New energy material cutting device

Through the hydraulically driven limit plate and cutting knife structure, the problems of material stress and automation in the cutting device of new energy materials are solved, and efficient automated cutting and continuous material slide are achieved.

CN223265734UActive Publication Date: 2025-08-26GUANGDONG MINGJIA NEW ENERGY TECH CO LTD
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Patent Information

Application Number
CN202422357797.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-26
Publication Date
2025-08-26
Estimated Expiration
2034-09-26

AI Technical Summary

Technical Problem

Traditional cutting devices cannot eliminate material stress when cutting new energy materials and cannot achieve automation, resulting in material deformation and frequent failure of conveyor belts, affecting work efficiency.

Method used

The limiting plate and cutting knife structure driven by hydraulic devices are adopted. The cutting knife is driven to lower and fix the material through the movement of the limiting plate, eliminating stress, and automatically sliding the material through the coordination of the limiting rod and the support plate, realizing automatic cutting.

Benefits of technology

It effectively eliminates stress during material cutting, improves cutting efficiency, reduces wear of conveyor belts, and realizes automatic slippage of materials and process continuity.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a cutting device for new energy materials, which relates to the technical field of material cutting and comprises a main body, a protective shell is mounted on the outer side of the main body, a hydraulic device is mounted at the top end of the protective shell, and a first limiting plate is connected to the output end, located on the bottom surface, of the hydraulic device. A second limiting plate and a fixing plate are sequentially arranged below the first limiting plate, rotating blocks are rotationally connected between the upper end and the lower end of the second limiting plate and the first limiting plate and between the upper end and the lower end of the second limiting plate and the fixing plate, a cutting knife is rotationally connected between the protective shells, and a first sliding groove is formed in one end of the bottom face of the second limiting plate. A cutting knife is slidably connected into the first sliding groove of the second limiting plate. A material to be cut is placed on the main body, at the moment, the hydraulic device on the protective shell drives the fixing plate to descend, the cutting knife descends along with contact of the fixing plate and the material, cutting of the material is completed, at the moment, the material is fixed by the main body and the fixing plate, and stress generated during cutting is eliminated.
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Description

Technical Field

[0001] The utility model relates to the technical field of material cutting, in particular to a cutting device for new energy materials. Background Art

[0002] New energy materials refer to materials used to develop and utilize new energy technologies. They play a key role in improving energy efficiency, reducing environmental pollution and promoting sustainable development. With the increasing depletion of traditional fossil energy and its damage to the environment, the world is facing a serious energy crisis. The use of traditional energy has led to serious environmental pollution and greenhouse gas emissions, which has had a significant impact on global climate change. The progress of materials science has promoted the development of new energy materials, including nanomaterials, composite materials, smart materials, etc. Advanced manufacturing technologies, such as 3D printing and laser cutting, have provided new possibilities for the production of new energy materials.

[0003] The structure of the cutting device for new energy materials usually includes the following key parts: the cutting tool, which is the core part of the cutting machine and is determined by the type of material being cut and the required cutting accuracy; the drive system, which is responsible for providing power to rotate or move the cutting tool; and the conveyor belt, which is used to drive the movement of the material.

[0004] The current cutting devices on the market still have some defects in actual use. For example, during the cutting process, the material will be deformed due to stress, which is not conducive to the subsequent processing of the material. In addition, during the cutting process, the conveyor belt near the cutting knife is subjected to greater pressure, which causes frequent failures of the conveyor belt here and a poor service life. Therefore, most cutting machines use roller transmission near the cutting knife, but the material has no transmission force after cutting and needs to be manually collected, which greatly affects work efficiency. Therefore, a cutting device that can reduce material stress and has high work efficiency is designed. Utility Model Content

[0005] Based on this, the purpose of the present invention is to provide a cutting device for new energy materials to solve the technical problems that traditional cutting devices cannot eliminate material stress and cannot be automated.

[0006] To achieve the above-mentioned objectives, the utility model provides the following technical solutions: a cutting device for new energy materials, comprising a main body, a protective shell installed on the outside of the main body, a hydraulic device installed on the top of the protective shell, the output end of the hydraulic device located at the bottom surface is connected to a first limit plate, a second limit plate and a fixed plate are sequentially arranged below the first limit plate, and a rotating block is rotatably connected between the upper and lower ends of the second limit plate and the first limit plate and the fixed plate, a cutting knife is rotatably connected between the protective shells, a first slide groove is opened at one end of the bottom surface of the second limit plate, and a cutting knife is slidably connected in the first slide groove of the second limit plate, a rotating wheel is provided on the top surface of the main body and the bottom surface of the fixed plate, and the material of the cutting knife is cemented carbide.

[0007] By adopting the above technical solution, the material to be cut is placed on the main body. At this time, the hydraulic device on the protective shell drives the fixed plate to descend. As the fixed plate contacts the material, the relative distance between the first limit plate and the fixed plate decreases, and the relative position of the second limit plate decreases, driving the cutting knife in the first slide groove to descend, completing the cutting of the material. At this time, the material is fixed by the main body and the fixed plate, eliminating the stress generated during cutting.

[0008] The present invention is further configured as follows: the main body is rotatably connected to a support plate at one end of the cutting knife, and the second limit rod is rotatably connected to the support plate on both sides of the second limit plate close to the cutting knife, and the first limit rod is rotatably connected to the second limit rod, and a second slide groove is provided between both sides of the protective shell, and the two first limit rods are slidably connected to the corresponding second slide grooves, and a third slide groove is provided on both sides of the support plate, and the two second limit rods are slidably connected to the corresponding third slide grooves.

[0009] By adopting the above technical solution, as the second limit plate descends, the second limit plate and the rotating block between the first limit plate and the fixed plate rotate, causing the second limit plate to extend outward. At this time, the second limit plate performs an oblique movement. At this time, the second limit plate, which moves obliquely downward, drives the first limit rod to rotate along the connection point with the second slide groove, and drives the second limit rod at the other end to move upward. At this time, the second limit rod in the third slide groove drives the lower support plate to rotate upward to receive the cut material. As the cutting is completed, the hydraulic device drives the fixed plate to rise, and the second limit plate performs an oblique upward movement, and finally drives the support plate to rotate downward, so that the material slides along the surface of the support plate to the next process.

[0010] In summary, the present invention has the following beneficial effects:

[0011] The utility model places the material to be cut on the main body, and the hydraulic device on the protective shell drives the fixed plate to descend. As the fixed plate contacts the material, the cutting knife descends to complete the cutting of the material. At this time, the material is fixed by the main body and the fixed plate, eliminating the stress generated during cutting. As the second limit plate descends, the second limit rod in the third slide groove drives the lower support plate to rotate upward to receive the cut material. As the cutting is completed, the hydraulic device drives the fixed plate to rise, and the second limit plate moves obliquely upward, and finally drives the support plate to rotate downward, so that the material slides along the surface of the support plate to the next process. BRIEF DESCRIPTION OF THE DRAWINGS

[0012] Figure 1 It is a schematic diagram of the overall structure of the utility model;

[0013] Figure 2 This is a first lateral cross-sectional view of the overall structure of the utility model;

[0014] Figure 3 It is a side sectional view of the overall structure of the utility model after activation;

[0015] Figure 4 This is the second side cross-sectional view of the overall structure of the utility model.

[0016] In the figure: 1. Main body; 2. Protective shell; 3. Hydraulic device; 4. First limit plate; 5. Second limit plate; 6. Fixed plate; 7. First slide groove; 8. Second slide groove; 9. Third slide groove; 10. Cutting knife; 11. Rotating block; 12. Support plate; 13. First limit rod; 14. Second limit rod. DETAILED DESCRIPTION

[0017] 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. The embodiments described below with reference to the drawings are exemplary and are only used to explain the present invention, and cannot be understood as limiting the present invention.

[0018] The following describes an embodiment of the present invention based on its overall structure.

[0019] A cutting device for new energy materials includes a main body 1, a protective shell 2 is installed on the outside of the main body 1, a hydraulic device 3 is installed on the top of the protective shell 2, the output end of the hydraulic device 3 is connected to the first limit plate 4, and the second limit plate 5 and the fixed plate 6 are sequentially arranged below the first limit plate 4. The upper and lower ends of the second limit plate 5 are rotatably connected to the first limit plate 4 and the fixed plate 6. A rotating block 11 is rotatably connected between the protective shell 2, and a cutting knife 10 is rotatably connected between the protective shell 2. A first slide groove 7 is opened at one end of the bottom surface of the second limit plate 5, and the first slide of the second limit plate 5 is opened. A cutting knife 10 is slidably connected in the groove 7. The top surface of the main body 1 and the bottom surface of the fixed plate 6 are both provided with a rotating wheel. The material of the cutting knife 10 is cemented carbide. The material to be cut is placed on the main body 1. At this time, the hydraulic device 3 on the protective shell 2 drives the fixed plate 6 to descend. As the fixed plate 6 contacts the material, the relative distance between the first limit plate 4 and the fixed plate 6 decreases, and the relative position of the second limit plate 5 decreases, driving the cutting knife 10 in the first slide groove 7 to descend, completing the cutting of the material. At this time, the material is fixed by the main body 1 and the fixed plate 6, eliminating the stress generated during cutting.

[0020] The main body 1 is located at one end of the cutting knife 10 and is rotatably connected to the support plate 12. The second limiting plate 5 is close to the cutting knife 10 and is rotatably connected to the support plate 12 on both sides with a first limiting rod 13 and a second limiting rod 14 in sequence. The first limiting rod 13 is rotatably connected to the second limiting rod 14. A second slide groove 8 is provided between both sides of the protective shell 2. The two first limiting rods 13 are slidably connected to the corresponding second slide groove 8. A third slide groove 9 is provided on both sides of the support plate 12. The two second limiting rods 14 are slidably connected to the corresponding third slide groove 9. As the second limiting plate 5 descends, the second limiting plate 5 is in contact with the first limiting plate 4 and the fixed The rotating block 11 between the plates 6 rotates, causing the second limit plate 5 to extend outward. At this time, the second limit plate 5 moves obliquely. At this time, the second limit plate 5 that moves obliquely downward drives the first limit rod 13 to rotate along the connection point with the second slide groove 8, and drives the second limit rod 14 at the other end to move upward. At this time, the second limit rod 14 in the third slide groove 9 drives the lower support plate 12 to rotate upward to receive the cut material. As the cutting is completed, the hydraulic device 3 drives the fixed plate 6 to rise, and the second limit plate 5 moves obliquely upward, and finally drives the support plate 12 to rotate downward, so that the material slides along the surface of the support plate 12 to the next process.

[0021] Working principle: Place the material to be cut on the main body 1. At this time, the hydraulic device 3 on the protective shell 2 drives the fixed plate 6 to descend. As the fixed plate 6 contacts the material, the relative distance between the first limit plate 4 and the fixed plate 6 decreases, and the relative position of the second limit plate 5 decreases, driving the cutting knife 10 in the first chute 7 to descend, completing the cutting of the material. At this time, the material is fixed by the main body 1 and the fixed plate 6, eliminating the stress generated during cutting. As the second limit plate 5 descends, the rotating block 11 between the second limit plate 5 and the first limit plate 4 and the fixed plate 6 rotates, so that the second limit plate 5 extends outward, and the second limiting plate 5 at this time makes an oblique movement. At this time, the second limiting plate 5 moving obliquely downward drives the first limiting rod 13 to rotate along the connection point with the second chute 8, and drives the second limiting rod 14 at the other end to move upward. At this time, the second limiting rod 14 in the third chute 9 drives the lower support plate 12 to rotate upward to receive the cut material. As the cutting is completed, the hydraulic device 3 drives the fixed plate 6 to rise, and the second limiting plate 5 makes an oblique upward movement, and finally drives the support plate 12 to rotate downward, so that the material slides along the surface of the support plate 12 to the next process.

[0022] On the basis of the above structure, in this embodiment, although an embodiment of the utility model has been shown and described, this specific embodiment is only an explanation of the utility model and it is not a limitation of the utility model. The specific features, structures, materials or characteristics described can be combined in a suitable manner in any one or more embodiments or examples. After reading this specification, those skilled in the art can make modifications, replacements and variations to the embodiment without creative contribution as needed without departing from the principles and purpose of the utility model. However, as long as they are within the scope of the claims of the utility model, they are protected by patent law.

Claims

1. A cutting device for new energy materials, comprising a main body (1), characterized in that: A protective shell (2) is installed on the outside of the main body (1), and a hydraulic device (3) is installed on the top of the protective shell (2). The output end of the hydraulic device (3) located on the bottom surface is connected to a first limit plate (4), and a second limit plate (5) and a fixed plate (6) are sequentially arranged below the first limit plate (4). A rotating block (11) is rotatably connected between the upper and lower ends of the second limit plate (5) and the first limit plate (4) and the fixed plate (6). A cutting knife (10) is rotatably connected between the protective shell (2), and a first sliding groove (7) is opened at one end of the bottom surface of the second limit plate (5). The cutting knife (10) is slidably connected in the first sliding groove (7) of the second limit plate (5).

2. The cutting device for new energy materials according to claim 1, characterized in that: The top surface of the main body (1) and the bottom surface of the fixed plate (6) are both provided with rotating wheels.

3. The cutting device for new energy materials according to claim 1, characterized in that: The cutting blade (10) is made of hard alloy.

4. The cutting device for new energy materials according to claim 1, characterized in that: The main body (1) is rotatably connected to a support plate (12) at one end of the cutting blade (10).

5. The cutting device for new energy materials according to claim 4, characterized in that: A first limiting rod (13) and a second limiting rod (14) are rotatably connected between the two sides of one end of the second limiting plate (5) close to the cutting knife (10) and the support plate (12), and the first limiting rod (13) and the second limiting rod (14) are rotatably connected. A second sliding groove (8) is provided between both sides of the protective shell (2), and the two first limiting rods (13) are slidably connected to the corresponding second sliding grooves (8).

6. The cutting device for new energy materials according to claim 5, characterized in that: A third sliding groove (9) is provided on both sides of the support plate (12), and the two second limiting rods (14) are slidably connected to the corresponding third sliding groove (9).