Plate cutting machine structure
By designing a cutting board machine structure including transmission structure, clamping structure and cutting structure, the existing cutting board machine has solved the problems of high cost, high maintenance cost, low working efficiency and safety hazards, and achieved efficient and accurate cutting effect, which is suitable for small and medium-sized enterprises.
Patent Information
- Application Number
- CN202421929797.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-10
- Publication Date
- 2025-06-27
- Estimated Expiration
- 2034-08-10
AI Technical Summary
The existing cutting board machines are costly, have high maintenance costs, low working efficiency and have safety hazards, making it difficult to meet the application needs of small and medium-sized enterprises.
A cutting board machine structure including a transmission structure, a clamping structure and a cutting structure is designed. A roller set is provided in the transmission structure. The clamping structure is reciprocated through the transmission structure. The cutting structure is equipped with an upper cutting machine and a lower cutting machine. Lateral movement is achieved through the moving device, and multiple cutting points are formed to improve cutting efficiency.
It has achieved the reduction of the cost and maintenance cost of cutting board machines, improved cutting accuracy and efficiency, reduced safety hazards, and is suitable for the application needs of small and medium-sized enterprises.
Smart Images

Figure CN223028613U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the field of cutting machines, in particular to a cutting plate machine structure. Background Art
[0002] With the rapid development of the manufacturing industry, especially the continuous expansion of fields such as electronic information, automobiles, and aerospace, the demand for high-precision and high-efficiency cutting equipment is increasing continuously. As a key equipment in these fields, the market demand for cutting plate machines is also showing a growth trend. Although the cutting plate machine industry has made significant progress in technology, there are still some problems.
[0003] High cost and maintenance: The price of high-end cutting plate machines is expensive. For some small and medium-sized enterprises, the purchase and maintenance costs are relatively high, which limits their application scope. As a mechanical equipment, cutting plate machines need to be maintained regularly, especially for high-precision numerical control cutting plate machines, the maintenance costs are relatively high.
[0004] Working efficiency and potential safety hazards: During the operation of the cutting plate machine, high temperature and high-speed rotating cutting tools will be generated, there are certain potential safety hazards. Operators must have professional skills and strict safety operation procedures, and the current existing cutting machines have low efficiency. The material transmission can only perform cutting at a fixed point at a time, which greatly affects the cutting speed.
[0005] Generally speaking, the cutting plate machine faces some problems and challenges in its development. How to further improve the cutting accuracy and efficiency, reduce energy consumption and material waste, etc. are still problems that need to be solved to promote the healthy development of the cutting plate machine industry. Therefore, how to design a cutting plate machine structure with lower cost, high cutting accuracy and high cutting efficiency has become an urgent problem for those skilled in the art. Content of the Utility Model
[0006] The purpose of the utility model is to provide a cutting plate machine structure to solve the problems put forward in the above background art.
[0007] To achieve the above purpose, the utility model provides the following technical solutions:
[0008] Provide a cutting plate machine structure, including a transmission structure, a clamping structure and a cutting structure. The cutting structure is arranged in the middle of the transmission structure, the clamping structure is fixed on one side of the transmission structure. The clamping structure clamps the material and makes a reciprocating motion with the material through the transmission structure, and the cutting structure performs positioning cutting on the material;
[0009] The cutting structure is provided with at least one set of upper cutting machine and lower cutting machine. The upper cutting machine and the lower cutting machine are respectively fixed on the moving devices on the upper and lower sides. The upper cutting machine and the lower cutting machine can move horizontally on the moving devices. The cutting structure is provided with a roller group at the docking place with the transmission structure, and the material continues to move forward through the roller group after entering the cutting structure.
[0010] Further, the transmission structure includes a first conveyor belt and a second conveyor belt. The clamping structure is fixed on the second conveyor belt. The first conveyor belt and the second conveyor belt move synchronously. When the material enters the cutting structure, the clamping structure continues to drive the material to move through the second conveyor belt until the material exits from the other end of the cutting structure and is conveyed onto the first conveyor belt.
[0011] Further, the clamping structure includes an upper clamping rod, a lower clamping rod and a housing. The upper clamping rod and the lower clamping rod protrude from the surface of the housing and form a clamping position, and the clamping position is flush with the transmission surfaces of the first conveyor belt and the second conveyor belt.
[0012] Further, the cutting structure includes a lifter, a cutter and a rotating machine. The cutter is provided with a blade. The lifter controls the distance between the blades of the upper cutting machine and the lower cutting machine by moving the blade up and down, and the rotating machine drives the blade to rotate.
[0013] Further, the cutter is also provided with a positioning wheel at the bottom end, which is used to receive the material transmitted from the roller group. When the blade is not working, the bottom end of the blade is inside the roller group, and when the blade is working, the blade protrudes from the roller group to cut the material.
[0014] Further, the roller group includes an upper roller and a lower roller. A gap is left between the upper roller and the lower roller to form a roller channel, and the roller channel is flush with the clamping position of the clamping structure.
[0015] Further, the bottom end of the positioning wheel of the upper cutting machine is above the bottom end of the upper roller, and the top end of the positioning wheel of the lower cutting machine is below the top end of the lower roller, and the roller channel is within the range of the up and down movement of the blade.
[0016] Further, the cutting structure includes a frame, and the frame is of an "n" - shaped structure. The upper cutting machine, the lower cutting machine and the moving devices are all suspended on the upper cross - bar of the frame, and the transmission structure passes through the inside of the frame.
[0017] Further, there are four groups of upper cutting machines and lower cutting machines. The four groups of upper cutting machines and lower cutting machines are fixedly arranged at intervals on the corresponding moving devices. A group of corresponding upper cutting machine and lower cutting machine form a cutting point. The four cutting points are horizontally staggered front and back to perform the first - round four - point cutting on the material when the material enters the cutting structure.
[0018] Further, after the material completes the first round of cutting, the transmission device changes the transmission direction, and the upper cutting machine and the lower cutting machine move on the moving device to change the cutting points, forming the second round of cutting at four points.
[0019] Compared with the prior art, the beneficial effects of the present utility model are as follows:
[0020] The present utility model provides a cutting plate machine structure. The cutting structure is provided with at least one set of upper cutting machine and lower cutting machine. The upper cutting machine and the lower cutting machine are respectively fixed on the moving devices on the upper and lower sides. The upper cutting machine and the lower cutting machine can move horizontally on the moving device. The multiple sets of upper cutting machines and lower cutting machines are fixedly arranged at intervals on the corresponding moving devices. A set of corresponding upper cutting machine and lower cutting machine form a cutting point. Multiple cutting points are horizontally staggered in the front and back. When the material enters the cutting structure, the material is cut at multiple points in the first round. After the material completes the first round of cutting, the transmission device changes the transmission direction, and the upper cutting machine and the lower cutting machine move on the moving device to change the cutting points, forming the second round of cutting at multiple points. The repeated movement of the material and the flexible movement of the upper cutting machine and the lower cutting machine greatly improve the cutting efficiency. The present utility model has the characteristics of fast cutting efficiency and high cutting accuracy. Description of the Drawings
[0021] Figure 1 It is a three-dimensional structure diagram of the cutting plate machine structure of the present utility model;
[0022] Figure 2 It is a transmission structure diagram of the cutting plate machine structure of the present utility model;
[0023] Figure 3 It is a cutting main body structure diagram of the cutting plate machine structure of the present utility model;
[0024] Figure 4 It is an internal view of the cutting main body of the cutting plate machine structure of the present utility model;
[0025] Figure 5 It is a cutting machine structure diagram of the cutting plate machine structure of the present utility model;
[0026] Figure 6 It is an internal view of the cutting machine of the cutting plate machine structure of the present utility model;
[0027] Figure 7 It is a roller structure diagram of the cutting plate machine structure of the present utility model;
[0028] Figure 8 It is a clamping member structure diagram of the cutting plate machine structure of the present utility model;
[0029] Figure 9 It is Figure 8 The enlarged view at P in
[0030] Figure 10 This is the front view of the cutting board machine structure of the present utility model;
[0031] The markings of each component in the attached drawings are as follows: 1. Transmission structure; 11. First conveyor belt; 12. Second conveyor belt; 2. Clamping structure; 21. Housing; 22. Upper clamping rod; 23. Lower clamping rod; 24. Clamping position; 3. Cutting structure; 31. Upper cutting machine; 311. Lifting machine; 312. Rotary machine; 313. Tool; 3131. Outer frame; 3132. Blade; 3133. Positioning wheel; 32. Lower cutting machine; 33. Moving device; 34. Roller group; 341. Upper roller; 342. Lower roller; 343. Roller channel; 35. Frame. Detailed implementation manners
[0032] Next, the technical solutions in the embodiments of the present utility model will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present utility model. Obviously, the described embodiments are only a part of the embodiments of the present utility model, rather than all the embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present utility model.
[0033] Please refer to Figures 1 to 4 , a cutting board machine structure is provided, including a transmission structure 1, a clamping structure 2 and a cutting structure 3. The cutting structure 3 is arranged in the middle of the transmission structure 1. The clamping structure 2 is fixed on one side of the transmission structure 1. The clamping structure 2 clamps the material and moves back and forth with the material through the transmission structure 1. The cutting structure 3 performs positioning cutting on the material;
[0034] The cutting structure 3 is provided with at least one group of upper cutting machine 31 and lower cutting machine 32. The upper cutting machine 31 and the lower cutting machine 32 are respectively fixed on the moving devices 33 on the upper and lower sides. The upper cutting machine 31 and the lower cutting machine 32 can move horizontally on the moving device 33. The cutting structure 3 is provided with a roller group 34 at the docking position with the transmission structure 1. After the material enters the cutting structure 3, it continues to move forward through the roller group 34.
[0035] The transmission structure 1 includes a first conveyor belt 11 and a second conveyor belt 12. The clamping structure 2 is fixed on the second conveyor belt 12. The first conveyor belt 11 and the second conveyor belt 12 move synchronously. When the material enters the cutting structure 3, the clamping structure 2 continues to drive the material to move through the second conveyor belt 12 until the material exits from the other end of the cutting structure 3 and is conveyed onto the first conveyor belt 11.
[0036] Please refer to Figure 8 , Figure 9 and Figure 10, the clamping structure 2 includes an upper clamping rod 22, a lower clamping rod 23 and a housing 21. The upper clamping rod 22 and the lower clamping rod 23 protrude from the surface of the housing 21 to form a clamping position 24, and the clamping position 24 is flush with the transmission surfaces of the first conveyor belt 11 and the second conveyor belt 12. The upper clamping rod 22 is controlled by a cylinder, and the upper clamping rod 22 swings up and down under the action of the cylinder to adjust the opening and closing of the clamping position 24.
[0037] Please refer to Figure 5 and Figure 6 , the cutting structure 3 includes a lifter 311, a cutter 313 and a rotating machine 312. The cutter 313 is provided with a blade 3132. The lifter 311 controls the distance between the upper cutter 31 and the blade 3132 of the lower cutter 32 by moving the blade 3132 up and down. The rotating machine 312 drives the blade 3132 to rotate. The cutter 313 is wrapped with an outer frame 3131 outside the blade 3132, and the outer frame 3131 does not move up and down with the blade 3132. The cutter 313 is also provided with a positioning wheel 3133 at the bottom end, which is used to receive the material conveyed from the roller group 34. When the blade 3132 is not working, the bottom end of the blade 3132 is inside the roller group 34. When the blade 3132 is working, the blade 3132 protrudes from the roller group 34 to cut the material.
[0038] Please refer to Figure 7 , the roller group 34 includes an upper roller 341 and a lower roller 342. A gap is left between the upper roller 341 and the lower roller 342 to form a roller channel 343, and the roller channel 343 is flush with the clamping position 24 of the clamping structure 2. The bottom end of the positioning wheel 3133 of the upper cutter 31 is above the bottom end of the upper roller 341, and the top end of the positioning wheel 3133 of the lower cutter 32 is below the top end of the lower roller 342. The roller channel 343 is within the range of the up and down movement of the blade 3132.
[0039] The cutting structure 3 includes a frame 35, and the frame 35 is an "n"-shaped structure. The upper cutter 31, the lower cutter 32 and the moving device 33 are all suspended on the upper crossbar of the frame 35, and the transmission structure 1 passes through the inside of the frame 35.
[0040] Preferably, there are four sets of the upper cutting machine 31 and the lower cutting machine 32. The four sets of the upper cutting machine 31 and the lower cutting machine 32 are fixedly arranged at intervals on the corresponding moving device 33. A corresponding set of the upper cutting machine 31 and the lower cutting machine 32 forms a cutting point. The four cutting points are arranged in a staggered manner horizontally before and after. When the material enters the cutting structure 3, the material is cut at four points in the first round. After the material completes the first-round cutting, the transmission device changes the transmission direction. The upper cutting machine 31 and the lower cutting machine 32 move on the moving device 33 to change the cutting points, forming a second-round cutting at four points. The material moves back and forth through the transmission structure 1. By relying on the change of the cutting points by the upper cutting machine 31 and the lower cutting machine 32, the cutting speed can be doubled.
[0041] The utility model provides a cutting plate machine structure. The cutting structure 3 is provided with at least one set of the upper cutting machine 31 and the lower cutting machine 32. The upper cutting machine 31 and the lower cutting machine 32 are respectively fixed on the moving devices 33 on the upper and lower sides. The upper cutting machine 31 and the lower cutting machine 32 can move horizontally on the moving device 33. The multiple sets of the upper cutting machine 31 and the lower cutting machine 32 are fixedly arranged at intervals on the corresponding moving devices 33. A corresponding set of the upper cutting machine 31 and the lower cutting machine 32 forms a cutting point. The multiple cutting points are arranged in a staggered manner horizontally before and after. When the material enters the cutting structure 3, the material is cut at multiple points in the first round. After the material completes the first-round cutting, the transmission device changes the transmission direction. The upper cutting machine 31 and the lower cutting machine 32 move on the moving device 33 to change the cutting points, forming a second-round cutting at multiple points. The repeated movement of the material and the flexible movement of the upper cutting machine 31 and the lower cutting machine 32 greatly improve the cutting efficiency. The utility model has the characteristics of fast cutting efficiency and high cutting accuracy.
[0042] The above is only a preferred specific embodiment of the utility model, but the protection scope of the utility model is not limited thereto. Any person skilled in the art within the technical scope disclosed by the utility model, according to the technical solution of the utility model and its inventive concept, makes an equivalent replacement or change, and should be covered by the protection scope of the utility model.
Claims
1. A cutting plate machine structure, comprising a transmission structure (1), a clamping structure (2) and a cutting structure (3), characterized in that: The cutting structure (3) is arranged in the middle of the transmission structure (1), the clamping structure (2) is fixed on one side of the transmission structure (1), the clamping structure (2) clamps the material and performs reciprocating motion with the material through the transmission structure (1), and the cutting structure (3) performs positioning and cutting on the material; The cutting structure (3) is provided with at least one set of an upper cutting machine (31) and a lower cutting machine (32). The upper cutting machine (31) and the lower cutting machine (32) are respectively fixed on the moving devices (33) on the upper and lower sides. The upper cutting machine (31) and the lower cutting machine (32) can move horizontally on the moving devices (33). The cutting structure (3) is provided with a roller group (34) at the joint with the transmission structure (1). After entering the cutting structure (3), the material continues to move forward through the roller group (34).
2. The cutting board machine structure according to claim 1, characterized in that: The transmission structure (1) comprises a first transmission belt (11) and a second transmission belt (12); the clamping structure (2) is fixed on the second transmission belt (12); the first transmission belt (11) and the second transmission belt (12) move synchronously; when the material enters the cutting structure (3), the clamping structure (2) continues to drive the material to move through the second transmission belt (12) until the material is discharged from the other end of the cutting structure (3) and transported to the first transmission belt (11).
3. The cutting board machine structure according to claim 1, characterized in that: The clamping structure (2) comprises an upper clamping rod (22), a lower clamping rod (23) and a shell (21); the upper clamping rod (22) and the lower clamping rod (23) protrude from the surface of the shell (21) and form a clamping position (24); the clamping position (24) is flush with the transmission surfaces of the first conveyor belt (11) and the second conveyor belt (12).
4. The cutting board machine structure according to claim 3, characterized in that: The cutting structure (3) comprises a lifting machine (311), a cutter (313) and a rotating machine (312); the cutter (313) is provided with a blade (3132); the lifting machine (311) moves the blade (3132) up and down to control the distance between the blades (3132) of the upper cutting machine (31) and the lower cutting machine (32); and the rotating machine (312) drives the blade (3132) to rotate.
5. The cutting board machine structure according to claim 4, characterized in that: The cutter (313) is further provided with a positioning wheel (3133) at the bottom end for receiving the material transmitted from the roller group (34); when the blade (3132) is not in operation, the bottom end of the blade (3132) is located inside the roller group (34); when the blade (3132) is in operation, the blade (3132) protrudes from the roller group (34) to cut the material.
6. The cutting board machine structure according to claim 5, characterized in that: The roller group (34) comprises an upper roller (341) and a lower roller (342); a gap is left between the upper roller (341) and the lower roller (342) to form a roller channel (343); and the roller channel (343) is flush with the clamping position (24) of the clamping structure (2).
7. The cutting board machine structure according to claim 6, characterized in that: The bottom end of the positioning wheel (3133) of the upper cutting machine (31) is above the bottom end of the upper roller (341), the top end of the positioning wheel (3133) of the lower cutting machine (32) is below the top end of the lower roller (342), and the roller channel (343) is within the range of the up and down movement of the blade (3132).
8. The cutting board machine structure according to claim 1, characterized in that: The cutting structure (3) comprises a frame (35), the frame (35) is an "n"-shaped structure, the upper cutting machine (31), the lower cutting machine (32) and the moving device (33) are all suspended on the upper crossbar of the frame (35), and the transmission structure (1) passes through the inside of the frame (35).
9. The cutting board machine structure according to claim 8, characterized in that: The upper cutting machine (31) and the lower cutting machine (32) are four groups, and the four groups of upper cutting machines (31) and lower cutting machines (32) are fixed on the corresponding moving devices (33) at intervals. One group of corresponding upper cutting machines (31) and lower cutting machines (32) forms a cutting point, and the four cutting points are staggered in front and back transverse arrangement. When the material enters the cutting structure (3), the material is cut at the four points in the first round.
10. The cutting board machine structure according to claim 9, characterized in that: After the first round of cutting of the material is completed, the conveying device changes the conveying direction, and the upper cutting machine (31) and the lower cutting machine (32) move on the moving device (33) to change the cutting point, thereby forming a second round of cutting at four points.