Pipeline fixing assembly for building water supply and drainage

Through innovative design of the base, support components, and connecting components, the problem of inconvenient pipe installation in existing technologies has been solved, enabling rapid adaptation to stable fixing of different pipe diameters and materials, and improving installation efficiency and stability.

CN223965043UActive Publication Date: 2026-03-03CITIC GENERAL INST OF ARCHITECTURAL DESIGN & RES
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Patent Information

Application Number
CN202520913397.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-05-12
Publication Date
2026-03-03
Estimated Expiration
2035-05-12

AI Technical Summary

Technical Problem

The existing building water supply and drainage pipe installation and fixing devices have complex structures, making it difficult to adapt to different pipe diameters and materials. This can easily lead to pipe displacement and shaking, causing damage.

Method used

A pipe fixing assembly including a base, a support component, and a connecting component has been designed. It utilizes a hinged pipe clamp and an adjustment mechanism to achieve quick locking through a locking component and fasteners. Combined with threaded drive and anti-slip pads, it can adapt to pipes of different diameters and materials.

Benefits of technology

It enables rapid installation and disassembly, enhances the stability and vibration resistance of pipelines, simplifies the operation process, adapts to complex scenario requirements, and reduces pipeline friction damage.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model belongs to the technical field of building water supply and drainage pipeline installation, and particularly relates to a pipeline fixing assembly for building water supply and drainage. Comprising a base, a supporting assembly detachably arranged on the base and a plurality of connecting assemblies connected to the supporting assembly. The connecting assembly comprises a pipe clamp and an adjusting mechanism, the pipe clamp is composed of a first arc-shaped clamp body and a second arc-shaped clamp body, one end of the first clamp body is hinged to one end of the second clamp body, and the other end of the first clamp body is detachably connected with the other end of the second clamp body through a clamping assembly to lock the closed state. The adjusting mechanism penetrates through the pipe clamp, the tail end of the adjusting mechanism is connected with the flitch plate, and the flitch plate is driven to move towards the center of the pipe clamp in the axial direction by rotating the adjusting mechanism. According to the pipeline fixing assembly, the adaptability, the stability and the operation convenience of the pipeline fixing assembly are comprehensively improved. The structure is simple, adjustable and detachable, not only can quickly adapt to different pipe diameters and materials, but also can effectively restrain deviation or vibration of pipelines, and is particularly suitable for the complex installation requirements of building water supply and drainage pipelines.
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Description

Technical Field

[0001] This utility model belongs to the field of water supply and drainage pipeline installation technology, specifically relating to a pipe fixing component for building water supply and drainage. Background Technology

[0002] Building water supply and drainage pipes are mainly divided into metal pipes, composite pipes, and plastic pipes. Metal pipes are mainly divided into copper pipes and stainless steel pipes. Metal pipes have many advantages such as safety, hygiene, and durability, making them the ideal pipe material for indoor building water supply pipes. Composite pipes combine metal and plastic, possessing both the strength of metal and the corrosion resistance of plastic, and are also commonly used pipe materials for indoor building water supply pipes. Plastic pipes have advantages such as resistance to acid and alkali corrosion and low cost, making them commonly used pipe materials for indoor building drainage pipes. Currently, construction and installation personnel often need to use corresponding fixing structures when installing and fixing indoor water supply and drainage pipes.

[0003] Currently, in the installation and fixing of building water supply and drainage pipelines, clamps, brackets, or grouting devices are commonly used. However, when using these devices, the overall structure may be too complex, or the pipes may not meet the installation requirements of different diameters, and they may not be properly restricted. This can easily cause pipe installation to shift or shake, leading to pipe damage.

[0004] To address these issues, we propose a pipe fixing component for building water supply and drainage. Utility Model Content

[0005] This utility model addresses the technical problems existing in the prior art by providing a pipe fixing component for building water supply and drainage, which can quickly adapt to different pipe diameters and materials, and effectively suppress pipe deviation, making it particularly suitable for the complex installation needs of indoor building water supply and drainage pipes.

[0006] The technical solution of this utility model to solve the above-mentioned technical problems is as follows:

[0007] A pipe fixing assembly for building water supply and drainage, comprising:

[0008] Base, used for mounting to a wall or floor;

[0009] A support assembly is detachably mounted on the base;

[0010] Multiple connecting components are respectively connected to the supporting component;

[0011] The connection component includes:

[0012] The pipe clamp consists of an arc-shaped first clamp body and a second clamp body. One end of the first clamp body and the second clamp body are hinged together, and the other end is detachably connected by a locking assembly to lock the closed state.

[0013] An adjustment mechanism extends through the pipe clamp and is connected to a plate at its end. Rotating the adjustment mechanism drives the plate to move axially toward the center of the pipe clamp.

[0014] This invention enables rapid installation and disassembly, and the combination of the base and support components enhances overall stability. The hinged structure of the pipe clamp, combined with the adjustment mechanism, can flexibly adapt to pipes of different diameters, simplifying the operation process and solving the problem of poor versatility of traditional fixing devices.

[0015] Based on the above technical solution, the present invention can be further improved as follows.

[0016] Furthermore, the adjusting mechanism includes an externally threaded rod and an internally threaded sleeve. The internally threaded sleeve is fixed inside the pipe clamp and threadedly engaged with the externally threaded rod. A movable plate is fixedly connected to the end of the externally threaded rod. A slot is provided on one side of the plate, and the movable plate is embedded in the slot. The side wall of the slot provides circumferential restriction to the movable plate. By rotating the externally threaded rod, the movable plate rotates axially within the slot and pushes the plate to move linearly along the center direction of the pipe clamp.

[0017] Furthermore, the panel is arc-shaped.

[0018] Furthermore, the engaging assembly includes a buckle on the first clamp and a locking block on the second clamp, the buckle having a groove, and the locking block engaging with the groove.

[0019] Furthermore, the engaging assembly also includes a fastener, which is a bolt or pin, that passes through the buckle and abuts against the locking block to secure the pipe clamp in a closed state.

[0020] Furthermore, the base includes a substrate, a limiting groove, and a plurality of screw holes. The limiting groove is located in the middle of the substrate, and the plurality of screw holes are distributed around the limiting groove.

[0021] Furthermore, the support assembly includes a base, a support plate, and a frame. One side of the base is fitted into the limiting groove, and the other side is vertically fixed to the frame. Multiple connecting components are evenly distributed on the frame and connected to it. The base is provided with the support plate, and the base is connected to the base plate by bolts through screw holes.

[0022] Furthermore, multiple connecting components are interconnected and fixed together via connecting plates.

[0023] Furthermore, both the inner wall of the pipe clamp and the surface of the plate are provided with anti-slip pads.

[0024] The beneficial effects of this utility model are:

[0025] 1. This utility model achieves the fixation of drainage pipes through the design of connecting components and adjusting mechanisms. The pipe clamp of the connecting component consists of a hinged first clamp and a second clamp, which achieves quick closure and locking through a snap-fit ​​assembly. Bolts or pins are used as fasteners to ensure a secure and non-loosening clamp after closure. The adjusting mechanism consists of an externally threaded rod and an internally threaded sleeve. Rotating the externally threaded rod drives the arc-shaped plate at its end to move towards the center of the pipe, precisely fitting the surface of pipes of different diameters. The arc-shaped design of the plate increases the contact area, and combined with the anti-slip pad layer, it prevents pipe shaking and reduces friction damage.

[0026] 2. This utility model, through the design of the base and support components, allows for flexible layout adjustments and functional expansion to adapt to complex scenario requirements. The base is fixed to the wall or ground via a base plate. Its limiting groove and screw hole design simplifies the installation process of the support components. After the base of the support components is embedded in the limiting groove, it is connected to the bolts via the support plate to form a stable fitting structure, facilitating subsequent disassembly and maintenance. Simultaneously, multiple connecting components are mutually fixed via connecting plates, optimizing the stress distribution when multiple pipes are installed in parallel and enhancing the uniformity of the overall structure. Attached Figure Description

[0027] Figure 1 This is a structural schematic diagram of the pipe fixing assembly for building water supply and drainage described in an embodiment of the present utility model;

[0028] Figure 2 This is a schematic diagram of the structure of the base described in an embodiment of the present utility model;

[0029] Figure 3 This is a schematic diagram of the structure of the support component described in an embodiment of the present utility model;

[0030] Figure 4 This is a partially enlarged structural diagram of the adjustment mechanism of the connecting component described in an embodiment of the present utility model;

[0031] Figure 5 This is a schematic diagram of the engagement assembly described in an embodiment of the present invention.

[0032] The attached diagram lists the components represented by each number as follows:

[0033] 1. Base, 101. Base plate, 102. Limiting groove, 103. Screw hole, 2. Support assembly, 201. Base, 202. Support plate, 203. Frame, 204. Connecting plate, 3. Connecting assembly, 301. First clamp, 302. Rotating shaft, 303. External threaded rod, 304. Plate, 305. Internal threaded sleeve, 306. Movable plate, 307. Slot, 308. Second clamp, 4. Engaging assembly, 401. Buckle, 402. Groove, 403. Bolt, 404. Locking block. Detailed Implementation

[0034] The technical solutions of the embodiments of this application will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of this application, and not all embodiments. Based on the embodiments of this application, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of this application.

[0035] In the description of this application, the terms "first" and "second" are used for descriptive purposes only and should not be construed as indicating or implying relative importance or implicitly specifying the number of indicated technical features. Thus, a feature defined as "first" or "second" may explicitly or implicitly include one or more of the stated features. In the description of this application, "multiple" means two or more, unless otherwise explicitly specified.

[0036] In the description of this application, the term "for example" is used to mean "used as an example, illustration, or description." Any embodiment described as "for example" in this application is not necessarily to be construed as being more preferred or advantageous than other embodiments. The following description is provided to enable any person skilled in the art to implement and use the present invention. Details are set forth in the following description for purposes of explanation. It should be understood that those skilled in the art will recognize that the present invention can be implemented without using these specific details. In other instances, well-known structures and processes will not be described in detail to avoid obscuring the description of the present invention with unnecessary detail. Therefore, the present invention is not intended to be limited to the embodiments shown, but is consistent with the broadest scope of the principles and features disclosed in this application.

[0037] Example

[0038] A pipe fixing component for building water supply and drainage, such as Figure 1 As shown, it includes: a base 1, a support assembly 2 detachably disposed on the base 1, and a plurality of connecting assemblies 3.

[0039] like Figure 2 As shown, the base 1 includes a base plate 101, a limiting groove 102, and a plurality of screw holes 103. The limiting groove 102 is located in the middle of the base plate 101, and the plurality of screw holes 103 are distributed around the limiting groove 102. The cooperation between the limiting groove 102 and the screw holes 103 enables precise positioning and rapid installation of the support component 2. The structural design of the base plate 101 enhances the load-bearing capacity of the base 1, making it suitable for fixing to different walls or floors.

[0040] like Figure 3As shown, the support assembly 2 includes a base 201, a support plate 202, and a frame 203. One side of the base 201 is fitted into the limiting groove 102, and the other side is vertically fixed to the frame 203. Multiple connecting components 3 are evenly distributed on and connected to the frame 203. The base 201 is provided with the support plate 202, and the base 201 is connected to the base plate 101 via bolts 403 through the screw holes 103 of the support plate 202. The fitting connection between the support assembly 2 and the base 1 simplifies the installation process, and the evenly distributed design of the frame 203 optimizes the force balance when fixing multiple pipes.

[0041] The connecting component 3 includes a pipe clamp and an adjustment mechanism;

[0042] like Figure 1 and 5 As shown, the pipe clamp consists of an arc-shaped first clamping body 301 and a second clamping body 308. One end of the first clamping body 301 and the second clamping body 308 are hinged by a pivot 302, and the other end is detachably connected by a locking assembly 4 to lock in a closed state. The locking assembly 4 includes a buckle 401 on the first clamping body 301 and a locking block 404 on the second clamping body 308. The buckle 401 has a groove 402, and the locking block 404 is fitted into the groove 402. The locking assembly 4 also includes a fastener, which is a bolt 403, passing through the buckle 401 and the locking block 404 to abut against each other to secure the pipe clamp in a closed state.

[0043] The interlocking structure of the buckle 401 and the locking block 404 enables quick closing and locking, simplifying the operation steps; the fastener provides additional mechanical locking force, enhancing the stability of the pipe clamp in the closed state.

[0044] like Figure 4 As shown, the adjusting mechanism includes an externally threaded rod 303 and an internally threaded sleeve 305. The internally threaded sleeve 305 is fixed inside the pipe clamp and threadedly engaged with the externally threaded rod 303. A movable plate 306 is fixedly connected to the end of the externally threaded rod 303. A slot 307 is provided on one side of the plate 304. The movable plate 306 is embedded in the slot 307, and the side wall of the slot 307 forms a circumferential limit on the movable plate 306. By rotating the externally threaded rod 303, the movable plate 306 rotates axially within the slot 307 and pushes the plate 304 to move linearly along the center direction of the pipe clamp.

[0045] The movable plate 306 is driven to rotate by the threaded engagement between the external threaded rod 303 and the internal threaded sleeve 305. Simultaneously, the circumferential limiting design of the movable plate 306 via the slot 307 of the adhesive plate 304 ensures that the adhesive plate 304 moves only linearly along the center direction of the pipe clamp. This structure avoids offset or frictional damage to the adhesive plate 304 caused by the rotation of the threaded rod, and precisely controls the displacement of the adhesive plate 304 through the mechanical gain characteristics of the threaded drive, ensuring uniform distribution of clamping force. The embedded engagement of the movable plate 306 and the slot 307 further restricts radial freedom, enhancing the vibration resistance of the pipe fixation, thereby significantly improving clamping stability and operational reliability while adapting to different pipe diameters. The adhesive plate 304 is arc-shaped. The arc-shaped adhesive plate 304 matches the shape of the pipe outer wall, enhancing clamping stability.

[0046] In a preferred embodiment, multiple connecting components 3 are interconnected and fixed by a connecting plate 204. The connecting plate 204 enhances the structural linkage between multiple pipe clamps, is suitable for installation scenarios with parallel or dense pipes, distributes external loads, reduces the stress on individual connecting components 3, and improves overall stability.

[0047] In a preferred embodiment, both the inner wall of the pipe clamp and the surface of the mounting plate 304 are provided with anti-slip pads. These anti-slip pads are made of rubber, which increases friction to prevent pipe slippage and also acts as a buffer to avoid scratches on the pipe surface.

[0048] The overall workflow of this utility model:

[0049] Mounting base 1: Fix the base plate 101 to the wall or ground, and pre-position the support assembly through the limiting groove 102 and screw hole 103;

[0050] Assembly support component 2: The base 201 is embedded in the limiting groove 102 of the base plate 101, and the support plate 202 is fixed to the screw hole 103 by bolts 403 to form a stable support frame.

[0051] Fixing the pipe: Open the pipe clamp, place the pipe inside the clamp, close it and the buckle 401 engages with the clamp block 404, insert the bolt 403 to tighten;

[0052] Adjusting plate 304: Rotating the external threaded rod 303 drives the plate 304 to fit tightly against the pipe surface, adapting to different pipe diameters and eliminating gaps;

[0053] Anti-slip protection: The anti-slip pads on the inner wall of the pipe clamp and the 304 stainless steel plate prevent the pipe from sliding.

[0054] In summary, this utility model achieves high efficiency, adaptability, and long-term stability in pipe fixing through an adjustable clamping structure and a quick-locking mechanism, making it particularly suitable for the installation needs of complex water supply and drainage systems in indoor buildings.

[0055] While embodiments or examples of this disclosure have been described with reference to the accompanying drawings, it should be understood that the methods, systems, and devices described above are merely exemplary embodiments or examples, and the scope of this utility model is not limited by these embodiments or examples, but only by the granted claims and their equivalents. Various elements in the embodiments or examples may be omitted or replaced by their equivalents. Furthermore, the steps may be performed in a different order than that described in this disclosure. Further, various elements in the embodiments or examples may be combined in various ways. Importantly, as technology evolves, many elements described herein can be replaced by equivalents that appear after this disclosure.

Claims

1. A pipe fixing assembly for building water supply and drainage, characterized by, The utility model relates to a kind of pipe clamp and its connecting assembly, including: Base for installing to wall or ground; Supporting assembly, detachably arranged on the base; A plurality of connecting assemblies are respectively connected to the supporting assembly; The connecting assembly includes: Pipe clamp, which is composed of arc-shaped first clamp body and second clamp body, one end of the first clamp body and the second clamp body is hinged, and the other end is detachably connected by a clamping assembly to lock the closed state; Adjusting mechanism, penetrating the pipe clamp, and the terminal end is connected to the plate, and the plate is driven to move along the axial direction to the center of pipe clamp by rotating the adjusting mechanism.

2. The plumbing fixture assembly according to claim 1, wherein The adjusting mechanism includes an externally threaded rod and an internally threaded sleeve, the internally threaded sleeve is fixed in the pipe clamp and threadedly engages with the externally threaded rod, the terminal end of the externally threaded rod is fixedly connected to a movable plate;One side of the plate is provided with a clamping groove, the movable plate is embedded in the clamping groove, and the side wall of the clamping groove forms circumferential limiting for the movable plate;By rotating the externally threaded rod, the movable plate rotates around the axis in the clamping groove and pushes the plate to move linearly along the center direction of the pipe clamp.

3. The plumbing fixture assembly of claim 1, wherein, The plate is arc-shaped.

4. The plumbing fixture assembly according to claim 1, wherein The clamping assembly includes a buckle on the first clamp body and a clamping block on the second clamp body, the buckle is provided with a groove, and the clamping block is embeddedly connected with the groove.

5. The plumbing fixture assembly of claim 4, wherein, The clamping assembly further includes a fastener, which is a bolt or a pin, penetrating the buckle and the clamping block to fasten the closed state of the pipe clamp.

6. The plumbing fixture assembly of claim 1, wherein, The base includes a base plate, a limiting groove and a plurality of screw holes, the limiting groove is arranged in the middle of the base plate, and a plurality of screw holes are distributed around the limiting groove.

7. The plumbing fixture assembly of claim 6, wherein, The supporting assembly includes a base, a support plate and a frame, one side of the base is embedded in the limiting groove, the other side is perpendicularly fixed to the frame, a plurality of connecting assemblies are evenly distributed on the frame and connected thereto, the base is provided with the support plate, and the base is bolted to the screw holes of the base plate through the support plate.

8. The plumbing fixture assembly of claim 1, wherein, A plurality of connecting assemblies are connected and fixed to each other by a connecting plate.

9. The plumbing fixture assembly of claim 1, wherein, The inner wall of the pipe clamp and the surface of the plate are both provided with an anti-slip pad.