Linkage type dicer
Through the design of a linked cutting machine, an intermittent cam divider and a driving swing arm are used to achieve synchronous cutting of the disc mold and the stamping mold, which solves the problem of asynchronous cutting, improves processing efficiency and reduces the risk of mold damage.
Patent Information
- Application Number
- CN202422922778.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-28
- Publication Date
- 2025-10-10
- Estimated Expiration
- 2034-11-28
AI Technical Summary
The disc cutters and stamping dies on the market lack linkage, resulting in asynchronous cutting, which increases the difficulty of PLC controller and the risk of mold damage, and reduces cutting processing efficiency.
The machine adopts a linkage cutting machine design, in which one motor drives the disc die to rotate through an intermittent cam divider, and the other motor drives the stamping die up and down by driving the swing arm, realizing synchronous cutting of the disc die and the stamping die, simplifying the control logic of the PLC controller.
The synchronous cutting of the disc mold and the stamping mold is achieved, which reduces the risk of mold damage, simplifies the control difficulty and improves the cutting efficiency.
Smart Images

Figure CN223419725U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of meat product processing, in particular to a linkage type cutting machine. Background Art
[0002] Dicers are widely used in the meat processing industry, for example, to dice chicken legs, chicken necks, chicken racks, duck legs, duck necks, and steaks. Cutting is not only convenient for cooking and processing, but also for packaging. Currently, disc dicers on the market use separate motors to drive the disc die and the stamping die for cutting. Due to the lack of connection and linkage between the two motors, the disc die and the stamping die can easily become out of sync, causing damage to the die. This also increases the control difficulty of the PLC controller and reduces cutting efficiency. Utility Model Content
[0003] In order to solve the above problems, the purpose of this utility model is to provide a linkage cutting machine.
[0004] To achieve the above-mentioned purpose, the technical solution of the utility model is: a linkage cutting machine, including a disc mold and a stamping mold, the disc mold is provided with a plurality of hollow product placement slots arranged around the center of the disc mold axis, and there is a placement slot corresponding to the stamping mold. One of the two power output shafts of the driving motor drives the disc mold to rotate through an intermittent cam divider, and the other power output shaft of the driving motor is provided with a driving swing arm for driving rotation. The outer end of the driving swing arm drives the stamping mold up and down through a connecting rod structure. The disc mold is rotatably supported on a table, and a hollow cutting knife mold is provided on the table directly below the stamping mold. A plurality of longitudinal and transverse cutting knives are provided in the hollow shape of the cutting knife mold, and a plurality of cutting knife grooves corresponding to the cutting knives are provided on the lower surface of the stamping mold.
[0005] Furthermore, it also includes an L-shaped frame structure, a table plate is arranged on the horizontal surface of the front side of the L-shaped frame structure, a lifting plate that slides vertically up and down is arranged on the vertical part of the L-shaped frame structure above the table plate, the stamping die is fixed on the front side of the lifting plate, and the L-shaped frame structure above the lifting plate is provided with a freely rotatable slave rocker arm, the swinging end of the slave rocker arm is rotatably connected to the lifting plate through an adjusting connecting rod, and a synchronously swinging driving rocker arm is fixed to the other end of the rotating shaft of the slave rocker arm, and the swinging end of the driving rocker arm is rotatably connected to the upper end of the connecting rod structure.
[0006] Furthermore, a mold fixing seat is fixed on the front side of the lifting plate, and a fixed slide groove with an inverted isosceles trapezoidal cross-section is provided on the lower surface of the mold fixing seat. A fixed column is fixedly connected to the upper surface of the stamping mold, and the upper end of the fixed column is grooved on the side wall to form a slider structure horizontally inserted in the fixed slide groove.
[0007] Furthermore, the center of the disc mold is penetrated by the vertical power output shaft of the intermittent cam divider, and a fixed plate with a threaded hole is fixed to the upper end of the vertical power output shaft of the intermittent cam divider. A fixed plate with a threaded hole is also provided at the center of the disc mold. The two fixed plates are tightly connected and fixed together by bolts.
[0008] Furthermore, the rear side of the lifting plate is slidably arranged on a slide rail fixed in the L-shaped frame structure.
[0009] Furthermore, the outer side of the L-shaped frame structure is covered with a skin, wherein the skin on one side is provided with a discharge port, and the upper end of the discharge port extends to directly below the cutting die.
[0010] Furthermore, the bottom of the L-shaped frame structure supports a plurality of adjustable legs and universal wheels.
[0011] Furthermore, the driving motor and the intermittent cam divider are fixed on a bottom plate within the bottom of the L-shaped frame structure.
[0012] Furthermore, a PLC controller with a display screen and operation buttons is provided on the skin on one side of the top of the L-shaped frame structure, and the control end of the PLC controller is used to control the rotation of the drive motor.
[0013] Furthermore, the mold fixing seat is split, and a split structure connected by bolts is formed on both sides of the fixed slide groove.
[0014] Through the above settings, the utility model can simultaneously drive the disc mold and the cutting stamping mold through one motor, so that a linkage structure is formed between the two. It can not only ensure that the disc mold and the stamping mold are cut synchronously during stamping, but also make the cutting more precise and effective, effectively avoiding damage to the disc mold by the stamping mold, but also can be controlled by a simple PLC controller, which reduces the control difficulty, effectively reduces the failure rate, better ensures the continuous and reliable operation of the equipment, and is conducive to improving the cutting processing efficiency. BRIEF DESCRIPTION OF THE DRAWINGS
[0015] The present invention will now be further described with reference to the accompanying drawings.
[0016] Figure 1 It is a schematic diagram of the three-dimensional structure of the utility model;
[0017] Figure 2 It is a schematic diagram of the cross-sectional structure of the utility model;
[0018] Figure 3 This is a schematic top view of the three-dimensional structure of the utility model without the skin;
[0019] Figure 4 This is a schematic diagram of the rear-view stereoscopic structure of the utility model without the skin;
[0020] Figure 5 This is a schematic diagram of the three-dimensional structure of the utility model when the cover is removed;
[0021] Figure 6 This is a schematic diagram of the three-dimensional structure of the punching die of the utility model from a top view;
[0022] Figure 7 It is a bottom-up three-dimensional structural diagram of the punching die of the present invention. DETAILED DESCRIPTION
[0023] like Figure 1-7 As shown, a linkage cutting machine includes a disc mold 1 and a stamping mold 2. The disc mold 1 is provided with a plurality of hollow product placement slots 3 arranged around the axis center of the disc mold 1. There is a placement slot 3 just below the stamping mold 2. One of the two power output shafts of the drive motor 4 drives the disc mold 1 to rotate through an intermittent cam divider 5, such as the intermittent cam divider 5 commonly found on the market. The other power output shaft of the drive motor 4 is provided with a driving swing arm 6 for driving the rotation. The outer end of the driving swing arm 6 is connected to the drive shaft 6. The connecting rod structure 7 drives the stamping die 2 to move up and down, and the disc die 1 is rotatably supported on the table 8. The table 8 directly below the stamping die 2 is provided with a hollow cutting die 9. The hollow shape of the cutting die 9 is provided with multiple longitudinal and transverse cutting knives 10, and the lower surface of the stamping die 2 is provided with multiple cutting grooves 11 corresponding to the cutting knives 10. When cutting chicken legs, the horizontal cross-section of the main body of the stamping die 2 is in the shape of a chicken leg, and is the same as the shape of the placement groove 3. Similarly, when cutting duck necks or chicken necks, it corresponds to the shape of duck necks or chicken necks.
[0024] The machine also includes an L-shaped frame structure 12, that is, two rectangular frame structures welded together by a plurality of square tubes, and one of the rectangular frame structures is arranged horizontally, forming an L-shaped structure when viewed from the side, a table 8 is arranged on the surface of the horizontal part of the front side of the L-shaped frame structure 12, and a vertical part of the L-shaped frame structure 12 above the table 8 is provided with a lifting plate 13 that slides vertically up and down, the stamping die 2 is fixed to the front side of the lifting plate 13, and the L-shaped frame structure 12 above the lifting plate 13 is provided with a freely rotatable slave rocker arm 14, the swinging end of the slave rocker arm 14 is rotatably connected to the lifting plate 13 through an adjusting connecting rod 15, and a synchronously swinging driving rocker arm 16 is fixed to the other end of the rotating shaft of the slave rocker arm 14, and the slave rocker arm 14 driving rocker arm 16 can also be driven by a connecting rod (such as Figure 3 As shown) is further connected to achieve synchronous swing, driving the swing end of the rocker arm 16 to be rotationally connected to the upper end of the connecting rod structure 7.
[0025] In order to facilitate the replacement of the stamping die 2, a die fixing seat 17 is fixed on the front side of the lifting plate 13. The lower surface of the die fixing seat 17 is provided with a fixed slide groove 18 with an inverted isosceles trapezoidal cross-section. The upper surface of the stamping die 2 is fixedly connected with a fixed column 19. The upper end of the fixed column 19 is grooved in the side wall to form a slider structure 20 horizontally inserted in the fixed slide groove 18. The die fixing seat 17 is a split type, and a split structure connected by bolts is formed on both sides of the fixed slide groove 18, which is convenient for disassembly and installation.
[0026] In order to facilitate the replacement of the disc mold 1, the center of the disc mold 1 is penetrated by the vertical power output shaft of the intermittent cam divider 5, and a fixed disk 21 with a threaded hole is fixed to the upper end of the vertical power output shaft of the intermittent cam divider 5. The center of the disc mold 1 is also provided with a fixed disk 21 with a threaded hole. The two fixed disks 21 are tightly connected and fixed together by bolts.
[0027] The rear side sliding of the lifting plate 13 is set on the slide rail 22 fixed in the L-shaped frame structure 12. The outer side of the L-shaped frame structure 12 is covered with a skin 23, and the skin 23 on one side is provided with a discharge port 24, and the upper end of the discharge port 24 extends to directly below the cutting die 9. The bottom of the L-shaped frame structure 12 supports multiple adjustable legs 25 and universal wheels 26. The drive motor 4 and the intermittent cam divider 5 are fixed on the bottom plate 27 in the bottom of the L-shaped frame structure 12. A PLC controller 28 with a display screen and operation buttons is provided on the skin 23 on one side of the top of the L-shaped frame structure 12. The control end of the PLC controller 28 is used to control the rotation of the drive motor 4.
[0028] The working principle of the utility model is as follows: when working, the cut product is placed in the placement slot 3, the driving motor 4 works, and one of the two power output shafts of the driving motor 4 drives the disc mold 1 to rotate through the intermittent cam divider 5. The other power output shaft of the driving motor 4 is provided with a driving swing arm 6 for driving rotation, which drives the disc mold 1 to work intermittently in steps, so that the placement slot 3 with the product is located directly below the stamping mold 2. Due to the working characteristics of the intermittent cam divider 5, at this time, the driving motor 4 continues to work without driving the disc mold 1 to continue to operate, and the driving swing arm 6 continues to move, thereby driving the connecting rod structure 7 to move up and down, and then driving the driving rocker arm 16 and the driven rocker arm 14 to swing downward. The driven rocker arm 14 drives the lifting plate 13 and the stamping mold 2 fixed on the front side of the lifting plate 13 to move downward through the adjusting connecting rod 15. The stamping mold 2 punches and squeezes the product downward so that the product is cut by the cutter 10. The cutters 10 are arranged in a grid-like shape perpendicular to each other. Of course, a row of parallel to each other can also be set, which can cut into blocks or strips.
[0029] The above merely describes the specific implementation of the present application in a schematic manner, and is not intended to limit the scope of the present application. Any equivalent changes and modifications made by any person skilled in the art without departing from the concept and principles of the present application shall fall within the scope of the present application.
Claims
1. A linked cutting machine, comprising a disc die (1) and a punching die (2), wherein the disc die (1) is provided with a plurality of hollow product placement slots (3) arranged around the axis center of the disc die (1), and a placement slot (3) is located directly below the punching die (2), characterized in that: One of the two power output shafts of the driving motor (4) drives the disc mold (1) to rotate through an intermittent cam divider (5), and the other power output shaft of the driving motor (4) is provided with a driving swing arm (6) for driving the rotation, and the outer end of the driving swing arm (6) drives the stamping mold (2) to move up and down through a connecting rod structure (7). The disc mold (1) is supported on a table (8) for rotation, and a hollow cutting die (9) is provided on the table (8) directly below the stamping die (2). A plurality of longitudinal and transverse cutting knives (10) are provided in the hollow shape of the cutting die (9), and a plurality of cutting grooves (11) corresponding to the cutting knives (10) are provided on the lower surface of the stamping die (2).
2. The linkage cutter according to claim 1, characterized in that: The invention also includes an L-shaped frame structure (12), a table (8) is arranged on the horizontal surface of the front side of the L-shaped frame structure (12), a vertical portion of the L-shaped frame structure (12) above the table (8) is provided with a lifting plate (13) that slides vertically up and down, a stamping die (2) is fixed on the front side of the lifting plate (13), and the L-shaped frame structure (12) above the lifting plate (13) is provided with a freely rotatable slave rocker arm (14), the swing end of the slave rocker arm (14) is rotatably connected to the lifting plate (13) through an adjusting connecting rod (15), and a synchronously oscillating driving rocker arm (16) is fixed to the other end of the rotating shaft of the slave rocker arm (14), and the swing end of the driving rocker arm (16) is rotatably connected to the upper end of the connecting rod structure (7).
3. The linkage cutter according to claim 2, characterized in that: A mold fixing seat (17) is fixed on the front side of the lifting plate (13), and a fixed slide groove (18) with an inverted isosceles trapezoidal cross section is provided on the lower surface of the mold fixing seat (17). A fixed column (19) is fixedly connected to the upper surface of the stamping mold (2), and the upper end of the fixed column (19) is formed by slotting the side wall to form a slider structure (20) horizontally inserted into the fixed slide groove (18).
4. The linkage cutter according to claim 1, characterized in that: The center of the disc mold (1) is penetrated by the vertical power output shaft of the intermittent cam divider (5), and a fixed disk (21) with a threaded hole is fixed to the upper end of the vertical power output shaft of the intermittent cam divider (5). The center of the disc mold (1) is also provided with a fixed disk (21) with a threaded hole. The two fixed disks (21) are tightly connected and fixed together by bolts.
5. The linkage cutter according to claim 2, characterized in that: The rear side of the lifting plate (13) is slidably arranged on a slide rail (22) fixed in the L-shaped frame structure (12).
6. The linkage cutter according to claim 2, characterized in that: The outer side of the L-shaped frame structure (12) is covered with a skin (23), wherein the skin (23) on one side is provided with a discharge port (24), and the upper end of the discharge port (24) extends to directly below the cutting die (9).
7. The linkage cutter according to claim 2, characterized in that: The bottom of the L-shaped frame structure (12) supports a plurality of adjustable legs (25) and universal wheels (26).
8. The linkage cutter according to claim 2, characterized in that: The drive motor (4) and the intermittent cam divider (5) are fixed on a base plate (27) in the bottom of the L-shaped frame structure (12).
9. The linkage cutter according to claim 6, characterized in that: A PLC controller (28) with a display screen and operation buttons is provided on the skin (23) on one side of the top of the L-shaped frame structure (12). The control end of the PLC controller (28) is used to control the rotation of the drive motor (4).
10. The linkage cutter according to claim 3, characterized in that: The mold fixing seat (17) is a split type, and forms a split structure connected by bolts on both sides of the fixed slide groove (18).