A workshop industrial control cabinet detection device

By designing cleaning and testing mechanisms and dust cleaning mechanisms that are adapted to different inclination angles, the dust and rust on the surface of the industrial control cabinet fins is automatically cleaned, which solves the problem of reduced heat dissipation efficiency and achieves efficient and accurate inspection and maintenance.

CN120292937BActive Publication Date: 2025-08-05YANTAI YUANJUN ELECTROMECHANICAL TECH CO LTD
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Patent Information

Application Number
CN202510770090.0
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-06-10
Publication Date
2025-08-05
Estimated Expiration
2045-06-10

AI Technical Summary

Technical Problem

Rust and dust covering the surface of the existing industrial control cabinet radiator lead to a decrease in heat dissipation efficiency, affecting the normal operation of electronic components. It is more troublesome to replace the cleaning components according to the inclination angle of the radiator.

Method used

A workshop industrial control cabinet detection device is designed, including a cleaning and detection mechanism and a dust cleaning mechanism. It adapts to the heat sink of different inclination angles through electric sliders and motor-driven scrapers, automatically cleans up dust and detects rust, and uses solenoid valve to control the detector to achieve accurate detection.

Benefits of technology

It improves the reliability and work efficiency of the inspection results, reduces repeated inspections and misjudgments, reduces maintenance costs, and extends the service life of the heat sink.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention relates to the field of industrial control cabinet detection technology, specifically to a workshop industrial control cabinet detection device, including a cabinet body, a cleaning detection mechanism is arranged between the left and right ends of the inner side of the cabinet body, the cleaning detection mechanism includes a movable plate, and a dust cleaning mechanism is arranged at the corresponding end of the two groups of movable plates, the dust cleaning mechanism includes a first rotating block, and a second motor is arranged at the left end of the first rotating block. In the workshop industrial control cabinet detection device described in the present invention, the third electric slider drives the scraper to slide, so that the two groups of detectors detect the two side walls of multiple groups of semi-diamond shaped heat sinks, and the detection is performed after cleaning the dust, which can complete the detection work more quickly and accurately, reducing the time and resources wasted due to repeated detection or misjudgment. At the same time, accurate detection results can avoid unnecessary repair and replacement operations, reduce detection and maintenance costs, and improve work efficiency and economic benefits.
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Description

Technical Field

[0001] The present invention relates to the technical field of industrial control cabinet detection, and in particular to a detection device for an industrial control cabinet in a workshop. Background Art

[0002] The industrial control cabinets in the workshop contain a large number of electronic components, such as programmable logic controllers (PLCs), industrial computers, relays, etc. These electronic components will continuously generate heat during operation. If the heat cannot be dissipated in time, the temperature inside the cabinet will continue to rise. The heat sink, as an efficient heat dissipation device, can increase the heat dissipation area, accelerate the heat dissipation rate, and conduct the heat from the components to the heat sink surface. The heat is then dissipated to the surrounding environment through air convection or other heat dissipation methods, thereby effectively reducing the temperature inside the industrial control cabinet.

[0003] Heat sinks are usually made of metal materials such as aluminum and copper. Rust will form an oxide layer on the surface of the heat sink. The thermal conductivity of this oxide layer is much lower than that of the metal itself, which will hinder the transfer of heat from the heat sink to the surrounding environment, resulting in a decrease in heat dissipation efficiency. As the rust worsens, the heat dissipation capacity of the heat sink will be significantly reduced, which will in turn increase the temperature inside the industrial control cabinet, affecting the normal operation of electronic components and increasing the risk of equipment failure. Various production equipment in the workshop will generate a large amount of dust during operation. The dust will gradually accumulate on the surface of the heat sink, forming a thick covering layer that completely covers the rusted parts. The dust will interfere with the transmission and reception of signals and cannot accurately determine whether the heat sink is rusted. In addition, rust is a continuous corrosion process that will continuously damage the metal material of the heat sink, greatly shortening the service life of the heat sink, and thus requiring the heat sink to be replaced. The inclination angle of the side walls of different semi-diamond heat sinks is different. The existing cleaning mechanism needs to replace the cleaning component according to the inclination angle of the semi-diamond heat sink side wall, which is more troublesome. To solve the above problems, we propose a workshop industrial control cabinet detection device. Summary of the Invention

[0004] The main purpose of the present invention is to provide a workshop industrial control cabinet detection device, which can effectively solve the problems in the background technology.

[0005] To achieve the above object, the technical solution adopted by the present invention is:

[0006] The control cabinet detection device of a workshop industrial control cabinet comprises a cabinet body, and a cleaning detection mechanism is provided between the left and right ends of the inner side of the cabinet body, and the cleaning detection mechanism comprises a movable plate, and one end corresponding to the two sets of the movable plates is provided with a dust cleaning mechanism, and the dust cleaning mechanism comprises a first rotary block, and the left end of the first rotary block is provided with a second motor, and the output end of the second motor passes through the first rotary block and is provided with a transmission shaft fixedly connected to the left and right outer walls of the transmission shaft. The first triangular pushing plate is provided with a rotating groove inside the first triangular pushing plate, and an electric telescopic rod is provided at the rear end of the rotating groove, and the telescopic end of the electric telescopic rod is provided with a fixed frame. The inner side of the fixed frame is rotatably connected to the second rotating block, and the other end of the second rotary block is provided with a second triangular pushing plate, and the rear end of the second triangular pushing plate is provided with a guide groove, and the guide groove is matched with the electric telescopic rod, and the bottom end of the first triangular pushing plate is rotatably connected to the bottom end of the second triangular pushing plate, and the second triangular pushing plate is matched with the rotating groove.

[0007] Preferably, the corresponding ends of the two groups of movable plates are each provided with a fourth electric slide groove, the inner sides of multiple groups of the fourth electric slide grooves are all slidably connected with a fourth electric slider, and the other ends of multiple groups of the fourth electric sliders are all fixedly connected with a second guide plate.

[0008] Preferably, one corresponding end of the two groups of second guide plates is fixedly connected to a second connecting rod, a fifth electric slide groove is provided at the rear end of the second connecting rod, a fifth electric slider is slidingly connected to the inner side of the fifth electric slide groove, and the bottom end of the fifth electric slider is fixedly connected to the top end of the first rotating block.

[0009] Preferably, a first electric slide is provided at both left and right ends of the inner side of the cabinet body, and the inner sides of the two groups of the first electric slides are slidably connected with a first electric slider, and the corresponding ends of the two groups of the first electric sliders are fixedly connected to the movable plate, and a second electric slide is provided below the corresponding end of the movable plate, and the second electric slide is located below the fourth electric slide.

[0010] Preferably, the inner sides of multiple groups of the second electric slides are all slidably connected with second electric sliders, the corresponding ends of the two groups of the second electric sliders are each provided with a first guide plate, the corresponding ends of the two groups of the first guide plates are fixedly connected with a first connecting rod, and the rear end of the first connecting rod is provided with a third electric slide.

[0011] Preferably, a third electric slider is slidingly connected to the inner side of the third electric slide, a support frame is provided at the other end of the third electric slider, a sensor is provided at the left side of the bottom end of the support frame, a first motor is provided at the left end of the support frame, a scraper is provided at the output end of the first motor passing through the support frame, the outer wall of the top end of the scraper is rotatably connected to the inner wall of the bottom end of the support frame, and a triangular groove is provided at the other end of the scraper.

[0012] Preferably, detection grooves are provided at both upper and lower ends of the scraper, multiple groups of detection grooves are provided with detectors inside, multiple groups of detection grooves are provided with solenoid valves inside, and the side walls of the solenoid valves are flush with the side walls of the scraper.

[0013] Preferably, multiple groups of mounting plates are fixedly connected to the rear end of the inner side of the cabinet, and multiple groups of semi-diamond shaped heat sinks are provided at the front end of each group of mounting plates. The side walls of the scraper are in contact with the side walls of the semi-diamond shaped heat sinks, the rear end side walls of the first triangular push plate are in close contact with the lower side walls of one group of semi-diamond shaped heat sinks, and the front end side walls of the second triangular push plate are in close contact with the upper side walls of another group of semi-diamond shaped heat sinks.

[0014] Preferably, a dust collecting mechanism is provided on the inner side of the first electric slide, and the dust collecting mechanism is located below the movable plate. The dust collecting mechanism includes a sixth electric slider. The inner sides of the two groups of the first electric slides are both slidably connected to the sixth electric slider. The corresponding ends of the two groups of the sixth electric sliders are both provided with openings and are detachably connected with card blocks. The corresponding ends of the two groups of the card blocks are fixedly connected with a collection box. A placement groove is provided on the top inner side of the cabinet, and the bottom end of the collection box fits into the bottom end of the placement groove.

[0015] Preferably, a door panel is rotatably connected to the left side of the front end of the cabinet, an opening is provided at the front end of the door panel and an observation window is fixedly connected thereto, multiple sets of ventilation holes are provided at both left and right ends of the cabinet, and multiple sets of partitions are provided at both left and right ends of the inner side of the cabinet.

[0016] Compared with the prior art, the present invention has the following beneficial effects:

[0017] 1. A detection device for a workshop industrial control cabinet, which moves the support frame to the vicinity of the right end of the semi-diamond shaped heat sink, at which time the sensor works to detect the angle size of the two groups of semi-diamond shaped heat sinks, thereby starting the first motor to drive the scraper to rotate, so that the scraper side wall is consistent with the inclination angle of the semi-diamond shaped heat sink, and one side wall of the scraper is in contact with one side wall of the semi-diamond shaped heat sink, and then the third electric slider drives the scraper to slide to the left end of the semi-diamond shaped heat sink, so that the scraper cleans the surface of the semi-diamond shaped heat sink in the process, and then the second electric slider drives the first connecting rod and the scraper forward, so that the sensor detects the angle size of the semi-diamond shaped heat sink on the other side, so that the scraper side wall is consistent with the inclination angle of the semi-diamond shaped heat sink, and adapts to the side walls of the semi-diamond shaped heat sinks with different inclination angles, and then one side wall of the scraper is in contact with one side wall of the semi-diamond shaped heat sink, and then the third electric slider drives the scraper to slide to the right end of the semi-diamond shaped heat sink, so that the scraper The other surface of the semi-diamond shaped heat sink is cleaned, the first rotating block is moved to the right end of the semi-diamond shaped heat sink, and the angle of the second triangular push plate is adjusted by extending and retracting the electric telescopic rod. At the same time, the second motor is started to drive the transmission shaft to rotate, driving the support plate, the first triangular push plate and the second triangular push plate to rotate, so that the first triangular push plate and the second triangular push plate are in close contact with the upper and lower side walls of the semi-diamond shaped heat sink respectively, thereby adapting to the side walls of the semi-diamond shaped heat sink with different inclination angles, and then the first rotating block is driven to slide to the left end of the semi-diamond shaped heat sink by the fifth electric slider, so that the dust remaining between the two groups of semi-diamond shaped heat sinks during the movement of the first triangular push plate and the second triangular push plate is cleaned. After cleaning the dust, the transmission and reception of the detection signal are no longer interfered by the dust. The detection equipment can obtain the internal information of the heat sink more accurately, thereby more accurately judging the rust condition and improving the reliability of the detection results to clean the dust on the surface of the heat sink.

[0018] 2. This kind of workshop industrial control cabinet detection device, during the dust cleaning process, the sixth electric slider slides on the inside, so that the collection box is always located under the movable plate, so that when the scraper and the second triangular push plate clean the dust, the dust will fall into the collection box. When the scraper finishes cleaning the semi-diamond radiator, the solenoid valves located on both side walls of the scraper are started, so that the two sets of detectors start running, and then the scraper side walls are made to be consistent in inclination angle with the semi-diamond radiator, and one side wall of the scraper no longer contacts the side wall of the semi-diamond radiator. Then, the third electric slider drives the scraper to slide, so that the two sets of detectors detect the two side walls of multiple groups of semi-diamond radiators, and perform detection after cleaning the dust. It can complete the detection work more quickly and accurately, reducing the time and resources wasted due to repeated detection or misjudgment. At the same time, accurate detection results can avoid unnecessary repair and replacement operations, reduce detection and maintenance costs, and improve work efficiency and economic benefits. BRIEF DESCRIPTION OF THE DRAWINGS

[0019] Figure 1 It is a schematic diagram of the overall structure of the present invention;

[0020] Figure 2 It is a schematic cross-sectional view of the overall structure of the present invention;

[0021] Figure 3 This is a schematic diagram of the partial structure of the cleaning and detection mechanism of the present invention;

[0022] Figure 4 For the present invention Figure 3 Overall planing diagram;

[0023] Figure 5 This is the second partial structural diagram of the cleaning and detection mechanism of the present invention;

[0024] Figure 6 It is a schematic diagram of the partial structure of the dust cleaning mechanism of the present invention;

[0025] Figure 7 For the present invention Figure 6 Overall planing diagram;

[0026] Figure 8 It is an overall schematic diagram of the dust collecting mechanism of the present invention.

[0027] In the figure: 1. cabinet; 12. ventilation hole; 13. door panel; 14. observation window; 15. partition; 16. placement slot; 17. mounting plate; 18. semi-diamond fin; 2. cleaning and detection mechanism; 3. dust cleaning mechanism; 4. dust collecting mechanism; 21. first electric chute; 22. first electric slider; 23. moving plate; 24. second electric chute; 25. second electric slider; 26. first guide plate; 27. first connecting rod; 28. third electric chute; 29. third electric slider; 291. support frame; 292. first motor; 293. scraper; 294. triangular groove; 295. detection Slot; 296. Detector; 297. Solenoid valve; 298. Sensor; 31. Fourth electric slide; 32. Fourth electric slider; 33. Second guide plate; 34. Second connecting rod; 35. Fifth electric slide; 36. Fifth electric slider; 37. First rotating block; 38. Second motor; 39. Support plate; 391. First triangular push plate; 392. Rotating slot; 393. Second triangular push plate; 394. Transmission shaft; 395. Second rotating block; 396. Electric telescopic rod; 397. Guide slot; 398. Fixed frame; 41. Sixth electric slider; 42. Block; 43. Collection box. DETAILED DESCRIPTION

[0028] In order to make the technical means, creative features, objectives and effects achieved by the present invention easier to understand, the present invention is further described below in conjunction with specific implementation methods.

[0029] like Figure 1 - Figure 8 As shown, a detection device for a workshop industrial control cabinet includes a cabinet body 1, a cleaning detection mechanism 2 is provided between the left and right ends of the inner side of the cabinet body 1, the cleaning detection mechanism 2 includes a movable plate 23, and a dust cleaning mechanism 3 is provided at one end corresponding to the two sets of movable plates 23. The dust cleaning mechanism 3 includes a first rotating block 37, a second motor 38 is provided at the left end of the first rotating block 37, and a transmission shaft 394 is provided at the output end of the second motor 38 passing through the first rotating block 37. The left and right ends of the outer wall of the transmission shaft 394 are fixedly connected with support plates 39, and the bottom end of the support plate 39 is provided with a first triangular push plate 391. The first triangular push plate A rotating groove 392 is provided on the inner side of 391, and an electric telescopic rod 396 is provided at the rear end of the rotating groove 392. A fixed frame 398 is provided at the telescopic end of the electric telescopic rod 396. A second rotating block 395 is rotatably connected to the inner side of the fixed frame 398. A second triangular push plate 393 is provided at the other end of the second rotating block 395. A guide groove 397 is provided at the rear end of the second triangular push plate 393. The guide groove 397 is matched with the electric telescopic rod 396. The bottom end of the first triangular push plate 391 is rotatably connected to the bottom end of the second triangular push plate 393, and the second triangular push plate 393 is matched with the rotating groove 392.

[0030] In this embodiment, a fourth electric slide 31 is provided at one corresponding end of each of the two sets of movable plates 23, and a fourth electric slider 32 is slidably connected to the inner side of multiple sets of fourth electric slides 31, and the other end of multiple sets of fourth electric sliders 32 is fixedly connected to a second guide plate 33.

[0031] Specifically, the fourth electric slider 32 is started to slide in the fourth electric slide groove 31 , thereby driving the second guide plate 33 and the second connecting rod 34 to move.

[0032] In this embodiment, the corresponding ends of the two groups of second guide plates 33 are fixedly connected to the second connecting rod 34, and a fifth electric slide 35 is provided at the rear end of the second connecting rod 34. The fifth electric slide 35 is slidingly connected to the inner side of the fifth electric slide 35, and the bottom end of the fifth electric slide 36 is fixedly connected to the top of the first rotating block 37.

[0033] Specifically, the fifth electric slider 36 is started to slide in the fifth electric slide groove 35 , and the first rotating block 37 is moved to the right end of the semi-diamond-shaped heat sink 18 .

[0034] In this embodiment, a first electric slide 21 is provided at both the left and right ends of the inner side of the cabinet 1, and the inner sides of the two groups of first electric slides 21 are slidably connected with the first electric sliders 22. The corresponding ends of the two groups of first electric sliders 22 are fixedly connected to the movable plate 23, and a second electric slide 24 is provided below the corresponding end of the movable plate 23. The second electric slide 24 is located below the fourth electric slide 31.

[0035] Specifically, start the first electric slider 22 to slide in the first electric slide 21, driving the movable plate 23 to move to a suitable cleaning and detection position, and start the second electric slider 25 to slide in the second electric slide 24, driving the first guide plate 26 and the first connecting rod 27 to move.

[0036] In this embodiment, the inner sides of multiple groups of second electric slides 24 are all slidably connected to the second electric sliders 25, and the corresponding ends of the two groups of second electric sliders 25 are each provided with a first guide plate 26. The corresponding ends of the two groups of first guide plates 26 are fixedly connected to the first connecting rod 27, and the rear end of the first connecting rod 27 is provided with a third electric slide 28.

[0037] Specifically, the third electric slider 29 is started to slide in the third electric slide groove 28 to move the support frame 291 to the vicinity of the right end of the semi-diamond-shaped heat sink 18 .

[0038] In this embodiment, a third electric slider 29 is slidingly connected to the inner side of the third electric slide 28, a support frame 291 is provided at the other end of the third electric slider 29, a sensor 298 is provided at the left side of the bottom end of the support frame 291, a first motor 292 is provided at the left end of the support frame 291, and a scraper 293 is provided at the output end of the first motor 292 through the support frame 291, the outer wall of the top end of the scraper 293 is rotatably connected to the inner wall of the bottom end of the support frame 291, and a triangular groove 294 is provided at the other end of the scraper 293.

[0039] Specifically, the sensor 298 works to detect the angle of the two groups of semi-diamond shaped heat sinks 18, thereby starting the first motor 292, driving the scraper 293 to rotate, so that the side wall of the scraper 293 is consistent with the inclination angle of the semi-diamond shaped heat sink 18, and makes one side wall of the scraper 293 contact with one side wall of the semi-diamond shaped heat sink 18.

[0040] In this embodiment, detection grooves 295 are opened at the upper and lower ends of the scraper 293, and detectors 296 are set inside the multiple groups of detection grooves 295. Electromagnetic valves 297 are set inside the multiple groups of detection grooves 295, and the side walls of the electromagnetic valves 297 are flush with the side walls of the scraper 293.

[0041] Specifically, after the scraper 293 finishes cleaning the semi-diamond shaped heat sink 18, the solenoid valves 297 located on both side walls of the scraper 293 are started, causing the two sets of detectors 296 to start running, and then the side walls of the scraper 293 are made to have the same inclination angle as the semi-diamond shaped heat sink 18, and one side wall of the scraper 293 no longer contacts the one side wall of the semi-diamond shaped heat sink 18. Then, the third electric slider 29 drives the scraper 293 to slide, so that the two sets of detectors 296 detect the two side walls of multiple groups of semi-diamond shaped heat sinks 18.

[0042] In this embodiment, multiple groups of mounting plates 17 are fixedly connected to the rear end of the inner side of the cabinet 1, and multiple groups of semi-diamond shaped heat sinks 18 are provided at the front ends of the multiple groups of mounting plates 17. The side walls of the scraper 293 are in contact with the side walls of the semi-diamond shaped heat sinks 18. The rear end side wall of the first triangular push plate 391 is in close contact with the lower side wall of one group of semi-diamond shaped heat sinks 18, and the front end side wall of the second triangular push plate 393 is in close contact with the upper side wall of another group of semi-diamond shaped heat sinks 18.

[0043] Specifically, one side wall of the scraper 293 contacts one side wall of the semi-diamond shaped heat sink 18, and the third electric slider 29 drives the scraper 293 to slide toward the left end of the semi-diamond shaped heat sink 18, so that the scraper 293 cleans the surface of the semi-diamond shaped heat sink 18 in the process, and the first triangular push plate 391 and the second triangular push plate 393 are in close contact with the upper and lower side walls of the semi-diamond shaped heat sink 18 respectively, and then the first rotating block 37 is driven by the fifth electric slider 36 to slide toward the left end of the semi-diamond shaped heat sink 18, so that the first triangular push plate 391 and the second triangular push plate 393 clean the dust remaining between the two groups of semi-diamond shaped heat sinks 18 during the movement.

[0044] In this embodiment, a dust collecting mechanism 4 is provided on the inner side of the first electric slide 21, and the dust collecting mechanism 4 is located below the movable plate 23. The dust collecting mechanism 4 includes a sixth electric slider 41. The inner sides of the two groups of first electric slides 21 are both slidably connected to the sixth electric slider 41. The corresponding ends of the two groups of sixth electric sliders 41 are both provided with openings and are detachably connected with a card block 42. The corresponding ends of the two groups of card blocks 42 are fixedly connected with a collection box 43. A placement groove 16 is provided on the top inner side of the cabinet 1, and the bottom end of the collection box 43 fits with the bottom end of the placement groove 16.

[0045] Specifically, during the dust cleaning process, the sixth electric slider 41 of the dust collecting mechanism 4 slides inside the first electric slide 21, so that the collection box 43 is always located below the movable plate 23, so that when the scraper 293 and the first triangular push plate 391 and the second triangular push plate 393 clean the dust, the dust will fall into the collection box 43, and multiple groups of first electric sliders 22 and sixth electric sliders 41 respectively drive the movable plate 23 and the card block 42 to move upward until the bottom end of the collection box 43 is flush with the top inner side of the cabinet 1, and at this time the collection box 43 fits in the placement groove 16.

[0046] In this embodiment, a door panel 13 is rotatably connected to the left side of the front end of the cabinet 1. The front end of the door panel 13 is provided with an opening and is fixedly connected to an observation window 14. Multiple sets of ventilation holes 12 are provided on both ends of the cabinet 1, and multiple sets of partitions 15 are provided on both ends of the inner side of the cabinet 1.

[0047] Specifically, the components in the industrial control cabinet are observed through the observation window 14 , and the components are placed through multiple groups of partitions 15 .

[0048] It should be noted that the present invention is a detection device for a workshop industrial control cabinet. The user will start the first electric slider 22 to slide in the first electric slide 21, drive the movable plate 23 to move to a suitable cleaning and detection position, start the second electric slider 25 to slide in the second electric slide 24, drive the first guide plate 26 and the first connecting rod 27 to move, start the third electric slider 29 to slide in the third electric slide 28, and move the support frame 291 to the vicinity of the right end of the semi-diamond shaped heat sink 18. At this time, the sensor 298 works to detect the angle of the two groups of semi-diamond shaped heat sinks 18, thereby starting the first motor 292, driving the scraper 293 to rotate, so that the side wall of the scraper 293 is consistent with the inclination angle of the semi-diamond shaped heat sink 18, so that it can adapt to the side walls of the semi-diamond shaped heat sinks with different inclination angles, and make One side wall of the scraper 293 contacts one side wall of the semi-diamond shaped heat sink 18, and then the third electric slider 29 drives the scraper 293 to slide toward the left end of the semi-diamond shaped heat sink 18, so that the scraper 293 cleans the surface of the semi-diamond shaped heat sink 18 in the process, and then the second electric slider 25 drives the first connecting rod 27 and the scraper 293 forward, so that the sensor 298 detects the angle of the semi-diamond shaped heat sink 18 on the other side, so that the side wall of the scraper 293 is consistent with the inclination angle of the semi-diamond shaped heat sink 18, adapting to the side walls of the semi-diamond shaped heat sink 18 with different inclination angles, and then makes one side wall of the scraper 293 contact one side wall of the semi-diamond shaped heat sink 18, and then the third electric slider 29 drives the scraper 293 to slide toward the right end of the semi-diamond shaped heat sink 18, so that the scraper 293 cleans the other surface of the semi-diamond shaped heat sink 18 in the process.

[0049] At the same time, the fourth electric slider 32 is started to slide in the fourth electric slide 31, driving the second guide plate 33 and the second connecting rod 34 to move, and the fifth electric slider 36 is started to slide in the fifth electric slide 35, moving the first rotating block 37 to the right end of the semi-diamond shaped heat sink 18, and adjusting the angle of the second triangular push plate 393 by the extension and contraction of the electric telescopic rod 396. At the same time, the second motor 38 is started to drive the transmission shaft 394 to rotate, driving the support plate 39, the first triangular push plate 391 and the second triangular push plate 393 to rotate, so that the first triangular push plate 391 and the second triangular push plate 393 are respectively in close contact with the upper and lower side walls of the semi-diamond shaped heat sink 18, and then the first rotating block 37 is driven by the fifth electric slider 36 to slide to the left end of the semi-diamond shaped heat sink 18, so that the first triangular push plate 391 and the second triangular push plate 393 are in close contact with the upper and lower side walls of the semi-diamond shaped heat sink 18. The dust remaining between the two groups of semi-diamond shaped radiators 18 is cleaned. During the cleaning process, the sixth electric slider 41 of the dust collecting mechanism 4 slides inside the first electric slide groove 21, so that the collection box 43 is always located under the movable plate 23, so that when the scraper 293 and the first triangular push plate 391 and the second triangular push plate 393 clean the dust, the dust will fall into the collection box 43. When the scraper 293 finishes cleaning the semi-diamond shaped radiator 18, the solenoid valve 297 located on the two side walls of the scraper 293 is started, so that the two groups of detectors 296 start to operate, and then the side walls of the scraper 293 are aligned with the inclination angle of the semi-diamond shaped radiator 18, and one side wall of the scraper 293 no longer contacts the side wall of the semi-diamond shaped radiator 18. Then, the third electric slider 29 drives the scraper 293 to slide, so that the two groups of detectors 296 detect the two side walls of multiple groups of semi-diamond shaped radiators 18.

[0050] After the detection is completed, multiple groups of first electric sliders 22 and sixth electric sliders 41 respectively drive the movable plate 23 and the card block 42 to move upward until the bottom end of the collection box 43 is flush with the top inner side of the cabinet 1. At this time, the collection box 43 fits in the placement groove 16. Check the dust collection mechanism 4 regularly. When there is a lot of dust in the collection box 43, open the door panel 13, remove the card block 42 from the sixth electric slider 41, clean the dust in the collection box 43, and reinstall the card block 42 after cleaning.

[0051] The basic principles, main features, and advantages of the present invention are shown and described above. Those skilled in the art should understand that the present invention is not limited to the above embodiments. The above embodiments and descriptions are merely illustrative of the principles of the present invention. Various changes and modifications may be made to the present invention without departing from the spirit and scope of the present invention. Such changes and modifications are intended to fall within the scope of the present invention. The scope of protection claimed in the present invention is defined by the appended claims and their equivalents.

Claims

1. A workshop industrial control cabinet detection device, comprising a cabinet body (1), characterized in that: A cleaning detection mechanism (2) is provided between the left and right ends of the inner side of the cabinet (1), the cleaning detection mechanism (2) includes a movable plate (23), and a dust cleaning mechanism (3) is provided at one end corresponding to the two sets of movable plates (23). The dust cleaning mechanism (3) includes a first rotating block (37), a second motor (38) is provided at the left end of the first rotating block (37), and a transmission shaft (394) is provided at the output end of the second motor (38) passing through the first rotating block (37). The left and right ends of the outer wall of the transmission shaft (394) are fixedly connected to support plates (39). The bottom end of the support plate (39) is provided with a first triangular push plate (391), the inner side of the first triangular push plate (391) is provided with a rotation groove (392), the rear end of the rotation groove (392) is provided with an electric telescopic rod (396), the telescopic end of the electric telescopic rod (396) is provided with a fixed frame (398), the inner side of the fixed frame (398) is rotatably connected to a second rotating block (395), the other end of the second rotating block (395) is provided with a second triangular push plate (393), the rear end of the second triangular push plate (393) is provided with a guide groove (397) ), the guide groove (397) is matched with the electric telescopic rod (396), the bottom end of the first triangular push plate (391) is rotatably connected to the bottom end of the second triangular push plate (393), and the second triangular push plate (393) is matched with the rotating groove (392), and the left and right ends of the inner side of the cabinet (1) are both provided with first electric slide grooves (21), and the inner sides of the two groups of the first electric slide grooves (21) are both slidably connected with first electric sliders (22), and the corresponding ends of the two groups of the first electric sliders (22) are fixedly connected to the moving plate (23), and the moving plate (23) is fixedly connected to the moving plate (23). A second electric slide (24) is provided below one end corresponding to each of the plates (23), and the second electric slide (24) is located below the fourth electric slide (31). The rear end of the inner side of the cabinet (1) is fixedly connected to a plurality of mounting plates (17), and the front ends of the plurality of mounting plates (17) are provided with a plurality of semi-rhombus-shaped heat sinks (18). The rear end side wall of the first triangular push plate (391) is in close contact with the lower side wall of one set of semi-rhombus-shaped heat sinks (18), and the front end side wall of the second triangular push plate (393) is in close contact with the upper side wall of another set of semi-rhombus-shaped heat sinks (18).

2. The workshop industrial control cabinet detection device according to claim 1, characterized in that: The corresponding ends of the two groups of movable plates (23) are each provided with a fourth electric slide groove (31), the inner sides of the multiple groups of the fourth electric slide grooves (31) are all slidably connected to the fourth electric slider (32), and the other ends of the multiple groups of the fourth electric slider (32) are all fixedly connected to the second guide plate (33).

3. The workshop industrial control cabinet detection device according to claim 2, characterized in that: One end corresponding to the two sets of the second guide plates (33) is fixedly connected to a second connecting rod (34), a fifth electric slide groove (35) is provided at the rear end of the second connecting rod (34), a fifth electric slider (36) is slidably connected inside the fifth electric slide groove (35), and the bottom end of the fifth electric slider (36) is fixedly connected to the top end of the first rotating block (37).

4. The workshop industrial control cabinet detection device according to claim 1, characterized in that: The inner sides of the plurality of groups of the second electric slides (24) are all slidably connected to the second electric sliders (25), the corresponding ends of the two groups of the second electric sliders (25) are both provided with first guide plates (26), the corresponding ends of the two groups of the first guide plates (26) are fixedly connected to the first connecting rods (27), and the rear ends of the first connecting rods (27) are provided with third electric slides (28).

5. The workshop industrial control cabinet detection device according to claim 4, characterized in that: The inner side of the third electric slide (28) is slidably connected to a third electric slider (29), the other end of the third electric slider (29) is provided with a support frame (291), the left side of the bottom end of the support frame (291) is provided with a sensor (298), the left end of the support frame (291) is provided with a first motor (292), the output end of the first motor (292) passes through the support frame (291) and is provided with a scraper (293), the side wall of the scraper (293) is in contact with the side wall of the semi-rhombus heat sink (18), the outer side wall of the top end of the scraper (293) is rotatably connected to the inner side wall of the bottom end of the support frame (291), and the other end of the scraper (293) is provided with a triangular groove (294).

6. The workshop industrial control cabinet detection device according to claim 5, characterized in that: The scraper (293) is provided with detection grooves (295) at both upper and lower ends, and detectors (296) are provided inside the multiple groups of detection grooves (295). The multiple groups of detection grooves (295) are provided inside the multiple groups of detection grooves (295), and electromagnetic valves (297) are provided. The side walls of the electromagnetic valves (297) are flush with the side walls of the scraper (293).

7. The workshop industrial control cabinet detection device according to claim 1, characterized in that: A dust collecting mechanism (4) is provided inside the first electric slide (21), and the dust collecting mechanism (4) is located below the movable plate (23). The dust collecting mechanism (4) includes a sixth electric slider (41). The inner sides of the two groups of the first electric slides (21) are both slidably connected to the sixth electric slider (41). The corresponding ends of the two groups of the sixth electric sliders (41) are both provided with openings and are detachably connected to a card block (42). The corresponding ends of the two groups of the card blocks (42) are fixedly connected to a collection box (43). A placement groove (16) is provided at the top inner side of the cabinet (1), and the bottom end of the collection box (43) fits with the bottom end of the placement groove (16).

8. The workshop industrial control cabinet detection device according to claim 1, characterized in that: The left side of the front end of the cabinet body (1) is rotatably connected to a door panel (13), the front end of the door panel (13) is provided with an opening and is fixedly connected to an observation window (14), the left and right ends of the cabinet body (1) are provided with multiple groups of ventilation holes (12), and the left and right ends of the inner side of the cabinet body (1) are provided with multiple groups of partitions (15).

Citation Information

Patent Citations

  • Electrical cabinet capable of regularly and automatically removing dust

    CN220086665U

  • Fire-fighting inspection cabinet

    CN222621437U