Bus bar structure capable of adjusting height difference arrangement
By designing a busbar cable structure with height difference arrangement adjustment, the height position adjustment is achieved using the sliding clamping assembly and the dual connection relationship, the problem of difficulty in installing and adjusting the busbar cable structure in the prior art in a specific environment, and the applicability of the equipment and the cable adjustment performance are improved.
Patent Information
- Application Number
- CN202510159892.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-13
- Publication Date
- 2025-05-09
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
The existing busbar cable structure is difficult to install and adjust at specific wall corners and corners of the top beam, resulting in long installation time and poor practicality.
A busbar cable structure with high and low difference arrangement adjustment is designed, including a busbar slot plate and a high and low adjustment component. Through sliding clamping components, dual connection relationships and detachable dust-proof design, height position adjustment and wiring fixing are achieved.
Adapt to different installation environments through high and low position adjustment, improve the applicability of the equipment and the convenience of installation and connection; improve the heat dissipation efficiency through detachable dustproof design; improve the waterproof performance through drainage components; improve the wiring adjustment performance through clamping settings, and improve the practicality of the equipment.
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Figure CN119965758A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of weak current engineering wiring, and in particular to a busbar wiring structure with height difference arrangement adjustment. Background Art
[0002] Bus duct refers to a closed metal device composed of copper and aluminum busbars, which is used to distribute large power to various components of the distributed system. With the emergence of modern engineering facilities and equipment, the electricity consumption of all walks of life has increased rapidly, especially with the emergence of numerous high-rise buildings and large factories and workshops. Now it has become an indispensable wiring method in electrical equipment and power systems in high-rise buildings, factories, etc., and it is also used in weak current projects.
[0003] During use, the existing cable arrangement structure can be bent and docked to adapt to the length of the transmission line. In some specific corners and bends of top beams, there will be certain difficulties in installation and adjustment. A lot of time-consuming adjustment will reduce the practicality of the cable arrangement structure.
[0004] Therefore, it is necessary to design a busbar arrangement structure with height difference adjustment to address the above problems. Summary of the invention
[0005] The object of the present invention is to provide a busbar arrangement structure with adjustable height difference to solve the problems raised in the above background technology.
[0006] To achieve the above-mentioned purpose, the present invention provides the following technical solutions: a busbar arrangement structure with height difference adjustment, comprising a busbar trough plate and a height adjustment component, a connecting component is connected to the right side of the busbar trough plate, and the connecting component comprises a connecting plug and a connecting screw, a connecting screw is connected to the front end of the connecting plug, the height adjustment component is arranged at the top end of the connecting plug, and an additional trough plate is connected to the right end of the height adjustment component, the height adjustment component comprises a fastening connecting plate, an installation groove and a through hole, the front and rear sides of the right wall of the fastening connecting plate are provided with installation grooves, and a through hole is provided in the middle of the right wall of the fastening connecting plate.
[0007] Furthermore, the height adjustment component also includes a plug-in plate, an adjustment hole and a rubber pad. The bottom end of the fastening connection plate is connected to the plug-in plate, and the front wall of the plug-in plate is provided with an adjustment hole. Rubber pads are provided on both ends of the plug-in plate.
[0008] Furthermore, sliding card-jointing assemblies are provided at both upper and lower ends of the bus trough plate, and limiting columns are installed on the front and rear walls of the bus trough plate, and the sliding card-jointing assembly includes a sliding fastening block and an adjusting screw, an adjusting screw is provided inside the sliding fastening block, and an extension trough plate is provided on the left side of the sliding fastening block, and positioning assemblies are provided at both front and rear ends of the extension trough plate.
[0009] Furthermore, the positioning assembly includes a rotating positioning buckle and a fastening screw, and the top end of the rotating positioning buckle is connected to the fastening screw.
[0010] Furthermore, a heat dissipation fan is installed on the top wall of the extended slot plate, and a heat dissipation protection component is arranged at the bottom end of the extended slot plate.
[0011] Furthermore, the heat dissipation protection component includes a hollow connecting column, a threaded rod, a detachable column and a dustproof net, the bottom end of the hollow connecting column is connected to the threaded rod, and the bottom end of the threaded rod is connected to the detachable column, and the interior of the detachable column is provided with a dustproof net.
[0012] Furthermore, a drainage component is provided on the upper wall of the extended slot plate, and the drainage component includes a collecting slot and a limiting slot, and a limiting slot is provided in the inner middle part of the collecting slot.
[0013] Furthermore, the drainage component also includes a flow collecting trough and a water absorption plate. The inner right end of the collecting trough is connected to the flow collecting trough, and the water absorption plate is arranged inside the flow collecting trough.
[0014] Furthermore, a mounting block is provided at the inner top of the extension slot plate, and a cable fixing assembly is connected to the bottom end of the mounting block.
[0015] Furthermore, the cable fixing assembly includes a sliding card connector, a card block, an elastic rope and a locking buckle, the bottom end of the sliding card connector is connected to the card block, and the elastic rope is arranged on the right side of the bottom end of the card block, and the locking buckle is arranged on the left side of the bottom end of the card block.
[0016] Compared with the prior art, the beneficial effects of the present invention are: adapting to the installation environment by adjusting the height position to improve the applicability of the equipment, and improving the convenience of adding and connecting the equipment by setting a double connection relationship for card fixing, improving the heat dissipation efficiency through detachable dustproof, and setting a drainage groove at the top to guide and absorb water flow to improve the waterproof performance of the equipment, and improving the cable adjustment performance of the equipment through the card setting to improve the practicality of the equipment.
[0017] 1. During use, the present invention is fixedly connected by setting the bus duct plate and the connecting plug-in block, and then the front end of the connecting plug-in block can be connected and fixed to the inner plug-in board through the connecting screws, and then the position of the through hole is connected and fixed, and the height position can be adjusted. The rubber pads on both sides provide sliding stability, so that the installation slot can slide and fix the additional slot plate, and then the inner through hole can be used for line discharge. This setting can be used to perform a certain height adjustment during use to adapt to different installation environments and improve the applicability of the equipment.
[0018] 2. During use, the present invention increases the wiring distance of the device by extending the extension slot plate. During the connection process, the positioning buckle can be rotated to allow the positioning buckle to rest on the limiting column, and then the fastening screw is turned to fix the limiting column. Finally, the sliding fastening block is set to slide to the middle for clamping and fixing, and then the adjusting screw is turned to fix it. In this way, a double connection relationship is set for clamping and fixing, thereby improving the convenience of additional installation and connection of the device.
[0019] 3. During use of the present invention, the top end is cooled by a cooling fan, and then the hollow connecting column arranged at the bottom end can drive air circulation, a threaded rod is arranged at the bottom end of the hollow connecting column for connection, and the detachable column at the bottom end is extended, and a dustproof net is arranged inside the detachable column to facilitate the adsorption of flowing dust generated during the heat dissipation process, and the dustproof net can be conveniently replaced by a twisting disassembly method, thereby improving the convenience of installation and connection of the equipment and improving the heat dissipation efficiency through the detachable dustproof.
[0020] 4. During use of the present invention, a limiting groove is provided at the top, the middle part of the limiting groove is convex, and the two sides are low. When subjected to water flow, the water can diffuse to both sides and converge into the collection groove, and then flow into the gathering groove for convergence. After convergence, the water is absorbed by the sponge absorbent plate to avoid water turbulence affecting line aging, thereby improving the waterproofness of the equipment, preventing equipment aging, and increasing service life.
[0021] 5. During use, the present invention is internally fixed by setting an installation plug-in block, and then the sliding card connector at the bottom can be stuck in different grooves according to actual needs. The elastic card block can arrange the lines. After the card is connected, the bottom is supported by an elastic rope and fixed on the locking buckle to seal the bottom. This arrangement improves the cable arrangement and adjustment performance of the equipment and improves the practicability of the equipment. BRIEF DESCRIPTION OF THE DRAWINGS
[0022] Figure 1 It is a front view structural schematic diagram of a busbar arrangement structure with height difference adjustment according to the present invention; Figure 2 It is a schematic diagram of a partial three-dimensional structure of a height adjustment component of a busbar cable arrangement structure with height difference arrangement adjustment according to the present invention; Figure 3 A busbar arrangement structure with height difference adjustment according to the present invention Figure 1 The enlarged structural diagram at A in the middle; Figure 4 It is a partial three-dimensional structural schematic diagram of a heat dissipation protection component of a busbar wiring structure with height difference arrangement adjustment according to the present invention; Figure 5 It is a schematic diagram of a partial top view of the extended slot plate of a busbar arrangement structure with height difference arrangement adjustment according to the present invention; Figure 6 It is a partial side structural schematic diagram of an extended slot plate of a busbar arrangement structure with height difference arrangement adjustment according to the present invention.
[0023] In the figure: 1. busbar duct board; 2. connection assembly; 201. connection plug block; 202. connection screw; 3. height adjustment assembly; 301. fastening connection board; 302. mounting slot; 303. through hole; 304. plug board; 305. adjustment hole; 306. rubber pad; 4. additional slot board; 5. sliding clamping assembly; 501. sliding fastening block; 502. adjustment screw; 6. limit column; 7. extension slot board; 8. positioning assembly; 801. rotating positioning buckle; 802. 02. Fastening screws; 9. Cooling fan; 10. Cooling protection assembly; 1001. Hollow connecting column; 1002. Threaded rod; 1003. Removable column; 1004. Dust net; 11. Drainage assembly; 1101. Collecting trough; 1102. Limiting groove; 1103. Focusing trough; 1104. Water absorption plate; 12. Mounting plug; 13. Cable fixing assembly; 1301. Sliding card connector; 1302. Card block; 1303. Elastic rope; 1304. Locking buckle. DETAILED DESCRIPTION
[0024] like Figure 1 and Figure 2 As shown, the present invention provides a technical solution: a busbar arrangement structure with height difference arrangement adjustment, comprising a busbar trough plate 1 and a height adjustment component 3, the right side of the busbar trough plate 1 is connected with a connecting component 2, and the connecting component 2 includes a connecting plug 201 and a connecting screw 202, the front end of the connecting plug 201 is connected with the connecting screw 202, the height adjustment component 3 is arranged at the top of the connecting plug 201, and the right end of the height adjustment component 3 is connected with an additional trough plate 4, the height adjustment component 3 includes a fastening connection A connecting plate 301, a mounting groove 302 and a through hole 303. The mounting grooves 302 are arranged on both the front and rear sides of the right wall of the fastening connecting plate 301, and a through hole 303 is arranged in the middle of the right wall of the fastening connecting plate 301. The height adjustment component 3 also includes a plug-in plate 304, an adjustment hole 305 and a rubber pad 306. The bottom end of the fastening connecting plate 301 is connected to the plug-in plate 304, and the front wall of the plug-in plate 304 is provided with an adjustment hole 305. The left and right ends of the plug-in plate 304 are provided with rubber pads 306.
[0025] The specific operation is as follows: the bus duct plate 1 is fixedly connected to the connecting plug block 201, and then the front end of the connecting plug block 201 can be connected and fixed to the inner plug board 304 through the connecting screw 202, and then the position of the through hole 303 is connected and fixed, and the height position can be adjusted. The rubber pads 306 on both sides provide sliding stability, allowing the installation groove 302 to slide and fix the additional groove plate 4, and then the inner through hole 303 can be used for line discharge.
[0026] like Figure 1 and Figure 3 As shown, the upper and lower ends of the busbar trough plate 1 are both provided with sliding clamping assemblies 5, and the front and rear walls of the busbar trough plate 1 are both installed with limiting columns 6, and the sliding clamping assembly 5 includes a sliding fastening block 501 and an adjusting screw 502, the interior of the sliding fastening block 501 is provided with an adjusting screw 502, and an extension slot plate 7 is provided on the left side of the sliding fastening block 501, and the front and rear ends of the extension slot plate 7 are both provided with positioning assemblies 8, and the positioning assembly 8 includes a rotating positioning buckle 801 and a fastening screw 802, and the top of the rotating positioning buckle 801 is connected with the fastening screw 802; The specific operation is as follows: by setting an extension slot plate 7 for extension, the wiring distance of the device can be increased. During the connection process, the rotating positioning buckle 801 can be rotated to allow the rotating positioning buckle 801 to rest on the limiting column 6, and then the fastening screw 802 is turned to fix the limiting column 6. Finally, the sliding fastening block 501 is set to slide to the middle for clamping and fixing, and then the adjusting screw 502 is turned to fix it, so as to set a double connection relationship for clamping and fixing.
[0027] like Figure 1 and Figure 4 As shown, a heat dissipation fan 9 is installed on the top wall of the extended slot plate 7, and a heat dissipation protection component 10 is provided at the bottom end of the extended slot plate 7. The heat dissipation protection component 10 includes a hollow connecting column 1001, a threaded rod 1002, a detachable column 1003 and a dustproof net 1004. The bottom end of the hollow connecting column 1001 is connected to the threaded rod 1002, and the bottom end of the threaded rod 1002 is connected to the detachable column 1003. The dustproof net 1004 is provided inside the detachable column 1003; The specific operation is as follows: the top end is cooled by the heat dissipation fan 9, and then the hollow connecting column 1001 arranged at the bottom end can drive the air circulation, and a threaded rod 1002 is arranged at the bottom end of the hollow connecting column 1001 for connection, and the detachable column 1003 at the bottom end is extended, and a dustproof net 1004 is arranged inside the detachable column 1003 to facilitate the adsorption of flowing dust generated during the heat dissipation process, and the dustproof net 1004 can be conveniently replaced by the twisting disassembly and assembly method.
[0028] like Figure 1 and Figure 5 As shown, the upper wall of the extended slot plate 7 is provided with a drainage component 11, and the drainage component 11 includes a collecting slot 1101 and a limiting slot 1102, the limiting slot 1102 is provided at the inner middle part of the collecting slot 1101, the drainage component 11 also includes a focusing slot 1103 and a water absorption plate 1104, the inner right end of the collecting slot 1101 is connected with the focusing slot 1103, and the inside of the focusing slot 1103 is provided with a water absorption plate 1104; The specific operation is as follows: a limiting groove 1102 is set at the top, the middle part of the limiting groove 1102 is convex, and the two sides are low. When affected by water flow, it can diffuse to both sides and converge into the collecting groove 1101, and then flow into the gathering groove 1103 for collection. After the collection is completed, it is absorbed by the sponge water absorption plate 1104 to avoid water turbulence affecting the aging of the line, thereby improving the waterproofness of the equipment.
[0029] like Figure 1 and Figure 6 As shown, the top of the inner part of the extension slot plate 7 is provided with a mounting plug 12, and the bottom end of the mounting plug 12 is connected with a cable fixing assembly 13, and the cable fixing assembly 13 includes a sliding card joint 1301, a card block 1302, an elastic rope 1303 and a locking buckle 1304, the bottom end of the sliding card joint 1301 is connected with the card block 1302, and the elastic rope 1303 is provided on the right side of the bottom end of the card block 1302, and the locking buckle 1304 is provided on the left side of the bottom end of the card block 1302; The specific operation is as follows: the internal fixation is performed by setting the installation plug block 12, and then the sliding card connector 1301 at the bottom can be stuck in different grooves according to actual needs. The elastic card block 1302 can be used for line arrangement. After the card is connected, the bottom is supported by the elastic rope 1303 and fixed on the locking buckle 1304 to seal the bottom. This setting improves the cable arrangement adjustment performance of the equipment.
[0030] Working principle: The busbar trough plate 1 is fixedly connected with the connecting plug block 201, and then the front end of the connecting plug block 201 can be connected and fixed with the inner plug board 304 through the connecting screw 202, and then the position of the through hole 303 is connected and fixed, and the height position can be adjusted. The rubber pads 306 on both sides provide sliding stability, so that the installation slot 302 can slide and fix the additional slot plate 4, and then the inner through hole 303 can be used for line discharge, and the extension slot plate 7 is extended to improve the design. In the process of connection, the positioning buckle 801 can be rotated to make the positioning buckle 801 rest on the limit column 6, and then the fastening screw 802 can be screwed to fix the limit column 6, and finally the sliding fastening block 501 can be set to slide to the middle for clamping and fixing, and then the adjusting screw 502 can be screwed to fix it, so as to set a double connection relationship for clamping and fixing, and the top end is cooled by the heat dissipation fan 9, and then the hollow connecting column 1001 set at the bottom can drive air circulation, and the hollow connecting column 1001 can be fixed to the middle of the hollow connecting column 1001. A threaded rod 1002 is provided at the bottom for connection, and the detachable column 1003 at the bottom is extended. A dust screen 1004 is provided inside the detachable column 1003 to facilitate the adsorption of flowing dust generated during the heat dissipation process, and the dust screen 1004 can be conveniently replaced by twisting the disassembly and assembly method. A limiting groove 1102 is provided at the top. The middle part of the limiting groove 1102 is convex, and the two sides are low. When receiving water flow, it can diffuse to both sides and converge into the collection groove 1101, and then flow into the gathering groove 1103 for convergence. After the water is collected, it is absorbed by the sponge absorbent plate 1104 to prevent water turbulence from affecting line aging, thereby improving the waterproofness of the equipment. The internal fixation is performed by setting the installation plug block 12, and then the sliding card connector 1301 at the bottom can be stuck in different grooves according to actual needs. The elastic card block 1302 can be used for line arrangement. After the card is connected, the bottom is supported by the elastic rope 1303 and fixed on the locking buckle 1304 to seal the bottom, thereby improving the cable arrangement and adjustment performance of the equipment.
Claims
1. A busbar arrangement structure with height difference adjustment, characterized in that: The utility model comprises a busbar duct plate (1) and a height adjustment component (3), wherein the right side of the busbar duct plate (1) is connected with a connection component (2), and the connection component (2) comprises a connection plug (201) and a connection screw (202), the front end of the connection plug (201) is connected with a connection screw (202), the height adjustment component (3) is arranged at the top end of the connection plug (201), and the right end of the height adjustment component (3) is connected with an additional slot plate (4), the height adjustment component (3) comprises a fastening connection plate (301), a mounting slot (302) and a through hole (303), the front and rear sides of the right wall of the fastening connection plate (301) are both provided with the mounting slot (302), and the middle part of the right wall of the fastening connection plate (301) is provided with a through hole (303).
2. A busbar arrangement structure with height difference adjustment according to claim 1, characterized in that: The height adjustment component (3) further comprises a plug-in plate (304), an adjustment hole (305) and a rubber pad (306); the bottom end of the fastening connection plate (301) is connected to the plug-in plate (304), and the front wall of the plug-in plate (304) is provided with an adjustment hole (305); and the left and right ends of the plug-in plate (304) are both provided with rubber pads (306).
3. The busbar arrangement structure with height difference adjustment according to claim 1, characterized in that: The upper and lower ends of the busbar trough plate (1) are both provided with sliding clamping assemblies (5), and the front and rear walls of the busbar trough plate (1) are both installed with limiting columns (6), and the sliding clamping assembly (5) comprises a sliding fastening block (501) and an adjusting screw (502), the interior of the sliding fastening block (501) is provided with an adjusting screw (502), and an extension trough plate (7) is provided on the left side of the sliding fastening block (501), and positioning assemblies (8) are provided at the front and rear ends of the extension trough plate (7).
4. The busbar arrangement structure with height difference adjustment according to claim 3 is characterized in that: The positioning assembly (8) comprises a rotating positioning buckle (801) and a fastening screw (802), and the top end of the rotating positioning buckle (801) is connected to the fastening screw (802).
5. The busbar arrangement structure with height difference adjustment according to claim 3 is characterized in that: A heat dissipation fan (9) is installed on the top wall of the extended slot plate (7), and a heat dissipation protection component (10) is provided at the bottom end of the extended slot plate (7).
6. The busbar arrangement structure with height difference adjustment according to claim 5, characterized in that: The heat dissipation protection component (10) comprises a hollow connecting column (1001), a threaded rod (1002), a detachable column (1003) and a dustproof net (1004); the bottom end of the hollow connecting column (1001) is connected to the threaded rod (1002), and the bottom end of the threaded rod (1002) is connected to the detachable column (1003); and the dustproof net (1004) is arranged inside the detachable column (1003).
7. The busbar arrangement structure with height difference adjustment according to claim 3 is characterized in that: The upper wall of the extended slot plate (7) is provided with a drainage assembly (11), and the drainage assembly (11) comprises a collecting slot (1101) and a limiting slot (1102), and the limiting slot (1102) is provided in the middle of the inner side of the collecting slot (1101).
8. The busbar arrangement structure with height difference adjustment according to claim 7, characterized in that: The drainage assembly (11) further comprises a flow collecting trough (1103) and a water absorption plate (1104); the inner right end of the collecting trough (1101) is connected to the flow collecting trough (1103), and the water absorption plate (1104) is arranged inside the flow collecting trough (1103).
9. The busbar arrangement structure with height difference adjustment according to claim 3, characterized in that: A mounting plug block (12) is provided at the inner top end of the extension slot plate (7), and a cable fixing assembly (13) is connected to the bottom end of the mounting plug block (12).
10. A busbar arrangement structure with height difference adjustment according to claim 9, characterized in that: The cable fixing assembly (13) comprises a sliding card joint (1301), a card block (1302), an elastic rope (1303) and a locking buckle (1304); the bottom end of the sliding card joint (1301) is connected to the card block (1302), the elastic rope (1303) is arranged on the right side of the bottom end of the card block (1302), and the locking buckle (1304) is arranged on the left side of the bottom end of the card block (1302).