Pipeline supporting assembly for building engineering construction
By using the contact spring and damping fluid inside the limiting cylinder, the arc-shaped clamping plate automatically buffers displacement when the pipeline expands or contracts due to heat or vibrates. Combined with the overflow groove design and double fastening structure, it solves the problem of wear and loosening caused by rigid clamping of the pipeline support components, and achieves stable support and adaptable installation.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- SHANDONG CHUANGYOU BIOTECHNOLOGY CO LTD
- Filing Date
- 2025-06-16
- Publication Date
- 2026-04-28
AI Technical Summary
Existing pipe support components used in building construction suffer from pipe wear or clamp loosening due to rigid clamping.
The system utilizes a combination of a retaining spring and damping fluid within the limiting cylinder. The arc-shaped clamping plate automatically buffers displacement when the pipeline expands or contracts due to heat or vibrates. The overflow groove design utilizes the flow resistance of the damping fluid to reduce the moving speed of the clamping plate. Additionally, the system employs a double fastening structure and a sliding structure between the positioning T-block and the groove to adapt to different pipeline diameters.
It effectively avoids pipe wear and clamp loosening, adapts to pipe thermal expansion and contraction and vibration, and improves the stability and applicability of installation.
Smart Images

Figure CN224174674U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of building construction technology, and in particular to a pipe support component used in building construction. Background Technology
[0002] Building construction refers to the process of transforming a building from a blueprint into a physical structure through a series of procedures, such as earthwork excavation, structural construction, and equipment installation, in accordance with design drawings and technical specifications. In this process, pipe support components are specialized structures used to fix and support various types of pipes, ensuring that the pipes remain stable and straight during construction and use, and meet installation requirements.
[0003] Existing pipe support components used in building construction mostly use fixed clamps or rigid clamps to support and lock the pipes, which cannot adapt to the displacement of the pipes caused by thermal expansion and contraction and vibration, and are prone to pipe wear or clamp loosening.
[0004] Therefore, in response to the problem that rigid clamping of pipe support components used in construction projects can easily lead to pipe wear or clamp loosening, this utility model uses the combination of a contact spring and damping fluid inside the limiting cylinder to allow the arc-shaped clamping plate to automatically buffer displacement when the pipe expands or contracts due to heat or vibrates, thus avoiding pipe wear caused by rigid compression. At the same time, the overflow groove design utilizes the flow resistance of the damping fluid to further reduce the moving speed of the clamping plate, thereby achieving the effect of weakening impact loads. Utility Model Content
[0005] To overcome the common problem that rigid clamping of pipe support components used in building construction can easily lead to pipe wear or loosening of the clamps.
[0006] The technical solution of this utility model is as follows: a pipe support assembly for building construction, including a support base, an auxiliary mounting seat, a support bottom ring, and a support top ring. The support base is composed of a base body and four sets of ear plate mounting seats. The bottom outer wall of the support base located at the base body is honeycomb-shaped. The auxiliary mounting seat is fixedly installed above the support base. Two sets of support bottom rings are slidably installed on the top outer wall of the auxiliary mounting seat. The top outer walls of the two sets of support bottom rings are fitted with support top rings. The support bottom ring and the support top ring are both composed of a semi-ring body and two sets of extension plates on the side.
[0007] Both the bottom support ring and the top support ring are equipped with elastic abutment components inside, and fastening support components are connected and installed on the outer sides of the bottom support ring and the top support ring. A positioning support component is provided above the auxiliary mounting base.
[0008] Preferably, the elastic abutment assembly includes a limiting cylinder, a limiting piston rod, an abutment spring, and an arc-shaped clamping plate. The limiting cylinder is embedded in the inner wall of the top of both sets of supporting top rings. The limiting piston rod is slidably installed inside the limiting cylinder. An abutment spring is connected between the outer wall of the top of the limiting piston rod and the inner wall of the top of the limiting cylinder. The protruding end of the limiting piston rod is located below the limiting cylinder, and the protruding end of the limiting piston rod is connected to the outer wall of the top of the arc-shaped clamping plate.
[0009] Preferably, the arc-shaped clamping plate is composed of a guide portion and a clamping portion. The inner walls on both sides of the arc-shaped clamping plate at the guide portion position are both set as arc-shaped structures, and friction pads are embedded in the inner walls on the sides of the arc-shaped clamping plate at the clamping portion position.
[0010] Preferably, the limiting cylinder is filled with damping fluid, and the top outer wall of the limiting piston rod located at the piston disc position is provided with an overflow groove that runs through it circumferentially.
[0011] Preferably, the fastening support assembly includes fastening bolts and main nut blocks. The top outer walls of the support bottom ring and the support top ring, located on the same side of the first set of extension plates, are both provided with first cylindrical grooves. Fastening bolts are inserted into the first cylindrical grooves of the support bottom ring and the support top ring, and the main nut blocks are threaded onto the bottom ends of the fastening bolts.
[0012] Preferably, positioning support columns are fixedly installed on the bottom outer walls of both sets of support bottom rings located on the same side of the second set of extension plates, and threaded columns are fixedly installed on the top outer walls of both sets of positioning support columns. A second cylindrical groove is opened through the top outer walls of both sets of support top rings located on the same side of the second set of extension plates. The threaded column and the second cylindrical groove are slidably connected, and a secondary nut block is threadedly installed on the top of the threaded column.
[0013] Preferably, the positioning support assembly includes positioning T-blocks and positioning T-grooves. The bottom outer walls of both sets of support bottom rings and positioning support columns are provided with positioning T-blocks, and the top outer wall of the auxiliary mounting base is provided with two sets of positioning T-grooves for sliding installation of the positioning T-blocks.
[0014] The beneficial effects of this utility model are:
[0015] 1. When this pipe support assembly for building construction is in use, the combination of the contact spring and damping fluid inside the limiting cylinder allows the arc-shaped clamping plate to automatically buffer displacement when the pipe expands and contracts or vibrates, avoiding rigid compression that could cause pipe wear. At the same time, the overflow groove design utilizes the flow resistance of the damping fluid to further reduce the moving speed of the clamping plate, thereby weakening the impact load.
[0016] 2. This pipe support assembly for building construction allows for free adjustment of the lateral position of the two sets of support bottom rings according to the pipe spacing through the sliding structure of the positioning T-block and positioning T-slot. It can adapt to the positioning needs of layout scenarios with different pipe diameters without customized processing. At the same time, it adopts a double-fastening locking structure. The fastening bolts and main nut blocks, threaded columns and secondary nut blocks form two sets of fastening points, respectively, to lock the support bottom ring and support top ring in a ring shape, avoiding tilting or falling off caused by uneven force on a single fastening point. During installation, the bolts can be tightened in stages to achieve pre-positioning and final fixation, which is suitable for operation scenarios that require frequent maintenance. Attached Figure Description
[0017] Figure 1 The diagram shown is a three-dimensional structural schematic of the present invention.
[0018] Figure 2 The diagram shown is a three-dimensional structural schematic of the support base of this utility model.
[0019] Figure 3 The diagram shown is a three-dimensional structural illustration of the arc-shaped clamping plate of this utility model.
[0020] Figure 4 This utility model is shown. Figure 3 Enlarged 3D structural diagram at point A;
[0021] Figure 5 The diagram shown is a three-dimensional structural diagram of the installation of the support bottom ring and support top ring of this utility model.
[0022] Figure 6 The diagram shown is a three-dimensional structural representation of the support top ring and threaded column of this utility model.
[0023] Figure 7 The diagram shown is a three-dimensional structural diagram of the installation of the support bottom ring and positioning support column of this utility model.
[0024] Explanation of reference numerals in the attached drawings: 1. Support base; 2. Auxiliary mounting base; 3. Support bottom ring; 4. Support top ring; 5. Elastic abutment assembly; 501. Limiting cylinder; 502. Limiting piston rod; 503. Abutment spring; 504. Arc-shaped clamping plate; 505. Friction pad; 6. Fastening support assembly; 601. Fastening bolt; 602. Main nut block; 603. Positioning support column; 604. Threaded column; 605. Secondary nut block; 7. Positioning support assembly; 701. Positioning T-block; 702. Positioning T-slot. Detailed Implementation
[0025] 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. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.
[0026] Please see Figures 1-7 This utility model provides a technical solution: a pipe support assembly for building construction, including a support base 1, an auxiliary mounting seat 2, a support bottom ring 3, and a support top ring 4. The support base 1 is composed of a base body and four sets of ear plate mounting seats, and the bottom outer wall of the support base 1 located at the base body position is set in a honeycomb shape. The auxiliary mounting seat 2 is fixedly installed above the support base 1, and two sets of support bottom rings 3 are slidably installed on the top outer wall of the auxiliary mounting seat 2. The top outer walls of the two sets of support bottom rings 3 are fitted with support top rings 4. The support bottom rings 3 and support top rings 4 are both composed of a semi-ring body and two sets of extension plates on the side.
[0027] Both the bottom support ring 3 and the top support ring 4 are equipped with elastic abutment components 5 inside, and fastening support components 6 are connected and installed on the outer sides of the bottom support ring 3 and the top support ring 4. A positioning support component 7 is provided above the auxiliary mounting base 2.
[0028] The elastic abutment assembly 5 includes a limiting cylinder 501, a limiting piston rod 502, an abutment spring 503, and an arc-shaped clamping plate 504. The limiting cylinder 501 is embedded in the inner wall of the top of each of the two sets of supporting top rings 4. The limiting piston rod 502 is slidably installed inside the limiting cylinder 501. An abutment spring 503 is connected between the outer wall of the top of the limiting piston rod 502 and the inner wall of the top of the limiting cylinder 501. The protruding end of the limiting piston rod 502 is located below the limiting cylinder 501, and the limiting... The extended end of the piston rod 502 is connected to the top outer wall of the arc-shaped clamping plate 504. The arc-shaped clamping plate 504 is composed of a guide part and a clamping part. The inner walls on both sides of the arc-shaped clamping plate 504 at the guide part position are both set as arc-shaped structures. A friction pad 505 is embedded in the inner wall of the side of the arc-shaped clamping plate 504 at the clamping part position. The inside of the limiting cylinder 501 is filled with damping fluid. An overflow groove is circumferentially opened on the top outer wall of the limiting piston rod 502 at the piston disc position.
[0029] The guide portion of the arc-shaped clamping plate 504 is designed with an arc shape, which allows the pipe to be guided more easily into the device when clamping the outer wall of the pipe. The friction pad 505 is designed to increase the contact friction between the device and the outer wall of the pipe, so that it can be more stably positioned inside the device. The damping fluid, together with the overflow groove, uses the incompressibility of the liquid to achieve a speed reduction and buffering effect on the aforementioned limiting piston rod 502.
[0030] The fastening support assembly 6 includes a fastening bolt 601 and a main nut block 602. The outer top walls of the support bottom ring 3 and the support top ring 4, located on the same side of the first set of extension plates, are both provided with a first cylindrical groove. The fastening bolt 601 is inserted into the first cylindrical groove of the support bottom ring 3 and the support top ring 4. The main nut block 602 is threadedly installed at the bottom end of the fastening bolt 601. The outer bottom walls of the two sets of support bottom rings 3, located on the same side of the second set of extension plates, are both fixedly installed with positioning support columns 603. The outer top walls of the two sets of positioning support columns 603 are both fixedly installed with threaded columns 604. The outer top walls of the two sets of support top rings 4, located on the same side of the second set of extension plates, are both provided with a second cylindrical groove. The threaded column 604 is slidably connected to the second cylindrical groove, and the top of the threaded column 604 is threadedly installed with a secondary nut block 605.
[0031] The fastening bolts 601, main nut block 602, threaded post 604, and secondary nut block 605 here all serve to assist in the fastening and installation of the support bottom ring 3 and support top ring 4.
[0032] The positioning support assembly 7 includes a positioning T-shaped block 701 and a positioning T-shaped groove 702. The bottom outer walls of the two sets of support bottom rings 3 and positioning support columns 603 are provided with positioning T-shaped blocks 701. The top outer wall of the auxiliary mounting base 2 is provided with two sets of positioning T-shaped grooves 702 for sliding installation of the positioning T-shaped blocks 701.
[0033] The positioning T-block 701 and positioning T-slot 702 here enable the support bottom ring 3 and positioning support column 603 to be installed in a sliding structure to accommodate subsequent adjustment and installation procedures of the device.
[0034] Working principle: See Figures 1-2 As shown, before using the device, it is necessary to position the entire device in the designated installation position according to the installation requirements of the pipeline. During installation, it is only necessary to use the existing ground nail assembly to drive it into the soil layer through the four sets of ear plates. Here, the bottom outer wall of the support base 1 is set as a honeycomb shape to increase the grounding area of the device and achieve the effect of load distribution, preventing the support assembly from sinking above the backfill soil layer.
[0035] See Figure 1 and Figure 7As shown, before the device is tightened, the two sets of support bottom rings 3 need to be adjusted to the appropriate support spacing according to the positioning requirements of the pipeline. During adjustment, the support bottom rings 3 can be slid directly. The movement of the support bottom rings 3 will automatically drive the positioning T-shaped block 701 at its bottom to slide inside the positioning T-shaped groove 702. At the same time, the movement of the support bottom rings 3 will also automatically drive the positioning support column 603 to move. The movement of the positioning support column 603 will automatically drive the positioning T-shaped block 701 at its bottom to slide inside the positioning T-shaped groove 702.
[0036] See Figures 3-7 As shown, after both sets of support bottom rings 3 and positioning support columns 603 are adjusted to the appropriate support positions, the pipe is placed inside the support bottom ring 3. Then, the second cylindrical groove on the side of the support top ring 4 is inserted into the outside of the threaded column 604 to provide initial limiting support for the installation of the support bottom ring 3 and the support top ring 4. Then, the fastening bolt 601 is passed through the two sets of first cylindrical grooves from top to bottom in one go, and the main nut block 602 is screwed to the bottom end of the fastening bolt 601 in the direction from bottom to top. At the same time, the secondary nut block 605 is screwed to the outside of the threaded column 604 in the direction from top to bottom to complete the fastening installation of the support bottom ring 3 and the support top ring 4.
[0037] As the support bottom ring 3 and support top ring 4 gradually approach each other during the tightening process, the installation space of the two sets of arc-shaped clamping plates 504 continuously decreases and they move in opposite directions simultaneously under the squeezing action of the outer wall of the pipe. When the arc-shaped clamping plates 504 move, they automatically drive the limiting piston rod 502 to slide inside the limiting cylinder 501. At this time, the damping fluid inside the limiting cylinder 501 overflows from one side of the piston disc to the other side of the piston disc through the overflow groove under the squeezing action of the limiting piston rod 502, thereby slowing down the limiting piston rod 502. To achieve the desired protective effect, the contact spring 503 is in a contracted state due to the squeezing action of the limiting piston rod 502. Simultaneously, the contact spring 503 generates a reaction force under the squeezing action, pushing the limiting piston rod 502 to move in the opposite direction. When the limiting piston rod 502 moves in the opposite direction, it applies a reverse force to the arc-shaped clamping plate 504, causing it to come into close contact with the outer wall of the pipe. At this time, the friction pad 505 built into the arc-shaped clamping plate 504 increases the friction between the device and the outer wall of the pipe, allowing the pipe to be positioned more stably inside the device.
[0038] The above is the entire working process of the device, and all contents not described in detail in this specification are existing technologies known to those skilled in the art.
[0039] Although embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present invention, the scope of which is defined by the appended claims and their equivalents.
Claims
1. A pipe support assembly for building construction, comprising a support base (1), an auxiliary mounting base (2), a support bottom ring (3), and a support top ring (4), characterized in that: The support base (1) is composed of a base body and four sets of ear plate mounting seats. The bottom outer wall of the support base (1) located at the base body is honeycomb-shaped. The auxiliary mounting seat (2) is fixedly installed above the support base (1). Two sets of support bottom rings (3) are slidably installed on the top outer wall of the auxiliary mounting seat (2). Support top rings (4) are fitted to the top outer walls of the two sets of support bottom rings (3). The support bottom rings (3) and support top rings (4) are both composed of a semi-ring body and two sets of extension plates on the side. Both the bottom support ring (3) and the top support ring (4) are provided with elastic abutment components (5), and fastening support components (6) are connected and installed on the outside of the bottom support ring (3) and the top support ring (4). A positioning support component (7) is provided above the auxiliary mounting base (2).
2. A pipe support assembly for building construction according to claim 1, characterized in that: The elastic abutment assembly (5) includes a limiting cylinder (501), a limiting piston rod (502), an abutment spring (503), and an arc-shaped clamping plate (504). The limiting cylinder (501) is embedded in the inner wall of the top of both sets of supporting top rings (4). The limiting piston rod (502) is slidably installed inside the limiting cylinder (501). An abutment spring (503) is connected between the outer wall of the top of the limiting piston rod (502) and the inner wall of the top of the limiting cylinder (501). The protruding end of the limiting piston rod (502) is located below the limiting cylinder (501), and the protruding end of the limiting piston rod (502) is connected to the outer wall of the top of the arc-shaped clamping plate (504).
3. A pipe support assembly for building construction according to claim 2, characterized in that: The arc-shaped clamping plate (504) is composed of a guide part and a clamping part. The inner walls on both sides of the arc-shaped clamping plate (504) at the guide part are both set as arc-shaped structures. A friction pad (505) is embedded in the inner wall of the side of the arc-shaped clamping plate (504) at the clamping part.
4. A pipe support assembly for building construction according to claim 2, characterized in that: The limiting cylinder (501) is filled with damping fluid, and the limiting piston rod (502) has an overflow groove circumferentially opened on the top outer wall of the piston disc.
5. A pipe support assembly for building construction according to claim 1, characterized in that: The fastening support assembly (6) includes a fastening bolt (601) and a main nut block (602). The outer top wall of the support bottom ring (3) and the support top ring (4) located on the same side of the first set of extension plates is provided with a first cylindrical groove. The fastening bolt (601) is inserted into the first cylindrical groove of the support bottom ring (3) and the support top ring (4). The main nut block (602) is threaded on the bottom end of the fastening bolt (601).
6. A pipe support assembly for building construction according to claim 5, characterized in that: Both sets of support bottom rings (3) are fixedly installed with positioning support columns (603) on the bottom outer wall of the second set of extension plates on the same side. Both sets of positioning support columns (603) are fixedly installed with threaded columns (604) on the top outer wall. Both sets of support top rings (4) are provided with a second cylindrical groove through the top outer wall of the second set of extension plates on the same side. The threaded column (604) is slidably connected to the second cylindrical groove, and a secondary nut block (605) is threadedly installed on the top of the threaded column (604).
7. A pipe support assembly for building construction according to claim 6, characterized in that: The positioning support assembly (7) includes a positioning T-shaped block (701) and a positioning T-shaped groove (702). The bottom outer walls of the two sets of support bottom rings (3) and positioning support columns (603) are provided with positioning T-shaped blocks (701). The top outer wall of the auxiliary mounting base (2) is provided with two sets of positioning T-shaped grooves (702) for sliding installation of the positioning T-shaped blocks (701).