A cutting device for switchgear processing

CN122583777APending Publication Date: 2026-08-18扬州耐思电气有限公司
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Patent Information

Application Number
CN202610980577.6
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2026-07-02
Publication Date
2026-08-18

AI Technical Summary

Technical Problem

[0004]但是该专利在切割时,废料与母材之间出现过烧,会导致废料无法正常下料,影响对废料的收集

Benefits of technology

本发明一种配电柜加工用切割装置,通过两组转轮的轴线相互垂直,使得激光切割头横向移动时,一组转轮转动实现对废料的辅助下料,激光切割头横向移动时,另一组转动转动对废料进行辅助下料,实用效果好,并且滑块在固定轴上滑动时,滑块同步在导槽二中滑动,喷头仅发生位置的改变,但是当滑块滑入导槽一、导槽三中时,受到导槽一与导槽三的导向,滑块会在固定轴表面发生转动,使喷头角度进行调节,通过控制电动伸缩杆带动滑块在固定轴表面移动,即可控制喷头喷射的位置,保证对切割位置的精确控制。

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Abstract

The application relates to the technical field of power distribution cabinet processing, in particular to a cutting device for power distribution cabinet processing, which comprises a machine table, a plate material, a workbench installed on the machine table, a moving module installed on the workbench, a cutting assembly installed on the moving module and a fixing piece for fixing the plate material. In the application, the axes of the two groups of rotating wheels are perpendicular to each other, so that when the laser cutting head moves horizontally, one group of rotating wheels rotates to realize auxiliary discharging of the waste material, and when the laser cutting head moves horizontally, the other group of rotating wheels rotates to realize auxiliary discharging of the waste material, the practical effect is good, and when the sliding block slides on the fixing shaft, the sliding block synchronously slides in guide groove two, the nozzle only changes the position, but when the sliding block slides into guide groove one and guide groove three, the sliding block rotates on the surface of the fixing shaft under the guidance of guide groove one and guide groove three, so that the angle of the nozzle is adjusted.
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Description

Technical Field

[0001] This invention relates to the field of power distribution cabinet processing technology, and more specifically to a cutting device for power distribution cabinet processing. Background Technology

[0002] Currently, power distribution cabinets are typically manufactured by feeding a whole sheet of metal into a laser cutting machine for cutting. After cutting, the sheet is bent and welded to complete the overall processing of the power distribution cabinet. During the cutting stage, laser cutting equipment is often used to create round and square holes for installing components such as circuit breakers and instrument panels. During cutting, the laser head needs to first drill a hole on the surface of the metal sheet as the starting point, i.e., the "puncture point". At this time, the laser will concentrate extremely high energy in a short period of time, causing the temperature around the puncture point to rise sharply. The material melts or even vaporizes, causing the sheet to "overheat" and resulting in a connection between the scrap and the base material, making it impossible to cut.

[0003] Patent application CN202311442991.4 relates to the field of laser cutting technology, and more particularly to a laser cutting device for processing power distribution cabinets. The device includes a base, a support frame on the upper surface of the base, and a rotatable rocker arm rotatably mounted between the support frames. An arc-shaped groove is also formed on the upper surface of the base, and the rocker arm is movably mounted within the groove. A support plate is provided on the upper surface of the rocker arm, and a vertical plate is provided on the top outer wall of the support plate. A mounting plate is provided at the top of the vertical plate, and an installation opening is formed on the outer wall of the support plate, in which a turntable is rotatably mounted. This application allows cutting waste generated during cutting to fall directly and be collected by a waste discharge mechanism, making it very convenient to use. Furthermore, when different sides of the power distribution cabinet need to be cut, the turntable only needs to be rotated again by a drive component, aligning the other sides of the power distribution cabinet with the cutting mechanism without the need for manual adjustment of the cabinet, resulting in higher cutting efficiency and better performance.

[0004] However, during the cutting process, the waste material and the parent material overheat, which can prevent the waste material from being discharged properly and affect the collection of the waste material.

[0005] Therefore, it is necessary to provide a new technical solution to overcome the above-mentioned defects. Summary of the Invention

[0006] The purpose of this invention is to provide a cutting device for processing power distribution cabinets that can effectively solve the above-mentioned technical problems.

[0007] To achieve the objectives of this invention, the following technical solution is adopted: A cutting device for processing power distribution cabinets includes: a machine base, a sheet metal; a worktable mounted on the machine base; a movable module mounted on the worktable; a cutting assembly mounted on the movable module; and a fixing component for securing the sheet metal. The mobile module includes: a slide rail one fixedly installed on the machine base; a slide block one slidably connected to the slide rail one; a slide rail two fixedly installed on the slide block one; and a slide block two slidably installed on the slide rail two. The cutting assembly includes: a laser cutting head, a fixing frame one, and a fixing frame two, all fixedly mounted on the slide block two. A fixed shaft is rotatably mounted on the fixed frame; a slider is slidably mounted on the fixed shaft; a nozzle is fixedly mounted on the slider; a pressure plate is fixedly mounted on the slider; and a limiting groove is formed on the fixed frame. A rotating shaft is slidably mounted on the second fixed frame; a rotating wheel is rotatably mounted on the rotating shaft; a top block is fixedly mounted on the rotating wheel; a limit groove is formed on the second fixed frame; a fixed frame is slidably mounted on the limit groove; and the fixed frame is fixedly connected to the rotating shaft.

[0008] Furthermore, the slider is provided with a sliding groove; an electric telescopic rod is slidably installed on the sliding groove; the electric telescopic rod is fixedly installed on the fixed frame.

[0009] Furthermore, the pressure plate passes through the fixing frame through the limiting groove; a clamping plate is fixedly installed on the pressure plate; and guide grooves one, two, and three are sequentially opened on the fixing shaft.

[0010] Furthermore, a spring three is fixedly installed on the fixing frame; the spring three is fixedly installed on the fixing frame two; and a connector is fixedly installed on the fixing frame.

[0011] Furthermore, a vertical pole is fixedly installed on the workbench; a striking frame is slidably installed on the workbench; a cylinder is fixedly installed on the striking frame; and the cylinder is fixedly installed on the machine base.

[0012] Furthermore, a fixed rod is slidably mounted on the striking frame; a sliding plate is fixedly mounted on the fixed rod; a telescopic component one is mounted on the striking frame; a telescopic component two is mounted on the sliding plate; a fixed sleeve is mounted on the telescopic component two; a spring two is fixedly mounted on the fixed sleeve; and a top head is fixedly mounted on the spring two.

[0013] Furthermore, the fixing rod is fixedly installed on the machine base; the sliding plate is slidably connected to the striking frame.

[0014] Furthermore, the telescopic component one is connected to air pipe one and air pipe two; air pipe one is connected to telescopic component two; and air pipe two is connected to the fixed sleeve.

[0015] Furthermore, the telescopic component consists of: a sliding sleeve fixedly mounted on the striking frame; a piston slidably mounted on the sliding sleeve; and a sliding rod fixedly mounted on the piston.

[0016] Furthermore, a connecting sleeve is fixedly installed on the fixed sleeve; a connecting shaft is rotatably installed on the connecting sleeve; a spring is fixedly installed on the connecting shaft; the spring is fixedly installed on the connecting sleeve; a connecting plate is fixedly installed on the connecting shaft; a fixing plate is fixedly installed on the connecting plate; a cleaning component is fixedly installed on the fixing plate; and a cleaning surface is provided on the fixed sleeve.

[0017] Compared with the prior art, the present invention has the following beneficial effects: This invention discloses a cutting device for processing electrical distribution cabinets. Two sets of rotating wheels have their axes perpendicular to each other. When the laser cutting head moves laterally, one set of wheels rotates to assist in unloading waste material, while the other set rotates to further assist in unloading. This design offers good practicality. Furthermore, when the slider slides on the fixed shaft, it simultaneously slides in guide groove two, causing only a change in the nozzle's position. However, when the slider slides into guide groove one and guide groove three, it is guided by these grooves, causing the slider to rotate on the surface of the fixed shaft, thus adjusting the nozzle angle. By controlling the electric telescopic rod to move the slider on the fixed shaft surface, the nozzle's spray position can be controlled, ensuring precise control of the cutting position. Attached Figure Description

[0018] The accompanying drawings are provided to further illustrate the invention and form part of the specification. They are used together with the embodiments of the invention to explain the invention and do not constitute a limitation thereof.

[0019] Figure 1 This is a schematic diagram of a cutting device for processing power distribution cabinets according to the present invention; Figure 2 This is a schematic diagram of the moving module of a cutting device for processing power distribution cabinets according to the present invention; Figure 3 This is a schematic diagram of the cutting component of a cutting device for processing power distribution cabinets according to the present invention; Figure 4 This is a schematic diagram of the fixing frame of a cutting device for processing power distribution cabinets according to the present invention; Figure 5 This is a schematic diagram of the fixed shaft of a cutting device for processing power distribution cabinets according to the present invention; Figure 6 This is a schematic diagram of the clamping plate of a cutting device for processing power distribution cabinets according to the present invention; Figure 7 This is a schematic diagram of the workbench of a cutting device for processing power distribution cabinets according to the present invention; Figure 8 This is a schematic diagram of the striking frame of a cutting device for processing power distribution cabinets according to the present invention; Figure 9 This is a schematic diagram of the fixing rod of a cutting device for processing power distribution cabinets according to the present invention; Figure 10 This is a schematic diagram of the cleaning component of a cutting device for processing power distribution cabinets according to the present invention; Figure 11 This invention relates to a cutting device for processing electrical distribution cabinets. Figure 10 Enlarged view of point A in the middle; Figure 12 This is a schematic diagram of the telescopic component of a cutting device for processing power distribution cabinets according to the present invention.

[0020] In the diagram: 1. Machine base; 2. Workbench; 21. Upright pole; 22. Cylinder; 23. Striking frame; 231. Fixed rod; 232. Telescopic component one; 2321. Air pipe one; 2322. Air pipe two; 2323. Sliding sleeve; 2324. Piston; 2325. Sliding rod; 233. Slide plate; 234. Telescopic component two; 235. Fixed sleeve; 2351. Connecting sleeve; 2352. Connecting shaft; 2353. Spring one; 236. Spring two; 237. Top head; 238. Fixed plate; 2381. Cleaning component; 3282. Connecting plate; 239. Cleaning surface; 3. Moving module; 31. Slide rail one; 3 2. Slide 1; 33. Slide rail 2; 34. Slide 2; 4. Cutting assembly; 41. Laser cutting head; 42. Fixing frame 1; 421. Fixing shaft; 4211. Guide groove 1; 4212. Guide groove 2; 4213. Guide groove 3; 422. Slider; 423. Nozzle; 424. Slide groove; 425. Electric telescopic rod; 426. Pressure plate; 4261. Clamping plate; 427. Limiting groove 1; 43. Fixing frame 2; 431. Rotating shaft; 432. Limiting groove 2; 433. Fixing frame; 4331. Connector; 434. Spring 3; 435. Rotating wheel; 436. Top block; 5. Fixing component; 6. Sheet material. Detailed Implementation

[0021] To make the objectives, technical solutions, and advantages of the embodiments of the present invention clearer, the technical solutions in the embodiments of the present invention will be clearly and completely described below. Obviously, the described embodiments are some embodiments of the present invention, but not all embodiments.

[0022] In the description of this invention, it should be understood that the terms "center," "lateral," "longitudinal," "front," "rear," "left," "right," "upper," "lower," "vertical," "horizontal," "top," "bottom," "inner," and "outer," etc., indicating orientation or positional relationships based on the orientation or positional relationships shown in the accompanying drawings, are only for the convenience of describing the invention and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation, and therefore should not be construed as a limitation on the scope of protection of this invention. When a component is referred to as being "fixed to" another component, it can be directly on the other component or there may be an intermediate component. When a component is considered to be "connected" to another component, it can be directly connected to the other component or there may be an intermediate component at the same time. When a component is considered to be "set on" another component, it can be directly set on the other component or there may be an intermediate component at the same time. The terms "vertical," "horizontal," "left," "right," and similar expressions used herein are for illustrative purposes only.

[0023] like Figures 1 to 12 As shown, the present invention discloses a cutting device for processing power distribution cabinets, comprising: a machine base 1, a sheet metal 6; a workbench 2 mounted on the machine base 1; a moving module 3 mounted on the workbench 2; a cutting assembly 4 mounted on the moving module 3; and a fixing member 5 for fixing the sheet metal 6. The sheet metal 6 is placed on the workbench 2 and fixed by the fixing member 5. Then, the moving module 3 drives the cutting assembly 4 to cut the sheet metal 6. During the cutting process, the sheet metal 6 at the cutting part is squeezed so that the waste material on the bonded sheet metal 6 can be detached to avoid affecting the cutting of the sheet metal 6. The detached waste material falls from the workbench 2 and is collected to avoid the waste material on the workbench 2 causing processing hazards. The fixing member 5 is a clamp for fixing the sheet metal 6.

[0024] The mobile module 3 includes: a slide rail 31 fixedly installed on the machine base 1; a slide block 32 slidably connected to the slide rail 31; a slide rail 33 fixedly installed on the slide block 32; and a slide block 34 slidably installed on the slide rail 33. The slide rail 31 and the slide rail are staggered. The slide rail 31 and the slide block 32 drive the slide rail 33 and the slide block 34 to move. Then, the slide block 34 drives the cutting component 4 to move along the slide rail 33. This enables two-dimensional planar movement control of the cutting component 4, thereby completing the precise feeding of any straight or curved cutting path of the sheet material 6.

[0025] The cutting assembly 4 includes: a laser cutting head 41, a first fixing frame 42, and a second fixing frame 43, all fixedly mounted on the second slide 34. When the second slide 34 moves, it drives the laser cutting head 41 to move synchronously with the first fixing frame 42 and the second fixing frame 43 to cut the sheet metal 6. The first fixing frame 42 is equipped with a nozzle 423. When the laser cutting head 41 cuts the sheet metal 6, the first fixing frame 42 moves synchronously, causing the nozzle 423 to blow air onto the cutting position on the sheet metal 6 in a timely manner to remove the cutting slag and assist in cooling, thereby ensuring the smoothness of the cutting surface and the quality of the cut. The second fixing frame 43 is equipped with a rotating wheel 435. When the laser cutting head 41 cuts the sheet metal 6, the rotating wheel 435 squeezes the sheet metal 6, causing the waste material to fall off under pressure after cutting, preventing it from connecting to the sheet metal 6 due to overheating and causing processing hazards.

[0026] Specifically, a fixed shaft 421 is rotatably mounted on the fixed frame 42; a slider 422 is slidably mounted on the fixed shaft 421; and a nozzle 423 is fixedly mounted on the slider 422. The nozzle 423 slides on the fixed shaft 421 via the slider 422 to achieve position adjustment. By adjusting the position of the nozzle 423, the cutting position can be effectively cooled.

[0027] It should be added that the slider 422 is provided with a groove 424; an electric telescopic rod 425 is slidably installed on the groove 424; the electric telescopic rod 425 is fixedly installed on the fixed frame 42, and the slider 422 is driven to slide on the fixed shaft 421 by the electric telescopic rod 425 to realize the adjustment of the position of the nozzle 423.

[0028] In addition, a rotating shaft 431 is slidably mounted on the second fixed frame 43; a rotating wheel 435 is rotatably mounted on the rotating shaft 431; a top block 436 is fixedly mounted on the rotating wheel 435; a limiting groove 432 is provided on the second fixed frame 43; a fixed frame 433 is slidably mounted on the limiting groove 432; the fixed frame 433 is fixedly connected to the rotating shaft 431; two sets of rotating wheels 435 are provided, and the axes of the two sets of rotating wheels 435 are perpendicular to each other, so that when the laser cutting head 41 moves laterally, one set of rotating wheels 435 rotates to assist in unloading the waste material, and when the laser cutting head 41 moves laterally, the other set rotates to assist in unloading the waste material. The practical effect is good. The sliding connection structure between the rotating shaft 431 and the second fixed frame 43 can refer to the sliding connection between the fixed frame 433 and the second fixed frame 43 through the limiting groove 432.

[0029] In detail, the cutting assembly 4 also includes: a pressure plate 426 fixedly installed on the slider 422; a limiting groove 427 formed on the fixed frame 42; the pressure plate 426 passes through the fixed frame 42 through the limiting groove 427; a clamping plate 4261 is fixedly installed on the pressure plate 426; and guide grooves 4211, 4212, and 4213 are sequentially formed on the fixed shaft 421.

[0030] When slider 422 slides on fixed shaft 421, it simultaneously slides in guide groove 2 4212. Guide groove 2 4212 is a straight groove, while guide groove 1 4211 and guide groove 3 4213 are spiral grooves. When slider 422 slides in guide groove 2 4212, nozzle 423 only changes position. However, when slider 422 slides into guide groove 1 4211 and guide groove 3 4213, guided by guide groove 1 4211 and guide groove 3 4213, slider 422 will rotate on the surface of fixed shaft 421, thereby adjusting the angle of nozzle 423. Figure 5 The guide groove 4211 rotates downwards, while the guide groove 4213 rotates upwards. This allows the laser cutting head 41 to control the position of the nozzle 423 by controlling the electric telescopic rod 425 to move the slider 422 on the surface of the fixed shaft 421 during cutting, thus ensuring precise control of the cutting position. Furthermore, when the electric telescopic rod 425 moves the slider 422, one end of the electric telescopic rod 425 slides within the groove 424 to avoid interference.

[0031] It should be noted that when the slider 422 rotates, it drives the pressure plate 426 to rotate synchronously, so that the pressure plate 426 passes through the first limiting groove 427 and passes through the first fixed frame 42 (the first limiting groove 427 does not limit the pressure plate 426; when the pressure plate 426 rotates under the action of the slider 422, the pressure plate 426 rotates in the first limiting groove 427). If the slider 422 rotates at the third displacement guide groove 4213, the pressure plate 426 rotates synchronously, presses down the fixed frame 433, and drives the rotating shaft 431 and the rotating wheel 435 to slide on the second fixed frame 43, so that the corresponding rotating wheel 435 moves down and contacts the sheet 6, and squeezes the sheet 6 through the top block 436 on the rotating wheel 435, so that the waste on the sheet 6 is forced off and avoids sticking to the sheet 6 and causing processing hazards.

[0032] As a supplement to the above, a spring 434 is fixedly installed on the fixing frame 433; the spring 434 is fixedly installed on the fixing frame 43; a connector 4331 is fixedly installed on the fixing frame 433; the clamping plate 4261 is inclined; when the fixing frame 433 moves, it drives the spring 434 to move synchronously. After the spring 434 deforms, it can assist the fixing frame 433 to reset. When the slider 422 is at the guide groove 4211, the slider 422 drives the clamping plate 4261 to move, so that the clamping plate 4261 presses the connector 4331, causing the connector 4331 to move down, so that the corresponding rotating wheel 435 moves down and contacts the plate 6.

[0033] It should be noted that the difference between the two sets of fixing brackets 433 is that one set of fixing brackets 433 has a connector 4331, while the other set does not have a connector 4331. When the pressure plate 426 is pressed down, it directly presses the fixing bracket 433 to move down. When the pressure plate 426 moves up, the other set of fixing brackets 433 is driven to move down by the axial movement of the slider 422 and the pressure plate 426 and the tilting setting of the clamping plate 4261.

[0034] In addition, uprights 21 are fixedly installed on the workbench 2, and multiple sets of uprights 21 are arranged in parallel to form a support surface for the sheet metal 6; a striking frame 23 is slidably installed on the workbench 2; a cylinder 22 is fixedly installed on the striking frame 23; the cylinder 22 is fixedly installed on the machine base 1, and the striking frame 23 is driven to move upward by the cylinder 22. The striking frame 23 passes through the gap between the uprights 21 and, with the cooperation of the fixing parts 5, lifts the sheet metal 6 or strikes the sheet metal 6 to make the waste material on the sheet metal 6 fall off. It can also impact the waste material stuck on the uprights 21 to make the waste material fall off.

[0035] A fixed rod 231 is slidably mounted on the striking frame 23; a slide plate 233 is fixedly mounted on the fixed rod 231; the fixed rod 231 is fixedly mounted on the machine base 1; the slide plate 233 is slidably connected to the striking frame 23, and the cylinder 22 drives the striking frame 23 to move, at which time the fixed rod 231 keeps the slide plate 233 stationary; a first telescopic component 232 is mounted on the striking frame 23; a second telescopic component 234 is mounted on the slide plate 233; and a second telescopic component 233 is mounted on the second telescopic component 23. 4. A fixed sleeve 235 is attached to the fixed sleeve 235; a second spring 236 is fixedly installed on the fixed sleeve 235; a top head 237 is fixedly installed on the second spring 236. When the top head 237 moves, the second spring 236 deforms synchronously. The deformed second spring 236 is used to assist the top head 237 in resetting; an air pipe 2321 and an air pipe 2322 are connected to the telescopic component 232; the first air pipe 2321 is connected to the telescopic component 234; the second air pipe 2322 is connected to the fixed sleeve 235.

[0036] When the striking frame 23 moves, it compresses the first telescopic component 232, causing the gas inside the first telescopic component 232 to be discharged through the first air pipe 2321 to the second telescopic component 234, causing the second telescopic component 234 to extend. At this time, the second telescopic component 234 drives the fixed sleeve 235 to move upward, striking the sheet 6 and assisting the waste material on the sheet 6 to fall off. After the second telescopic component 234 is fully extended, the striking frame 23 continues to compress the first telescopic component 232, causing the gas to enter the fixed sleeve 235 through the second air pipe 2322, which drives the top head 237 to move. The top head 237 extends again to strike the sheet, assisting the waste material to fall off.

[0037] Specifically, the telescopic component 232 consists of: a sliding sleeve 2323 fixedly installed on the striking frame 23; a piston 2324 slidably installed on the sliding sleeve 2323, the sliding sleeve 2323 being connected to the first air pipe 2321, and the second air pipe 2322 also being connected to the sliding sleeve 2323; and a sliding rod 2325 fixedly installed on the piston 2324. The telescopic component 232 and the telescopic component 234 have the same structure. Gas enters the telescopic component 234 through the first air pipe 2321, causing the telescopic component 234 to extend, thereby lifting the fixed sleeve 235. When the striking frame 23 moves, it drives the sliding sleeve 2323 to move upward, so that the gas in the sliding sleeve 2323 is compressed and enters the interior of the first air pipe 2321 and the second air pipe 2322.

[0038] To supplement the above, a connecting sleeve 2351 is fixedly installed on the fixed sleeve 235; a connecting shaft 2352 is rotatably installed on the connecting sleeve 2351; a spring 2353 is fixedly installed on the connecting shaft 2352; the spring 2353 is fixedly installed on the connecting sleeve 2351; a connecting plate 3282 is fixedly installed on the connecting shaft 2352; a fixing plate 238 is fixedly installed on the connecting plate 3282; a cleaning component 2381 is fixedly installed on the fixing plate 238; the fixed sleeve 235 has a cleaning surface composed of multiple cleaning bristles. When the fixed sleeve 235 moves upward and moves out of the striking frame 23, the spring 2353 resets, causing the connecting shaft 2352 to rotate, which in turn causes the connecting plate 3282 and the fixing plate 238 to rotate, causing the cleaning component 2381 on the fixing plate 238 to rotate. 381 unfolds and contacts the surface of the upright 21. As the fixing sleeve 235 moves, the cleaning component 2381 cleans the surface of the upright 21, preventing burrs on the surface of the upright 21 from causing the sheet metal 6 to protrude on the upright 21. If the cut waste is affected by the protrusion, it will cause the waste to lift up and collide with the laser cutting head 41, affecting the cutting of the sheet metal 6. At this time, the molten slag generated when the laser cutting head 41 cuts the sheet metal 6 will splash onto the cleaning component 2381 for collection. When the fixing sleeve 235 retracts, the cleaning surface 239 limits the cleaning component 2381, causing the cleaning component 2381 to drive the fixing plate 238 to rotate through the connecting plate 3282 and enter the interior of the striking frame 23. When it moves down inside the striking frame 23, the cleaning surface 239 cleans the cleaning component 2381 through friction, making it easier for subsequent use.

[0039] All standard parts used in this invention can be purchased from the market, and irregular parts can be customized according to the description and drawings. The specific connection methods of each part adopt conventional methods such as bolts, rivets, and welding that are mature in the prior art. The machinery, parts and equipment adopt conventional models in the prior art, and the circuit connection adopts conventional connection methods in the prior art, which will not be described in detail here. The contents not described in detail in this specification belong to the prior art known to those skilled in the art.

[0040] It should be understood that those skilled in the art can make improvements or modifications based on the above description, and all such improvements and modifications should fall within the protection scope of the appended claims.

Claims

1. A cutting device for processing electrical distribution cabinets, characterized in that, include: Machine base, sheet metal; workbench mounted on the machine base; A mobile module mounted on the workbench; A cutting assembly mounted on the mobile module; Fasteners for securing the sheet metal; The mobile module includes: a slide rail one fixedly installed on the machine base; a slide block one slidably connected to the slide rail one; a slide rail two fixedly installed on the slide block one; and a slide block two slidably installed on the slide rail two. The cutting assembly includes: a laser cutting head, a fixing frame one, and a fixing frame two, all fixedly mounted on the slide block two. A fixed shaft is rotatably mounted on the fixed frame; a slider is slidably mounted on the fixed shaft; a nozzle is fixedly mounted on the slider; a pressure plate is fixedly mounted on the slider; and a limiting groove is formed on the fixed frame. A rotating shaft is slidably mounted on the second fixed frame; a rotating wheel is rotatably mounted on the rotating shaft; a top block is fixedly mounted on the rotating wheel; a limit groove is formed on the second fixed frame; a fixed frame is slidably mounted on the limit groove; and the fixed frame is fixedly connected to the rotating shaft.

2. The cutting device for processing power distribution cabinets as described in claim 1, characterized in that, The slider has a groove; an electric telescopic rod is slidably mounted on the groove; the electric telescopic rod is fixedly mounted on the fixed frame.

3. The cutting device for processing power distribution cabinets as described in claim 1, characterized in that, The pressure plate passes through the fixed frame through the limiting groove; a clamping plate is fixedly installed on the pressure plate; guide grooves one, two, and three are sequentially opened on the fixed shaft.

4. The cutting device for processing power distribution cabinets as described in claim 1, characterized in that, A spring three is fixedly installed on the fixing frame; the spring three is fixedly installed on the fixing frame two; a connector is fixedly installed on the fixing frame.

5. The cutting device for processing power distribution cabinets as described in claim 1, characterized in that, A vertical pole is fixedly installed on the workbench; a striking frame is slidably installed on the workbench; a cylinder is fixedly installed on the striking frame; and the cylinder is fixedly installed on the machine base.

6. The cutting device for processing power distribution cabinets as described in claim 5, characterized in that, A fixed rod is slidably mounted on the striking frame; a sliding plate is fixedly mounted on the fixed rod; a telescopic component one is mounted on the striking frame; a telescopic component two is mounted on the sliding plate; a fixed sleeve is mounted on the telescopic component two; a spring two is fixedly mounted on the fixed sleeve; and a top head is fixedly mounted on the spring two.

7. The cutting device for processing power distribution cabinets as described in claim 6, characterized in that, The fixing rod is fixedly installed on the machine base; the sliding plate is slidably connected to the striking frame.

8. The cutting device for processing power distribution cabinets as described in claim 6, characterized in that, The telescopic component 1 is connected to air pipe 1 and air pipe 2; air pipe 1 is connected to telescopic component 2; air pipe 2 is connected to fixed sleeve.

9. The cutting device for processing power distribution cabinets as described in claim 6, characterized in that, The telescopic component consists of: a sliding sleeve fixedly mounted on the striking frame; a piston slidably mounted on the sliding sleeve; and a sliding rod fixedly mounted on the piston.

10. The cutting device for processing power distribution cabinets as described in claim 6, characterized in that, A connecting sleeve is fixedly installed on the fixed sleeve; a connecting shaft is rotatably installed on the connecting sleeve; a spring is fixedly installed on the connecting shaft; the spring is fixedly installed on the connecting sleeve; a connecting plate is fixedly installed on the connecting shaft; a fixing plate is fixedly installed on the connecting plate; a cleaning component is fixedly installed on the fixing plate; and a cleaning surface is provided on the fixed sleeve.

Citation Information

Patent Citations

  • A laser cutting device for processing power distribution cabinet

    CN117161577B