. To solve the problem, the prior art often requires that the fascia of meat with a large amount of fascia be removed before it can be put into the meat mincing equipment for processing, which greatly reduces production efficiency.

[0004] Therefore, it is imperative to redesign a meat mincing equipment. Utility Model Content

[0005] In view of the defects of the above-mentioned prior art, the utility model provides a meat mincing device, aiming to solve the problems in the prior art that the meat mincing device is not completely minced, is easy to be blocked and has low production efficiency when processing meat containing a large amount of fascia.

[0006] To achieve the above-mentioned purpose, the technical solution adopted by the utility model is: a meat mincing device, comprising a meat input component, a meat beating component and a meat mincing component, wherein the meat mincing component is arranged at the output end of the meat beating component, wherein the meat beating component comprises a meat filling channel, a meat beating component arranged at the input end of the meat filling channel and a winch driving component arranged below the meat beating component, the meat beating component destroys the fascia structure in the meat input from the meat input component into the meat filling channel by beating, the meat mincing component comprises a meat fiber extrusion winch group and a meat conveying and mincing component, the winch driving component drives the meat fiber extrusion winch group to move through the meshing of the first winch, and the air in the meat is extruded and discharged by the meshing between the meat fiber extrusion winch groups, and is transmitted to the meat conveying and mincing component for mincing.

[0007] Based on the above, a beneficial effect of a meat mincing device is to solve the problem in the prior art that the meat mincing device is not minced thoroughly, is easy to be blocked and has low production efficiency when processing meat containing a large amount of fascia; it is mainly reflected in: the utility model introduces a meat beating component, utilizes the synergistic effect of the meat beating panel and the beating cylinder, effectively destroys the fascia structure in the meat, solves the problem of incomplete mincing of traditional equipment, especially when processing meat rich in fascia, can significantly improve the fineness and uniformity of minced meat, and improve the quality of the final product; the beneficial effect of the meat input component is to conveniently deliver the meat to be processed into the meat filling channel; the beneficial effect of the meat beating component The purpose is to destroy the fascia structure in the meat through beating and improve the mincing efficiency; the beneficial effect of the meat mincing component is to extrude and mince the meat to achieve minced meat of different coarseness and fineness; the beneficial effect of the meat filling channel is to provide a channel for the meat to enter the meat mincing component; the beneficial effect of the meat patting component is to pre-treat the meat and remove the fascia through mechanical beating; the beneficial effect of the winch drive component is to provide power to drive the meat fiber extrusion winch group to extrude and transport the meat; the beneficial effect of the meat fiber extrusion winch group is to extrude the meat, expel the air, and prepare for mincing; the beneficial effect of the meat conveying and mincing component is to transport the extruded meat to the cutting knife for mincing.

[0008] Furthermore, the meat-beating component is composed of a beating cylinder and a meat-beating panel, wherein the meat-beating panel is arranged at the output end of the beating cylinder, and the upper end of the meat-beating panel is exposed outside the input end of the meat-filling channel, and is used to cooperate with the meat input component to push the meat into the meat-filling channel, and the meat-beating panel cooperates with the inner wall of the meat-filling channel to beat the meat.

[0009] Based on the above, the beneficial effect of the beating cylinder is to provide power for the meat beating panel to achieve the beating process of the meat; the beneficial effect of the meat beating panel is to directly contact the meat, implement beating, and destroy the fascia.

[0010] Furthermore, the winch driving component includes a winch motor and the first winch, the first winch is arranged at the output end of the winch motor, the meat mincing assembly also includes a meat mincing shell, the meat mincing shell is provided with a meat input part, the meat fiber extrusion winch group is arranged in the meat input part, the upper end of the meat input part is snap-connected to the lower end of the meat filling channel, and the first winch engages to drive the meat fiber extrusion winch group to operate.

[0011] Based on the above, the beneficial effect of the winch motor is to provide power for the first winch; the beneficial effect of the first winch is to mesh with the second winch and drive it to extrude meat; the beneficial effect of the meat mincing shell is to form a closed mincing environment to ensure a safe and hygienic mincing process; the beneficial effect of the meat input part is to provide an input interface for meat to enter the meat mincing assembly.

[0012] Furthermore, the meat fiber extrusion winch assembly includes a second winch and a third winch, the second winch is located below the first winch and is driven by the first winch, the third winch is arranged at the lower side of the second winch and is engaged with the second winch, and after the meat is output from the meat filling channel, the meat fibers are squeezed and transmitted to the meat conveying and cutting component through the direct engagement portion of the second winch and the third winch.

[0013] Based on the above, the beneficial effect of the second winch is that it is driven by the meshing of the first winch to achieve preliminary extrusion of the meat; the beneficial effect of the third winch is that it meshes with the second winch, and the meshing portion between the two is used to extrude and convey the meat, ensuring the uniformity of the meat fibers.

[0014] Furthermore, the meat mincing shell is also provided with a screw mounting portion and a transmission mincing portion, and the meat transmission mincing portion includes a meat spiral conveying rod and a large-hole meat passing disc, a first rotating cutter, a medium-hole meat passing disc, a second rotating cutter and a small-hole meat passing disc which are sequentially sleeved on the output end of the meat spiral conveying rod from the inside to the outside, and the large-hole meat passing disc, the first rotating cutter, the medium-hole meat passing disc, the second rotating cutter and the small-hole meat passing disc cooperate in sequence to mince the meat into different coarsenesses, and the driving head of the meat spiral conveying rod is arranged in the screw mounting portion, and the transmission spiral portion of the meat spiral conveying rod, the large-hole meat passing disc, the first rotating cutter, the medium-hole meat passing disc, the second rotating cutter and the small-hole meat passing disc are all arranged in the transmission mincing portion, and the first rotating cutter and the second rotating cutter are the same kind of rotating cutters.

[0015] Based on the above, the beneficial effect of the screw mounting part is to provide a position for the installation and fixation of the meat spiral conveying rod; the beneficial effect of the transmission and mincing part is to realize the transmission and mincing of meat; the beneficial effect of the meat spiral conveying rod is to convey meat and at the same time transmit the meat through the spiral structure; the beneficial effect of the large-hole meat passing disc is to allow large pieces of meat to pass through and enter the mincing area; the beneficial effect of the first rotating cutter is to perform the initial cutting of the meat to form larger minced meat; the beneficial effect of the medium-hole meat passing disc is to allow the meat after the initial cutting to pass through and enter the next mincing area; the beneficial effect of the second rotating cutter is to perform the secondary cutting of the meat to form smaller minced meat; the beneficial effect of the small-hole meat passing disc is to allow the meat after the secondary cutting to pass through and complete the mincing process.

[0016] Furthermore, the meat input component includes an operating cabinet, a conveying rod drive motor and a screw drive shaft. The conveying rod drive motor is arranged at the bottom end of the operating cabinet, and the screw drive shaft is arranged above the conveying rod drive motor. The output end of the conveying rod drive motor drives one end of the screw drive shaft through belt engagement, and the drive head is engaged with the other end of the screw drive shaft.

[0017] Based on the above, the beneficial effect of the operating cabinet is to form the basic frame of the mincing equipment and support the entire system; the beneficial effect of the conveying rod driving motor is to provide power for meat conveying and mincing to ensure continuous operation; the beneficial effect of the screw driving shaft is to transmit motor power to drive the meat spiral conveying rod to rotate.

[0018] Furthermore, the meat input component also includes a meat transmission motor and a plurality of meat driving wheels, wherein the plurality of meat driving wheels are evenly arranged on the upper end surface of the working cabinet, and the meat transmission motor is arranged below the plurality of meat driving wheels. The meat transmission motor engages and drives the plurality of meat driving wheels through a belt transmission system to transmit meat.

[0019] Based on the above, the beneficial effect of the meat conveying motor is to drive the meat driving wheel to realize the conveying of meat; the beneficial effect of the meat driving wheel is to convey the meat to the entrance of the meat filling channel through contact with the meat.

[0020] In order to more clearly illustrate the above features of the present invention and the objectives to be achieved, the present invention is further described below in conjunction with the accompanying drawings and specific embodiments. BRIEF DESCRIPTION OF THE DRAWINGS

[0021] Figure 1 :It is the internal structure diagram of the utility model;

[0022] Figure 2 : is a schematic diagram of the winch drive component of the utility model;

[0023] Figure 3 : is a schematic diagram of the large-pore meat passing disc of the utility model;

[0024] Figure 4 : It is a schematic diagram of the mesoporous meat passing through the disc of the utility model;

[0025] Figure 5 : is a schematic diagram of the small hole meat passing through the disc of the utility model;

[0026] Figure 6 : is a schematic diagram of the first rotary cutter of the utility model.

[0027] Description of the accompanying figures: 1-meat input assembly, 11-operating cabinet, 12-conveying rod drive motor, 13-screw drive shaft, 14-meat transmission motor, 15-meat drive wheel, 2-meat beating assembly, 21-meat filling channel, 22-meat beating component, 221-beating cylinder, 222-meat beating panel, 23-reel drive component, 231-first reel, 232-reel motor, 3-meat cutting assembly, 31-meat fiber extrusion reel Group, 311-second reel, 312-third reel, 32-meat conveying and cutting component, 321-meat spiral conveying rod, 3211-driving head, 322-large-hole meat passing disc, 323-first rotary cutter, 324-medium-hole meat passing disc, 325-second rotary cutter, 326-small-hole meat passing disc, 33-meat cutting shell, 331-meat input part, 332-screw mounting part, 333-transmission and cutting part. DETAILED DESCRIPTION

[0028] like Figure 1-Figure 6 As shown, a meat mincing device comprises a meat input component 1, a meat beating component 2 and a meat mincing component 3, wherein the meat mincing component 3 is arranged at the output end of the meat beating component 2, wherein the meat beating component 2 comprises a meat filling channel 21, a meat beating component 22 arranged at the input end of the meat filling channel 21 and a winch driving component 23 arranged below the meat beating component 22, wherein the meat beating component 22 destroys the fascia structure in the meat input from the meat input component 1 into the meat filling channel 21 by beating, and the meat mincing component 3 comprises a meat fiber squeezing winch group 31 and a meat conveying mincing component 32, wherein the winch driving component 23 drives the meat fiber squeezing winch group 31 to move through the meshing of the first winch 231, and the air in the meat is extruded and discharged through the meshing between the meat fiber squeezing winch groups 31, and is transmitted to the meat conveying mincing component 32 for mincing.

[0029] The meat-beating component 22 is composed of a beating cylinder 221 and a meat-beating panel 222. The meat-beating panel 222 is arranged at the output end of the beating cylinder 221. The upper end of the meat-beating panel 222 is exposed outside the input end of the meat-filling channel 21, and is used to cooperate with the meat input component 1 to push the meat into the meat-filling channel 21. The meat-beating panel 222 cooperates with the inner wall of the meat-filling channel 21 to beat the meat.

[0030] The winch driving component 23 includes a winch motor 232 and the first winch 231, wherein the first winch 231 is arranged at the output end of the winch motor 232, and the meat mincing assembly 3 also includes a meat mincing shell 33, wherein the meat mincing shell 33 is provided with a meat input part 331, and the meat fiber squeezing winch group 31 is arranged in the meat input part 331, and the upper end of the meat input part 331 is snap-connected to the lower end of the meat filling channel 21, and the first winch 231 engages and drives the meat fiber squeezing winch group 31 to operate.

[0031] The meat fiber squeezing winch assembly 31 includes a second winch 311 and a third winch 312. The second winch 311 is located below the first winch 231 and is driven by the first winch 231. The third winch 312 is arranged at the lower side of the second winch 311 and is engaged with the second winch 311. After the meat is output from the meat filling channel 21, the meat fibers are squeezed and transmitted to the meat conveying and cutting component 32 through the direct engagement portion between the second winch 311 and the third winch 312.

[0032] The meat cutting shell 33 is also provided with a screw mounting portion 332 and a transmission cutting portion 333. The meat conveying and cutting component 32 includes a meat spiral conveying rod 321 and a large-hole meat passing disc 322, a first rotating cutter 323, a medium-hole meat passing disc 324, a second rotating cutter 325 and a small-hole meat passing disc 326 which are sequentially sleeved on the output end of the meat spiral conveying rod 321 from the inside to the outside. The discs 326 are matched in sequence to cut the meat into different coarsenesses. The driving head 3211 of the meat spiral conveying rod 321 is arranged in the screw mounting part 332. The conveying spiral part of the meat spiral conveying rod 321, the large-hole meat passing disc 322, the first rotary cutter 323, the medium-hole meat passing disc 324, the second rotary cutter 325 and the small-hole meat passing disc 326 are all arranged in the transmission and cutting part 333. The first rotary cutter 323 and the second rotary cutter 325 are the same kind of rotary cutters.

[0033] The meat input component 1 includes an operating cabinet 11, a conveying rod driving motor 12 and a screw driving shaft 13. The conveying rod driving motor 12 is arranged at the bottom end of the operating cabinet 11, and the screw driving shaft 13 is arranged above the conveying rod driving motor 12. The output end of the conveying rod driving motor 12 drives one end of the screw driving shaft 13 through belt engagement, and the driving head 3211 is engaged with the other end of the screw driving shaft 13.

[0034] The meat input component 1 also includes a meat transmission motor 14 and a plurality of meat driving wheels 15. The plurality of meat driving wheels 15 are evenly arranged on the upper end surface of the working cabinet 11. The meat transmission motor 14 is arranged below the plurality of meat driving wheels 15. The meat transmission motor 14 engages and drives the plurality of meat driving wheels 15 through a belt transmission system to transmit meat.

[0035] In summary, the specific implementation of the utility model is as follows: the meat transmission motor 14 of the meat input assembly 1 drives a plurality of meat driving wheels 15 to rotate through belt engagement, thereby pushing the meat into the meat filling channel 21;

[0036] The meat beating assembly 2 pre-processes the meat to remove the fascia, wherein the meat beating component 22 of the meat beating assembly 2 is composed of a beating cylinder 221 and a meat beating panel 222. The beating cylinder 221 drives the meat beating panel 222 to cooperate with the inner wall of the meat filling channel 21 to mechanically beat the meat to destroy the fascia structure in the meat.

[0037] The meat cutting assembly 3 squeezes and cuts the meat, and the assembly includes a meat fiber squeezing winch assembly 31 and a meat conveying and cutting component 32. The winch driving component 23 of the meat beating assembly 2 includes a winch motor 232 and a first winch 231. The winch motor 232 drives the first winch 231 to rotate, thereby driving the meat fiber squeezing winch assembly 31. The meat fiber squeezing winch assembly 31 includes a second winch 311 and a third winch 312, and the meshing portion between them is used to squeeze and convey the meat;

[0038] The meat conveying and cutting component 32 includes a meat spiral conveying rod 321, a large-hole meat passing disc 322, a first rotary cutter 323, a medium-hole meat passing disc 324, a second rotary cutter 325 and a small-hole meat passing disc 326. The driving head 3211 of the meat spiral conveying rod 321 is located in the screw mounting portion 332. The conveying rod driving motor 12 drives the screw driving shaft 13, so that the screw driving shaft 13 drives the meat spiral conveying rod 321 to rotate to realize the conveying of meat. The meat is conveyed through the spiral structure. The meat first passes through The large-hole meat passes through the disc 322 and is cut for the first time by the first rotating cutter 323. The meat that meets the requirements of passing through the holes on the medium-hole meat passing disc 324 passes through the medium-hole meat passing disc 324 and is cut for the second time by the second rotating cutter 325. After the processing is completed, as the meat spiral conveying rod 321 continues to rotate, the subsequent meat is continuously squeezed downward and forward, and the meat that meets the hole size of the small-hole meat passing disc 326 is output to the outside through the small-hole meat passing disc 326, thereby achieving mincing of different coarsenesses.

[0039] The above description is only the optimal solution embodiment of the present invention and is not intended to limit the present invention. Various modifications or substitutions made to the present invention by those skilled in the art without departing from the essence and protection scope of the present invention should also be within the protection scope of the present invention.

Claims

1. A meat chopping device, characterized in that: The invention comprises a meat input component (1), a meat beating component (2) and a meat mincing component (3), wherein the meat mincing component (3) is arranged at the output end of the meat beating component (2), wherein the meat beating component (2) comprises a meat filling channel (21), a meat beating component (22) arranged at the input end of the meat filling channel (21), and a winch driving component (23) arranged below the meat beating component (22), wherein the meat beating component (22) destroys the fascia structure in the meat input from the meat input component (1) into the meat filling channel (21) by beating, and the meat mincing component (3) comprises a meat fiber squeezing winch group (31) and a meat conveying mincing component (32), wherein the winch driving component (23) drives the meat fiber squeezing winch group (31) to move by meshing with a first winch (231), and the air in the meat is extruded and discharged by the meshing between the meat fiber squeezing winch groups (31), and the meat is transmitted to the meat conveying mincing component (32) for mincing.

2. The meat mincing device according to claim 1, characterized in that: The meat-beating component (22) is composed of a beating cylinder (221) and a meat-beating panel (222). The meat-beating panel (222) is arranged at the output end of the beating cylinder (221). The upper end of the meat-beating panel (222) is exposed outside the input end of the meat-filling channel (21) and is used to cooperate with the meat input component (1) to push the meat into the meat-filling channel (21). The meat-beating panel (222) cooperates with the inner wall of the meat-filling channel (21) to beat the meat.

3. The meat mincing device according to claim 1, characterized in that: The winch driving component (23) comprises a winch motor (232) and the first winch (231), wherein the first winch (231) is arranged at the output end of the winch motor (232), and the meat mincing assembly (3) further comprises a meat mincing housing (33), wherein the meat mincing housing (33) is provided with a meat input portion (331), and the meat fiber squeezing winch group (31) is arranged in the meat input portion (331), wherein the upper end of the meat input portion (331) is snap-connected to the lower end of the meat filling channel (21), and the first winch (231) engages and drives the meat fiber squeezing winch group (31) to operate.

4. The meat mincing device according to claim 3, characterized in that: The meat fiber squeezing winch assembly (31) comprises a second winch (311) and a third winch (312), wherein the second winch (311) is located below the first winch (231) and is driven by the first winch (231), and the third winch (312) is arranged below the side of the second winch (311) and is engaged with the second winch (311). After the meat is output from the meat filling channel (21), the meat fibers are squeezed and transmitted to the meat conveying and cutting component (32) through the direct engagement portion between the second winch (311) and the third winch (312).

5. The meat mincing device according to claim 3, characterized in that: The meat mincing shell (33) is also provided with a screw mounting portion (332) and a transmission mincing portion (333). The meat conveying mincing component (32) comprises a meat spiral conveying rod (321) and a large-hole meat passing disc (322), a first rotating cutter (323), a medium-hole meat passing disc (324), a second rotating cutter (325) and a small-hole meat passing disc (326) which are sequentially sleeved on the output end of the meat spiral conveying rod (321) from the inside to the outside. The large-hole meat passing disc (322), the first rotating cutter (323), the medium-hole meat passing disc (324), the second rotating cutter (325) and the small-hole meat passing disc (326) are The meat passing disc (326) is matched in sequence to cut the meat into different coarse and fine sizes. The driving head (3211) of the meat spiral conveying rod (321) is arranged in the screw mounting part (332). The conveying spiral part of the meat spiral conveying rod (321), the large-hole meat passing disc (322), the first rotary cutter (323), the medium-hole meat passing disc (324), the second rotary cutter (325) and the small-hole meat passing disc (326) are all arranged in the transmission and cutting part (333). The first rotary cutter (323) and the second rotary cutter (325) are the same kind of rotary cutters.

6. The meat mincing device according to claim 5, characterized in that: The meat input component (1) comprises an operating cabinet (11), a conveying rod driving motor (12) and a screw driving shaft (13); the conveying rod driving motor (12) is arranged at the bottom end of the operating cabinet (11); the screw driving shaft (13) is arranged above the conveying rod driving motor (12); the output end of the conveying rod driving motor (12) drives one end of the screw driving shaft (13) through belt engagement, and the driving head (3211) is engaged with the other end of the screw driving shaft (13).

7. The meat mincing device according to claim 6, characterized in that: The meat input component (1) also includes a meat transmission motor (14) and a plurality of meat driving wheels (15). The plurality of meat driving wheels (15) are evenly arranged on the upper end surface of the working cabinet (11). The meat transmission motor (14) is arranged below the plurality of meat driving wheels (15). The meat transmission motor (14) drives the plurality of meat driving wheels (15) through a belt transmission system to transmit meat.