Wire arrangement pipe branching device for building electrical design
Through the combined structure of the upper clamp block and the lower clamp block, the fitting and locking components of the slide chute and the slide cushion are used to solve the problem of time-consuming and labor-intensive fixing of the wiring pipe in the prior art, and achieve rapid and safe wiring pipe fixing.
Patent Information
- Application Number
- CN202422349379.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-25
- Publication Date
- 2025-07-25
- Estimated Expiration
- 2034-09-25
AI Technical Summary
The existing building electrical wiring pipe division device is time-consuming and labor-intensive when fixing multiple lines, and is easy to cause damage to the wiring pipe.
The combination structure of the upper clamp block and the lower clamp block is adopted, and the sliding groove and the slider are used to achieve rapid disassembly and assembly, combining the locking assembly and extrusion pad design to easily fix the wiring pipe.
It realizes rapid installation and fixation of the cable tube, avoids damage to the cable tube, and improves installation efficiency and safety.
Smart Images

Figure CN223156652U_ABST
Abstract
Description
Technical Field
[0001] The utility model belongs to the field of electrical installation devices, and particularly relates to a wiring pipe branching device for building electrical design. Background Art
[0002] Broadly speaking, building electricity is an applied discipline that takes buildings as a platform and electrical technology as a means to create a humanized living environment within a limited space. Narrowly speaking, it is an electrical system that uses modern advanced scientific theories and electrical technologies (including power technology, information technology, and intelligent technology, etc.) to create a humanized living environment in buildings, and the general scope is building electricity.
[0003] In the prior art, when the wiring pipe branching device for building electricity is in use, the constraint of the wires is fixed by U-shaped buckles. When fixing multiple wires, it is necessary to fix them one by one, which is time-consuming and laborious, and it is easy to damage the wiring pipe when knocking the iron nails on the buckles, affecting the use effect of the wiring pipe. Content of the Utility Model
[0004] The purpose of the utility model is to provide a wiring pipe branching device for building electrical design, which can easily and conveniently fix the wiring pipe and will not damage the wiring pipe during the installation process.
[0005] The wiring pipe branching device for building electrical design includes a horizontally arranged lower mounting plate. An upper mounting plate is arranged above the lower mounting plate. Connecting plates are fixed at one ends of the upper mounting plate and the lower mounting plate, and the two connecting plates are hinged to each other. A plurality of vertically communicating mounting holes are formed in the lower mounting plate. Chutes are formed on the inner side walls of the upper mounting plate and the lower mounting plate. A plurality of upper clamping blocks and lower clamping blocks for clamping the wiring pipe are arranged between the upper mounting plate and the lower mounting plate. Card slots for clamping the wiring pipe are formed on the inner side walls of each upper clamping block and the corresponding lower clamping block. A locking component for connecting and locking each other is arranged between each upper clamping block and the corresponding lower clamping block. Sliders for respectively sliding and clamping in the two chutes are fixed on each upper clamping block and the corresponding lower clamping block. A fixing component for fixing the positions of all the sliders is arranged in the two chutes.
[0006] Further, the fixing component includes two stop blocks. The unhinged ends of the two connecting plates are respectively fixed at the bottoms of the chutes of the upper mounting plate and the lower mounting plate. The two stop blocks are respectively slidably clamped in the two chutes. All the upper clamping blocks and all the lower clamping blocks are respectively located between the two connecting plates and the two stop blocks. Threaded holes communicating up and down are formed in each stop block, and screws are inserted into each threaded hole.
[0007] Further, the locking assembly includes two clamping plates which are respectively located vertically on the front and rear sides of the upper clamping block. The upper ends of the two clamping plates are fixed to the upper clamping block, and hooks are fixed to the lower ends of the two clamping plates. Installation grooves for independently engaging the two hooks are respectively formed on the front and rear side walls of the lower clamping block.
[0008] Further, extrusion pads are detachably fixed to the groove walls of the card slots on all the upper clamping blocks and all the lower clamping blocks.
[0009] Further, the cross section of the extrusion pad is in a semi-circular structure.
[0010] Further, the extrusion pad is made of an elastic material.
[0011] Further, a plurality of cutting marking lines for marking cutting positions are arranged on the side walls of the upper mounting plate and the lower mounting plate along the length direction thereof.
[0012] Compared with the prior art, the utility model has the following beneficial effects:
[0013] Select the corresponding number of upper clamping blocks and lower clamping blocks according to the number of drainage pipes to be fixed. Install all the upper clamping blocks and lower clamping blocks on the upper mounting plate and the lower mounting plate respectively through the cooperation of the sliding groove and the sliding block, and fix the positions of all the installed upper clamping blocks and all the lower clamping blocks through the fixing assembly, which can play the role of quickly disassembling and assembling the upper clamping blocks and the lower clamping blocks, and is more convenient for the staff to quickly install the required number of upper clamping blocks and lower clamping blocks according to the actual needs; then drive nails through two or more mounting holes, and fix the lower mounting plate on the building surface through the nails. Place each drainage pipe between each upper clamping block and the corresponding lower clamping block respectively, swing and close the upper mounting plate, so that each upper clamping block on the upper mounting plate is closed with the corresponding lower clamping block, so that the upper clamping block and the lower clamping block clamp and fix the drainage pipe, and lock all the closed upper clamping blocks and lower clamping blocks through the locking assembly, so that the drainage pipe can be fixed easily and conveniently, and the drainage pipe will not be damaged during the process of fixing the drainage pipe. BRIEF DESCRIPTION OF THE DRAWINGS
[0014] Figure 1 is a schematic structural view of the utility model;
[0015] Figure 2 is a front view of the utility model;
[0016] Figure 3 is Figure 2 a cross-sectional view taken along line A-A in
[0017] Figure 4 is Figure 2 a cross-sectional view taken along line B-B in
[0018] Figure 5is a perspective view of the present utility model;
[0019] Figure 6 is an exploded view of the present utility model;
[0020] Names of each component in the figure: 1. Connecting plate, 2. Upper clamping block, 3. Extrusion pad, 4. Fixed block, 5. Upper mounting plate, 6. Stopper, 7. Lower clamping block, 8. Lower mounting plate, 9. Mounting hole, 10. Slide block, 11. Clamping plate. Specific embodiments
[0021] The present utility model will be further described below through specific embodiments in conjunction with the accompanying drawings, but it is not intended to limit the present utility model. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principle of the present utility model shall be included within the protection scope of the present invention.
[0022] Embodiment 1
[0023] A wiring pipe branching device for building electrical design described in this embodiment, as shown in Figure 1 , Figure 3 and Figure 6 , includes a horizontally arranged lower mounting plate 8. An upper mounting plate 5 is arranged above the lower mounting plate 8. A connecting plate 1 is fixed to one end of the upper mounting plate 5 and the lower mounting plate 8, and the two connecting plates 1 are hinged to each other; one end of the two connecting plates 1 is hinged through a pivot. The pivot is fixed on one of the connecting plates 1, and a through hole for the pivot to pass through is provided on the other connecting plate 1, so that the upper mounting plate 5 and the lower mounting plate 8 can swing open and close. When the upper mounting plate 5 and the lower mounting plate 8 swing and close, the upper mounting plate 5 will be parallel to the lower mounting plate 8;
[0024] A plurality of vertically communicating mounting holes 9 are provided on the lower mounting plate 8, and all the mounting holes 9 are arranged at equal intervals along the length direction of the lower mounting plate 8. During installation, the lower mounting plate 8 is attached to a building surface such as the ground, wall or ceiling, and iron nails are inserted into two or more mounting holes, and the tips of the iron nails are knocked into the building to fix the lower mounting plate 8 on the building surface;
[0025] Chute grooves are provided on the inner side walls of the upper mounting plate 5 and the lower mounting plate 8. The chute grooves are provided on the opposite inner side walls after the upper mounting plate 5 and the lower mounting plate 8 swing and close, and the chute grooves on the upper mounting plate 5 and the lower mounting plate 8 communicate left and right;
[0026] A plurality of upper clamping blocks 2 and lower clamping blocks 7 for clamping the wiring pipe are arranged between the upper mounting plate 5 and the lower mounting plate 8. All the upper clamping blocks 2 and lower clamping blocks 7 are arranged and aligned along the length direction, and each upper clamping block 2 is aligned with a lower clamping block 7 respectively. The number of the upper clamping blocks 2 and the lower clamping blocks 7 can be selected according to the actual number of wiring pipes to be fixed, so as to adapt to different usage scenarios;
[0027] A number of cutting marks for marking the cutting positions are provided on the side walls of the upper mounting plate 5 and the lower mounting plate 8 along their length directions; the cutting marks are respectively provided on the front and rear side walls of the upper mounting plate 5 and the lower mounting plate 8 by spraying paint or scratching, and the cutting marks on the upper mounting plate 5 and the lower mounting plate 8 are arranged at equal intervals. Before cutting, the staff can quickly determine the cutting position through the cutting marks, and by cutting the upper mounting plate 5 and the lower mounting plate 8, the lengths of the upper mounting plate 5 and the lower mounting plate 8 can be adjusted to adapt to installation and use in different scenarios;
[0028] On the inner side walls of each upper clamping block 2 and the corresponding lower clamping block 7, a clamping groove for clamping the wiring pipe is provided. The clamping groove is in an arc shape. During use, the wiring pipe is clamped in the clamping groove, thereby positioning the wiring pipe. When the upper clamping block 2 and the lower clamping block 7 are closed, the wiring pipe in the clamping groove can be fixed to prevent the wiring pipe from moving; of course, the clamping groove can also be in a "V" shape;
[0029] On the groove walls of the clamping grooves on all the upper clamping blocks 2 and all the lower clamping blocks 7, an extrusion pad 3 is detachably fixed; the extrusion pad 3 is fixed on the groove wall of the clamping groove through a clamping block. The clamping block is fixed on its fitting surface along the length direction of the extrusion pad 3. A fixing groove is provided on the groove wall of the clamping groove, and the clamping block is clamped in the fixing groove and has an interference fit with the fixing groove; of course, the extrusion pad 3 can also be pasted on the groove wall of the clamping groove through double-sided tape; the extrusion pad 3 is made of materials such as silicone rubber, styrene-butadiene rubber, chloroprene rubber, thermoplastic elastomer, and polyolefin elastomer. These materials have excellent elasticity and friction performance. When the upper clamping block 2 and the lower clamping block 7 are closed to clamp the wiring pipe, the extrusion pad 3 is squeezed and tightly adheres to the wiring pipe, thereby fixing the wiring pipe through the friction between the extrusion pad 3 and the wiring pipe; the cross section of the extrusion pad 3 is in a semi-circular structure, so that when the wiring pipe needs to be bent, there is enough margin for the wiring pipe to bend on both sides of the extrusion pad 3, avoiding excessive extrusion of the wiring pipe at the corners on both sides of the extrusion pad 3 during bending and causing damage; of course, the cross section of the extrusion pad 3 can also be in an isosceles triangle structure;
[0030] For further explanation, such as Figure 2 、 Figure 4 and Figure 6As shown in the figure, preferably, this embodiment includes two clamping plates 11. The two clamping plates 11 are respectively vertically located on the front and rear sides of the upper clamping block 2. The upper ends of the two clamping plates 11 are fixed on the upper clamping block 2, and hooks are fixed at the lower ends of the two clamping plates 11. Installation grooves for independently engaging the two hooks are respectively formed on the front and rear side walls of the lower clamping block 7; the hooks are in the shape of a right triangle and are fixed on the side walls of the clamping plates 11 facing the lower clamping block 7. The installation grooves are rectangular grooves. The clamping plates 11 and the hooks are made of materials such as PVC, PE, and nylon. These materials have a certain elasticity, can withstand bending to a certain extent, and can return to their original shapes after the external force is removed; during use, when the upper clamping block 2 and the lower clamping block 7 are closed, the hooks on the two clamping plates 11 are blocked by the lower clamping block 7, causing the two clamping plates 11 to bend outward. When the upper clamping block 2 and the lower clamping block 7 are completely closed, the buckles on the two clamping plates 11 will align with the clamping grooves on the corresponding side walls, and the two clamping plates 11 will return to their original shapes. The hooks are respectively engaged in the corresponding clamping grooves, so that the closed upper clamping block 2 and the lower clamping block 7 are connected and locked through the cooperation of the hooks and the clamping grooves, enabling the upper clamping block 2 and the lower clamping block 7 to maintain the state of clamping the wiring pipe, and the wiring pipe can be fixed easily and conveniently without causing damage to the wiring pipe during the process of fixing the wiring pipe. Of course, by pulling the two clamping plates 11 outward to make the two clamping plates 11 bend outward and the hooks disengage from the clamping grooves, the upper clamping block 2 and the lower clamping block 7 can be separated; each pair of aligned upper clamping block 2 and lower clamping block 7 are connected and locked through the cooperation of the hooks and the clamping grooves; the overall solution constitutes a locking component for connecting and locking each other; of course, screws can also be used for the locking component. Vertical plates are vertically fixed on the front side walls of the upper clamping block 2. The lower ends of the vertical plates are located in front of the lower clamping block 7. Through holes communicating front and rear are formed at the lower ends of the vertical plates. Screws are inserted through the through holes. Threaded holes are formed on the front side walls of the lower clamping block 7. When the upper clamping block 2 and the lower clamping block 7 are closed, the screws are rotated so that the threaded ends of the screws are inserted into the threaded holes and are in threaded cooperation with them, thereby connecting and locking the closed upper clamping block 2 and the lower clamping block 7.
[0031] Sliders 10 for respectively sliding and engaging in two sliding grooves are fixed on each upper clamping block 2 and the corresponding lower clamping block 7. In this embodiment, the sliding grooves are T-shaped sliding grooves, and the sliders are T-shaped sliders. The sliders are respectively fixed on the tops of the upper clamping blocks 2 and the bottoms of the lower clamping blocks 7, enabling all the upper clamping blocks 2 and all the lower clamping blocks 7 to move left and right through the cooperation of the sliders and the sliding grooves. By sliding the sliders out of or inserting them into one end of the sliding grooves, the upper clamping blocks 2 and the lower clamping blocks 7 can be quickly disassembled and assembled, which is more convenient for the staff to quickly install the required number of upper clamping blocks 2 and lower clamping blocks 7 according to actual needs; of course, the sliding grooves can also be dovetail grooves, and the sliders can also be dovetail sliders;
[0032] For further illustration, such as Figure 2 、 Figure 4 and Figure 6As shown in the figure, preferably, this embodiment includes two stoppers 6. The unhinged ends of the two connecting plates 1 are respectively fixed to the bottoms of the chutes on the upper mounting plate 5 and the lower mounting plate 8. The two connecting plates 1 are located at the left ends of the upper mounting plate 5 and the lower mounting plate 8. The slider 10 engaged in the chute can be blocked by the two connecting plates 1 to prevent the slider from sliding out from the left end of the chute. The two stoppers 6 are respectively slidably engaged in the two chutes. All the upper clamping blocks 2 and all the lower clamping blocks 7 are respectively located between the two connecting plates 1 and the two stoppers 6. Each stopper 6 is provided with a threaded hole communicating up and down, and a screw is inserted into each threaded hole. When the upper clamping blocks 2 and the lower clamping blocks 7 are respectively mounted on the upper mounting plate 5 and the lower mounting plate 8 through the cooperation of the slider and the chute, all the upper clamping blocks 2 and all the lower clamping blocks 7 are pushed to the left. When blocked by the two connecting plates 1, each adjacent upper clamping block 2 or lower clamping block 7 is in close contact with each other. The two stoppers 6 are respectively slidably engaged in the two chutes from the right end, and the two stoppers 6 are pushed to the left so that the two stoppers 6 are in close contact with the rightmost upper clamping block 2 and lower clamping block 7. Then, the two screws are rotated, and the threaded ends of the two screws respectively abut against the bottom of the corresponding chute to lock the positions of the two stoppers 6, thereby locking the positions of all the upper clamping blocks 2 and all the lower clamping blocks 7. This solution as a whole constitutes a fixing component for fixing the positions of all the sliders 10. Of course, the fixing component can also use screws. A number of threaded holes are equidistantly arranged along the length direction of the upper mounting plate 5 and the lower mounting plate 8. When all the upper clamping blocks 2 and all the lower clamping blocks 7 are pushed to the left and each adjacent upper clamping block 2 or lower clamping block 7 is in close contact with each other, screws are inserted into the two threaded holes aligned with the rightmost upper clamping block 2 and lower clamping block 7. The two screws are in threaded fit with the corresponding threaded holes. The screws are rotated so that the threaded ends of the two screws abut against the sliders on the rightmost upper clamping block 2 and lower clamping block 7 to lock the rightmost upper clamping block 2 and lower clamping block 7, thereby locking the positions of all the upper clamping blocks 2 and all the lower clamping blocks 7.
[0033] In the actual use process, select the corresponding number of upper clamping blocks 2 and lower clamping blocks 7 according to the number of wiring pipes to be fixed. The sliders on all the upper clamping blocks 2 are sequentially inserted into the sliding grooves on the upper mounting plate 5 from the right side, and the sliders on all the lower clamping blocks 7 are sequentially inserted into the sliding grooves on the lower mounting plate 8 from the right side, so as to play the role of quickly disassembling and assembling the upper clamping blocks 2 and the lower clamping blocks 7. When all the upper clamping blocks 2 and all the lower clamping blocks 7 are pushed to the left and blocked by the two connecting plates 1, each adjacent upper clamping block 2 or lower clamping block 7 is in close contact with each other. Slide the two stoppers 6 into the two sliding grooves respectively from the right end, and push the two stoppers 6 to the left so that the two stoppers 6 are in close contact with the rightmost upper clamping block 2 and lower clamping block 7. Rotate the two screws, and the threaded ends of the two screws respectively abut against the bottom of the corresponding sliding groove, so as to lock the positions of all the upper clamping blocks 2 and all the lower clamping blocks 7; Fit the lower mounting plate 8 on the building surface, insert nails into two or more mounting holes, and knock the tips of the nails into the building, so as to fix the lower mounting plate 8 on the building surface; Place the lower half of the wiring pipe in the card slots on each lower clamping block 7 respectively, swing and close the upper mounting plate 5 so that each upper clamping block 2 on the upper mounting plate 5 is closed with the corresponding lower clamping block 7, and the upper half of the wiring pipe is respectively clamped in the card slots on the corresponding upper clamping blocks 2. Clamp and fix the wiring pipe through the closed upper clamping blocks 2 and lower clamping blocks 7. When each upper clamping block 2 is closed with the corresponding lower clamping block 7, the two clamping plates 11 on it will move together, so that each buckle is clamped in the corresponding card slot to connect and lock the closed upper clamping block 2 and lower clamping block 7, and keep each upper clamping block 2 and the corresponding lower clamping block 7 in the state of clamping the wiring pipe, which can easily and conveniently fix the wiring pipe and will not cause damage to the wiring pipe during the process of fixing the wiring pipe.
Claims
1. A wiring pipe branching device for building electrical design, comprising a horizontally arranged lower mounting plate (8), characterized in that: Above the said lower mounting plate (8), there is an upper mounting plate (5). A connecting plate (1) is fixed to one end of the upper mounting plate (5) and the lower mounting plate (8). The two connecting plates (1) are hinged to each other. A number of through-up-and-down mounting holes (9) are provided on the lower mounting plate (8). Chute grooves are provided on the inner side walls of the upper mounting plate (5) and the lower mounting plate (8). A number of upper clamping blocks (2) and lower clamping blocks (7) for clamping the row of wire pipes are arranged between the upper mounting plate (5) and the lower mounting plate (8). On the inner side walls of each upper clamping block (2) and the corresponding lower clamping block (7), a clamping groove for clamping the row of wire pipes is provided. A locking component for connecting and locking each other is arranged between each upper clamping block (2) and the corresponding lower clamping block (7). A slider (10) for respectively and slidably clamping in the two chute grooves is fixed to each upper clamping block (2) and the corresponding lower clamping block (7). A fixing component for fixing the positions of all the sliders (10) is arranged in the two chute grooves.
2. The wiring pipe branching device for building electrical design according to claim 1, characterized in that: The said fixing component includes two stopper blocks (6). The un-hinged ends of the two connecting plates (1) are respectively fixed to the bottoms of the chute grooves on the upper mounting plate (5) and the lower mounting plate (8). The two stopper blocks (6) are respectively slidably clamped in the two chute grooves. All the upper clamping blocks (2) and all the lower clamping blocks (7) are respectively located between the two connecting plates (1) and the two stopper blocks (6). A vertically-through threaded hole is provided on each stopper block (6), and a screw is inserted into each threaded hole.
3. The wiring pipe splitting device for building electrical design according to claim 1, wherein: The said locking component includes two clamping plates (11). The two clamping plates (11) are respectively vertically located on the front and rear sides of the upper clamping block (2). The upper ends of the two clamping plates (11) are fixed to the upper clamping block (2). Hooks are fixed to the lower ends of the two clamping plates (11). Mounting grooves for respectively and independently clamping the two hooks are provided on the front and rear side walls of the lower clamping block (7).
4. The wire distributing device for building electrical design pipe rows according to claim 1, characterized in that: Extrusion pads (3) are detachably fixed to the groove walls of the clamping grooves on all the upper clamping blocks (2) and all the lower clamping blocks (7).
5. The wiring pipe branching device for building electrical design according to claim 4, characterized in that: The cross-section of the said extrusion pad (3) is in a semi-circular structure.
6. The wiring pipe branching device for building electrical design according to claim 4, characterized in that: The said extrusion pad (3) is made of an elastic material.
7. The wire dividing device for building electrical design conduits according to claim 1, characterized in that: A number of cutting marking lines for marking the cutting positions are arranged on the side walls of the upper mounting plate (5) and the lower mounting plate (8) along the length direction of the upper mounting plate (5) and the lower mounting plate (8).