An intelligent busbar intelligent detection device

By introducing loose warning and position adjustment mechanisms into the busbar detection device, the problem of loosening and position adjustment difficulties of data lines is solved, the stability of data transmission and the accuracy of monitoring data are achieved, and the safety and efficiency of the busbar system are improved.

CN118687697BActive Publication Date: 2025-09-02WETOWN ELECTRIC GRP CO LTD
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Patent Information

Application Number
CN202410962545.4
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-07-18
Publication Date
2025-09-02
Estimated Expiration
2044-07-18

AI Technical Summary

Technical Problem

In the existing bus temperature detection device, the data line is prone to loosening in a high-voltage and high-temperature environment, resulting in unstable data transmission and difficult position adjustment, which affects monitoring efficiency and safety.

Method used

An intelligent busbar detection device is designed, including a loose early warning mechanism and a position adjustment mechanism, which can achieve a stable connection of the data line through the slide rail, clamping plate and spring structure, and the position of the temperature detector is conveniently adjusted through the mounting frame and the clamping column structure.

Benefits of technology

The stability and security of data transmission are achieved, the risks caused by loose lines are reduced, the accuracy and reliability of monitoring data are improved, the position adjustment process is simplified, and the maintenance complexity is reduced.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention discloses an intelligent busbar intelligent detection device, which relates to the field of busbar detection technology. The device comprises a temperature detector, wherein a display light is equidistantly fixedly connected to one side of the temperature detector, a data transmission line is plugged into the side of the temperature detector away from the display light, and a loosening warning mechanism is arranged between the temperature detector and the data transmission line. The loosening warning mechanism is used to detect the connection between the data transmission line and the temperature detector, and can automatically trigger an alarm to work when the data transmission line is pulled, so that staff can promptly discover abnormalities of the data transmission line. It can not only effectively prevent the loss of temperature detection data due to line breakage or signal interruption, and enhance the stability and reliability of data transmission, but also avoid data leakage, line short circuit and leakage, so that staff can promptly discover and deal with these problems, prevent the occurrence of potential risks, and increase the safety during data transmission.
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Description

Technical Field

[0001] The present invention relates to the technical field of busbar detection, and in particular to an intelligent busbar intelligent detection device. Background Art

[0002] A busbar is a shared path to which multiple devices are connected in parallel branches. In a computer system, it refers to a shared high-speed path to which multiple computers are connected in parallel, allowing data to be transmitted between these computers at will. However, only one device can send data at a time. During busbar operation, intelligent temperature detection devices are usually used to monitor the busbar temperature in real time to ensure the safe, reliable, and efficient operation of the busbar system.

[0003] When the temperature detection device monitors the busbar, the detected data is usually transmitted to the display device through the data cable so that the staff can compare and record the data. However, the data cable is affected by other factors. For example, the busbar temperature monitoring is usually carried out in harsh environments such as high voltage and high temperature. High temperature will accelerate the aging of the outer sheath of the data cable, which will cause the problem of loosening. After the data cable becomes loose, the staff cannot find out in the first time, which will not only cause the data transmission of the temperature detection device to be unstable or even interrupted, affecting the real-time monitoring and recording of the busbar temperature by the temperature detection device, reducing work efficiency and accuracy, but also the loose data cable will cause safety hazards. For example, in a high-voltage environment, if the data cable is loose and causes a short circuit or leakage, it will cause a serious accident such as fire or electric shock.

[0004] Secondly, when the temperature detection device is installed on the busbar system for detection, it is generally fixed with bolts. Due to the influence of the bolts, it is inconvenient for the staff to adjust the detection position of the temperature detection device again after the installation is completed. Due to the difficulty in adjusting the position, when the position of the temperature detection device needs to be adjusted, more manpower and time costs are required, which increases the complexity of maintenance work and affects the normal operation of the busbar system.

[0005] Therefore, the present invention proposes an intelligent busbar intelligent detection device to solve the above problems. Summary of the Invention

[0006] (1) Technical problems solved

[0007] In view of the shortcomings of the prior art, the present invention provides an intelligent busbar intelligent detection device, which can effectively solve the problem in the prior art that workers cannot promptly understand whether the data line is loose.

[0008] (2) Technical solution

[0009] To achieve the above object, the object of the present invention can be achieved through the following technical solutions:

[0010] An intelligent busbar intelligent detection device includes a temperature detector, a display light is equidistantly fixedly connected to one side of the temperature detector, a data transmission line is plugged into the side of the temperature detector away from the display light, a loosening warning mechanism is provided between the temperature detector and the data transmission line, the loosening warning mechanism is used to detect the connection between the data transmission line and the temperature detector, and a position adjustment mechanism is provided below the temperature detector, the position adjustment mechanism is used to adjust the position detected by the temperature detector.

[0011] As a further solution of the present invention: the loosening warning mechanism includes symmetrically arranged sliding rails, the sliding rails are fixedly connected to the side of the temperature detector close to the data transmission line, the sliding rails are slidably connected to the side of the temperature detector away from the temperature detector, and the opposite side of the movable plate is provided with a groove, and the groove is slidably connected with a clamping plate, and the clamping plates are respectively located on both sides of the data transmission line.

[0012] As a further solution of the present invention: the clamping plate is fixedly connected to a sliding column on the side away from the slide rail, the sliding columns are slidably connected to the movable plate, the sliding columns are fixedly connected to a connecting plate on the end away from the movable plate, the connecting plate is fixedly connected to a first contact on the side close to the movable plate, the movable plate is fixedly connected to a second contact on the side close to the connecting plate, the first contact and the second contact are initially clamped to each other, and an alarm is fixedly connected to the upper end surface of the movable plate on the side close to the second contact.

[0013] As a further solution of the present invention: the clamping plate is fixedly connected to a first spring on one side close to the connecting plate, the first spring is fixedly connected to the inner wall of the groove at one end away from the clamping plate, and the first spring is sleeved on the outer surface of the sliding column.

[0014] As a further solution of the present invention: the upper end surfaces of the slide rails are fixedly connected to frames, and pressing plates are vertically slidably connected between the frames. The lower end surfaces of the pressing plates are fixedly connected to second springs, and the second springs are fixedly connected to the bottom of the frame at one end away from the pressing plate. The pressing plates are symmetrically rotatably connected to the side close to the movable plate with push plates, and the push plates are rotatably connected to the upper end surfaces of the two movable plates at one end away from the pressing plate.

[0015] As a further solution of the present invention: the position adjustment mechanism includes a mounting bracket, the mounting bracket is located below the temperature detector, and symmetrical sliding grooves are provided inside the mounting bracket. The sliding grooves are slidably connected to movable brackets, and the movable brackets are fixedly connected to the lower end surface of the temperature detector.

[0016] As a further solution of the present invention: the mounting frame is provided with equidistant card holes on one side close to the slide slot, the card holes are connected to the slide slot, the movable frame is slidably connected with a card column, the card column and the card hole are mutually engaged, the upper end of the card column is rotatably connected with a pull plate, the pull plate is rotatably connected with a cylinder at the end away from the card column, a turntable is fixedly connected between the upper end faces of the cylinder, the cylinders are located near the edge of the lower end face of the turntable, the upper end face of the turntable is fixedly connected with a rotating shaft, the rotating shaft is rotatably connected to the temperature detector, and the upper end of the rotating shaft is fixedly connected with a handle.

[0017] As a further solution of the present invention: side panels are provided on both sides of the handle, and the side panels are fixedly connected to the upper end surface of the temperature detector. Limiting grooves are provided on the upper end surfaces of the side panels. Through grooves are provided on both sides of the handle, and lifting plates are vertically slidably connected between the through grooves. The lifting plates are fixedly connected to limiting columns on the side close to the side panels, and the limiting columns are clamped with the limiting grooves.

[0018] (3) Beneficial effects

[0019] Compared with the prior art, the present invention provides an intelligent busbar intelligent detection device, which has the following beneficial effects:

[0020] 1. By setting up a loose warning mechanism, the alarm can be automatically triggered when the data transmission line is pulled, which is convenient for staff to detect abnormalities in the data transmission line in time. It can not only effectively prevent the loss of temperature detection data due to line breakage or signal interruption, and enhance the stability and reliability of data transmission, but also avoid data leakage, line short circuit and leakage, so that staff can detect and deal with these problems in time, prevent potential risks, and increase the safety of data transmission.

[0021] 2. By providing the first spring and the clamping plate, pressure and resistance can be applied to the data transmission line after the data transmission line is plugged into the temperature detector. This not only ensures that the data transmission line remains firmly connected when plugged into the temperature detector, but also prevents the data transmission line from accidentally falling off due to looseness or vibration, thereby further ensuring the continuity and stability of data transmission. Moreover, the stable data transmission line connection reduces the risk of accidental power outages due to loose or falling lines, thereby ensuring the stable operation of the temperature detector and the entire monitoring system.

[0022] 3. Through the provided position adjustment mechanism, the installation position of the temperature detector on the busbar system can be easily adjusted according to the needs of the staff. The layout of the busbar system varies from project to project. Compared with the existing technology of fixing the temperature detector by bolts, the flexible adjustment of the position of the temperature detector can not only better adapt to different installation environments and requirements, but also quickly and easily adjust the installation position of the temperature detector according to actual needs. In addition, in some complex busbar systems, there will be monitoring blind spots. By adjusting the position of the temperature detector, these blind spots can be reduced, ensuring the monitoring coverage of the entire busbar system, and making it easier to find the best monitoring point, thereby improving the accuracy and reliability of the monitoring data. BRIEF DESCRIPTION OF THE DRAWINGS

[0023] To facilitate understanding by those skilled in the art, the present invention is further described below with reference to the accompanying drawings.

[0024] Figure 1 It is a schematic diagram of the overall structure of the present invention;

[0025] Figure 2 For the present invention Figure 1 Another perspective structural diagram;

[0026] Figure 3 For the present invention Figure 2 Schematic diagram of the structure of the middle A area;

[0027] Figure 4 For the present invention Figure 2 Schematic diagram of the structure of the middle B area;

[0028] Figure 5 For the present invention Figure 2 Schematic diagram of the enlarged structure of the middle C area;

[0029] Figure 6 This is a schematic diagram of the connection structure between the movable plate and the pressing plate of the present invention;

[0030] Figure 7 For the present invention Figure 2 Schematic diagram of the structure viewed from above;

[0031] Figure 8 It is a schematic diagram of the connection structure of the position adjustment mechanism of the present invention.

[0032] In the picture: 1. Temperature detector; 2. Display light; 3. Data transmission line;

[0033] 4. Position adjustment mechanism; 401. Mounting frame; 402. Slideway; 403. Moving frame; 404. Clamping hole; 405. Clamping column; 406. Handle; 407. Rotating shaft; 408. Through slot; 409. Lifting plate; 410. Side plate; 411. Limiting column; 412. Limiting slot; 413. Turntable; 414. Cylinder; 415. Pull plate;

[0034] 5. Loosening warning mechanism; 501. Slide rail; 502. Moving plate; 503. Groove; 504. Clamping plate; 505. Sliding column; 506. Connecting plate; 507. First contact; 508. Second contact; 509. Alarm; 510. First spring; 511. Frame; 512. Pressing plate; 513. Second spring; 514. Pushing plate. DETAILED DESCRIPTION

[0035] The technical solutions of the present invention will be clearly and completely described below in conjunction with the embodiments. Obviously, the embodiments described are only some embodiments of the present invention, not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.

[0036] An intelligent bus intelligent detection device of this embodiment, such as Figure 1 - Figure 8 As shown, it includes a temperature detector 1, a display light 2 is equidistantly fixedly connected to one side of the temperature detector 1, a data transmission line 3 is plugged into the side of the temperature detector 1 away from the display light 2, and a loosening warning mechanism 5 is provided between the temperature detector 1 and the data transmission line 3. The loosening warning mechanism 5 is used to detect the connection between the data transmission line 3 and the temperature detector 1.

[0037] In this embodiment, Figure 6 As shown, the loosening warning mechanism 5 includes symmetrically arranged slide rails 501, and the slide rails 501 are fixedly connected to the side of the temperature detector 1 close to the data transmission line 3. The slide rails 501 are slidably connected to the side of the temperature detector 1 away from the temperature detector 1. A movable plate 502 is provided on the opposite side of the movable plate 502. A groove 503 is provided in the groove 503. A clamping plate 504 is slidably connected. The clamping plates 504 are respectively located on both sides of the data transmission line 3. When the movable plates 502 are driven to slide close to each other in the slide rails 501, the clamping plates 504 can be clamped on the data transmission line 3 and limit the data transmission line 3.

[0038] In this embodiment, Figure 3As shown, the clamping plate 504 is fixedly connected to a sliding column 505 on the side away from the slide rail 501, and the sliding column 505 is slidably connected to the movable plate 502. The sliding column 505 is fixedly connected to a connecting plate 506 on the end away from the movable plate 502, and the connecting plate 506 is fixedly connected to a first contact 507 on the side close to the movable plate 502, and the movable plate 502 is fixedly connected to a second contact 508 on the side close to the connecting plate 506. The first contact 507 and the second contact 508 are initially engaged with each other, and the upper end surface of the movable plate 502 is fixedly connected to an alarm 509 on the side close to the second contact 508. When the clamping plate 504 slides in the groove 503, it will push the sliding column 505 to slide out of the movable plate 502 synchronously, and drive the first contact 507 and the second contact 508 to separate through the connecting plate 506, turning on the alarm 509 to work.

[0039] In this embodiment, Figure 3 As shown, the clamping plate 504 is fixedly connected to the side close to the connecting plate 506 with a first spring 510, and the first spring 510 is fixedly connected to the inner wall of the groove 503 at one end away from the clamping plate 504. The first spring 510 is sleeved on the outer surface of the sliding column 505. By setting the first spring 510, the resistance encountered by the clamping plate 504 when sliding in the groove 503 can be increased.

[0040] In this embodiment, Figure 4 As shown, the upper end surfaces of the slide rails 501 are fixedly connected to the frames 511, and the pressing plates 512 are vertically slidably connected between the frames 511. The lower end surfaces of the pressing plates 512 are fixedly connected to the second springs 513, and the second springs 513 are fixedly connected to the inner bottom of the frames 511 at one end away from the pressing plates 512. The pressing plates 512 are symmetrically connected to the push plates 514 on the side close to the movable plate 502, and the push plates 514 are rotatably connected to the upper end surfaces of the two movable plates 502 at one end away from the pressing plates 512. By pressing down the pressing plates 512 and changing the inclination angle of the push plates 514, the movable plates 502 can be driven away from each other. After releasing the pressing plates 512, the rebound force of the second springs 513 can automatically drive the push plates 514 and the movable plates 502 to reset, which is convenient to operate.

[0041] In the prior art, data cables are affected by other factors. For example, busbar temperature monitoring is usually carried out in harsh environments such as high voltage and high temperature. High temperature will accelerate the aging of the outer sheath of the data cable, which will in turn cause the problem of loosening. After the data cable becomes loose, the staff cannot understand it in the first time, which will not only cause the data transmission of the temperature detection device to be unstable or even interrupted, affecting the real-time monitoring and recording of the busbar temperature by the temperature detection device, reducing work efficiency and accuracy, but also the loose data cable will cause safety hazards. For example, in a high-voltage environment, if the data cable is loose and causes a short circuit or leakage, it will cause a serious accident of fire or electric shock. Compared with the prior art, the alarm 509 can be automatically triggered to work when the data transmission line 3 is pulled, so that the staff can detect the abnormality of the data transmission line 3 in time. It can not only effectively prevent the loss of temperature detection data due to line breakage or signal interruption, enhance the stability and reliability of data transmission, but also avoid data leakage. Short circuit and leakage of the line can be avoided, so that the staff can detect and deal with these problems in time, prevent the occurrence of potential risks, and increase the safety of the data transmission process.

[0042] Secondly, by providing the first spring 510 and the clamping plate 504, pressure and resistance can be applied to the data transmission line 3 after the data transmission line 3 is plugged into the temperature detector 1. This not only ensures that the data transmission line 3 maintains a firm connection when plugged into the temperature detector 1, but also prevents the data transmission line 3 from accidentally falling off due to loosening or vibration, thereby further ensuring the continuity and stability of data transmission. Moreover, the stable connection of the data transmission line 3 reduces the risk of accidental power outages due to loosening or falling off of the line, thereby ensuring the stable operation of the temperature detector 1 and the entire monitoring system.

[0043] In other aspects, this embodiment also provides a position adjustment mechanism 4 for adjusting the detection position of the temperature detector 1, such as Figure 2 、 Figure 5 、 Figure 7 and Figure 8 As shown, the position adjustment mechanism 4 includes a mounting bracket 401, which is located below the temperature detector 1. Slide grooves 402 are symmetrically opened inside the mounting bracket 401, and movable brackets 403 are slidably connected in the slide grooves 402. The movable brackets 403 are fixedly connected to the lower end surface of the temperature detector 1.

[0044] In this embodiment, Figure 8As shown, the mounting frame 401 is provided with equidistantly arranged clamping holes 404 on one side close to the slide groove 402, and the clamping holes 404 are all connected to the slide groove 402. The movable frame 403 is slidably connected with a clamping column 405, and the clamping column 405 is clamped with the clamping hole 404. The upper end of the clamping column 405 is rotatably connected to a pull plate 415, and the end of the pull plate 415 away from the clamping column 405 is rotatably connected to a cylinder 414. A turntable 413 is fixedly connected between the upper end surfaces of the cylinder 414, and the cylinder 414 is located near the edge of the lower end surface of the turntable 413. The turntable 41 The upper end surface of the rotating shaft 407 is fixedly connected to the rotating shaft 407, which penetrates and is rotatably connected to the temperature detector 1. The upper end of the rotating shaft 407 is fixedly connected to the handle 406. When the handle 406 is turned to rotate the rotating shaft 407, the clamping column 405 can be driven to slide on the movable frame 403 through the turntable 413, the cylinder 414 and the pull plate 415, so that the clamping column 405 and the clamping hole 404 are engaged with or separated from each other, so as to drive the movable frame 403 to move in the slide groove 402 or fix the movable frame 403 at a specified position in the slide groove 402.

[0045] In this embodiment, Figure 5 As shown, side panels 410 are provided on both sides of the handle 406, and the side panels 410 are fixedly connected to the upper end surface of the temperature detector 1. The upper end surfaces of the side panels 410 are provided with limiting grooves 412, and through grooves 408 are provided on both sides of the handle 406. A lifting plate 409 is vertically slidably connected between the through grooves 408, and the lifting plate 409 is fixedly connected to the limiting column 411 on the side close to the side panel 410. The limiting columns 411 are engaged with the limiting grooves 412. By driving the limiting columns 411 to slide into the limiting grooves 412, the handle 406 can be limited. Compared with the prior art, it can prevent the handle 406 from rotating due to external factors.

[0046] In the prior art, when a temperature detection device is installed on a busbar system for detection, the temperature detection device is generally fixed by bolts. Due to the influence of the bolts, it is inconvenient for the staff to adjust the detection position of the temperature detection device again after the installation is completed. Due to the difficulty in adjusting the position, when the position of the temperature detection device needs to be adjusted, more manpower and time costs are required, which increases the complexity of maintenance work and affects the normal operation of the busbar system. Compared with the prior art, the installation position of the temperature detector 1 on the busbar system can be easily adjusted according to the needs of the staff. The layout of the busbar system varies from project to project. Compared with the prior art in which the temperature detector 1 is fixed by bolts, the position of the temperature detector 1 can be flexibly adjusted. It can not only better adapt to different installation environments and requirements, but also quickly and easily adjust the installation position of the temperature detector 1 according to actual needs. In addition, in some complex busbar systems, there will be monitoring blind spots. By adjusting the position of the temperature detector 1, these blind spots can be reduced, ensuring the monitoring coverage of the entire busbar system, and making it easier to find the best monitoring point, thereby improving the accuracy and reliability of the monitoring data.

[0047] The working process and principles involved in the overall content of the above embodiment are as follows:

[0048] When the staff is testing the temperature of the busbar system, they first fix the mounting frame 401 on the busbar system, and then press the pressing plate 512 downward, so that the pressing plate 512 slides downward on the two frames 511, and at the same time, the pressing plate 512 presses the second spring 513 connected to the lower end. In the process of the pressing plate 512 descending, it pushes the upper end of the push plate 514 to move synchronously, changing the tilt angle of the push plate 514. As the tilt angle of the push plate 514 changes, the push plate 514 pushes the moving plate 502 to slide away from each other inside the slide rail 501, and drives the two clamping plates 504 away from each other through the groove 503 opened on the side wall of the moving plate 502. After the plate 504 is away, the staff can take the data transmission line 3 and plug the data transmission line 3 into the side wall of the temperature detector 1. After the data transmission line 3 is plugged in, the staff can release the pressing plate 512. The rebound force of the second spring 513 pushes the pressing plate 512 to automatically rise in the frame 511, and changes the inclination angle of the push plate 514 connected to the side wall of the pressing plate 512 again, pulling the movable plate 502 to slide close to each other inside the slide rail 501, driving the clamping plate 504 connected to the side wall of the movable plate 502 to move close to the data transmission line 3, clamping the data transmission line 3, and fitting it onto the plug connector connected between the data transmission line 3 and the temperature detector 1;

[0049] After the data transmission line 3 is firmly connected, the staff can lift the lifting plate 409 upwards, pull the lifting plate 409 to slide upwards in the through slots 408 opened on both sides of the handle 406, and drive the limiting posts 411 on both sides to slide out from the limiting slots 412 opened on the upper end faces of the side plates 410. When the limiting posts 411 and the limiting slots 412 are separated, the staff can turn the handle 406 to drive the shaft 407 to rotate on the temperature detector 1, and drive the turntable 413 connected to the lower end of the shaft 407 to rotate synchronously. During the rotation of the turntable 413, the cylinder 414 connected to the edge of the lower end face of the turntable 413 will move synchronously around the shaft 407 and pull one end of the pulling plate 415, so that the pulling plate 415 pulls the card column 405 connected to one end away from the cylinder 414 to slide on the movable frame 403. At the same time, the card column 405 will After the clamping column 405 and the clamping hole 404 are separated, the staff can move the handle 406 horizontally and move the temperature detector 1 by the rotating shaft 407, so that the movable frame 403 connected to the lower end of the temperature detector 1 slides in the sliding groove 402 provided on the inner wall of the mounting frame 401, thereby changing the position of the temperature detector 1 on the busbar system. It can not only better adapt to different installation environments and requirements, but also quickly and easily adjust the installation position of the temperature detector 1 according to actual needs. In addition, in some complex busbar systems, there will be monitoring blind spots. By adjusting the position of the temperature detector 1, these blind spots can be reduced, ensuring the monitoring coverage of the entire busbar system, and making it easier to find the best monitoring point, thereby improving the accuracy and reliability of the monitoring data.

[0050] After the temperature detector 1 moves to the automatic position, the staff can reverse the handle 406 and push the clamping column 405 to slide in the opposite direction on the movable frame 403 through the rotating shaft 407, the rotating disk 413, the cylinder 414 and the pulling plate 415, so that the clamping column 405 is again clamped into the clamping hole 404 connected to the side wall of the mounting frame 401, and the position of the movable frame 403 and the temperature detector 1 is fixed. After the clamping column 405 is clamped into the clamping hole 404, the staff can release the handle 406 and the lifting plate 409. At this time, under the influence of the weight of the lifting plate 409 itself, the lifting plate 409 will automatically slide downward in the through groove 408 provided on the handle 406 and be clamped into the limiting groove 412 provided on the upper end surface of the side plates 410 on both sides, so as to prevent the handle 406 from automatically rotating due to external factors.

[0051] When the staff moves the temperature detector 1, if the data transmission line 3 is pulled, the plug connector connected between the data transmission line 3 and the temperature detector 1 will push the clamping plate 504 to slide in the groove 503. Since a first spring 510 is connected between the clamping plate 504 and the groove 503, the clamping plate 504 will be subjected to the resistance of the first spring 510 during the movement, and can apply pressure and resistance to the data transmission line 3 after the data transmission line 3 is plugged into the temperature detector 1. This not only ensures that the data transmission line 3 remains firmly connected when plugged into the temperature detector 1, but also prevents the data transmission line 3 from accidentally falling off due to loosening or vibration, thereby further ensuring the continuity and stability of data transmission. In addition, the stable connection of the data transmission line 3 reduces the risk of accidental power failure due to loosening or falling off of the line, thereby ensuring the stable operation of the temperature detector 1 and the entire monitoring system.

[0052] When the data transmission line 3 is loosened due to strong pulling or damage, the data transmission line 3 will push the clamping plate 504 to slide in the groove 503 through the plug connector, squeeze the first spring 510, and at the same time push the slide post 505 to slide out from the inside of the movable plate 502. During the movement of the slide post 505, the slide post 505 will drive the first contact 507 to move synchronously through the connecting plate 506, so that the first contact 507 and the second contact 508 are separated. After the first contact 507 and the second contact 508 are completely separated, the alarm 509 connected to the upper end surface of the movable plate 502 will be turned on to work, so that the staff can detect the abnormality of the data transmission line 3 in time. It can not only effectively prevent the loss of temperature detection data due to line breakage or signal interruption, enhance the stability and reliability of data transmission, but also avoid data leakage, line short circuit and leakage, so that the staff can detect and deal with these problems in time, prevent potential risks, and increase the safety of the data transmission process.

[0053] The preferred embodiments of the present invention disclosed above are intended only to help illustrate the present invention. These preferred embodiments do not exhaustively describe all details, nor do they limit the present invention to the specific embodiments described. Obviously, many modifications and variations are possible based on the content of this specification. These embodiments are selected and described in detail in this specification to better explain the principles and practical applications of the present invention, thereby enabling those skilled in the art to better understand and utilize the present invention. The present invention is limited only by the claims and their full scope and equivalents.

Claims

1. An intelligent busbar intelligent detection device, comprising a temperature detector (1), a display light (2) being fixedly connected to one side of the temperature detector (1) at equal distances, and a data transmission line (3) being plugged into the side of the temperature detector (1) away from the display light (2), characterized in that: A loosening warning mechanism (5) is provided between the temperature detector (1) and the data transmission line (3), and the loosening warning mechanism (5) is used to detect the connection between the data transmission line (3) and the temperature detector (1); A position adjustment mechanism (4) is provided below the temperature detector (1), and the position adjustment mechanism (4) is used to adjust the position detected by the temperature detector (1); The loosening warning mechanism (5) includes symmetrically arranged slide rails (501), each of the slide rails (501) being fixedly connected to a side of the temperature detector (1) close to the data transmission line (3), and each of the slide rails (501) being slidably connected to a movable plate (502) on a side away from the temperature detector (1), and each of the movable plates (502) having a groove (503) formed on an opposite side thereof, and each of the grooves (503) being slidably connected to a clamping plate (504), and each of the clamping plates (504) being located on both sides of the data transmission line (3); The clamping plate (504) is fixedly connected to a sliding column (505) on one side away from the slide rail (501), and the sliding column (505) is slidably connected to the movable plate (502). The sliding column (505) is fixedly connected to a connecting plate (506) on one end away from the movable plate (502). The connecting plate (506) is fixedly connected to a first contact (507) on one side close to the movable plate (502), and the movable plate (502) is fixedly connected to a second contact (508) on one side close to the connecting plate (506). The first contact (507) and the second contact (508) are both engaged with each other in an initial state, and an alarm (509) is fixedly connected to the upper end surface of the movable plate (502) on one side close to the second contact (508). The position adjustment mechanism (4) includes a mounting frame (401), the mounting frame (401) is located below the temperature detector (1), and symmetrically provided with sliding grooves (402) inside the mounting frame (401), and movable frames (403) are slidably connected in the sliding grooves (402), and the movable frames (403) are fixedly connected to the lower end surface of the temperature detector (1); The mounting frame (401) is provided with clamping holes (404) at equal intervals on one side close to the slide groove (402), and the clamping holes (404) are all connected to the slide groove (402). The movable frame (403) is provided with clamping columns (405) which are slidably connected thereto, and the clamping columns (405) are mutually clamped with the clamping holes (404). The upper ends of the clamping columns (405) are rotatably connected to pull plates (415), and the pull plates (415) are away from the clamping columns (403). 5) One end is rotatably connected to a cylinder (414), the upper end surfaces of the cylinders (414) are fixedly connected to a turntable (413), the cylinders (414) are located near the edge of the lower end surface of the turntable (413), the upper end surface of the turntable (413) is fixedly connected to a rotating shaft (407), the rotating shaft (407) passes through and is rotatably connected to the temperature detector (1), and the upper end of the rotating shaft (407) is fixedly connected to a handle (406).

2. The intelligent busbar intelligent detection device according to claim 1, characterized in that: The clamping plate (504) is fixedly connected to a first spring (510) on one side close to the connecting plate (506), and the first spring (510) is fixedly connected to the inner wall of the groove (503) at one end away from the clamping plate (504). The first spring (510) is sleeved on the outer surface of the sliding column (505).

3. The intelligent busbar intelligent detection device according to claim 1, characterized in that: The upper end surfaces of the slide rails (501) are fixedly connected to frames (511), and pressing plates (512) are vertically slidably connected between the frames (511). The lower end surfaces of the pressing plates (512) are fixedly connected to second springs (513), and the ends of the second springs (513) away from the pressing plates (512) are fixedly connected to the inner bottom of the frames (511). The pressing plates (512) are symmetrically rotatably connected to the side close to the movable plate (502) with push plates (514), and the ends of the push plates (514) away from the pressing plates (512) are respectively rotatably connected to the upper end surfaces of the two movable plates (502).

4. The intelligent busbar intelligent detection device according to claim 1, characterized in that: Side panels (410) are provided on both sides of the handle (406), and the side panels (410) are fixedly connected to the upper end surface of the temperature detector (1). The upper end surface of the side panels (410) is provided with a limiting groove (412). Through grooves (408) are provided on both sides of the handle (406), and a lifting plate (409) is vertically slidably connected between the through grooves (408). The lifting plate (409) is fixedly connected to a limiting column (411) on one side close to the side panel (410), and the limiting column (411) and the limiting groove (412) are mutually engaged.

Citation Information

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