Frozen meat slicer feeding device

By adjusting the positioning of the feeding device and using the feeding mechanism of the frozen meat slicer, the problem of the frozen meat slicer being unable to effectively fix irregular materials has been solved, achieving efficient cutting and tail material control, and improving the yield and production efficiency.

CN223493391UActive Publication Date: 2025-10-31XINFEIPENG (HEBEI) MACHINERY MANUFACTURING CO LTD
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Patent Information

Application Number
CN202422704172.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-06
Publication Date
2025-10-31
Estimated Expiration
2034-11-06

AI Technical Summary

Technical Problem

Existing frozen meat slicers cannot effectively fix irregular materials, requiring secondary trimming, which affects production efficiency and yield.

Method used

A feeding device for a frozen meat slicer was designed, comprising a positioning adjustment mechanism and a feeding mechanism. The feeding mechanism fixes the frozen meat, while the positioning adjustment mechanism adjusts the size of the tail material, thereby achieving effective fixation of the frozen meat and control of the tail material.

Benefits of technology

It improves the yield of frozen meat slicers, reduces the labor intensity of workers, increases production efficiency, and adapts to the cutting requirements of different materials.

✦ Generated by Eureka AI based on patent content.

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Abstract

A frozen meat slicer feeding device comprises a feeding frame, a positioning adjusting mechanism and a material holding mechanism are installed on the feeding frame, the material holding mechanism is used for fixing frozen meat to be sliced, the positioning adjusting mechanism is used for adjusting the size of tailings of the frozen meat fixed by the material holding mechanism, in addition, one side of the feeding frame is fixedly connected with a movable supporting arm of a slicer, and the other side of the feeding frame is fixedly connected with a movable supporting arm of the slicer. A guide block is fixedly connected to the side plate on the other side, fixedly connected with the movable supporting arm, of the feeding frame. According to the frozen meat slicing machine feeding device, control over frozen meat tailings can be achieved through cooperation of the material holding mechanism and the positioning adjusting mechanism, the yield is improved, meanwhile, the device is simple in structure and convenient and fast to use, the working efficiency is greatly improved, the labor intensity of workers is reduced, and the labor intensity of workers is reduced. And irregular materials can be quickly loaded and fixed without secondary adjustment, so that the cutting requirements of the feeding device on different materials are met.
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Description

Technical Field

[0001] This utility model belongs to the field of frozen meat slicing devices, and particularly relates to a feeding device for a frozen meat slicing machine. Background Technology

[0002] With the continuous upgrading of equipment used in the catering industry, meat processing equipment is becoming increasingly sophisticated. Frozen meat slicers are specifically designed to cut frozen meat into slices. This equipment is a safe and efficient cutting device. A feeding device places the material on a worktable, and the feed shaft, in conjunction with the cutting blade, feeds the meat forward at a precise and stable speed, ensuring the finished product's dimensions are accurate and consistent. Currently, frozen meat slicers on the market directly fix the material on the worktable. Due to the irregular shape of the material, it sometimes cannot be effectively fixed, requiring the end of the material to be trimmed before being fixed to the worktable. This process increases the workload of workers and affects production efficiency. Furthermore, existing equipment cannot adjust the loading position, resulting in too much leftover material after cutting, affecting the yield rate. Utility Model Content

[0003] The purpose of this utility model is to provide a feeding device for a frozen meat slicer, so as to solve the technical problems of how to effectively fix the material in the slicer and how to adjust the loading position to control the amount of tail material.

[0004] To achieve the above objectives, the specific technical solution of the feeding device for a frozen meat slicer according to this utility model is as follows:

[0005] A feeding device for a frozen meat slicer includes a feeding rack with a positioning adjustment mechanism and a feeding mechanism installed on it. The feeding mechanism is used to fix the frozen meat to be sliced, and the positioning adjustment mechanism is used to adjust the size of the tail of the frozen meat fixed by the feeding mechanism. In addition, one side of the feeding rack is fixedly connected to the movable support arm of the slicer.

[0006] Furthermore, the positioning adjustment mechanism includes a front baffle, the sides of which are rotatably connected to the side plates of the feed racks on both sides via movable shafts. In addition, an adjustment plate is fixedly connected to one side of the front baffle. The up-and-down rotation of the adjustment plate can drive the front baffle to rotate back and forth along the movable shaft. Furthermore, a positioning post is provided on the adjustment plate, and a positioning hole is provided on the feed rack side plate corresponding to the positioning post. Fixed sleeves are respectively installed on the movable shafts inside the sides of the front baffle. The fixed sleeves are fixed to the movable shafts with bolts. The fixed sleeves play a role in limiting the front baffle and can prevent the front baffle from moving left and right along the movable shaft.

[0007] Furthermore, the material-grabbing mechanism includes fixed claws, multiple fixed claws are connected side-by-side via positioning shafts and positioning spacers. The positioning shaft passes through the middle of the multiple fixed claws, and positioning spacers are fitted on the positioning shaft between adjacent fixed claws. The positioning spacers evenly distribute the fixed claws on the fixed shaft. Both ends of the positioning shaft are fixed with bolts. The front end of the fixed claw can extend through the front baffle to the front side of the front baffle. The corresponding front baffle is also provided with a through groove for the fixed claw to pass through. The tail of the fixed claw is connected to a rotating shaft, which passes through the tail of the fixed claw in sequence. The positioning spacers on the fixed shaft corresponding to the positioning shafts on the positioning shaft are also provided with positioning spacers. The positioning spacer ensures that the position of the fixed claw remains consistent. The two ends of the rotating shaft are rotatably connected to the two side plates of the feeding frame. The two side plates of the feeding frame are provided with through holes corresponding to the position of the rotating shaft. Bushings are installed in the through holes. The tension screws pass through the bushings on both sides and are fixedly connected to the rotating shaft. The rotating shaft can drive the tension screws to rotate relative to the feeding frame. In addition, a connecting arm is integrally connected to the fixed claw on one side. The other end of the connecting arm is fixedly connected to a handle. At the same time, a return torsion spring is installed on the outside of the positioning spacer on the rotating shaft. One end of the return torsion spring is fixed to the feeding frame and the other end is fixed to the positioning spacer of the positioning shaft.

[0008] Furthermore, it also includes a guide block, which is fixedly connected to the other side plate of the feeding rack and the movable support arm. The end of the guide block is provided with a sliding groove. The guide block cooperates with the slide rail of the slicer frame and can move back and forth along the slide rail of the frame.

[0009] The feeding device for the frozen meat slicer of this utility model has the following advantages: the combination of the feeding mechanism and the positioning adjustment mechanism can realize the control of the frozen meat tail material, adjust the size of the tail material, and improve the yield. At the same time, the device has a simple structure and is easy to use, which greatly improves work efficiency and reduces the labor intensity of workers. Irregular materials can also be quickly loaded and fixed without secondary adjustment to meet the cutting requirements of the feeding device for different materials. Attached Figure Description

[0010] Figure 1 This is a schematic diagram of the front structure of the feeding device of this utility model;

[0011] Figure 2 This is a schematic diagram of the rear structure of the feeding device of this utility model;

[0012] Figure 3 This is a side half-sectional view of the feeding device of this utility model;

[0013] Figure 4 This is a front sectional view of the feeding device of this utility model;

[0014] Figure 5 This is a schematic diagram of the rear structure of the feeding device of this utility model from another angle;

[0015] The markings in the diagram are as follows: 1. Feeding rack; 2. Positioning and adjustment mechanism; 21. Front baffle; 22. Movable shaft; 23. Fixed sleeve; 24. Adjusting plate; 25. Positioning column; 26. Positioning hole; 3. Feeding mechanism; 31. Fixed claw; 32. Positioning shaft; 33. Positioning spacer; 34. Rotating shaft; 35. Bushing; 36. Tensioning screw; 37. Return torsion spring; 38. Connecting arm; 39. Handle; 4. Guide block. Detailed Implementation

[0016] To better understand the purpose, structure, and function of this utility model, the following description, in conjunction with the accompanying drawings, provides a more detailed account of a feeding device for a frozen meat slicer.

[0017] like Figure 1 As shown, the present invention discloses a feeding device for a frozen meat slicer, comprising a feeding frame 1, on which a positioning adjustment mechanism 2 and a feeding mechanism 3 are installed. The feeding mechanism 3 is used to fix the frozen meat to be sliced, and the positioning adjustment mechanism 2 is used to adjust the size of the tail piece of frozen meat fixed by the feeding mechanism 3. In addition, one side of the feeding frame 1 is fixedly connected to the movable support arm of the slicer, which can drive the feeding frame 1 to move back and forth along the feeding direction. At the same time, a guide block 4 is fixedly provided on the other side plate of the feeding frame 1, which is fixedly connected to the movable support arm. The end of the guide block 4 is provided with a sliding groove. The guide block 4 cooperates with the slide rail of the slicer frame and can move back and forth along the slide rail direction, thus providing guidance and stable support for the feeding frame 1. The feeding device for the frozen meat slicer of this application can effectively fix the frozen meat through the feeding mechanism 3, and the positioning adjustment mechanism 2 can adjust the loading position, that is, adjust the size of the tail piece of frozen meat fixed by the feeding mechanism 3, thereby avoiding too much tail piece remaining after slicing.

[0018] Specific examples Figure 2-3 As shown, the positioning adjustment mechanism 2 includes a front baffle 21. The sides of the front baffle 21 are rotatably connected to the side plates of the feed racks 1 on both sides via movable shafts 22. Fixing sleeves 23 are respectively installed on the movable shafts 22 within the sides of the front baffle 21. These fixing sleeves 23 are fixed to the movable shafts 22 with bolts, thus limiting the front baffle 21 and preventing it from moving left or right along the movable shafts 22. Furthermore, a fixed connection is made to one side of the front baffle 21. The adjusting plate 24 can drive the front baffle 21 to rotate back and forth along the movable shaft 22 by rotating the adjusting plate 24 up and down. In addition, a positioning post 25 is provided on the adjusting plate 24, and a positioning hole 26 is provided on the side plate of the feeding rack 1 corresponding to the positioning post 25. By cooperating and fixing the positioning post 25 with the positioning hole 26, the position of the front baffle 21 can be fixed. By snapping the positioning post 25 on the adjusting plate 24 into different positioning holes 26, the front baffle 21 can be positioned at different positions.

[0019] like Figure 3-5 As shown, the material-grabbing mechanism 3 includes a fixed claw 31, which is shaped like an eagle's claw. Multiple fixed claws 31 are connected side-by-side via a positioning shaft 32 and a positioning spacer 33. Specifically, the positioning shaft 32 passes through the middle of the multiple fixed claws 31, and a positioning spacer 33 is fitted onto the positioning shaft 32 between adjacent fixed claws 31. The positioning spacer 33 evenly distributes the fixed claws 31 on the positioning shaft. Both ends of the positioning shaft 32 are fixed with bolts. The front end of the fixed claw 31 can extend through the front baffle 21 to the front side of the front baffle 21. A through groove is also provided on the corresponding front baffle 21 for the fixed claw 31 to pass through. The tail of the fixed claw 31 is connected to a rotating shaft 34, which passes through the tail of the fixed claw 31. The fixed shaft is also provided with a positioning spacer 33 corresponding to the positioning spacer 33 on the positioning shaft 32, so that the position of the fixed claw 31 remains consistent. The two ends of the rotating shaft 34 are rotatably connected to the two side plates of the feeding frame 1. Specifically, the two side plates of the feeding frame 1 are provided with through holes corresponding to the position of the rotating shaft 34. A bushing 35 is installed in the through hole. The tension screw 36 passes through the bushing 35 on both sides and is fixedly connected to the rotating shaft 34. The rotating shaft 34 can drive the tension screw 36 to rotate relative to the feeding frame 1. In this way, multiple fixed claws 31 can rotate synchronously around the rotating shaft 34 under the action of the positioning shaft 32. In addition, a connecting arm 38 is integrally connected to one side of the fixed claw 31, and the other end of the connecting arm 38 is fixedly connected to the handle 39. At the same time, a return torsion spring 37 is installed on the outside of the positioning spacer 33 on the rotating shaft 34. One end of the return torsion spring 37 is fixed to the feeding frame 1 and the other end is fixed to the positioning spacer 33 of the positioning shaft 32. The return torsion spring 37 provides a downward rotation force for the fixed claws 31. By rotating the handle... Handle 39 can drive the fixed claw 31 to rotate upward around the rotating shaft 34. At this time, the reset torsion spring 37 is compressed, providing a downward force for the fixed claw 31. The material to be cut can be placed under the fixed claw 31 on the front side of the front baffle. Release handle 39, and the fixed claw 31 will rotate downward under the action of the reset torsion spring 37. Then the fixed claw 31 will stop after gripping the material, thus achieving effective fixation of the material. After slicing, handle 39 can also be rotated to remove the finished material. Release handle 39, and the fixed claw 31 will automatically fall back.

[0020] The material-grabbing mechanism 3 in this application can fix the material, but the position of the fixing claw 31 of the material-grabbing mechanism 3 relative to the feeding frame 1 remains unchanged. In order to adjust the tail material, this application can achieve this through the positioning adjustment mechanism 2. Specifically, the position of the front baffle 21 relative to the feeding frame 1 is adjusted by rotating the adjusting plate 24, which is equivalent to adjusting how much the fixing claw 31 can extend out of the front baffle 21, thereby adjusting the amount of tail material fixed by the fixing claw 31. After adjusting the position by adjusting the adjusting plate 24, the positioning pin 25 is inserted into the corresponding positioning hole 26, so that the position of the front baffle 21 is limited. Then, the fixing claw 31 is rotated and pressed up by rotating the handle 39. At this time, the frozen meat to be sliced ​​is placed on the front side of the front baffle 21. Then, the handle 39 is lowered. Under the action of the return torsion spring 37, the fixing claw 31 rotates downward and fixes the frozen meat through the claw teeth of the fixing claw 31. Then, the support arm of the slicer drives the feeding device and the frozen meat fixed by the feeding device to move along the slicing direction to realize the slicing operation of the frozen meat.

[0021] The frozen meat slicing feeding device of this application can control the frozen meat tail material through the cooperation of the feeding mechanism 3 and the positioning adjustment mechanism 2, thereby improving the yield. At the same time, the device has a simple structure and is easy to use, which greatly improves work efficiency and reduces the labor intensity of workers. Irregular materials can be quickly loaded and fixed without secondary adjustment. The size of the tail material can also be adjusted to meet the cutting requirements of the feeding device for different materials.

[0022] It is understood that this utility model has been described through some embodiments, and those skilled in the art will recognize that various changes or equivalent substitutions can be made to these features and embodiments without departing from the spirit and scope of this utility model. Furthermore, under the teachings of this utility model, these features and embodiments can be modified to adapt to specific situations and materials without departing from the spirit and scope of this utility model. Therefore, this utility model is not limited to the specific embodiments disclosed herein, and all embodiments falling within the scope of the claims of this application are within the protection scope of this utility model.

Claims

1. A feeding device for a frozen meat slicer, characterized in that, It includes a feeding rack (1), on which a positioning adjustment mechanism (2) and a feeding mechanism (3) are installed. The feeding mechanism (3) is used to fix the frozen meat to be cut, and the positioning adjustment mechanism (2) is used to adjust the size of the tail of the frozen meat fixed by the feeding mechanism (3). In addition, one side of the feeding rack (1) is fixedly connected to the moving support arm of the slicer.

2. The feeding device for a frozen meat slicer according to claim 1, characterized in that, The positioning adjustment mechanism (2) includes a front baffle (21). The sides of the front baffle (21) are rotatably connected to the side plates of the feed racks (1) on both sides via a movable shaft (22). In addition, an adjustment plate (24) is fixedly connected to one side of the front baffle (21). The front baffle (21) can be rotated back and forth along the movable shaft (22) by the up and down rotation of the adjustment plate (24). Furthermore, a positioning post (25) is provided on the adjustment plate (24), and a positioning hole (26) is provided on the side plate of the feed rack (1) corresponding to the positioning post (25).

3. The feeding device for a frozen meat slicer according to claim 2, characterized in that, The material handling mechanism (3) includes fixed claws (31). Multiple fixed claws (31) are connected side-by-side via a positioning shaft (32) and a positioning spacer (33). The positioning shaft (32) passes through the middle of the multiple fixed claws (31), and a positioning spacer (33) is fitted on the positioning shaft (32) between two adjacent fixed claws (31). The positioning spacer (33) evenly distributes the fixed claws (31) on the fixed shaft. Both ends of the positioning shaft (32) are fixed with bolts. The front end of the fixed claw (31) can extend through the front baffle (21) to the front side of the front baffle (21). A through groove is also provided on the corresponding front baffle (21) for the fixed claw (31) to pass through. The tail of the fixed claw (31) is connected to a rotating shaft (34). The rotating shaft (34) passes through the tail of the fixed claw (31) in sequence, and the fixed shaft is also provided with a positioning spacer (33) corresponding to the positioning shaft (32), so that the position of the fixed claw (31) remains consistent. The two ends of the rotating shaft (34) are rotatably connected to the two side plates of the feeding rack (1); in addition, a connecting arm (38) is integrally connected to the fixed claw (31) on one side, and the other end of the connecting arm (38) is fixedly connected to the handle (39). At the same time, a reset torsion spring (37) is installed on the outside of the positioning spacer (33) on the rotating shaft (34). One end of the reset torsion spring (37) is fixed on the feeding rack (1) and the other end is fixed on the positioning spacer (33) of the positioning shaft (32).

4. The feeding device for a frozen meat slicer according to claim 3, characterized in that, It also includes a guide block (4), which is fixedly connected to the other side plate of the feeding rack (1) and the movable support arm. The end of the guide block (4) is provided with a sliding groove. The guide block (4) cooperates with the slide rail of the slicer frame and can move back and forth along the slide rail of the frame.

5. The feeding device for a frozen meat slicer according to claim 4, characterized in that, Fixing sleeves (23) are respectively installed on the movable shafts (22) inside the sides of the front baffle (21). The fixing sleeves (23) are fixed to the movable shafts (22) with bolts. The fixing sleeves (23) play a role in limiting the front baffle (21) and can prevent the front baffle (21) from moving left and right along the movable shafts (22).

6. The feeding device for a frozen meat slicer according to claim 5, characterized in that, The two side plates of the feeding rack (1) are provided with through holes corresponding to the position of the rotating shaft (34). A bushing (35) is installed in the through hole. The tension screw (36) passes through the bushing (35) on both sides and is fixedly connected to the rotating shaft (34). The rotating shaft (34) can drive the tension screw (36) to rotate relative to the feeding rack (1).

7. The feeding device for a frozen meat slicer according to claim 3, characterized in that, The fixing claw (31) is shaped like an eagle's claw.