Modular assembly type building water and electricity pipeline integrated installation device
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-10-09
- Publication Date
- 2026-08-11
AI Technical Summary
[0003]但是现有技术中的模块化装配式建筑水电管线集成安装装置在使用时不能对其进行有效的位置限定,从而使得其在安装过程中易发生位置偏移,进而使得其不能对其进行稳固的安装,降低了其安装效率和稳固性,且不能进行有效的延展,从而使得其不能适应不同位置上的使用和安装,降低了其适用范围和使用效率,因此我们提出了一种模块化装配式建筑水电管线集成安装装置
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Figure CN224622361U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of prefabricated building technology, specifically to a modular prefabricated building water and electricity pipeline integrated installation device. Background Technology
[0002] Modular prefabricated building water and electricity pipeline integrated installation device refers to a device system that uses industrial prefabrication and assembly technology to integrate the water supply, drainage, electrical, heating, ventilation and air conditioning (HVAC) pipeline systems in a building into standardized modular units in a factory, and then quickly assembles them on site using dry construction methods. Existing technologies typically involve centralized installation of water and electricity pipelines to avoid their haphazard placement.
[0003] However, existing modular prefabricated building water and electricity pipeline integrated installation devices cannot effectively limit their position during use, making them prone to positional deviation during installation. This results in unstable installation, reduced installation efficiency and stability, and the inability to effectively extend them makes them unsuitable for use and installation in different locations, thus reducing their applicability and efficiency. Therefore, we propose a modular prefabricated building water and electricity pipeline integrated installation device. Utility Model Content
[0004] To address the shortcomings of existing technologies, this application proposes a modular prefabricated building water and electricity pipeline integrated installation device, which can effectively limit the position of the pipeline, making it less prone to positional displacement during installation, thereby enabling stable installation and improving its installation efficiency and stability.
[0005] This utility model provides the following technical solution: a modular prefabricated building water and electricity pipeline integrated installation device, including an installation plate. The top of the installation plate is bolted to a fixing box, and the top of the installation plate is open. A cover plate is attached to the top of the installation plate. Three evenly distributed through-tubes are arranged inside the fixing box. Fixing rings are respectively sleeved on the outside of the through-tubes near the left and right sides. A sliding column is bolted to the side of the fixing ring away from the fixing box near the bottom. Sliding grooves matching the sliding columns are opened on the left and right sides of the fixing box near the bottom. The front and rear sliding columns are slidably connected in the sliding grooves, and the middle sliding column is inserted into the sliding groove.
[0006] As a preferred embodiment of this utility model, the bottom of the cover plate is movably connected to a rotating shaft via a bearing. The bottom end of the rotating shaft passes through the inner ring of the bearing and is connected to a rotating plate. Near the left and right sides of the bottom of the rotating shaft, connecting rods are movably connected via a rotating shaft and a bearing, respectively. The bottoms of the two connecting rods are movably connected to the tops of the front and rear through-tubes via a rotating shaft and a bearing, respectively.
[0007] As a preferred embodiment of this utility model, a worm gear is sleeved near the top of the rotating shaft, and a housing is sleeved around the worm gear. The bottom of the housing is open, and the bottom of the housing is bolted to the top of the cover plate. A worm is engaged with the rear side of the worm gear, and the left and right ends of the worm are respectively movably connected to the left and right inner walls of the housing through bearings. The left and right ends of the worm extend through the inner ring of the bearing to the outside of the housing and are connected to a knob.
[0008] As a preferred embodiment of this utility model, the left and right sides of the fixing box are respectively connected to partitions by bolts, and the side walls of the partitions are provided with a number of evenly distributed arc-shaped grooves, and the through-tube is inserted into the arc-shaped grooves.
[0009] As a preferred embodiment of this utility model, the front and rear walls of the fixing box are respectively provided with a number of evenly distributed circular grooves, and a number of evenly distributed grids are connected in the circular grooves. The top of the mounting plate is provided with mounting holes near the four corners.
[0010] As a preferred embodiment of this utility model, positioning plates are slidably connected to the inside of the fixing box near the left and right sides respectively, and the top of the cover plate is provided with first threaded holes near the left and right sides respectively. An adjusting screw is fitted into the first threaded hole, and the bottom end of the adjusting screw passes through the first threaded hole and is movably connected to the top of the positioning plate through a bearing.
[0011] As a preferred embodiment of this utility model, the top of the cover plate and the fixing box are respectively provided with second threaded holes near the four corners, and fastening screws are fitted inside the second threaded holes.
[0012] The beneficial effects of this utility model are:
[0013] 1. This technical solution, through the mutual cooperation between components such as adjusting screw, positioning plate, fixing ring, sliding column and sliding groove, can effectively limit the position of the components, thereby making it less prone to positional displacement during installation, thus enabling stable installation and improving installation efficiency and stability.
[0014] 2. This technical solution, through the mutual cooperation between components such as adjusting screws, positioning plates, rotating plates, and connecting rods, enables it to be effectively extended, thereby adapting to use and installation in different positions, improving its applicability and efficiency. Attached Figure Description
[0015] Figure 1 This is a schematic diagram of the overall structure of this utility model;
[0016] Figure 2 for Figure 1 A schematic diagram of a partial cross-sectional structure;
[0017] Figure 3 for Figure 2 Partial 3D view of components such as the rotating plate;
[0018] Figure 4 for Figure 1 Partial 3D view of components such as the central fixing box;
[0019] Figure 5 for Figure 1 A partial side-view stereoscopic image.
[0020] In the diagram: 1. Mounting plate; 2. Fixing box; 3. First threaded hole; 4. Adjusting screw; 5. Fastening screw; 6. Housing; 7. Knob; 8. Cover plate; 9. Mounting hole; 10. Through pipe; 11. Partition plate; 12. Arc groove; 13. Fixing ring; 14. Circular groove; 15. Grille; 16. Positioning plate; 17. Worm gear; 18. Worm; 19. Sliding groove; 20. Connecting rod; 21. Rotating plate; 22. Rotating shaft; 23. Sliding column; 24. Second threaded hole. Detailed Implementation
[0021] To make the technical problems solved by this utility model, the technical solutions adopted, and the technical effects achieved clearer, the technical solutions of the embodiments of this utility model will be further described in detail below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of this utility model, and not all embodiments. Based on the embodiments of this utility model, all other embodiments obtained by those skilled in the art without creative effort are within the protection scope of this utility model.
[0022] Example 1
[0023] like Figures 1 to 5 As shown, a modular prefabricated building water and electricity pipeline integrated installation device includes: an installation plate 1, a fixing box 2 connected to the top of the installation plate 1 by bolts, and the top of the installation plate 1 is open, and a cover plate 8 is attached to the top of the installation plate 1. Three evenly distributed through-pipes 10 are provided in the fixing box 2. Fixing rings 13 are respectively sleeved on the outside of the through-pipes 10 near the left and right sides. A sliding column 23 is bolted to the side of the fixing ring 13 away from the fixing box 2 near the bottom. Sliding grooves 19 matching the sliding columns 23 are opened on the left and right sides of the fixing box 2 near the bottom. The front and rear sliding columns 23 are slidably connected in the sliding grooves 19, and the middle sliding column 23 is inserted into the sliding groove 19.
[0024] The bottom of the cover plate 8 is movably connected to a rotating shaft 22 via a bearing. The bottom end of the rotating shaft 22 passes through the inner ring of the bearing and is connected to a rotating plate 21. The bottom of the rotating shaft 22 is movably connected to connecting rods 20 near the left and right sides via rotating shafts and bearings, respectively. The bottoms of the two connecting rods 20 are movably connected to the tops of the front and rear through-tubes 10 via rotating shafts and bearings, respectively.
[0025] In this embodiment, the position of the device is effectively defined, making it less prone to positional displacement during installation, thereby enabling stable installation and improving its installation efficiency and stability.
[0026] A worm gear 17 is sleeved near the top of the rotating shaft 22. A housing 6 is sleeved around the worm gear 17. The bottom of the housing 6 is open and is bolted to the top of the cover plate 8. A worm 18 is meshed on the rear side of the worm gear 17. The left and right ends of the worm 18 are movably connected to the inner walls of the left and right sides of the housing 6 through bearings. The left and right ends of the worm 18 extend through the inner ring of the bearing to the outside of the housing 6 and are connected to a knob 7. The left and right sides of the fixed box 2 are bolted to a partition plate 11. Several evenly distributed arc-shaped grooves 12 are opened on the side wall of the partition plate 11, and a through tube 10 is inserted into the arc-shaped grooves 12.
[0027] The front and rear walls of the fixing box 2 are provided with several evenly distributed circular grooves 14, and several evenly distributed grids 15 are connected in the circular grooves 14. The top of the mounting plate 1 is provided with mounting holes 9 near the four corners. The fixing box 2 is slidably connected with positioning plates 16 near the left and right sides. The top of the cover plate 8 is provided with first threaded holes 3 near the left and right sides. Adjusting screws 4 are fitted in the first threaded holes 3. The bottom end of the adjusting screws 4 passes through the first threaded holes 3 and is movably connected to the top of the positioning plates 16 through bearings. The top of the cover plate 8 and the fixing box 2 are provided with second threaded holes 24 near the four corners, and fastening screws 5 are fitted in the second threaded holes 24.
[0028] Implementation plan: This allows for effective extension, enabling it to adapt to different locations for use and installation, thereby improving its applicability and efficiency.
[0029] Working principle: In use, this technical solution is first installed in the desired position using the mounting plate 1 and mounting holes 9. Then, one of the knobs 7 is rotated clockwise or counterclockwise. The knob 7 drives the worm gear 18 and worm wheel 17 to rotate, so that the worm wheel 17 drives the rotating plate 21 to rotate clockwise or counterclockwise through the rotating shaft 22. The rotating plate 21 pulls the two front and rear through-tubes 10 apart or together through the two connecting rods 20, so that it can be effectively extended, thereby adapting to use and installation in different positions, improving its applicability and efficiency. Next, the two adjusting screws 4 are rotated in sequence. The adjusting screws 4 drive the positioning plate 16 to move downward and press the through-tube 10, so that it can be effectively extended, thereby adapting to use and installation in different positions, improving its applicability and efficiency. The setting of the circular groove 14 and the grille 15 can realize effective ventilation and air circulation.
[0030] Example 2
[0031] like Figures 1 to 5 As shown, a modular prefabricated building water and electricity pipeline integrated installation device includes: an installation plate 1, a fixing box 2 connected to the top of the installation plate 1 by bolts, and the top of the installation plate 1 is open, and a cover plate 8 is attached to the top of the installation plate 1. Three evenly distributed through-pipes 10 are provided in the fixing box 2. Fixing rings 13 are respectively sleeved on the outside of the through-pipes 10 near the left and right sides. A sliding column 23 is bolted to the side of the fixing ring 13 away from the fixing box 2 near the bottom. Sliding grooves 19 matching the sliding columns 23 are opened on the left and right sides of the fixing box 2 near the bottom. The front and rear sliding columns 23 are slidably connected in the sliding grooves 19, and the middle sliding column 23 is inserted into the sliding groove 19.
[0032] The bottom of the cover plate 8 is movably connected to a rotating shaft 22 via a bearing. The bottom end of the rotating shaft 22 passes through the inner ring of the bearing and is connected to a rotating plate 21. The bottom of the rotating shaft 22 is movably connected to connecting rods 20 near the left and right sides via rotating shafts and bearings, respectively. The bottoms of the two connecting rods 20 are movably connected to the tops of the front and rear through-tubes 10 via rotating shafts and bearings, respectively.
[0033] In this embodiment, the position of the device is effectively defined, making it less prone to positional displacement during installation, thereby enabling stable installation and improving its installation efficiency and stability.
[0034] A worm gear 17 is sleeved near the top of the rotating shaft 22. A housing 6 is sleeved around the worm gear 17. The bottom of the housing 6 is open and is bolted to the top of the cover plate 8. A worm 18 is meshed on the rear side of the worm gear 17. The left and right ends of the worm 18 are movably connected to the inner walls of the left and right sides of the housing 6 through bearings. The left and right ends of the worm 18 extend through the inner ring of the bearing to the outside of the housing 6 and are connected to a knob 7. The left and right sides of the fixed box 2 are bolted to a partition plate 11. Several evenly distributed arc-shaped grooves 12 are opened on the side wall of the partition plate 11, and a through tube 10 is inserted into the arc-shaped grooves 12.
[0035] The front and rear walls of the fixing box 2 are provided with several evenly distributed circular grooves 14, and several evenly distributed grids 15 are connected in the circular grooves 14. The top of the mounting plate 1 is provided with mounting holes 9 near the four corners. The fixing box 2 is slidably connected with positioning plates 16 near the left and right sides. The top of the cover plate 8 is provided with first threaded holes 3 near the left and right sides. Adjusting screws 4 are fitted in the first threaded holes 3. The bottom end of the adjusting screws 4 passes through the first threaded holes 3 and is movably connected to the top of the positioning plates 16 through bearings. The top of the cover plate 8 and the fixing box 2 are provided with second threaded holes 24 near the four corners, and fastening screws 5 are fitted in the second threaded holes 24.
[0036] Implementation plan: This allows for effective extension, enabling it to adapt to different locations for use and installation, thereby improving its applicability and efficiency.
[0037] In this example, as the two through-tubes 10 move away from each other or come together, the fixing ring 13 drives the sliding column 23 to slide within the sliding groove 19, which can effectively limit the position.
[0038] In this embodiment, the mounting plate 1 and mounting hole 9 are installed facing upwards in the desired position, so that the housing 6 faces downwards. The sealing plate on the top of the housing 6 can be removed, and the cover plate 8 can be unscrewed to remove it, enabling convenient maintenance.
[0039] Although preferred embodiments of the present invention have been described, those skilled in the art, upon learning the basic inventive concept, can make other changes and modifications to these embodiments. Therefore, the appended claims are intended to be interpreted as including the preferred embodiments as well as all changes and modifications falling within the scope of the present invention.
[0040] Obviously, those skilled in the art can make various modifications and variations to this utility model without departing from its spirit and scope. Therefore, if these modifications and variations fall within the scope of the claims of this utility model and their equivalents, this utility model also intends to include these modifications and variations.
Claims
1. A modular prefabricated building water and electricity pipeline integrated installation device, characterized in that, The mounting plate (1) is bolted to a fixing box (2), and the top of the mounting plate (1) is open. A cover plate (8) is attached to the top of the mounting plate (1). Three evenly distributed through tubes (10) are provided inside the fixing box (2). Fixing rings (13) are respectively sleeved on the outside of the through tubes (10) near the left and right sides. A sliding column (23) is bolted to the side of the fixing ring (13) away from the fixing box (2) near the bottom. Sliding grooves (19) matching the sliding columns (23) are opened on the left and right sides of the fixing box (2) near the bottom. The front and rear sliding columns (23) are slidably connected in the sliding grooves (19), and the middle sliding column (23) is inserted into the sliding groove (19).
2. The modular prefabricated building water and electricity pipeline integrated installation device according to claim 1, characterized in that, The bottom of the cover plate (8) is movably connected to a rotating shaft (22) via a bearing. The bottom end of the rotating shaft (22) passes through the inner ring of the bearing and is connected to a rotating plate (21). The bottom of the rotating shaft (22) is movably connected to connecting rods (20) near the left and right sides via a rotating shaft and a bearing, respectively. The bottoms of the two connecting rods (20) are movably connected to the tops of the front and rear through-tubes (10) via a rotating shaft and a bearing, respectively.
3. The modular prefabricated building water and electricity pipeline integrated installation device according to claim 2, characterized in that, A worm gear (17) is sleeved near the top of the rotating shaft (22). A housing (6) is sleeved on the worm gear (17). The bottom of the housing (6) is open and is bolted to the top of the cover plate (8). A worm (18) is engaged on the rear side of the worm gear (17). The left and right ends of the worm (18) are movably connected to the left and right inner walls of the housing (6) through bearings. The left and right ends of the worm (18) extend through the inner ring of the bearing to the outside of the housing (6) and are connected to a knob (7).
4. The modular prefabricated building water and electricity pipeline integrated installation device according to claim 3, characterized in that, The left and right sides of the fixed box (2) are respectively connected to partitions (11) by bolts. Several evenly distributed arc grooves (12) are opened on the side wall of the partition (11), and the through pipe (10) is inserted into the arc groove (12).
5. A modular prefabricated building water and electricity pipeline integrated installation device according to claim 4, characterized in that, The front and rear walls of the fixing box (2) are provided with several evenly distributed circular grooves (14), and several evenly distributed grids (15) are connected in the circular grooves (14). The top of the mounting plate (1) is provided with mounting holes (9) near the four corners.
6. The modular prefabricated building water and electricity pipeline integrated installation device according to claim 5, characterized in that, The fixing box (2) is slidably connected to the positioning plates (16) near the left and right sides respectively. The top of the cover plate (8) is provided with the first threaded holes (3) near the left and right sides respectively. The first threaded holes (3) are fitted with adjusting screws (4). The bottom end of the adjusting screws (4) passes through the first threaded holes (3) and is movably connected to the top of the positioning plates (16) through the bearing.
7. The modular prefabricated building water and electricity pipeline integrated installation device according to claim 6, characterized in that, The top of the cover plate (8) and the fixing box (2) are respectively provided with second threaded holes (24) near the four corners, and fastening screws (5) are fitted inside the second threaded holes (24).