A switch cabinet applicable to the processing industry

By designing a flip door in the switch cabinet to drive the fan blades and brushes to rotate to clean the internal floss and dust, and adjust the position of the installation board, the cleaning and fixing problems of the switch cabinet in the processing industry are solved, and the service life and operation convenience of the equipment are improved.

CN115102073BActive Publication Date: 2025-07-25JIANGSU XINSHI ELECTRIC CO LTD
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Patent Information

Application Number
CN202210703876.7
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2022-06-21
Publication Date
2025-07-25
Estimated Expiration
2042-06-21

AI Technical Summary

Technical Problem

The floe and dust in the processing factory can easily fly into the switch cabinet, resulting in damage, and the internal components are inconvenient to fix, making it difficult to adjust the placement space.

Method used

A switch cabinet is designed to drive the blades and brushes to rotate through the flip doors to clean up the internal floss and dust, and at the same time, the position of the installation plate can be adjusted to facilitate fixing components.

Benefits of technology

It realizes cleaning of internal wool and dust during cooling, and can easily adjust the position of the installation plate to fix the components, improving the service life and operation convenience of the switch cabinet.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention relates to the technical field of switch cabinets, in particular to a switch cabinet suitable for use in the processing industry, including a housing. An installation plate is installed inside the housing. The installation plate is slidably connected to the inside of the housing. A fixing member is installed inside the installation plate. The fixing member is slidably connected to the inside of the installation plate. A first moving block is installed on one side of the installation plate. The installation plate and the first moving block are integrally designed. A flip door is installed on the surface of the housing. The housing and the flip door are rotatably connected through a rotating shaft. Ventilation holes are installed on the surface of the flip door. The present invention is reasonably designed and ingeniously structured. Through the mutual cooperation of the structures, when cooling the device, the fluff and dust in the inhaled air can be removed, and the position of the installation plate can be adjusted, which is convenient for fixing and adjusting. It has good market competitiveness and is worthy of recommendation.
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Description

Technical Field

[0001] The present invention relates to the technical field of switch cabinets, and in particular to a switch cabinet suitable for use in the processing industry. Background Art

[0002] A switch cabinet assembles switch equipment, measuring instruments, protective electrical appliances and auxiliary equipment in a closed or semi-closed metal cabinet or on a panel according to electrical wiring requirements. Its layout should meet the requirements of the normal operation of the power system, be convenient for maintenance, and not endanger the safety of personnel and surrounding equipment. During normal operation, the circuit can be switched on or off manually or automatically. In case of a fault or abnormal operation, the circuit can be cut off or an alarm can be given by means of a protective electrical appliance. Various parameters during operation can be displayed by measuring instruments, and some electrical parameters can also be adjusted, and prompts or signals can be sent for deviations from the normal working state. It is commonly used in various power generation, distribution, and substation.

[0003] The switch cabinet needs to dissipate heat. However, there are a large amount of fluff and dust inside the workshops of the processing industry, resulting in fluff and dust often flying into the interior of the switch cabinet, causing damage to the switch cabinet. Moreover, the fixation of internal components is rather troublesome. Often, due to the inability to adjust the internal fixing parts, the placement space cannot be adjusted, making it more difficult to install new components. Summary of the Invention

[0004] The purpose of the present invention is to solve the deficiencies existing in the prior art, and to propose a switch cabinet suitable for use in the processing industry. The present invention is reasonably designed and ingeniously structured. Through the mutual cooperation between structures, when cooling the device, fluff and dust inside the inhaled air can be removed, and the position of the mounting plate can be adjusted, which is convenient for fixation and adjustment, has good market competitiveness, and is worthy of recommendation.

[0005] In order to achieve the above purpose, the present invention adopts the following technical solutions:

[0006] Design a switch cabinet suitable for the processing industry, including a housing. An installation plate is installed inside the housing. The installation plate is slidably connected to the inside of the housing. Fixing members are installed inside the installation plate. The fixing members are slidably connected to the inside of the installation plate. A first moving block is installed on one side of the installation plate. The installation plate and the first moving block are integrally designed. A flip door is installed on the surface of the housing. The housing and the flip door are rotatably connected through a rotating shaft. Ventilation holes are installed on the surface of the flip door. The flip door and the ventilation holes are integrally designed. A rotating rod is installed inside the flip door. The rotating rod is rotatably connected to the flip door. A belt is installed on the side of the rotating rod close to the housing. The belt is sleeved on the rotating rod. A fan blade is installed on the side of the rotating rod away from the belt. The fan blade is fixedly connected to the rotating rod. A brush is installed on the surface of the fan blade. The fan blade and the brush are fixedly connected. A fixing ring is installed at the end of the belt away from the rotating rod. The fixing ring is rotatably connected to the flip door. An extending rod is installed inside the fixing ring. One end of the extending rod is fixed inside the fixing ring. A second moving block is installed on the side of the fixing member close to the installation plate. The fixing member and the second moving block are integrally designed. A threaded rod is installed inside one side of the fixing member. The threaded rod is slidably connected to the inside of the fixing member. A bearing is installed at the position corresponding to the threaded rod inside the fixing member. The outer ring of the bearing is welded to the fixing member. The inner ring of the bearing is welded to the threaded rod. A first clamping block is installed inside the inner ring of the bearing. The first clamping block is integrally designed with the bearing. A third moving block is installed inside the installation plate. The third moving block and the installation plate are integrally designed. A pop-up block is installed inside the third moving block. The pop-up block is slidably connected to the inside of the third moving block. A limiting plate is installed inside the housing. The housing and the limiting plate are integrally designed. A motor is installed on the back side of the limiting plate. The motor is fixed to the housing by bolts. A cylinder is installed at the end of the motor close to the limiting plate. The motor is welded to the cylinder. One end of the extending rod is slidably connected to the inside of the cylinder. A moving plate is installed inside the limiting plate. The moving plate is slidably connected to the inside of the limiting plate

[0007] Preferably, a first moving groove is installed inside the housing at the position corresponding to the first moving block. The first moving block is matched with the first moving groove. The first moving block is slidably connected to the inside of the first moving groove. The first moving groove is integrally designed with the housing. A first round hole is installed inside the housing. The housing and the first round hole are integrally designed. An extending rod is installed inside the first moving block. The extending rod is slidably connected to the inside of the first moving block. A spring is installed on one side of the extending rod. The spring is welded to the extending rod.

[0008] Preferably, a first clamping groove is installed inside the threaded rod corresponding to the position of the first clamping block. The first clamping groove matches the first clamping block. The first clamping groove and the threaded rod are integrally designed. The first clamping block is slidably connected to the inside of the first clamping groove. A first spring is installed inside the first clamping groove. One end of the first spring close to the first clamping block is welded to the first clamping block, and the other end of the first spring away from the first clamping block is welded to the threaded rod.

[0009] Preferably, the axial cross-sectional shape of one end of the ejecting block is an isosceles triangle. A triangular groove is installed inside the second moving block corresponding to the position of the ejecting block. The triangular groove and the second moving block are integrally designed. The axial cross-sectional shape of the triangular groove is an isosceles triangle. A third moving groove is installed inside the second moving block corresponding to the position of the third moving block. The third moving groove and the second moving block are integrally designed. The third moving block is slidably connected to the inside of the third moving groove.

[0010] Preferably, a second clamping block is installed on the top of the ejecting block. The ejecting block and the second clamping block are integrally designed. A second moving groove is installed inside the mounting plate corresponding to the position of the second moving block. The second moving groove and the mounting plate are integrally designed. The threaded rod is slidably connected to the inside of the second moving groove.

[0011] Preferably, a second clamping groove is installed inside the third moving block corresponding to the position of the second clamping block. The second clamping groove matches the second clamping block. The second clamping groove and the third moving block are integrally designed. The second clamping block is slidably connected to the inside of the second clamping groove. A second spring is installed inside the second clamping groove. One end of the second spring close to the second clamping block is welded to the second clamping block, and the other end of the second spring away from the second clamping block is welded to the third moving block.

[0012] Preferably, an extrusion groove is installed inside the extending rod. The extending rod and the extrusion groove are integrally designed. The axial cross-sectional shape of the extrusion groove is a right triangle.

[0013] Preferably, an arc-shaped plate is installed on one side of the flipping door. One end of the arc-shaped plate is fixedly connected to the flipping door. The other end of the arc-shaped plate away from the flipping door is attached to the outer shell. The axial cross-sectional shape of the arc-shaped plate is arc-shaped.

[0014] A switch cabinet suitable for the processing industry proposed by the present invention has the following beneficial effects: After closing the flip door, the insertion rod reaches inside the fixing ring through the limiting plate and is thus clamped inside the fixing ring. The motor rotates to drive the insertion rod and the fixing ring to rotate, so that the fixing ring drives the belt to rotate, further driving the fan blade to rotate, thereby blowing air into the housing to cool the inside of the housing. Moreover, the rotation of the fan blade drives the brush to rotate, thus cleaning the inhaled air and removing fibers and fluffs inside the air. When opening the flip door, the flip door drives the arc plate to move, so that the arc plate presses the moving plate, causing the moving plate to press the extrusion groove, making the insertion rod retract into the inside of the cylinder, and the moving plate blocks the insertion rod, so that the fan blade inside the flip door stops rotating. When fixing components, by pulling the fixing piece, the fixing piece drives the second moving block to move, causing the third moving block to disengage from the inside of the second moving block and the second moving block to reach the inside of the second moving groove, so that the fixing piece can be moved. After reaching the appropriate position, the second moving block is clamped into the corresponding insertion groove. By pressing the second moving block, the ejecting block is clamped into the triangular groove, and a part of the threaded rod extends out of the fixing piece, facilitating fixation with the screw holes on the surface of the component. The present invention is reasonably designed and ingeniously structured. Through the mutual cooperation between structures, it can remove the fluff and dust inside the inhaled air when cooling the device, and can adjust the position of the mounting plate, facilitating fixation and adjustment, having good market competitiveness and being worthy of recommendation. Description of the Drawings

[0015] Figure 1 It is a top view cross-sectional view of a switch cabinet suitable for the processing industry proposed by the present invention;

[0016] Figure 2 It is a cross-sectional view of the flip door of a switch cabinet suitable for the processing industry proposed by the present invention;

[0017] Figure 3 It is a top view cross-sectional view of the mounting plate of a switch cabinet suitable for the processing industry proposed by the present invention;

[0018] Figure 4 It is a schematic structural diagram of the fixing ring of a switch cabinet suitable for the processing industry proposed by the present invention;

[0019] Figure 5 It is a top view cross-sectional view of the position of the motor of a switch cabinet suitable for the processing industry proposed by the present invention;

[0020] Figure 6 It is a cross-sectional view of the housing of a switch cabinet suitable for the processing industry proposed by the present invention;

[0021] Figure 7 It is a schematic structural diagram of the insertion rod of a switch cabinet suitable for the processing industry proposed by the present invention.

[0022] In the figure: 1. Outer shell; 2. Mounting plate; 3. First round hole; 4. First moving block; 5. Fixing piece; 6. First moving groove; 7. Protruding rod; 8. Spring; 9. Flipping door; 10. Vent hole; 11. Fan blade; 12. Belt; 13. Rotating rod; 14. Brush; 15. Fixing ring; 16. Inserting rod; 17. Threaded rod; 18. Bearing; 19. Triangular groove; 20. First clamping block; 21. First clamping groove; 22. First spring; 23. Second moving groove; 24. Second moving block; 25. Third moving groove; 26. Second spring; 27. Second clamping groove; 28. Inserting groove; 29. Third moving block; 30. Ejecting block; 31. Second clamping block; 32. Motor; 33. Arc-shaped plate; 34. Moving plate; 35. Extrusion groove; 37. Cylinder; 38. Limiting plate. Specific implementation manner

[0023] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments.

[0024] Referring to Figure 1-7 , a switch cabinet suitable for the processing industry includes an outer shell 1. Inside the outer shell 1, a first moving groove 6 is installed corresponding to the position of the first moving block 4. The first moving block 4 is matched with the first moving groove 6, and the first moving block 4 is slidably connected to the inside of the first moving groove 6. The first moving groove 6 and the outer shell 1 are integrally designed. A first round hole 3 is installed inside the outer shell 1, and the outer shell 1 and the first round hole 3 are integrally designed. A protruding rod 7 is installed inside the first moving block 4. The protruding rod 7 is slidably connected to the inside of the first moving block 4. A spring 8 is installed on one side of the protruding rod 7, and the spring 8 is welded to the protruding rod 7 for convenient fixation.

[0025] A mounting plate 2 is installed inside the outer shell 1. The mounting plate 2 is slidably connected to the inside of the outer shell 1. A fixing piece 5 is installed inside the mounting plate 2. The fixing piece 5 is slidably connected to the inside of the mounting plate 2. A first moving block 4 is installed on one side of the mounting plate 2, and the mounting plate 2 and the first moving block 4 are integrally designed. A flipping door 9 is installed on the surface of the outer shell 1. An arc-shaped plate 33 is installed on one side of the flipping door 9. One end of the arc-shaped plate 33 is fixedly connected to the flipping door 9. The end of the arc-shaped plate 33 far from the flipping door 9 is attached to the outer shell 1. The axial cross-section shape of the arc-shaped plate 33 is circular arc-shaped, which increases the stability of the device.

[0026] The outer shell 1 is rotatably connected to the flip door 9 through a rotating shaft. An air vent 10 is installed on the surface of the flip door 9. The flip door 9 and the air vent 10 are integrally designed. A rotating rod 13 is installed inside the flip door 9. The rotating rod 13 is rotatably connected to the flip door 9. A belt 12 is installed on the side of the rotating rod 13 close to the outer shell 1. The belt 12 is sleeved on the rotating rod 13. A fan blade 11 is installed on the side of the rotating rod 13 away from the belt 12. The fan blade 11 is fixedly connected to the rotating rod 13. A brush 14 is installed on the surface of the fan blade 11. The fan blade 11 is fixedly connected to the brush 14. One end of the belt 12 away from the rotating rod 13 is installed with a fixing ring 15. The fixing ring 15 is rotatably connected to the flip door 9. An extending rod 16 is installed inside the fixing ring 15. An extrusion groove 35 is installed inside the extending rod 16. The extending rod 16 and the extrusion groove 35 are integrally designed. The axial cross-sectional shape of the extrusion groove 35 is a right triangle, making the fixation more firm.

[0027] One end of the extending rod 16 is fixed inside the fixing ring 15. A second moving block 24 is installed on the side of the fixing member 5 close to the mounting plate 2. The fixing member 5 and the second moving block 24 are integrally designed. A threaded rod 17 is installed inside one side of the fixing member 5. A first card slot 21 corresponding to the position of the first card block 20 is installed inside the threaded rod 17. The first card slot 21 matches the first card block 20. The first card slot 21 and the threaded rod 17 are integrally designed. The first card block 20 is slidably connected inside the first card slot 21. A first spring 22 is installed inside the first card slot 21. One end of the first spring 22 close to the first card block 20 is welded to the first card block 20. The end of the first spring 22 away from the first card block 20 is welded to the threaded rod 17, facilitating fixation.

[0028] The threaded rod 17 is slidably connected inside the fixing member 5. A bearing 18 is installed inside the fixing member 5 corresponding to the position of the threaded rod 17. The outer ring of the bearing 18 is welded to the fixing member 5. The inner ring of the bearing 18 is welded to the threaded rod 17. A first card block 20 is installed inside the inner ring of the bearing 18. The first card block 20 and the bearing 18 are integrally designed. A third moving block 29 is installed inside the mounting plate 2. A second card slot 27 corresponding to the position of the second card block 31 is installed inside the third moving block 29. The second card slot 27 matches the second card block 31. The second card slot 27 and the third moving block 29 are integrally designed. The second card block 31 is slidably connected inside the second card slot 27. A second spring 26 is installed inside the second card slot 27. One end of the second spring 26 close to the second card block 31 is welded to the second card block 31. The end of the second spring 26 away from the second card block 31 is welded to the third moving block 29, making the installation more convenient.

[0029] The third moving block 29 is integrally designed with the mounting plate 2. A pop-up block 30 is installed inside the third moving block 29. One end of the pop-up block 30 has an isosceles triangle shape in the axial cross-section. A triangular groove 19 is installed inside the second moving block 24 at a position corresponding to the pop-up block 30. The triangular groove 19 is integrally designed with the second moving block 24, and the axial cross-section of the triangular groove 19 is an isosceles triangle. A third moving groove 25 is installed inside the second moving block 24 at a position corresponding to the third moving block 29. The third moving groove 25 is integrally designed with the second moving block 24. The third moving block 29 is slidably connected to the inside of the third moving groove 25 to increase the stability of the device.

[0030] A second clamping block 31 is installed on the top of the pop-up block 30. The pop-up block 30 is integrally designed with the second clamping block 31. A second moving groove 23 is installed inside the mounting plate 2 at a position corresponding to the second moving block 24. The second moving groove 23 is integrally designed with the mounting plate 2. The threaded rod 17 is slidably connected to the inside of the second moving groove 23 for convenient fixation.

[0031] The pop-up block 30 is slidably connected to the inside of the third moving block 29. A limiting plate 38 is installed inside the housing 1. The housing 1 is integrally designed with the limiting plate 38. A motor 32 is installed on the back side of the limiting plate 38. The motor 32 is fixed to the housing 1 by bolts. A cylinder 37 is installed at one end of the motor 32 close to the limiting plate 38. The motor 32 is welded to the cylinder 37. One end of the extending rod 16 is slidably connected to the inside of the cylinder 37. A moving plate 34 is installed inside the limiting plate 38. The moving plate 34 is slidably connected to the inside of the limiting plate 38.

[0032] Working principle: After closing the flipping door 9, the extending rod 16 reaches inside the fixing ring 15 through the limiting plate 38, and thus is clamped inside the fixing ring 15. The motor 32 rotates to drive the extending rod 16 and the fixing ring 15 to rotate, so that the fixing ring 15 drives the belt 12 to rotate, and further drives the fan blade 11 to rotate, thereby blowing air into the inside of the housing 1 to cool the inside of the housing 1. Moreover, the rotation of the fan blade 11 drives the brush 14 to rotate, thereby cleaning the inhaled air and cleaning the fibers and fluffs inside the air. When opening the flipping door 9, the flipping door 9 drives the arc-shaped plate 33 to move, so that the arc-shaped plate 33 squeezes the moving plate 34, thus causing the moving plate 34 to squeeze the squeezing groove 35, making the extending rod 16 retract into the inside of the cylinder 37, and the moving plate 34 blocks the extending rod 16, so that the fan blade 11 inside the flipping door 9 stops rotating. When fixing components, by pulling the fixing part 5, the fixing part 5 drives the second moving block 24 to move, causing the third moving block 29 to disengage from the inside of the second moving block 24, and the second moving block 24 reaches the inside of the second moving groove 23, so that the fixing part 5 can be moved. After reaching the appropriate position, the second moving block 24 is clamped into the corresponding extending groove 28. By squeezing the second moving block 24, the ejecting block 30 is clamped into the triangular groove 19, and a part of the threaded rod 17 extends out of the fixing part 5, which is convenient for fixing with the screw hole on the surface of the component.

[0033] The above is only a preferred specific embodiment of the present invention, but the protection scope of the present invention is not limited thereto. Any person skilled in the art within the technical scope disclosed by the present invention, according to the technical solution of the present invention and its inventive concept, makes equivalent substitutions or changes, and should be covered by the protection scope of the present invention.

Claims

1. A switch cabinet applicable to the processing industry, comprising a housing (1), characterized in that, Inside the housing (1), a mounting plate (2) is installed. The mounting plate (2) is slidably connected to the inside of the housing (1). Inside the mounting plate (2), a fixing member (5) is installed. The fixing member (5) is slidably connected to the inside of the mounting plate (2). On one side of the mounting plate (2), a first moving block (4) is installed. The mounting plate (2) and the first moving block (4) are integrally designed. On the surface of the housing (1), a flip door (9) is installed. The housing (1) and the flip door (9) are rotatably connected by a rotating shaft. On the surface of the flip door (9), a ventilation hole (10) is installed. The flip door (9) and the ventilation hole (10) are integrally designed. Inside the flip door (9), a rotating rod (13) is installed. The rotating rod (13) is rotatably connected to the flip door (9). On the side of the rotating rod (13) close to the housing (1), a belt (12) is installed. The belt (12) is sleeved on the rotating rod (13). On the side of the rotating rod (13) away from the belt (12), a fan blade (11) is installed. The fan blade (11) is fixedly connected to the rotating rod (13). On the surface of the fan blade (11), a brush (14) is installed. The fan blade (11) and the brush (14) are fixedly connected. At the end of the belt (12) away from the rotating rod (13), a fixing ring (15) is installed. The fixing ring (15) is rotatably connected to the flip door (9). Inside the fixing ring (15), an extending rod (16) is installed. One end of the extending rod (16) is fixed inside the fixing ring (15). On the side of the fixing member (5) close to the mounting plate (2), a second moving block (24) is installed. The fixing member (5) and the second moving block (24) are integrally designed. Inside one side of the fixing member (5), a threaded rod (17) is installed. The threaded rod (17) is slidably connected to the inside of the fixing member (5). Inside the fixing member (5), at the position corresponding to the threaded rod (17), a bearing (18) is installed. The outer ring of the bearing (18) is welded to the fixing member (5). The inner ring of the bearing (18) is welded to the threaded rod (17). Inside the inner ring of the bearing (18), a first clamping block (20) is installed. The first clamping block (20) is integrally designed with the bearing (18). Inside the mounting plate (2), a third moving block (29) is installed. The third moving block (29) and the mounting plate (2) are integrally designed. Inside the third moving block (29), a pop-up block (30) is installed. The pop-up block (30) is slidably connected to the inside of the third moving block (29). Inside the housing (1), a limiting plate (38) is installed. The housing (1) and the limiting plate (38) are integrally designed. On the back side of the limiting plate (38), a motor (32) is installed. The motor (32) is fixed to the housing (1) by bolts. At the end of the motor (32) close to the limiting plate (38), a cylinder (37) is installed. The motor (32) is welded to the cylinder (37). One end of the extending rod (16) is slidably connected to the inside of the cylinder (37).A moving plate (34) is installed inside the limiting plate (38), and the moving plate (34) is slidably connected to the inside of the limiting plate (38).

2. The switch cabinet applicable to the processing industry according to claim 1, characterized in that, Inside the said housing (1), a first moving groove (6) is installed corresponding to the position of the first moving block (4). The first moving block (4) matches the first moving groove (6), and the first moving block (4) is slidably connected to the inside of the first moving groove (6). The first moving groove (6) and the housing (1) are integrally designed. A first round hole (3) is installed inside the housing (1), and the housing (1) and the first round hole (3) are integrally designed. An extending rod (7) is installed inside the first moving block (4), and the extending rod (7) is slidably connected to the inside of the first moving block (4). A spring (8) is installed on one side of the extending rod (7), and the spring (8) is welded to the extending rod (7).

3. The switch cabinet applicable to the processing industry according to claim 1, characterized in that, Inside the said threaded rod (17), a first card slot (21) is installed corresponding to the position of the first card block (20). The first card slot (21) matches the first card block (20), and the first card slot (21) and the threaded rod (17) are integrally designed. The first card block (20) is slidably connected to the inside of the first card slot (21). A first spring (22) is installed inside the first card slot (21). One end of the first spring (22) close to the first card block (20) is welded to the first card block (20), and the other end of the first spring (22) away from the first card block (20) is welded to the threaded rod (17).

4. The switch cabinet applicable to the processing industry according to claim 1, characterized in that, One end of the said ejecting block (30) has an isosceles triangle shape in the axial section. A triangular groove (19) is installed inside the second moving block (24) corresponding to the position of the ejecting block (30). The triangular groove (19) and the second moving block (24) are integrally designed, and the axial section shape of the triangular groove (19) is an isosceles triangle. A third moving groove (25) is installed inside the second moving block (24) corresponding to the position of the third moving block (29). The third moving groove (25) and the second moving block (24) are integrally designed, and the third moving block (29) is slidably connected to the inside of the third moving groove (25).

5. The switch cabinet applicable to the processing industry according to claim 1, characterized in that, A second card block (31) is installed on the top of the said ejecting block (30), and the ejecting block (30) and the second card block (31) are integrally designed. A second moving groove (23) is installed inside the mounting plate (2) corresponding to the position of the second moving block (24). The second moving groove (23) and the mounting plate (2) are integrally designed, and the threaded rod (17) is slidably connected to the inside of the second moving groove (23).

6. The switch cabinet applicable to the processing industry according to claim 5, characterized in that, A second card slot (27) is installed inside the said third moving block (29) corresponding to the position of the second card block (31). The second card slot (27) matches the second card block (31), and the second card slot (27) and the third moving block (29) are integrally designed. The second card block (31) is slidably connected to the inside of the second card slot (27). A second spring (26) is installed inside the second card slot (27). One end of the second spring (26) close to the second card block (31) is welded to the second card block (31), and the other end of the second spring (26) away from the second card block (31) is welded to the third moving block (29).

7. The switch cabinet applicable to the processing industry according to claim 1, characterized in that, An extrusion groove (35) is installed inside the extending rod (16). The extending rod (16) and the extrusion groove (35) are integrally designed. The axial cross-sectional shape of the extrusion groove (35) is a right triangle.

8. The switch cabinet applicable to the processing industry according to claim 1, characterized in that, An arc-shaped plate (33) is installed on one side of the flipping door (9). One end of the arc-shaped plate (33) is fixedly connected to the flipping door (9). The end of the arc-shaped plate (33) away from the flipping door (9) is in contact with the outer shell (1). The axial cross-sectional shape of the arc-shaped plate (33) is arc-shaped.

Citation Information

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