High-temperature monitoring device for power equipment
By designing a detachable mounting base and mounting plate, combined with the adjustment of compression springs and clamps, the problem that the existing high-temperature monitoring devices cannot adapt to different sizes and models is solved, and flexible installation and maintenance of different models of devices is achieved, making it easier to expand the scope of application.
Patent Information
- Application Number
- CN202422241758.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-13
- Publication Date
- 2025-06-20
- Estimated Expiration
- 2034-09-13
AI Technical Summary
When installed in the power distribution cabinet, the existing high-temperature monitoring devices cannot be disassembled and replaced by monitoring devices of different sizes and models, and the scope of use is narrow.
A high-temperature monitoring device is designed, which includes a detachable mounting base and mounting plate. The installation of different types of monitoring devices is realized through the adjustment of compression springs and clamps, and the mounting stability is ensured using a slot and a screw hole structure.
It realizes the installation and disassembly of different types of monitoring devices using one mount, expands the scope of application of the device, and improves the flexibility of the equipment and maintains convenience.
Smart Images

Figure CN223005622U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to a high-temperature monitoring device for power equipment, in particular to a high-temperature monitoring device for power equipment applied to the technical field of power system monitoring. Background Art
[0002] In a power system, the normal operation of power equipment is crucial for ensuring the reliability of power supply. However, due to various reasons, the temperature of power equipment may rise during operation. If these high-temperature problems cannot be detected and handled in time, it may lead to serious consequences such as equipment damage, power outage, and even fire. Therefore, it is very necessary to use a high-temperature monitoring device to monitor power equipment in real time.
[0003] The specification of Chinese Patent CN210862950U discloses a high-temperature alarm device for power equipment, which includes a connecting piece for connecting with the power equipment, a detection module arranged on the connecting piece, and a microprocessor connected to the detection module. The high-temperature alarm device for power equipment of the utility model connects the detection module with the power equipment through the connecting piece, so as to facilitate the detection module to detect the power equipment in real time and be processed by the microprocessor, thereby facilitating the staff to obtain the working conditions of the power equipment in real time, and effectively improving the quality of monitoring the power equipment by the utility model.
[0004] When the existing high-temperature monitoring device is installed in a distribution cabinet, it is impossible to disassemble and replace monitoring devices of different sizes and models, and the applicable range is narrow. Summary of the Utility Model
[0005] Aiming at the above-mentioned prior art, the technical problem to be solved by the utility model is that when the existing high-temperature monitoring device is installed in a distribution cabinet, it is impossible to disassemble and replace monitoring devices of different sizes and models, and the usage range is narrow.
[0006] To solve the above problems, the utility model provides a high-temperature monitoring device for power equipment, which includes a monitoring device body. A mounting seat is detachably connected to the back of the monitoring device body. A mounting plate is fixedly connected to the back of the monitoring device body and is matched with the monitoring device body. One end of the mounting seat close to the monitoring device body is fixedly connected with a first clamping groove, and the mounting plate is clamped with the first clamping groove. A plurality of compression springs are symmetrically and equidistantly fixedly connected to the inner wall of the first clamping groove. One end of the compression spring away from the first clamping groove is fixedly connected with a clamping plate. Corresponding first screw holes are opened on the side wall of the first clamping groove and the clamping plate, and bolts are inserted into the first screw holes. The first screw holes and the compression springs are staggered. Second screw holes corresponding to the first screw holes are opened on the mounting plate. Connecting plates are detachably connected to both ends of the mounting seat.
[0007] In the above high-temperature monitoring device, the effect of using one mounting base to install monitoring device bodies of different models is effectively achieved.
[0008] As a further improvement of the present application, a second card slot is drilled at one end of the mounting base, a second card block is fixedly connected to the end of the mounting base away from the second card slot, and the connecting plate is detachably connected to the second card slot.
[0009] As a further improvement of the present application, a first card block is fixedly connected to one end of the connecting plate close to the second card slot, and the first card block is engaged with the second card slot. A first slot is drilled at the top of the first card block.
[0010] As a further improvement of the present application, second slots are drilled at the tops of the second card slot, the first card block and the second card block. A first limiting block is inserted into each of the multiple second slots, and a pull rope is fixedly connected to the top of the first limiting block.
[0011] As another improvement of the present application, a third card block is fixedly connected to one end of the first card slot close to the mounting base, a third card slot is drilled at the end of the mounting base close to the first card slot, and the third card slot is engaged with the third card block.
[0012] As a supplementary improvement of another improvement of the present application, third slots are drilled at the tops of the third card slot and the third card block, and a second limiting block is inserted into the third slot.
[0013] As a supplementary improvement of another improvement of the present application, an anti-rust coating is applied to the surfaces of the first limiting block, the second limiting block and the bolt.
[0014] In summary, when installing the monitoring device body, first fix the connecting plates on both sides to the power distribution cabinet through screws. Then insert the mounting plate on the back of the monitoring device body between the two clamping plates in the first card slot. The clamping plates can be adjusted in telescopic manner according to the size of the mounting plate by means of compression springs, so that the mounting plate is tightly clamped between the two clamping plates. At the same time, the second screw hole can coincide with any one of the first screw holes on the side of the first card slot. Then insert the bolt into the first screw hole through the entire first card slot and the mounting plate, and fix it with a nut, thus completing the fixed installation of the monitoring device body. And when the monitoring device body fails, it can be quickly disassembled and repaired, effectively achieving the effect of using one mounting base to install monitoring device bodies of different models. BRIEF DESCRIPTION OF THE DRAWINGS
[0015] Figure 1 Isometric view of the monitoring device according to the first embodiment of the present application;
[0016] Figure 2 Structural diagram of the mounting base according to the first and second embodiments of the present application;
[0017] Figure 3 For the present applicationFigure 2 Enlarged view at position A in the middle;
[0018] Figure 4 Internal structure diagram of the mounting base for the first embodiment of the present application;
[0019] Figure 5 Rear view structure diagram of the monitoring device for the first embodiment of the present application;
[0020] Figure 6 Connection structure diagram of the mounting base and the mounting plate for the first embodiment of the present application;
[0021] Figure 7 Structure diagram of the disassembly state of the first card slot for the second embodiment of the present application.
[0022] Explanation of the reference numerals in the figure:
[0023] 1. Monitoring device body; 2. Mounting base; 3. Connecting plate; 4. First limiting block; 5. First card slot; 6. First screw hole; 7. Bolt; 8. Second card slot; 9. Mounting plate; 10. First card block; 11. First slot; 12. Second slot; 13. Second screw hole; 14. Pulling rope; 15. Clamping plate; 16. Compression spring; 17. Second card block; 18. Third card slot; 19. Third card block; 20. Third slot; 21. Second limiting block. Specific embodiments
[0024] The following will make a detailed description of the two embodiments of the present application with reference to the accompanying drawings.
[0025] The first embodiment:
[0026] Figures 1-6 A high-temperature monitoring device for power equipment is shown, including a monitoring device body 1. The back of the monitoring device body 1 is detachably connected with a mounting base 2. The back of the monitoring device body 1 is fixedly connected with a mounting plate 9, and the mounting plate 9 is matched with the monitoring device body 1. One end of the mounting base 2 close to the monitoring device body 1 is fixedly connected with a first card slot 5, and the mounting plate 9 is engaged with the first card slot 5. A plurality of compression springs 16 are symmetrically and equidistantly fixedly connected to the inner wall of the first card slot 5. One end of the compression spring 16 away from the first card slot 5 is fixedly connected with a clamping plate 15. Corresponding first screw holes 6 are opened on the side wall of the first card slot 5 and the clamping plate 15, and bolts 7 are inserted into the first screw holes 6, and the first screw holes 6 and the compression springs 16 are staggered. Second screw holes 13 corresponding to the first screw holes 6 are opened on the mounting plate 9. The two ends of the mounting base 2 are detachably connected with a connecting plate 3.
[0027] This solution can achieve the following: When installing the monitoring device body 1, first fix the connecting plates 3 on both sides to the power distribution cabinet by screws. Then, insert the mounting plate 9 on the back of the monitoring device body 1 between the two clamping plates 15 in the first card slot 5. The clamping plates 15 can be adjusted in length by compressing the spring 16 according to the size of the mounting plate 9, so that the mounting plate 9 is tightly clamped between the two clamping plates 15. At the same time, the second screw hole 13 can correspond and coincide with any one of the first screw holes 6 on the side of the first card slot 5. Then, insert the bolt 7 into the first screw hole 6 to penetrate through the entire first card slot 5 and the mounting plate 9, and fix it with a nut, thus completing the fixed installation of the monitoring device body 1. And when the monitoring device body 1 fails, it can be quickly disassembled and repaired, effectively achieving the effect that different models of monitoring device bodies 1 can be installed using one mounting seat 2.
[0028] The second implementation method:
[0029] Figures 2-3 and Figure 7 It is shown that a second card slot 8 is drilled at one end of the mounting seat 2, a second card block 17 is fixedly connected to the end of the mounting seat 2 away from the second card slot 8, and the connecting plate 3 is detachably connected in the second card slot 8. A first card block 10 is fixedly connected to one end of the connecting plate 3 close to the second card slot 8, and the first card block 10 is engaged with the second card slot 8. A first slot 11 is drilled at the top of the first card block 10, and second slots 12 are drilled at the tops of the second card slot 8, the first card block 10, and the second card block 17. A first limiting block 4 is inserted into each of the multiple second slots 12, and a pull rope 14 is fixedly connected to the top of the first limiting block 4. A third card block 19 is fixedly connected to one end of the first card slot 5 close to the mounting seat 2, a third card slot 18 is drilled at one end of the mounting seat 2 close to the first card slot 5, and the third card slot 18 is engaged with the third card block 19. Third slots 20 are drilled at the tops of the third card slot 18 and the third card block 19. A second limiting block 21 is inserted into the third slot 20. Anti-rust coatings are applied to the surfaces of the first limiting block 4, the second limiting block 21, and the bolt 7.
[0030] The present solution can achieve the following: When multiple monitoring device bodies 1 need to be installed in a large distribution cabinet to comprehensively monitor the temperatures in different areas, the corresponding number of mounting seats 2 can be selected according to the internal space. The first clamping block 10 is inserted into the second card slot 8 on the adjacent mounting seat 2, and then the first limiting block 4 is inserted into the second slot 12 for fixation. After installation, the connecting plates 3 on both sides can be engaged with the second card slot 8 through the first clamping block 10, and the first limiting block 4 is inserted into the second slot 12 and the first slot 11 for fixation. At this time, screws can be used to install the spliced mounting seats 2, and the mounting plates 9 on the mounting seats 2 can be selectively disassembled and assembled according to the distance between the installations of multiple monitoring device bodies 1. For the mounting plate 9 on the mounting seat 2 without installing the monitoring device body 1, the second limiting block 21 can be pulled out from the third slot 20, and the mounting plate 9 can be taken down from the third card slot 18 to avoid waste. Moreover, by selecting to install multiple monitoring device bodies 1 through the combined splicing of multiple mounting seats 2, instead of using a single mounting seat 2 to drill holes at multiple locations, the problem of drilling multiple holes on the inner wall of the monitoring device body 1, which affects the sealing performance of the monitoring device body 1 and causes damage, can be avoided. In addition, the surfaces of the first limiting block 4, the second limiting block 21, and the bolt 7 are all coated with an anti-rust coating to avoid rusting and being difficult to disassemble and assemble due to long-term environmental influence.
[0031] Combined with the current actual requirements, the above-mentioned implementation manner adopted in this application, the protection scope is not limited thereto. Within the scope of knowledge possessed by those skilled in the art, various changes made without departing from the concept of this application still fall within the protection scope of this utility model.
Claims
1. A high temperature monitoring device for electric power equipment, comprising a monitoring device body (1), characterized in that: The back of the monitoring device body (1) is detachably connected to a mounting seat (2), the back of the monitoring device body (1) is fixedly connected to a mounting plate (9), and the mounting plate (9) matches the monitoring device body (1), the mounting seat (2) is fixedly connected to a first slot (5) at one end close to the monitoring device body (1), and the mounting plate (9) is engaged with the first slot (5), the inner wall of the first slot (5) is symmetrically and equidistantly fixedly connected to a plurality of compression springs (16), the end of the compression spring (16) away from the first slot (5) is fixedly connected to a clamping plate (15), the side wall of the first slot (5) and the clamping plate (15) are both provided with corresponding first screw holes (6), and bolts (7) are inserted into the first screw holes (6), and the first screw holes (6) and the compression springs (16) are staggeredly distributed, the mounting plate (9) is provided with second screw holes (13) corresponding to the first screw holes (6), and the two ends of the mounting seat (2) are detachably connected to connecting plates (3).
2. A high temperature monitoring device for electric power equipment according to claim 1, characterized in that: A second clamping groove (8) is bored at one end of the mounting seat (2), a second clamping block (17) is fixedly connected to one end of the mounting seat (2) away from the second clamping groove (8), and the connecting plate (3) is detachably connected to the second clamping groove (8).
3. A high temperature monitoring device for electric power equipment according to claim 2, characterized in that: A first card block (10) is fixedly connected to one end of the connecting plate (3) close to the second card slot (8), and the first card block (10) is engaged with the second card slot (8), and a first slot (11) is formed at the top of the first card block (10).
4. A high temperature monitoring device for electric power equipment according to claim 3, characterized in that: The second card slot (8), the first card block (10) and the second card block (17) are all provided with second slots (12) at their top ends, a first limit block (4) is inserted into each of the plurality of second slots (12), and a pull rope (14) is fixedly connected to the top end of the first limit block (4).
5. A high temperature monitoring device for electric power equipment according to claim 4, characterized in that: A third clamping block (19) is fixedly connected to one end of the first clamping slot (5) close to the mounting seat (2); a third clamping slot (18) is bored at one end of the mounting seat (2) close to the first clamping slot (5), and the third clamping slot (18) is engaged with the third clamping block (19).
6. A high temperature monitoring device for electric power equipment according to claim 5, characterized in that: The third card slot (18) and the third card block (19) are both provided with a third slot (20) at the top, and a second limiting block (21) is inserted into the third slot (20).
7. A high temperature monitoring device for electric power equipment according to claim 6, characterized in that: The surfaces of the first limiting block (4), the second limiting block (21) and the bolt (7) are all coated with an anti-rust coating.
Citation Information
Patent Citations
High-temperature alarm device of power equipment
CN210862950U