Minced meat mincing equipment for sausage production

By designing automated transport adjustment and grinding components, the problem of low manual feeding efficiency of meat paste grinding and artificial feeding in sausage production is solved, and efficient grinding and automated feeding of meat paste is achieved, improving production efficiency.

CN223286502UActive Publication Date: 2025-09-02FUJIAN HAOXIANGQIN FOOD CO LTD
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Patent Information

Application Number
CN202422747877.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-12
Publication Date
2025-09-02
Estimated Expiration
2034-11-12

AI Technical Summary

Technical Problem

During the existing sausage production process, the manual feeding efficiency when the meat paste is ground, and it needs to be improved.

Method used

A meat paste crushing equipment for sausage production is designed, including transport adjustment members, grab members and grinding members. The screw rod and ball base are driven by a motor to achieve automatic grabbing and crushing of materials, and efficient crushing is performed using multiple sets of reels.

Benefits of technology

The automatic feeding and grinding of meat paste is realized, which improves production efficiency and reduces the intensity of labor.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses minced meat mincing equipment for sausage production, which belongs to the field of minced meat mincing of sausages, and comprises a workbench, an installation plane is arranged on the workbench, and a material box is detachably arranged on the installation plane; the transfer adjusting component is detachably arranged on the mounting plane and located on one side of the material box; and the grabbing component is detachably arranged on the transfer adjusting component and can be adjusted by the transfer adjusting component in the left-right and up-down directions. According to the minced meat mincing equipment for sausage production disclosed by the utility model, a switch of a third driving motor is turned on by a worker through the arranged mincing component, so that a first rotating shaft and a second rotating shaft rotate to drive a first mincing knife and a second mincing knife to rotate so as to mince materials injected into a mincing shell, and after the mincing operation, the mincing efficiency is improved; and through the material guide plate, the feeding effect can be further improved.
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Description

Technical Field

[0001] The utility model belongs to the field of sausage meat mincing, in particular to meat mincing equipment for sausage production. Background Art

[0002] Sausages utilize very ancient food production and meat preservation techniques. Animal meat is minced into strips and then stuffed into casings to create a long, cylindrical tube. Sausages are made by stuffing seasoned meat into pig or sheep small intestine casings (sometimes large intestine casings) and drying them. During sausage production, the meat and seasonings are ground into a paste. This process is often manually fed into a meat grinder, requiring improvement.

[0003] The present invention seeks to alleviate or at least mitigate such problems or drawbacks by providing a new or otherwise improved sausage meat mince. Utility Model Content

[0004] In response to one or more of the above-mentioned defects or improvement needs in the prior art, the utility model provides a meat mincing device for sausage production, which has the advantage of being easy to load and mince sausage meat.

[0005] To achieve the above-mentioned object, the utility model provides a meat mincing device for sausage production, which includes a workbench having a mounting surface on which a material box is detachably arranged;

[0006] A transport adjustment component is detachably arranged on the installation plane and is located on one side of the material box;

[0007] a gripping member detachably mounted on the transfer adjustment member, capable of being adjusted leftward, rightward, and upward and downward by the transfer adjustment member, for gripping and clamping the material in the material box; and

[0008] The mincing component is detachably mounted on the mounting plane and is located below the grabbing component. The mincing component is used for mincing the material injected into the mincing component through the grabbing component.

[0009] As a further improvement of the present invention, the transport regulating component includes

[0010] a first connecting housing, which is detachably mounted on the mounting plane, on which a first drive motor is detachably arranged, and into which the output end of the first drive motor can be inserted, and a first screw rod is detachably arranged on the output end of the first drive motor;

[0011] A first ball bearing base is slidably disposed in the first connecting housing and is passed through by the first screw rod. A bonding plate is detachably disposed on the first ball bearing base;

[0012] A second connecting housing is detachably mounted on the plywood, a second drive motor is detachably mounted on the housing, and an output end of the second drive motor can be inserted into the housing, and a second screw is detachably mounted on the output end of the second drive motor;

[0013] a second ball bearing base slidably disposed in the second connecting housing and penetrated by the second screw rod; and

[0014] The connecting plate is detachably arranged on the second ball bearing base.

[0015] As a further improvement of the present invention, a fastening base is detachably provided on the first connecting housing, and the fastening base is detachably connected to the workbench.

[0016] As a further improvement of the present invention, the grabbing member includes

[0017] a gripping base plate detachably mounted on the connecting plate and having a through hole therein;

[0018] The built-in slide has a penetrating rod thereon, and the penetrating rod can pass through the through hole, and an electric cylinder is detachably mounted on the penetrating rod;

[0019] A driving screw is rotatably disposed in the gripping base plate, capable of being inserted into the through hole, and one end of the driving screw is rotationally connected to the built-in slide plate and does not disengage;

[0020] The clamping claw cylinder is detachably arranged on the output end of the electric cylinder.

[0021] As a further improvement of the present invention, a reinforcing rib is detachably mounted on the grabbing base plate, and the size of the reinforcing rib is adapted to the size of the grabbing base plate, and the reinforcing rib is detachably connected to the connecting plate.

[0022] As a further improvement of the present invention, the mincing component includes

[0023] A mounting base is detachably mounted on the mounting plane, and a mincing shell is detachably disposed on the mounting base;

[0024] A connecting shaft seat is detachably arranged on the mounting seat, a third drive motor is detachably arranged on the connecting shaft seat, and the output end of the third drive motor can pass through the connecting shaft seat, a short rod is provided on the output end of the third drive motor, a first rotating shaft is detachably arranged on the short rod, and the first rotating shaft rotates in the mincing shell, a first gear is detachably arranged on one end of the first rotating shaft, and a plurality of first reamers are arranged along the length direction of the first rotating shaft;

[0025] a second rotating shaft rotatably disposed in the mincing shell, with a second gear detachably disposed on one end thereof, the second gear meshing with the first gear, and a plurality of sets of second reamers disposed along the length of the second rotating shaft, the plurality of sets of second reamers being adjacent to the plurality of sets of first reamers;

[0026] The feeding frame is detachably arranged on the grinding shell and has a cavity therein.

[0027] As a further improvement of the present invention, a lower material frame is detachably provided at the bottom of the mincing shell, and the lower material frame is communicated with the mincing shell.

[0028] As a further improvement of the present invention, a material guide plate is detachably provided on the feed frame, and the material guide plate and a side wall of the feed frame are arranged in an inclined shape.

[0029] In general, the above technical solutions conceived by the present invention have the following beneficial effects compared with the prior art:

[0030] The meat mincing device for sausage production of the present invention has a transfer adjustment component arranged, and the staff turns on the switch of the first driving motor to rotate the first screw rod, thereby driving the first ball base to rise or fall as a whole, and at the same time driving the second connecting shell to rise or fall as a whole, so that the grabbing component as a whole rises or falls, and turns on the switch of the second driving motor to rotate the second screw rod as a whole, so that the grabbing component as a whole moves in the left and right directions, so as to change the position of the grabbing component for grabbing the clamped material, and turns on the switch of the electric cylinder through the arranged grabbing component to adjust the position of the electric cylinder as a whole. The mincing operation is performed by turning on the third drive motor to rotate the first and second shafts, thereby driving the first and second reamer to rotate, so as to mince the material injected into the mincing shell. After the mincing operation, the material flows out of the mincing shell, and the feeding effect can be further improved through the material guide plate. BRIEF DESCRIPTION OF THE DRAWINGS

[0031] Figure 1 This is a schematic diagram of the overall structure of the meat mincing equipment for sausage production according to the utility model;

[0032] Figure 2 This is a schematic diagram of the structure of the mincing component of the utility model;

[0033] Figure 3 This is a schematic diagram of the overall structure of the mincing component of the present invention viewed from another angle;

[0034] Figure 4 This is a schematic diagram of the overall structure of the transfer and adjustment component of the utility model;

[0035] Figure 5 It is a schematic diagram of the overall structure of the grabbing component of the utility model;

[0036] Figure 6 This is a schematic structural diagram of the entire grabbing component of the present invention viewed from another angle.

[0037] In all the drawings, the same reference numerals represent the same technical features, specifically: 1. workbench; 2. material box; 3. transfer adjustment member; 31. first connecting housing; 311. fastening base; 32. first driving motor; 33. first screw rod; 34. first ball bearing base; 35. bonding plate; 36. second connecting housing; 37. second driving motor; 38. second screw rod; 39. second ball bearing base; 391. connecting plate; 4. grabbing member; 4 1. Grasping substrate; 42. Built-in slide; 43. Driving screw; 44. Electric cylinder; 45. Gripping cylinder; 46. Reinforcing rib; 5. Mincing member; 51. Mounting seat; 52. Mincing shell; 53. Connecting shaft seat; 54. Third driving motor; 55. First rotating shaft; 551. First gear; 552. First reamer; 56. Second rotating shaft; 561. Second gear; 562. Second reamer; 57. Feed frame; 58. Discharge frame; 59. Guide plate. DETAILED DESCRIPTION

[0038] The following will be combined with the 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 embodiments described 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.

[0039] The terms used herein are only for describing specific embodiments and are not intended to limit the present invention. The terms "comprise", "include", etc. used herein indicate the presence of the features, steps, operations and / or components, but do not exclude the presence or addition of one or more other features, steps, operations or components.

[0040] All terms used herein (including technical and scientific terms) have the meanings commonly understood by those skilled in the art unless otherwise defined. It should be noted that the terms used herein should be interpreted as having a meaning consistent with the context of this specification and should not be interpreted in an idealized or overly rigid manner.

[0041] In the embodiment, Figure 1-6 Provided is a meat mincing device for sausage production, wherein: Figure 1 This is a schematic diagram of the overall structure of the meat mincing equipment for sausage production according to the utility model; Figure 2 This is a schematic diagram of the structure of the mincing component of the utility model; Figure 3 This is a schematic diagram of the overall structure of the mincing component of the present invention viewed from another angle; Figure 4 This is a schematic diagram of the overall structure of the transfer and adjustment component of the utility model; Figure 5 It is a schematic diagram of the overall structure of the grabbing component of the utility model; Figure 6This is a schematic structural diagram of the overall grabbing component of the present invention viewed from another angle, which includes a workbench 1, which has a mounting plane, on which a material box 2 is detachably arranged; a transfer adjustment component 3, which is detachably arranged on the mounting plane, and is located on one side of the material box 2; a grabbing component 4, which is detachably arranged on the transfer adjustment component 3, and can be adjusted by the transfer adjustment component 3 along the left, right, up and down directions, and is used for grabbing and clamping the material in the material box 2; and a mincing component 5, which is detachably installed on the mounting plane, and is located below the grabbing component 4, and is used for mincing the material injected into it through the grabbing component 4.

[0042] The utility model is based on an overall idea that, through the arrangement of the transfer adjustment member 3, the staff turns on the switch of the first drive motor 32 to make the first screw rod 33 rotate, so as to drive the first ball base 34 to rise or fall as a whole, and at the same time drive the second connecting housing 36 to rise or fall as a whole, so as to make the grabbing member 4 to rise or fall as a whole, and turns on the switch of the second drive motor 37 to make the second screw rod 38 rotate as a whole, so as to make the grabbing member 4 move in the left and right directions as a whole, so as to change the position of the grabbing member 4 to grab the material, and through the arrangement of the grabbing member 4, the staff turns on the switch of the electric cylinder 44 to make the overall position of the electric cylinder 44 move downward, By opening the gripper cylinder 45, the gripper cylinder 45 can grab and position the material in the material box 2. At the same time, the transfer adjustment member 3 can be moved downward as a whole, so that the gripper cylinder 45 can penetrate into the material box 2 to grab and position the material, and then transfer it to the mincing member 5 for mincing operation. Through the arranged mincing member 5, the staff turns on the switch of the third drive motor 54 to rotate the first rotating shaft 55 and the second rotating shaft 56, so as to drive the first reamer 552 and the second reamer 562 to rotate, so as to mince the material injected into the mincing shell 52. After the mincing operation, the material is allowed to flow out of the mincing shell 52, and the feeding effect can be further improved through the material guide plate 59.

[0043] Next, the overall structure and construction of the transfer regulating member 3 is given a more specific explanation. The transfer regulating member 3 includes a first connecting housing 31, which is detachably mounted on the mounting plane, on which a first driving motor 32 is detachably arranged, and the output end of the first driving motor 32 can be inserted into it, and a first screw rod 33 is detachably arranged on the output end of the first driving motor 32; a first ball base 34, which is slidably arranged in the first connecting housing 31 and is passed through by the first screw rod 33. , on which a fitting plate 35 is detachably provided; a second connecting housing 36, which is detachably mounted on the fitting plate 35, on which a second driving motor 37 is detachably provided, and the output end of the second driving motor 37 can be inserted therein, and a second screw rod 38 is detachably provided on the output end of the second driving motor 37; a second ball bearing base 39, which is slidably provided in the second connecting housing 36 and is passed through by the second screw rod 38; and a connecting plate 391, which is detachably provided on the second ball bearing base 39;

[0044] Next, the operating principle of the transfer adjustment component 3 as a whole is further explained. The staff turns on the switch of the first drive motor 32 to make the first screw rod 33 rotate, so as to drive the first ball base 34 to rise or fall as a whole, and at the same time drives the second connecting housing 36 to rise or fall as a whole, so that the grabbing component 4 rises or falls as a whole. By turning on the switch of the second drive motor 37, the second screw rod 38 is rotated as a whole, so that the grabbing component 4 moves as a whole in the left and right directions to change the position of the grabbing component 4 for grabbing the material.

[0045] It should also be noted that in this case, the materials referred to are meat blocks or strips for sausage production.

[0046] In some embodiments, more specifically, in order to further strengthen the position of the first connecting housing 31 on the workbench 1 , a fastening base 311 is detachably provided on the first connecting housing 31 , and the fastening base 311 is detachably connected to the workbench 1 .

[0047] Next, the structure and construction of the gripping member 4 are given a more specific structure for further explanation. The gripping member 4 includes a gripping base plate 41, which is detachably mounted on the connecting plate 391 and has a through hole therein; a built-in slide plate 42, which has a through rod thereon, and the through rod can pass through the through hole, and an electric cylinder 44 is detachably mounted on the through rod; a driving screw 43, which is rotatably arranged in the gripping base plate 41 and can pass through the through hole, and one end of the driving screw is rotatably connected to the built-in slide plate 42 and cannot be disengaged; a clamping cylinder 45, which is detachably arranged on the output end of the electric cylinder 44;

[0048] Next, the operating principle of the entire grabbing member 4 is further explained. The staff turns on the switch of the electric cylinder 44 to move the entire electric cylinder 44 downward, so that the claw cylinder 45 can be turned on to grab and position the material in the material box 2. At the same time, the entire transfer adjustment member 3 can be moved downward to allow the claw cylinder 45 to penetrate into the material box 2 to grab and position the material, and then transfer it to the mincing member 5 for mincing operation.

[0049] In some embodiments, more specifically, in order to further improve the position of the grabbing substrate 41 in the connecting plate 391, a reinforcing rib 46 is detachably installed on the grabbing substrate 41, and the size of the reinforcing rib 46 is adapted to the size of the grabbing substrate 41, and the reinforcing rib 46 and the connecting plate 391 are detachably connected.

[0050] Next, the mincing member 5 as a whole is given a more specific structure and construction for further explanation. The mincing member 5 includes a mounting seat 51, which is detachably mounted on the mounting plane, and a mincing shell 52 is detachably arranged on it; a connecting shaft seat 53, which is detachably arranged on the mounting seat 51, and a third driving motor 54 is detachably arranged on it, and the output end of the third driving motor 54 can pass through the connecting shaft seat 53, and a short rod is provided on the output end of the third driving motor 54, and a first rotating shaft 55 is detachably arranged on the short rod, and the first rotating shaft 55 rotates in the mincing shell 52. A first gear 551 is detachably provided on one end of the first rotating shaft 55, and a plurality of first reamers 552 are arranged along the length direction of the first rotating shaft 55; a second rotating shaft 56 is rotatably provided in the mincing shell 52, and a second gear 561 is detachably provided on one end of the second rotating shaft 56, and the second gear 561 is meshed with the first gear 551, and a plurality of second reamers 562 are arranged along the length direction of the second rotating shaft 56, and the plurality of second reamers 562 are adjacent to the plurality of first reamers 552; a feeding frame 57 is detachably provided on the mincing shell 52, and has a cavity therein;

[0051] Next, the overall operating principle of the mincing member 5 is further explained. The staff turns on the switch of the third drive motor 54 to rotate the first rotating shaft 55 and the second rotating shaft 56, thereby driving the first reamer 552 and the second reamer 562 to rotate, so as to mince the material injected into the mincing shell 52. After the mincing operation, the material flows out of the mincing shell 52.

[0052] In some embodiments, more specifically, in order to further improve the circulation of the minced material, a lower material frame 58 is detachably provided at the bottom of the mincing shell 52 , and the lower material frame 58 and the mincing shell 52 are connected to each other.

[0053] In some more specific embodiments, in order to further improve the ability of the grabbing member 4 to better inject the grabbed material into the feed frame 57 when grabbing the material, a guide plate 59 is detachably provided on the feed frame 57, and the guide plate 59 is arranged at an angle to a side wall of the feed frame 57.

[0054] In summary, through the arranged transfer adjustment component 3, the staff turns on the switch of the first drive motor 32 to make the first screw rod 33 rotate, so as to drive the first ball base 34 to rise or fall as a whole, and at the same time drive the second connecting housing 36 to rise or fall as a whole, so that the grasping component 4 is raised or lowered as a whole, and by turning on the switch of the second drive motor 37, the second screw rod 38 is rotated as a whole, so that the grasping component 4 moves along the left and right directions as a whole, so as to change the position of the grasping material of the grasping component 4, and through the arranged grasping component 4, the staff turns on the switch of the electric cylinder 44 to make the overall position of the electric cylinder 44 move downward, so as to open the clamping claw air The cylinder 45 can enable the gripper cylinder 45 to grab and position the material in the material box 2, and at the same time can be moved downward as a whole through the transfer adjustment component 3, so that the gripper cylinder 45 can penetrate into the material box 2 to facilitate grabbing and positioning the material, and then transfer it to the mincing component 5 for mincing operation. Through the arranged mincing component 5, the staff turns on the switch of the third drive motor 54 to rotate the first rotating shaft 55 and the second rotating shaft 56, so as to drive the first reamer 552 and the second reamer 562 to rotate, so as to mince the material injected into the mincing shell 52. After the mincing operation, the material is allowed to flow out of the mincing shell 52, and the feeding effect can be further improved through the material guide plate 59.

[0055] Although the embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and variations may be made to these embodiments without departing from the principles and spirit of the present invention, and the scope of the present invention is defined by the appended claims and their equivalents.

Claims

1. A meat mincing device for sausage production, characterized in that: It includes A workbench (1) has a mounting surface on which a material box (2) is detachably arranged; A transport regulating component (3) is detachably arranged on the installation plane and is located on one side of the material box (2); A grabbing member (4) is detachably arranged on the transport adjustment member (3) and can be adjusted in the left, right, up and down directions by the transport adjustment member (3) to perform a grabbing and clamping operation on the material in the material box (2); as well as A mincing member (5) is detachably mounted on the mounting plane and is located below the grabbing member (4). The mincing member (5) is used to mince the material injected into the mincing member through the grabbing member (4).

2. The meat mincing equipment for sausage production according to claim 1, characterized in that: The transport regulating component (3) comprises A first connecting housing (31) is detachably mounted on the mounting plane, a first drive motor (32) is detachably arranged on the housing, and an output end of the first drive motor (32) can be inserted into the housing, and a first screw rod (33) is detachably arranged on the output end of the first drive motor (32); A first ball bearing base (34) is slidably disposed in the first connecting housing (31), is passed through by the first screw rod (33), and has a bonding plate (35) detachably disposed thereon; A second connecting housing (36) is detachably mounted on the laminating plate (35), a second driving motor (37) is detachably arranged on the housing, and the output end of the second driving motor (37) can be inserted into the housing, and a second screw rod (38) is detachably arranged on the output end of the second driving motor (37); a second ball bearing base (39) slidably disposed in the second connecting housing (36) and passed through by the second screw rod (38); and The connecting plate (391) is detachably arranged on the second ball bearing base (39).

3. The meat mincing equipment for sausage production according to claim 2, characterized in that: A fastening base (311) is detachably provided on the first connecting housing (31), and the fastening base (311) is detachably connected to the workbench (1).

4. The meat mincing equipment for sausage production according to claim 3, characterized in that: The gripping member (4) comprises a gripping base plate (41) detachably mounted on the connecting plate (391) and having a through hole therein; A built-in slide plate (42) is provided with a penetrating rod which can pass through the through hole, and an electric cylinder (44) is detachably mounted on the penetrating rod; A driving screw (43) is rotatably arranged in the gripping base plate (41) and can penetrate into the through hole. One end of the driving screw is rotatably connected to the built-in slide plate (42) and does not separate. The clamping claw cylinder (45) is detachably arranged on the output end of the electric cylinder (44).

5. The meat mincing equipment for sausage production according to claim 4, characterized in that: A reinforcing rib (46) is detachably mounted on the grabbing substrate (41), and the size of the reinforcing rib (46) matches the size of the grabbing substrate (41). The reinforcing rib (46) is detachably connected to the connecting plate (391).

6. The meat mincing equipment for sausage production according to claim 1, characterized in that: The mincing member (5) comprises A mounting seat (51) is detachably mounted on the mounting plane, and a mincing shell (52) is detachably arranged on the mounting seat; A connecting shaft seat (53) is detachably arranged on the mounting seat (51), and a third driving motor (54) is detachably arranged on the connecting shaft seat (53), and the output end of the third driving motor (54) can pass through the connecting shaft seat (53). A short rod is provided on the output end of the third driving motor (54), and a first rotating shaft (55) is detachably arranged on the short rod, and the first rotating shaft (55) rotates in the mincing shell (52). A first gear (551) is detachably arranged on one end of the first rotating shaft (55), and the first rotating shaft (55) is provided with a plurality of first cutters (552) along its length direction; A second rotating shaft (56) is rotatably disposed in the grinding shell (52), and a second gear (561) is detachably disposed on one end of the second rotating shaft, and the second gear (561) is meshed with the first gear (551). The second rotating shaft (56) is provided with a plurality of sets of second reamers (562) along its length, and the plurality of sets of second reamers (562) and the plurality of sets of first reamers (552) are adjacent to each other; The feeding frame (57) is detachably arranged on the mincing shell (52) and has a cavity therein.

7. The meat mincing equipment for sausage production according to claim 6, characterized in that: A lower material frame (58) is detachably provided at the bottom of the mincing shell (52), and the lower material frame (58) and the mincing shell (52) are communicated with each other.

8. The meat mincing equipment for sausage production according to claim 7, characterized in that: A material guide plate (59) is detachably arranged on the material feeding frame (57), and the material guide plate (59) and a side wall of the material feeding frame (57) are arranged in an inclined shape.