High-voltage special-shaped part machining device
The high-voltage electrical irregular parts processing device, which combines a limiting plate, damping magnetic block and magnetic attraction block, solves the problems of low efficiency and improper limiting in the existing technology, realizes multi-station cutting and stable processing, and improves processing efficiency and finished product quality.
Patent Information
- Application Number
- CN202423225666.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-26
- Publication Date
- 2026-02-13
- Estimated Expiration
- 2034-12-26
AI Technical Summary
Existing laser cutting equipment is inefficient when processing irregularly shaped parts for high-voltage electrical applications, and it is difficult to effectively limit the movement, which affects the quality of the finished product.
A high-voltage electrical irregular part processing device was designed. It adopts a combination structure of limiting plate, damping magnetic block, stabilizing guide rail and magnetic block to realize multi-station simultaneous cutting. The worktable position is stabilized by clamping mechanism to improve processing efficiency and finished product quality.
It enables the simultaneous processing of multiple irregularly shaped parts, improving processing efficiency, ensuring finished product quality, and avoiding collisions and offsets of the worktable during movement.
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Figure CN223903136U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the technical field of special-shaped part processing, more specifically, the utility model relates to a special-shaped part processing device for high-voltage electricity. BACKGROUND
[0002] In the production process of high-voltage electrical equipment, a large number of special-shaped parts are required, and the performance and quality of various special-shaped parts are increasingly required by high-voltage electrical systems. These special-shaped parts usually have complex geometric shapes, such as asymmetric external contours, special curved structures, and high-precision dimensional tolerance requirements. In order to meet the needs of electrical insulation, electrical conductivity, and mechanical strength in high-voltage environments, the materials are often selected from high-strength, high-insulation special materials, such as special ceramics, high-performance composite materials, or specially treated metal alloys.
[0003] For the processing of ceramic special-shaped parts, the existing technology often uses laser cutting to cut the plate into the required shape of the special-shaped part. However, the existing laser cutting device only has one station when cutting the plate, and can only process one special-shaped part at a time, which is inefficient. In addition, it is not convenient to limit the position of the raw material during processing, which can easily affect the quality of the finished product due to the movement of the raw material during cutting. Therefore, a special-shaped part processing device for high-voltage electricity is proposed. SUMMARY
[0004] In order to overcome the above-mentioned defects of the prior art, the utility model provides a special-shaped part processing device for high-voltage electricity to solve the problems raised in the background art.
[0005] To achieve the above-mentioned purpose, the utility model provides the following technical scheme: a special-shaped part processing device for high-voltage electricity, comprising a processing device, the bottom of the processing device is fixedly connected with a processing table, the top of the processing table is symmetrically fixedly connected with a limiting plate at both ends, the position of the workbench on the top of the processing table is limited by the limiting plate, one side of the limiting plate is fixedly connected with a damping magnetic block, the top of the processing table is fixedly connected with a stable guide rail, the top of the processing table is provided with a workbench, the bottom of the workbench is provided with a stable sliding groove, the stability of the workbench movement is improved by the cooperation of the stable guide rail and the stable sliding groove, the movement position of the workbench is limited by the cooperation of the limiting plate and the damping magnetic block, the movement of the workbench is buffered and the position of the workbench is fixed by the damping magnetic block, and the use effect is improved.
[0006] The bottom of the processing equipment is provided with a plurality of laser cutting heads, the top of the laser cutting head is embedded with a magnetic block, three sides of the workbench are fixedly connected with limiting blocks, the top of the workbench is provided with a stabilizing plate, a limiting groove is formed in the surface of the stabilizing plate, a ceramic plate is arranged in the middle of the limiting groove, and a tooth groove is formed in the bottom of the workbench, so that the ceramic plate on the top of the workbench can be machined simultaneously through the cooperation of the plurality of laser cutting heads, the stabilizing plate can be adsorbed through the magnetic block, the position of the stabilizing plate can be fixed through the limiting blocks, the ceramic plate can be limited through the limiting groove, the installation mode of the ceramic plate is facilitated, and cutting use is facilitated.
[0007] The middle of the processing table is provided with a clamping mechanism, the middle of the processing table is provided with a gear corresponding to the tooth groove, and the side of the gear is provided with a motor, the rotation of the gear can be controlled by starting the motor, the workbench can be controlled to move in and out of the bottom of the processing equipment through cooperation with the tooth groove, and the feeding and discharging use is facilitated.
[0008] Preferably, the laser cutting head corresponds to the ceramic plate one by one, a buffer space is arranged between the stabilizing plate and the magnetic block, the limiting groove is matched with the ceramic plate, the ceramic plate can be laser cut by the laser cutting head, multiple simultaneous cutting can be realized, the processing efficiency is improved, the stabilizing plate is adsorbed by the magnetic block, and the stability of the stabilizing plate is improved.
[0009] Preferably, the stabilizing slide groove and the stabilizing guide rail correspond to each other one by one, the stabilizing guide rail is arranged in the middle of the stabilizing slide groove, the gear is engaged with the tooth groove, and one side of the processing equipment is provided with a control panel, the stability of the movement of the workbench is improved through the stabilizing guide rail and the stabilizing slide groove, and the control use is facilitated through the control panel.
[0010] Preferably, one side of the damping magnetic block is provided with a magnet, a damping cavity is arranged in the middle of the damping magnetic block, and the limiting block is attached to the wall of the stabilizing plate, the damping magnetic block can buffer the moving position of the workbench, avoid collision with the limiting plate, and limit the position of the workbench.
[0011] Preferably, the clamping mechanism comprises clamping plates arranged on both sides of the workbench, limiting slide grooves are symmetrically formed in the top of the processing table, the bottom of the clamping plate extends into the limiting slide groove, a double-shaft motor is arranged in the middle of the processing table, and positioning insertion grooves are symmetrically formed in the two sides of the workbench.
[0012] Preferably, the both ends of the double-shaft motor are symmetrically connected with threaded rods, one end of the threaded rods extends to the inside of a limiting sliding groove and is threadedly connected with the wall of the clamping plate, the middle part of the limiting sliding groove is fixedly connected with a stabilizing rod, the stabilizing rod penetrates the middle part of the clamping plate, one side of the clamping plate is fixedly connected with a positioning clamping block, the positioning clamping block corresponds to a positioning slot, the rotation of the double-shaft motor control screw rod can control the clamping plate to clamp the workbench, and the further improvement of the fixing stability of the workbench is realized by inserting the positioning clamping block into the inside of the positioning slot, and the stability of the movement of the clamping plate is improved through the stabilizing rod.
[0013] The technical effects and advantages of the utility model are as follows:
[0014] 1. The utility model discloses a limiting groove is positioned to ceramic plate first, can improve the stability of ceramic plate in the middle part of stabilizing plate, and the magnetic attraction piece and the limiting block are positioned to stabilizing plate, can fix ceramic plate on the top of workbench, when workbench moves to the bottom of processing equipment, through multiple laser cutting heads simultaneously process multiple ceramic plates, improve processing efficiency, thereby improve finished product quality, convenient processing uses.
[0015] 2. The utility model discloses still through setting up the position fixed of clamping mechanism to workbench, can fix the position of workbench at the bottom of laser cutting head, convenient removal uses, and through the cooperation of limiting plate and damping magnetic block, improve the stability of workbench movement, and can avoid the collision of workbench, improve use effect.
[0016] Summarizing, through the mutual influence of the above-mentioned multiple effects, multiple ceramic plates can be positioned while feeding simultaneously, multiple workpieces can be processed simultaneously, the processing efficiency is improved without affecting the finished product quality, and the processing efficiency is improved. ACCURACY OF DRAWINGS
[0017] Figure 1 It is the whole structure schematic diagram of the utility model.
[0018] Figure 2 It is the structure schematic diagram of the processing equipment of the utility model.
[0019] Figure 3 It is the bottom structure schematic diagram of the utility model workbench.
[0020] Figure 4 It is the split structure schematic diagram of the utility model workbench and stabilizing plate.
[0021] Figure 5 It is the structure schematic diagram of the utility model clamping mechanism.
[0022] The attached diagram is labeled as follows: 1. Processing equipment; 2. Processing table; 3. Limiting plate; 4. Damping magnetic block; 5. Stabilizing guide rail; 6. Worktable; 7. Stabilizing slide; 8. Laser cutting head; 9. Magnetic block; 10. Limiting stop; 11. Stabilizing plate; 12. Limiting groove; 13. Ceramic plate; 14. Gear groove; 15. Gear; 16. Motor; 17. Control panel; 18. Clamping plate; 19. Positioning clamp; 20. Limiting slide; 21. Dual-axis motor; 22. Threaded rod; 23. Stabilizing rod; 24. Positioning slot. Detailed Implementation
[0023] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.
[0024] As attached Figures 1-5 The high-voltage electrical special-shaped parts processing device shown includes a processing equipment 1. A processing table 2 is fixedly connected to the bottom of the processing equipment 1. Limiting plates 3 are symmetrically fixedly connected to both ends of the top of the processing table 2. The limiting plates 3 limit the position of the worktable 6 on the top of the processing table 2. A damping magnetic block 4 is fixedly connected to one side of the limiting plate 3. A stabilizing guide rail 5 is fixedly connected to the top of the processing table 2. The worktable 6 is set on the top of the processing table 2. A stabilizing groove 7 is opened at the bottom of the worktable 6. The stability of the movement of the worktable 6 is improved by the cooperation of the stabilizing guide rail 5 and the stabilizing groove 7. The movement position of the worktable 6 is limited by the cooperation of the limiting plates 3 and the damping magnetic block 4. The damping magnetic block 4 can buffer the movement of the worktable 6 and fix the position of the worktable 6, thereby improving the use effect.
[0025] The bottom of the processing equipment 1 is provided with a plurality of laser cutting heads 8, the top of the laser cutting head 8 is embedded with a magnetic block 9, three sides of the workbench 6 are symmetrically fixedly connected with a limiting block 10, the top of the workbench 6 is provided with a stabilizing plate 11, the surface of the stabilizing plate 11 is provided with a limiting groove 12, the middle of the limiting groove 12 is provided with a ceramic plate 13, the bottom of the workbench 6 is provided with a tooth groove 14, the middle of the processing table 2 is provided with a clamping mechanism, the middle of the processing table 2 is provided with a gear 15 corresponding to the tooth groove 14, one side of the gear 15 is provided with a motor 16, through the cooperation of the plurality of laser cutting heads 8, the ceramic plate 13 on the top of the workbench 6 can be machined at the same time, and the stabilizing plate 11 can be adsorbed through the magnetic block 9, the position of the stabilizing plate 11 can be fixed, and the position of the stabilizing plate 11 can be limited through the limiting block 10, the ceramic plate 13 can be limited through the limiting groove 12, the ceramic plate 13 is convenient to install, and the cutting is convenient to use, the motor 16 is started to control the rotation of the gear 15, the workbench 6 can be controlled to move through the cooperation with the tooth groove 14, so that the workbench 6 is conveniently controlled to enter and exit from the bottom of the processing equipment 1, and the feeding and discharging are convenient to use.
[0026] As shown in the accompanying drawings, Figures 1-4 The laser cutting head 8 corresponds to the ceramic plate 13, the stabilizing plate 11 and the magnetic block 9 are provided with a buffer space, the limiting groove 12 is matched with the ceramic plate 13, the stabilizing sliding groove 7 corresponds to the stabilizing guide rail 5, the stabilizing guide rail 5 is arranged in the middle of the stabilizing sliding groove 7, the gear 15 is engaged with the tooth groove 14, one side of the processing equipment 1 is provided with a control panel 17, one side of the damping magnetic block 4 is provided with a magnet, the middle of the damping magnetic block 4 is provided with a damping cavity, the limiting block 10 is attached to the wall of the stabilizing plate 11, the ceramic plate 13 can be laser cut through the laser cutting head 8, the processing efficiency can be improved, the stabilizing plate 11 can be adsorbed through the magnetic block 9, the stability of the stabilizing plate 11 is improved, the stability of the movement of the workbench 6 is improved through the stabilizing guide rail 5 and the stabilizing sliding groove 7, the control is convenient through the control panel 17, the movement position of the workbench 6 can be buffered through the damping magnetic block 4, the limiting plate 3 is avoided to be collided, and the position of the workbench 6 can be limited.
[0027] As shown in the accompanying drawings, Figure 1 , 2As shown in FIGS. 5, the clamping mechanism comprises clamping plates 18 arranged on both sides of the workbench 6, limit sliding grooves 20 symmetrically arranged on both sides of the top of the machining table 2, the bottom of the clamping plate 18 extends into the limit sliding groove 20, a double-shaft motor 21 is arranged in the middle of the machining table 2, positioning slots 24 are symmetrically arranged on both sides of the workbench 6, screw rods 22 are symmetrically connected to both ends of the double-shaft motor 21, one end of the screw rod 22 extends into the limit sliding groove 20 and is threadedly connected with the wall body of the clamping plate 18, a stabilizing rod 23 is fixedly connected to the middle of the limit sliding groove 20, the stabilizing rod 23 penetrates through the middle of the clamping plate 18, a positioning clamping block 19 is fixedly connected to one side of the clamping plate 18, the positioning clamping block 19 corresponds to the positioning slot 24, the double-shaft motor 21 is started to control the rotation of the screw rod 22, the clamping plate 18 can be controlled to clamp the workbench 6, the fixing stability of the workbench 6 is further improved by inserting the positioning clamping block 19 into the positioning slot 24, and the stability of the movement of the clamping plate 18 is improved through the stabilizing rod 23.
[0028] The working principle of the utility model is as follows: when in use, the stable plate 11 with the ceramic plate 13 is placed on the top of the workbench 6, the stable plate 11 is limited by the limiting block 10, and the stability of the stable plate 11 is improved by the magnetic block 9.
[0029] Then the motor 16 is started to control the rotation of the gear 15, the workbench 6 is controlled to move to the bottom of the laser cutting head 8 through cooperation with the gear groove 14, the laser cutting head 8 corresponds to the ceramic plate 13 one by one.
[0030] Then the double-shaft motor 21 is started to control the clamping and fixing of the clamping plate 18 on the position of the workbench 6, and the laser cutting head 8 is started to cut the ceramic plate 13 into the required special-shaped piece through the control panel 17.
[0031] After the machining is completed, the double-shaft motor 21 is started in reverse to control the clamping plate 18 to loosen the clamping of the workbench 6, then the motor 16 is started to control the workbench 6 to move away from the bottom of the laser cutting head 8, and the moving position of the workbench 6 is limited by the limiting plate 3 and the damping magnetic block 4, so that the blanking is facilitated.
[0032] The above only describes preferred embodiments of the utility model and is not used to limit the utility model, and any modification, equivalent replacement, improvement, etc. made within the spirit and principle of the utility model shall be included in the protection scope of the utility model.
Claims
1. A profiled piece processing device for high voltage electricity, comprising a processing device (1), characterized in that: The bottom of the processing equipment (1) is fixedly connected with a processing table (2), the top of the processing table (2) is fixedly connected with a limiting plate (3) at both ends, the limiting plate (3) is fixedly connected with a damping magnetic block (4) on one side, the top of the processing table (2) is fixedly connected with a stable guide rail (5), the top of the processing table (2) is provided with a workbench (6), and the bottom of the workbench (6) is provided with a stable sliding groove (7). The bottom of the processing equipment (1) is provided with a plurality of laser cutting heads (8), the top of the laser cutting head (8) is embedded with a magnetic block (9), the three sides of the workbench (6) are fixedly connected with a limiting block (10), the top of the workbench (6) is provided with a stable plate (11), the surface of the stable plate (11) is provided with a limiting groove (12), the middle of the limiting groove (12) is provided with a ceramic plate (13), and the bottom of the workbench (6) is provided with a tooth groove (14). The middle of the processing table (2) is provided with a clamping mechanism, the middle of the processing table (2) is provided with a gear (15) corresponding to the tooth groove (14), and the side of the gear (15) is provided with a motor (16).
2. The high voltage profile machining apparatus of claim 1, wherein: The laser cutting head (8) corresponds to the ceramic plate (13) one by one, the stable plate (11) and the magnetic block (9) are provided with a buffer space, and the limiting groove (12) is matched with the ceramic plate (13).
3. The device according to claim 1, wherein: The stable sliding groove (7) corresponds to the stable guide rail (5) one by one, the stable guide rail (5) is arranged in the middle of the stable sliding groove (7), the gear (15) is engaged with the tooth groove (14), and the side of the processing equipment (1) is provided with a control panel (17).
4. The device according to claim 1, wherein: The side of the damping magnetic block (4) is provided with a magnet, the middle of the damping magnetic block (4) is provided with a damping cavity, and the limiting block (10) is attached to the wall of the stable plate (11).
5. The device according to claim 1, wherein: The clamping mechanism comprises clamping plates (18) arranged on both sides of the workbench (6), limiting sliding grooves (20) are symmetrically formed in the top of the processing table (2), the bottom of the clamping plate (18) extends to the inside of the limiting sliding groove (20), a double-shaft motor (21) is arranged in the middle of the processing table (2), and positioning insertion grooves (24) are symmetrically formed in the two sides of the workbench (6).
6. The device according to claim 5, wherein: The two ends of the double-shaft motor (21) are symmetrically connected with threaded rods (22), one end of the threaded rod (22) extends to the inside of the limiting sliding groove (20) and penetrates the wall of the clamping plate (18) and is threadedly connected with the wall of the clamping plate (18), the middle of the limiting sliding groove (20) is fixedly connected with a stable rod (23), the stable rod (23) penetrates the middle of the clamping plate (18), one side of the clamping plate (18) is fixedly connected with a positioning clamping block (19), and the positioning clamping block (19) corresponds to the positioning insertion groove (24).