Mechanical and electrical pipeline installation support for building

CN224814533UActive Publication Date: 2026-09-29CHINA CONSTR SEVENTH ENG DIVISION CORP LTD
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Patent Information

Application Number
CN202522089537.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-09-28
Publication Date
2026-09-29
Estimated Expiration
2035-09-28

AI Technical Summary

Technical Problem

[0003]建筑房屋内的管线都比较复杂,有些管线是以横向的方式进行排布,还有一部分采用纵向的方式进行排布的;但是,目前的管线安装支架仅能够对排布方向相同的管线进行固定,若是遇到排布方向不同的管线时,需要多个管线安装支架分别对排布方向不同的管线进行固定,从而给工作人员带来不便

Benefits of technology

本实用新型在安装轴的底端可拆卸安装有固定式安装座以及在固定式安装座两侧的安装有安装杆以及安装架,通过该安装架能够对排布横向或纵向的管线进行固定;在安装轴上转动的方式安装有活动式安装座,活动式安装座通过两侧的安装杆分别带动安装架进行旋转调节,从而能够根据管线排布的方式对该安装架进行旋转调节;具有较强的灵活性,通过该安装架能够对排布方向不同的管线进行固定,具有较强的实用性,提升该支架的使用效果。

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Abstract

The utility model relates to pipeline installation technical field and disclose a house building electromechanical pipeline installation support, including installation disc and the installation shaft of fixed in the bottom of installation disc, the bottom of installation shaft is fixed with fixed mounting seat, the top of fixed mounting seat is provided with the movable mounting seat of movable installation in installation shaft, the top of movable mounting seat is provided with the fastening assembly of screwing in installation shaft, the side portion of fixed mounting seat and the side portion of movable mounting seat are installed with installation rod respectively, and the installation frame for fixing pipeline is installed on the installation rod, movable mounting seat is installed in the mode of rotating on installation shaft, and movable mounting seat drives the rotation adjustment of installation frame through the installation rod of both sides respectively, so that can rotate the adjustment of installation frame according to the mode of pipeline arrangement, have stronger flexibility, can fix the pipeline of different arrangement direction through this installation frame, have stronger practicality.
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Description

Technical Field

[0001] This utility model relates to the field of pipeline installation technology, specifically to a mounting bracket for electromechanical pipelines in building construction. Background Technology

[0002] Building electromechanical pipelines refer to the piping systems installed inside buildings for functions such as water supply, gas supply, power supply, and heating. These pipelines include water pipes, gas pipes, electrical wires, and heating pipes. By connecting various resources and equipment within the building, they enable the normal operation of various facilities within the building. The design and layout of building electromechanical pipelines need to consider factors such as building structure, functional requirements, safety, and ease of maintenance to ensure the effective operation of various facilities within the building and the convenience of residents' lives.

[0003] Pipelines inside buildings are quite complex, with some laid out horizontally and others vertically. However, current pipe mounting brackets can only fix pipes laid in the same direction. If pipes are laid in different directions, multiple pipe mounting brackets are needed to fix them separately, which causes inconvenience to workers.

[0004] Therefore, we propose a mounting bracket for electromechanical pipelines in building construction to solve the problem of using several mounting brackets to fix pipelines with different layout directions. Utility Model Content

[0005] The purpose of this utility model is to solve the aforementioned technical problems.

[0006] To achieve the above objectives, this utility model adopts the following technical solution: a mounting bracket for electromechanical pipelines in building construction, comprising a mounting plate and a mounting shaft fixed to the bottom of the mounting plate. A fixed mounting seat is detachably connected to the bottom end of the mounting shaft. A movable mounting seat is movably mounted on the mounting shaft above the fixed mounting seat. Mounting rods are respectively mounted on the sides of the fixed mounting seat and the movable mounting seat, and mounting brackets for fixing pipelines are mounted on the mounting rods. The movable mounting seat is adjustable in the circumferential direction relative to the fixed mounting seat to adjust the angle between the mounting brackets mounted on the fixed mounting seat and the mounting brackets mounted on the movable mounting seat.

[0007] Furthermore: A fastening component is provided above the movable mounting base, and the fastening component is threadedly adapted to the mounting shaft so that the fastening component limits the movable mounting base in the vertical direction.

[0008] Furthermore: The fastening assembly includes a threaded cylinder threaded onto the mounting shaft, the bottom of which is fixed with a pressure ring, and the pressure ring is capable of engaging with the upper surface of the movable mounting base to apply downward pressure to the movable mounting base.

[0009] Furthermore: The top of the fixed mounting base is evenly distributed with several pins along the circumferential direction; the bottom of the movable mounting base is evenly distributed with several insertion holes along the circumferential direction; when the movable mounting base is pressed downward by the fastening component, several pins are respectively inserted into the corresponding insertion holes.

[0010] Furthermore: One end of the mounting rod is fixed with a mounting plate, and a mounting hole is provided at the corner of the mounting plate; the side of the fixed mounting base and the movable mounting base are respectively provided with a first threaded hole corresponding to the mounting hole, and the corresponding mounting hole and the first threaded hole are connected by a fixing bolt.

[0011] Furthermore: The mounting bracket includes a base fixed to the top of the mounting plate, and the top of the base is provided with a plurality of placement slots for placing conduits at equal intervals along the length direction, and each placement slot is provided with a fixing component that can be detachably installed on the base.

[0012] Furthermore: The fixing component includes a fixing body, and the bottom of the fixing body is provided with a limiting groove that is adapted to the placement groove.

[0013] Furthermore: Stepped holes are provided on both sides of the fastener body, and hexagon socket bolts are provided inside the stepped holes. A second threaded hole adapted to the hexagon socket bolts is provided on the base.

[0014] The beneficial effects of this utility model are: This utility model features a fixed mounting base detachably mounted at the bottom of the mounting shaft, along with mounting rods and mounting frames on both sides of the fixed mounting base. The mounting frames can be used to fix horizontally or vertically arranged pipelines. A movable mounting base is rotatably mounted on the mounting shaft. The movable mounting base, via the mounting rods on both sides, drives the mounting frames to rotate and adjust, allowing for adjustment of the mounting frames according to the pipeline arrangement. This design offers high flexibility, enabling the fixing of pipelines with different arrangement directions, enhancing practicality and improving the overall performance of the bracket. Attached Figure Description

[0015] Figure 1 This is a three-dimensional structural schematic diagram of the present invention; Figure 2 This is a three-dimensional structural diagram of the mounting shaft and the fixed mounting base in this utility model; Figure 3This is a three-dimensional structural diagram of the movable mounting base in this utility model (viewed from bottom to top). Figure 4 This is a schematic diagram of the mounting rod, mounting bracket, and mounting plate structure in this utility model; Figure 5 This is a three-dimensional structural diagram of the base in this utility model; Figure 6 This is an exploded structural diagram of the fixing component in this utility model.

[0016] The names corresponding to each mark in the diagram: 1. Mounting plate; 2. Mounting shaft; 3. Fixed mounting base; 301. Pin; 4. Movable mounting base; 401. Insertion hole; 5. Fastening assembly; 501. Threaded cylinder; 502. Pressure ring; 6. Mounting rod; 7. Mounting bracket; 701. Base; 7011. Second threaded hole; 702. Placement slot; 703. Fixing assembly; 7031. Fixing body; 7032. Limiting groove; 7033. Stepped hole; 7034. Socket headstock bolt; 8. Mounting plate; 801. Mounting hole; 802. First threaded hole. Detailed Implementation

[0017] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. All other embodiments obtained by those skilled in the art based on the embodiments of the present utility model are within the protection scope of the present utility model.

[0018] An electromechanical pipeline mounting bracket for building construction includes a mounting plate 1. The mounting plate 1 allows the bracket to be installed on the top beam of the building. A downward-facing mounting shaft 2 is fixed at the center of the bottom of the mounting plate 1, and a fixed mounting seat 3 is detachably mounted on the bottom end of the mounting shaft 2. It should be noted that the center of the fixed mounting seat 3 is threadedly connected to the bottom of the mounting shaft 2 via a fixing bolt (not shown in the figure), allowing the fixed mounting seat 3 to be disassembled for easy installation of a movable mounting seat 4. Mounting rods 6 are mounted on both sides of the fixed mounting seat 3, and mounting brackets 7 are mounted on the mounting rods 6. The mounting rods 6 and mounting brackets 7 work together to allow for installation according to the pipeline layout. A movable mounting base 4 is provided above the fixed mounting base 3, and the movable mounting base 4 rotates on the mounting shaft 2. It should be noted that mounting rods 6 are also installed on both sides of the movable mounting base 4, and mounting brackets 7 are also installed on the top of the mounting rods 6. The movable mounting base 4 can drive the mounting brackets 7 to rotate and adjust through the mounting rods 6 on both sides, so as to flexibly adjust according to the pipeline layout. After adjustment, the mounting rods 6 and mounting brackets 7 can fix the pipeline again, improving the use effect of the bracket.

[0019] It should be noted that the mounting rods 6 and mounting brackets 7 set on both sides of the fixed mounting base 3 have the same structure as the mounting rods 6 and mounting brackets 7 set on both sides of the movable mounting base 4; for ease of description, this application only describes the mounting rods 6 and mounting brackets 7 set on both sides of the fixed mounting base 3. In detail: One end of the mounting rod 6 is fixed with a mounting plate 8, and mounting holes 801 are respectively opened at the corners of the mounting plate 8. Fixing bolts (not shown in the figure) are installed inside the mounting holes 801. The side of the fixed mounting base 3 and the side of the movable mounting base 4 are respectively opened with first threaded holes 802. The fixing bolts pass through the mounting holes 801 and are threadedly connected to the first threaded holes 802, thereby fastening the mounting rod 6. When the bracket is not in use or during transportation, several mounting rods 6 can be removed from the fixed mounting base 3 and the movable mounting base 4 respectively, which can reduce the space occupied by the bracket, facilitate storage or transportation, and provide convenience for workers.

[0020] Each mounting rod 6 has a mounting bracket 7 installed on its top. In detail, the mounting bracket 7 includes a base 701 fixed to the top of the mounting rod 6, and the top of the base 701 has several placement slots 702 evenly spaced along its length. The placement slots 702 are used to place the pipeline. It should be noted that each placement slot 702 has a fixing component 703 that can be detachably installed on the base 701. The fixing component 703 is used to fix the pipeline and prevent it from becoming loose or falling off during use.

[0021] More specifically: the fixing component 703 includes a fixing body 7031. A limiting groove 7032 is formed at the bottom of the fixing body 7031. When the fixing body 7031 is placed above the base 701, the limiting groove 7032 and the placement groove 702 form a circular through groove for limiting the pipeline. It should be noted that stepped holes 7033 are symmetrically arranged on the fixing body 7031 about the limiting groove 7032. A second threaded hole 7011, matching the stepped hole 7033, is formed at the top of the base 701. An internal hex bolt 7034 passes through the stepped hole 7033 and is threaded into the second threaded hole 7011, thereby fixing the fixing body 7031 and preventing it from falling off during use.

[0022] It should be noted that a fastening component 5 is also provided above the movable mounting base 4, and the fastening component 5 is movably mounted on the mounting shaft 2. The fastening component 5 serves to fasten the movable mounting base 4, preventing it from shaking during use, thereby improving the stability of the movable mounting base 4. In detail: the fastening assembly 5 includes a threaded cylinder 501, which is threaded onto the mounting shaft 2. The threaded cylinder 501 serves to adjust the height. A pressure ring 502 is fixed to the bottom of the threaded cylinder 501. When the threaded cylinder 501 drives the pressure ring 502 to rotate downward, it applies pressure to the movable mounting base 4, preventing the movable mounting base 4 from rotating during use. Conversely, when the threaded cylinder 501 drives the pressure ring 502 to rotate upward, it restricts the pressure applied to the movable mounting base 4, allowing for rotational adjustment of the movable mounting base 4.

[0023] It should be noted that: the top of the fixed mounting base 3 is fixed with several pins 301 at equal intervals along the circumference; the bottom of the movable mounting base 4 is provided with several holes 401 at equal intervals along the circumference; when the movable mounting base 4 is pressed down by the fastening component 5, the pins 301 are inserted into the corresponding holes 401 respectively; through the cooperation of the pins 301 and the holes 401, the movable mounting base 4 is limited, preventing it from rotating during use, and further improving the stability of the bracket.

[0024] In reality, the layout of pipelines in buildings is quite complex. Some pipelines are laid out horizontally, while others are laid out vertically. Therefore, this bracket can be used to accommodate more complex pipeline layouts. In use, the mounting plate 1 is first fixed to the roof beam of the building with bolts. Then, the threaded cylinder 501 is rotated upwards, causing the pressure ring 502 to move upwards and lose pressure on the movable mounting base 4. The movable mounting base 4 can then be slightly lifted upwards, causing the pin 301 to disengage from the insertion hole 401. The movable mounting base 4 is then rotated, allowing the mounting bracket 7 to rotate and adjust according to the pipeline layout via the mounting rods 6 on both sides. Adjustment; after the rotation adjustment is completed, the movable mounting base 4 is loosened and falls downwards due to its own gravity, so that each pin 301 can be inserted into the corresponding socket 401, thereby limiting the movable mounting base 4 and preventing it from rotating during use; the threaded cylinder 501 is rotated downwards again, so that the threaded cylinder 501 can drive the pressure ring 502 to move downwards and squeeze the movable mounting base 4, preventing the movable mounting base 4 from loosening during use.

[0025] When installing pipelines, first loosen the hex socket bolts 7034 so that the fastener body 7031 can be removed from the top of the base 701. Then place the pipeline inside the placement slot 702 and use the hex socket bolts 7034 to pass through the stepped hole 7033 and thread the bolts 7034 into the second threaded hole 7011 for threaded connection. This will fasten the fastener body 7031 and prevent it from loosening after long-term use.

Claims

1. A mounting bracket for electromechanical pipelines in building construction, characterized in that: The device includes a mounting plate (1) and a mounting shaft (2) fixed to the bottom of the mounting plate (1). The bottom end of the mounting shaft (2) is detachably connected to a fixed mounting base (3). A movable mounting base (4) is movably mounted on the mounting shaft (2) above the fixed mounting base (3). Mounting rods (6) are respectively mounted on the side of the fixed mounting base (3) and the side of the movable mounting base (4), and mounting brackets (7) for fixing pipelines are mounted on the mounting rods (6). The movable mounting base (4) is adjustable relative to the fixed mounting base (3) in the circumferential direction of the fixed mounting base (3) to adjust the angle between the mounting bracket (7) mounted on the fixed mounting base (3) and the mounting bracket (7) mounted on the movable mounting base (4).

2. The mounting bracket for electromechanical pipelines in building construction according to claim 1, characterized in that: A fastening component (5) is provided above the movable mounting base (4). The fastening component (5) is threadedly adapted to the mounting shaft (2) so that the fastening component (5) limits the movable mounting base (4) in the vertical direction.

3. The mounting bracket for electromechanical pipelines in building construction according to claim 2, characterized in that: The fastening assembly (5) includes a threaded cylinder (501) threaded onto the mounting shaft (2), the bottom of which is fixed with a pressure ring (502), and the pressure ring (502) is able to fit against the upper surface of the movable mounting base (4) to apply downward pressure to the movable mounting base (4).

4. The mounting bracket for electromechanical pipelines in building construction according to claim 1, characterized in that: The top of the fixed mounting base (3) is evenly fixed with several pins (301) along the circumferential direction; the bottom of the movable mounting base (4) is evenly provided with several insertion holes (401) along the circumferential direction; when the movable mounting base (4) is pressed down by the fastening component (5), several pins (301) are respectively inserted into the corresponding insertion holes (401).

5. The mounting bracket for electromechanical pipelines in building construction according to claim 1, characterized in that: One end of the mounting rod (6) is fixed with a mounting plate (8), and a mounting hole (801) is provided at the corner of the mounting plate (8); the fixed mounting base (3) and the movable mounting base (4) are respectively provided with a first threaded hole (802) corresponding to the mounting hole (801), and the corresponding mounting hole (801) and the first threaded hole (802) are connected by a fixing bolt.

6. The mounting bracket for electromechanical pipelines in building construction according to claim 4, characterized in that: The mounting bracket (7) includes a base (701) fixed to the top of the mounting plate (8), and the top of the base (701) is provided with a plurality of placement slots (702) for placing conduits at equal intervals along the length direction. Each placement slot (702) is provided with a fixing component (703) that can be detachably installed on the base (701).

7. A mounting bracket for electromechanical pipelines in building construction according to claim 6, characterized in that: The fixing component (703) includes a fixing body (7031), and the bottom of the fixing body (7031) is provided with a limiting groove (7032) that is adapted to the placement groove (702).

8. A mounting bracket for electromechanical pipelines in building construction according to claim 7, characterized in that: The fastener body (7031) has stepped holes (7033) on both sides, and the stepped holes (7033) are provided with internal hexagon bolts (7034). The base (701) has a second threaded hole (7011) that is compatible with the internal hexagon bolts (7034).