Bus duct capable of being quickly spliced
By creating copper strip grooves and mounting grooves on the conductive copper strips and insulating blocks of the busbar trunking, and using insulating screws and nuts for fastening, the problem of mutual interference between insulating blocks during the installation of busbar trunking connectors is solved, achieving a fast and stable installation effect.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-14
- Publication Date
- 2026-03-27
AI Technical Summary
During installation, the existing busbar connectors have loosely structured insulating blocks that are prone to tilting and interfering with each other, affecting installation efficiency.
Copper strip grooves and mounting grooves are respectively made on the surfaces of conductive copper sheets and insulating blocks. The copper strip grooves and mounting grooves cooperate to achieve stable stacking and docking of insulating blocks. Insulating screws and nuts are used for fastening.
It improves the ease and efficiency of busbar installation, reduces installation difficulties, and ensures the stability and speed of connection.
Smart Images

Figure CN224053840U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model belongs to bus duct technical field, concretely relates to a bus duct of quick splicing. BACKGROUND
[0002] Bus duct refers to by copper, aluminum bus column constitutes a kind of closed metal device, to distribute larger power for each element of dispersion system, in the indoor low-voltage power transmission trunk line engineering project has more and more replaced wire cable, and when the bus duct is docked, bus duct connector needs to be used, and the surface of the existing bus duct connector is provided with only a circular through hole for stringing when installing, each insulating block can only be synchronously installed, and the structure between each insulating block is relatively loose, and also can be inclined when installing, so that each insulating block can be docked at the gap between the conductive plate, and the mutual interference condition occurs, to cause the delay of docking work, and reduce the installation efficiency. UTILITARY MODEL
[0003] The utility model discloses a kind of bus ducts of quick splicing, to solve the problem raised in the above background, copper sheet groove and mounting groove respectively set on the surface of conductive copper sheet and insulating block can be stacked together between each insulating block when docking insulating block, provide effective adjustment space for the insulating block needing installation, so that each insulating block can be installed in turn, complete docking work, can effectively avoid the mutual interference condition of insulating block, increase the convenience of installation, can effectively improve the efficiency of docking between bus ducts, reduce the difficulty of installation, can play the role of stable and fast installation.
[0004] To achieve the above object, the utility model provides the following technical scheme:
[0005] A kind of bus duct of quick splicing, including line slot body, joint side sealing plate and conductive plate, the side of the joint side sealing plate is connected with side plate, and the side of the side plate is also provided with insulating screw rod, the insulating screw rod is connected with conductive copper sheet and insulating block, and the surface of the conductive copper sheet and the insulating block is also respectively provided with copper sheet groove and mounting groove.
[0006] Preferably, the conductive plate and the side of the side plate are slidably connected, and the surface of the side plate is also integrally formed with positioning side seal, and the surface of the side plate is also attached to gasket, and the insulating screw rod penetrates the gasket and the insulating screw rod, and one end of the insulating screw rod is also threadedly connected with nut.
[0007] Preferably, the gaskets and the side plates are symmetrically arranged on both sides of the surface of the trunk body and the joint side sealing plate, and the surface of the side plate is provided with a circular through hole, and the positioning side sealing plate is symmetrically arranged on both sides of the surface of the side plate.
[0008] Preferably, the conductive copper sheet and the insulating block are of a sandwich structure, two conductive copper sheets are respectively arranged on both sides of the surface of the insulating block, and the conductive copper sheet and the insulating block are equidistantly arranged between the two side plates.
[0009] Preferably, the copper sheet groove on the surface of the conductive copper sheet and the mounting groove on the surface of the insulating block are elliptical in shape, and the copper sheet groove and the mounting groove are arranged in overlap.
[0010] Preferably, the end points of the copper sheet groove and the mounting groove are located on the midpoints of the conductive copper sheet and the insulating block.
[0011] Compared with the prior art, the utility model has the advantages that:
[0012] The copper sheet groove and the mounting groove arranged on the surface of the conductive copper sheet and the insulating block can stack the insulating blocks together when the insulating blocks are butt-jointed, provide effective adjustment space for the insulating blocks to be installed, enable the insulating blocks to be installed in sequence, complete butt-joint work, effectively avoid the situation that the insulating blocks interfere with each other, increase the convenience of installation, effectively improve the butt-joint efficiency between the bus ducts, reduce the difficulty of installation, and play a stable and fast installation role. BRIEF DESCRIPTION OF DRAWINGS
[0013] Figure 1 It is an installation state structure schematic view of the utility model's insulating block;
[0014] Figure 2 It is an installation state top surface structure schematic view of the utility model;
[0015] Figure 3 It is an overall structure schematic view of the utility model;
[0016] Figure 4 It is an installation state structure schematic view of the utility model;
[0017] Figure 5 It is an explosion structure schematic view of the utility model;
[0018] In the drawing: 1, trunk body; 2, joint side sealing plate; 3, conductive plate; 4, side plate; 5, positioning side sealing plate; 6, gasket; 7, insulating screw; 8, conductive copper sheet; 9, copper sheet groove; 10, insulating block; 11, mounting groove; 12, nut. DETAILED DESCRIPTION
[0019] The technical solutions in the embodiments of the utility model will be clearly and completely described below with reference to the drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, rather than all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of the utility model.
[0020] Embodiments
[0021] Please refer to Figure 1 As shown in the figure:
[0022] A bus duct that can be quickly spliced, comprising a wire slot body 1.
[0023] In the present embodiment: to solve the technical problems existing in the prior art, as disclosed in the background art above, "the existing bus duct connector only has a circular through hole on the surface of the insulating block 10 and the conductive copper sheet 8 for stringing, and only synchronous installation can be performed between the insulating blocks 10, and the structure between the insulating blocks 10 is relatively loose, and tilting may occur during installation, which will cause mutual interference when the insulating blocks 10 are butted at the gap between the conductive plate 3, thereby delaying the butting work and reducing the installation efficiency", in combination with use, this problem is obviously a real problem and is relatively difficult to solve. In view of this, in order to solve the above-mentioned problems, the joint side sealing plate 2 and the conductive plate 3 are added on this basis.
[0024] Further speaking:
[0025] As shown in the figure: Figure 1 - Figure 5 As shown in the figure:
[0026] In combination with the above content: one side of the joint side sealing plate 2 is connected with the side plate 4, and one side of the side plate 4 is further provided with the insulating screw 7, the insulating screw 7 is connected with the conductive copper sheet 8 and the insulating block 10, and the surface of the conductive copper sheet 8 and the insulating block 10 is further provided with the copper sheet groove 9 and the mounting groove 11 respectively.
[0027] In the present embodiment: through the arrangement of the copper sheet groove 9 and the mounting groove 11, the connection work between the insulating block 10 and the conductive plate 3 can be sequentially completed, so that the insulating blocks 10 do not interfere with each other during installation, and the installation and butting work of the insulating block 10, the side plate 4 and even the whole can be more efficiently completed.
[0028] Further speaking:
[0029] In an alternative embodiment, the conductive plate 3 and one side of the side plate 4 are slidingly connected, and the surface of the side plate 4 is further integrally formed with a positioning side seal 5, and the surface of the side plate 4 is further attached with a gasket 6, and the insulating screw 7 penetrates the gasket 6 and the insulating screw 7, and one end of the insulating screw 7 is further threadedly connected with a nut 12.
[0030] In this embodiment: the insulating screw 7 penetrates the gasket 6 and the side plate 4 can be pressed against the conductive plate 3 and the joint side seal plate 2 when the insulating screw 7 and the nut 12 are tightened, which can make the overall connection more tightly and securely, providing reliable protection for subsequent installation work.
[0031] Further:
[0032] In an alternative embodiment, the gasket 6 and the side plate 4 are symmetrically arranged on both sides of the surface of the line groove body 1 and the joint side seal plate 2, and the surface of the side plate 4 is provided with a circular through hole, and the positioning side seal 5 is symmetrically arranged on both sides of the surface of the side plate 4.
[0033] In this embodiment: the positioning side seal 5 symmetrically arranged on both sides of the surface of the side plate 4 can make the installation of the gasket 6 and the connection of the insulating screw 7 more secure, providing stable conditions for the installation of the insulating block 10.
[0034] Further:
[0035] In an alternative embodiment, the conductive copper sheet 8 and the insulating block 10 are of a sandwich structure, two conductive copper sheets 8 are respectively installed on both sides of the surface of the insulating block 10, and the conductive copper sheet 8 and the insulating block 10 are equidistantly arranged between the two side plates 4.
[0036] In this embodiment: the equidistantly arranged insulating block 10 and conductive copper sheet 8 can stably conduct electricity to the conductive plate 3, and thus can effectively transmit power through the conductive copper sheet 8.
[0037] Further:
[0038] In an alternative embodiment, the copper sheet groove 9 formed on the surface of the conductive copper sheet 8 and the mounting groove 11 formed on the surface of the insulating block 10 are elliptical in shape, and the copper sheet groove 9 and the mounting groove 11 are overlapped.
[0039] In this embodiment: the elliptical copper sheet groove 9 and the mounting groove 11 can not affect the stationary insulating block 10 when installing each insulating block 10, which can reduce the interference problem between each insulating block 10.
[0040] Further:
[0041] In an alternative embodiment, the end of the copper sheet slot 9 and the mounting slot 11 is located at the midpoint of the conductive copper sheet 8 and the insulating block 10.
[0042] In this embodiment: the copper sheet slot 9 and the mounting slot 11 located at the midpoint of the insulating block 10 can play a stable moving role for each insulating block 10 when the side plate 4 is pressed, thereby enabling the connection of the insulating block 10 to be more regular.
[0043] The working principle and use process of the utility model: when it is necessary to install the side plate 4 and the insulating block 10 between the conductive plates 3, the lower side of the side plate 4 can be first slid to the surface of the joint side sealing plate 2 and the conductive plate 3, then each insulating block 10 and the conductive copper sheet 8 can be attached, then the insulating block 10 can be moved one by one above one of the conductive plates 3 along the insulating screw rod 7, then the insulating block 10 can be slid above the gap of the conductive plate 3 along the insulating screw rod 7, then the insulating block 10 can be pressed down, the insulating block 10 will gradually lower the conductive copper sheet 8, at this time the insulating screw rod 7 will slide between the copper sheet slot 9 and the mounting slot 11 on the surface of the conductive copper sheet 8 and the insulating block 10, at this time the insulating block 10 completes the connection work between the conductive plates 3, reference Figure 1 and Figure 2 , and the positions of the other insulating blocks 10 remain unchanged, then the insulating blocks 10 can be placed one by one between the conductive plates 3, at this time the insulating screw rod 7, and the insulating blocks 10 are fixed in position by the extrusion of the conductive plates 3, then the side plates 4 on both sides can be pressed, and the insulating screw rod 7 is slid to the end of the copper sheet slot 9 and the mounting slot 11 by the side plate 4, further positioning the position of the insulating block 10, reference Figure 3 , then the insulating block 10 can be rotated about the shaft of the insulating screw rod 7, further adjusting the position of the insulating block 10, so that it can conduct electricity between the conductive plates 3 on both sides through the conductive copper sheet 8, reference Figure 4 , finally the insulating screw rod 7 and the nut 12 can be tightened, and the installation work of the insulating block 10 and the conductive copper sheet 8 is completed.
[0044] Although embodiments of the utility model have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and variations can be made to these embodiments without departing from the principles and spirit of the utility model, the scope of the utility model is defined by the appended claims and their equivalents.
Claims
1. A bus duct capable of rapid assembly, comprising a bus duct body (1), a joint side cover plate (2) and a conductive plate (3), characterized in that: One side of the joint side sealing plate (2) is connected with a side plate (4), and one side of the side plate (4) is also provided with an insulating screw rod (7), the insulating screw rod (7) is connected with a conductive copper sheet (8) and an insulating block (10), and the surface of the conductive copper sheet (8) and the surface of the insulating block (10) are respectively provided with a copper sheet groove (9) and a mounting groove (11).
2. The busway of claim 1, wherein: The conductive plate (3) and the side plate (4) are slidingly connected on one side, and the surface of the side plate (4) is integrally formed with a positioning side seal (5), and the surface of the side plate (4) is attached with a gasket (6), and the insulating screw rod (7) penetrates the gasket (6) and the insulating screw rod (7), and one end of the insulating screw rod (7) is threadedly connected with a nut (12).
3. The busway of claim 2, wherein: The gasket (6) and the side plate (4) are symmetrically arranged on the surface of the wire slot body (1) and the joint side sealing plate (2), and the surface of the side plate (4) is provided with a circular through hole, and the positioning side seal (5) is symmetrically arranged on the surface of the side plate (4).
4. The busway of claim 1, wherein: The conductive copper sheet (8) and the insulating block (10) are a sandwich structure, two conductive copper sheets (8) are respectively arranged on the surface of the insulating block (10), and the conductive copper sheet (8) and the insulating block (10) are equidistantly arranged between the two side plates (4).
5. The quickly splicable busway of claim 4, wherein: The copper sheet groove (9) on the surface of the conductive copper sheet (8) and the mounting groove (11) on the surface of the insulating block (10) are elliptical in shape, and the copper sheet groove (9) and the mounting groove (11) are overlapped.
6. The busway of claim 5, wherein: The endpoints of the copper sheet groove (9) and the mounting groove (11) are located on the midpoint of the conductive copper sheet (8) and the insulating block (10).