Low-temperature anti-deformation PIR cold insulation prefabricated pipe bracket

By combining fastening, driving, and locking mechanisms, the problem of unstable fixing of existing pipe supports is solved, and a pipe support design with high mobility and high support effect is achieved.

CN224120901UActive Publication Date: 2026-04-14JIANGSU ZHONGCHANG ADIABATIC TECH ENG CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
JIANGSU ZHONGCHANG ADIABATIC TECH ENG CO LTD
Filing Date
2025-06-10
Publication Date
2026-04-14

AI Technical Summary

Technical Problem

Existing pipe supports are difficult to use efficiently to secure the pipe body during installation, resulting in poor support performance.

Method used

The system employs a fastening mechanism, a driving mechanism, and a locking mechanism. By rotating the rotating plate, the balls descend to suspend the support. After moving along the tube to the appropriate position, the rotating plate is laid horizontally and a plug rod is inserted for fixation, achieving high mobility and high support effect.

Benefits of technology

This achieves stable fixation between the pipe clamp and the pipe body, improves the support effect and stability, and prevents loosening.

✦ Generated by Eureka AI based on patent content.

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Abstract

The low-temperature anti-deformation PIR cold insulation prefabricated pipe bracket comprises a fastening mechanism, a driving mechanism and a locking mechanism, the fastening mechanism comprises two oppositely-arranged pipe clamps, a cold insulation layer connected with the inner walls of the pipe clamps, and the driving mechanism; the driving mechanism comprises a support connected with one pipe clamp and two door-shaped frames penetrating through the two ends of the support in a sliding mode. In the utility model, after the two pipe clamps are respectively sleeved at the top and the bottom of the pipe body, the rotating plate is rotated to be in a vertical state, at the moment, the bottom of the vertically arranged rotating plate can extrude the door-shaped frame and drive the balls to descend, the plurality of balls act together to suspend the support away from the ground, and then the support is moved to a proper position along the pipe body, and after the support is in place, the rotating plate is driven to rotate. And the rotating plate is rotated again to recover the transverse state, at the moment, the two pipe clamps are attached to each other, the operator inserts the inserting rods into the inserting holes, and therefore the rotating plate is fixed, the pipe clamps and the pipe body are effectively prevented from being loosened, and the maneuverability and the supporting effect are high.
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Description

Technical Field

[0001] This utility model relates to the field of pipe support technology, specifically a low-temperature deformation-resistant PIR cold-insulating prefabricated pipe support. Background Technology

[0002] A pipe support is a connector between a pipe and a steel or concrete support structure that supports the pipe. It serves to support the pipe and is a type of support.

[0003] Pipe supports typically consist of an upper pipe clamp and a lower pipe clamp. During installation, the operator selects a position on the pipe to be clamped based on experience, and then uses the clamping space formed by the upper and lower pipe clamps to fix the pipe. Once the pipe support is tightened, it will be difficult to move along the pipe, resulting in poor support. Utility Model Content

[0004] This utility model aims to solve one of the technical problems existing in the prior art or related technologies.

[0005] Therefore, the technical solution adopted by this utility model is as follows:

[0006] A low-temperature deformation-resistant PIR cold-insulating prefabricated pipe support includes a fastening mechanism, a driving mechanism, and a locking mechanism. The fastening mechanism includes two pipe clamps arranged opposite each other and a cold-insulating layer connected to the inner wall of the pipe clamps. The driving mechanism includes a support connected to one of the pipe clamps, two portal frames that slide through both ends of the support, two balls movably embedded at the bottom end of the portal frames, and a spring connecting the support and the portal frames. The locking mechanism includes two support frames connected to the top of the support, a rotating plate movably connected to the inner end of the support frame, two rods installed on the inner side of the rotating plate, two insertion rods inserted into the support frames, and multiple insertion holes opened on the rotating plate and suitable for insertion of the insertion rods. The two rods slide into the interior of the pipe clamps respectively.

[0007] By adopting the above technical solution, after the two pipe clamps are respectively placed on the top and bottom of the pipe body, the rotating plate is rotated to make it stand vertically. At this time, the bottom of the vertically placed rotating plate will squeeze the gantry frame, causing the ball bearings to fall. The multiple ball bearings work together to suspend the support off the ground. Then, the support is moved along the pipe body to a suitable position. After it is in place, the rotating plate is rotated again to return it to the horizontal position. At this time, the two pipe clamps fit together. The operator inserts the insertion rod into the insertion hole to fix the rotating plate, effectively preventing the pipe clamps from loosening from the pipe body. It has high mobility and high support effect.

[0008] In a preferred embodiment, the present invention can be further configured such that: the portal frame is composed of a rectangular bar and two round rods, the two round rods are respectively close to both ends of the rectangular bar and fixed to the bottom of the rectangular bar, and the round rods movably pass through the bottom of the support.

[0009] In a preferred embodiment, the present invention can be further configured such that: an annular protrusion is integrally formed on the outer side of the round rod, the annular protrusion is disposed on the top of the support, the bottom end of the spring is fixedly connected to the top of the support, the top end of the spring is fixedly connected to the bottom of the annular protrusion, and the diameter of the spring is smaller than the diameter of the annular protrusion.

[0010] In a preferred embodiment, the present invention can be further configured such that: two support frames are respectively attached to the outer sides of two portal frames, the support frames being composed of an L-shaped plate and a convex disk, the convex disk extending rotatably into the interior of the rotating plate.

[0011] In a preferred embodiment, this utility model can be further configured such that: multiple sockets are equally spaced and arranged in a ring, and the distance between two symmetrically arranged sockets is equal to the distance between two plug rods.

[0012] In a preferred embodiment, the present invention can be further configured such that: a retaining ring is provided on both the front and rear sides of the cold insulation layer, and the retaining ring is fixedly connected to the inner wall of the pipe clamp.

[0013] By adopting the above technical solution, the beneficial effects achieved by this utility model are as follows:

[0014] 1. In this utility model, after the two pipe clamps are respectively placed on the top and bottom of the pipe body, the rotating plate is rotated to make it stand vertically. At this time, the bottom of the vertically placed rotating plate will squeeze the gantry frame, causing the ball bearings to fall. The multiple ball bearings work together to suspend the support off the ground. Then, the support is moved along the pipe body to a suitable position. After it is in place, the rotating plate is rotated again to return it to the horizontal position. At this time, the two pipe clamps are in contact with each other. The operator inserts the insertion rod into the insertion hole to fix the rotating plate, effectively preventing the pipe clamps from loosening from the pipe body. It has high mobility and high support effect.

[0015] 2. In this utility model, after the rotating plate is laid horizontally, the gantry frame, which loses its compressive force, causes the ball bearings to retract into the support, thereby making the bottom of the support fit tightly against the plane and improving the stability of the support when it is placed. Attached Figure Description

[0016] Figure 1 This is a perspective view of the overall structure of this utility model;

[0017] Figure 2 This is a schematic diagram of the fastening mechanism of this utility model;

[0018] Figure 3 This is a schematic diagram of the drive mechanism of this utility model;

[0019] Figure 4 This is a schematic diagram showing the cooperation relationship between the drive mechanism and the locking mechanism of this utility model;

[0020] Figure 5 This is a schematic diagram of the disassembled locking mechanism of this utility model;

[0021] Figure 6 This is a perspective view of the support frame of this utility model.

[0022] Figure label:

[0023] 100. Fastening mechanism; 110. Pipe clamp; 120. Cold insulation layer;

[0024] 200. Drive mechanism; 210. Support; 220. Portal frame; 230. Ball bearing; 240. Spring;

[0025] 300. Locking mechanism; 310. Support frame; 311. L-shaped plate; 312. Convex disc; 320. Rotating plate; 330. Rod; 340. Insertion hole; 350. Insertion rod;

[0026] 400, retaining ring. Detailed Implementation

[0027] To make the objectives, technical solutions, and advantages of this utility model clearer, the present utility model will be further described in detail below with reference to specific embodiments and accompanying drawings. It should be noted that, unless otherwise specified, the embodiments and features of the present utility model can be combined with each other.

[0028] It should be understood that these descriptions are merely exemplary and not intended to limit the scope of this invention.

[0029] The following describes, with reference to the accompanying drawings, some embodiments of the present invention, providing a low-temperature deformation-resistant PIR cold-insulating prefabricated pipe support.

[0030] Example 1:

[0031] Combination Figure 1-6 As shown, the present invention provides a low-temperature deformation resistant PIR cold-insulating prefabricated pipe support, including a fastening mechanism 100, a driving mechanism 200 and a locking mechanism 300. The fastening mechanism 100 includes two pipe clamps 110 arranged opposite to each other and a cold-insulating layer 120 connected to the inner wall of the pipe clamps 110.

[0032] The drive mechanism 200 includes a support 210 connected to a pipe clamp 110, two portal frames 220 slidably passing through both ends of the support 210, two balls 230 movably embedded at the bottom end of the portal frames 220, and a spring 240 connecting the support 210 and the portal frames 220.

[0033] The locking mechanism 300 includes two support frames 310 connected to the top of the support 210, a rotating plate 320 movably connected to the inner end of the support frame 310, two rods 330 installed on the inner side of the rotating plate 320, two insertion rods 350 inserted into the support frame 310, and a plurality of insertion holes 340 opened on the rotating plate 320 and suitable for insertion of the insertion rods 350. The two rods 330 respectively slide into the inside of the pipe clamp 110.

[0034] Furthermore, the gantry frame 220 is composed of a rectangular bar and two round rods. The two round rods are respectively close to both ends of the rectangular bar and fixed to the bottom of the rectangular bar. The round rods movably pass through the bottom of the support 210. The shape design of the gantry frame 220 can guide the arrangement of the balls 230, so that there is enough distance between the balls 230, ensuring that the multiple rollers 230 cooperate to stably support the support 210.

[0035] Furthermore, the two support frames 310 are respectively attached to the outside of the two portal frames 220. The support frame 310 is composed of an L-shaped plate 311 and a convex disk 312. The convex disk 312 extends rotatably into the interior of the rotating plate 320. The shape design of the support frame 310 enables it to firmly limit the rotating plate 320.

[0036] Furthermore, the multiple sockets 340 are evenly spaced and arranged in a ring. The distance between two symmetrically arranged sockets 340 is equal to the distance between two plug rods 350. The layout design of the multiple sockets 340 ensures that the plug rods 350 can be fixedly rotated to the rotating plate 320 at any angle.

[0037] Example 2:

[0038] Combination Figure 1 , 3 and Figure 4 As shown, based on Embodiment 1, the outer side of the round rod is integrally formed with an annular protrusion, which is located on the top of the support 210. The bottom end of the spring 240 is fixedly connected to the top of the support 210, and the top end of the spring 240 is fixedly connected to the bottom of the annular protrusion. The diameter of the spring 240 is smaller than the diameter of the annular protrusion. The annular protrusion can firmly press the spring 240 to prevent the spring 240 from coming loose from the gantry frame 220.

[0039] Example 3:

[0040] Combination Figure 1 As shown in the above embodiment, the cold insulation layer 120 is provided with retaining rings 400 on both the front and rear sides. The retaining rings 400 are fixedly connected to the inner wall of the pipe clamp 110. The retaining rings 400 can limit the cold insulation layer 120 and make its installation more secure.

[0041] The working principle and usage process of this utility model are as follows: The operator first places two pipe clamps 110 on the top and bottom of the pipe body respectively. Then, the rotating plate 320 is rotated to make it vertical. At this time, the bottom of the vertical rotating plate 320 will press the gantry frame 220, causing the ball bearings 230 to descend. The multiple ball bearings 230 work together to suspend the support 210 off the ground. Then, the support 210 is moved along the pipe body to a suitable position. After it is in place, the rotating plate 320 is rotated again to restore it to a horizontal position. At this time, the two pipe clamps 110 are in contact with each other. The operator inserts the insertion rod 350 into the insertion hole 340 to fix the rotating plate 320, effectively preventing the pipe clamps 110 from loosening from the pipe body. Finally, the gantry frame 220, which loses its squeezing force, causes the ball bearings 230 to retract into the support 210, which significantly improves the stability of the support 210 when it is placed.

[0042] Although embodiments of the present invention have been shown and described, those skilled in the art will understand 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 claims and their equivalents.

Claims

1. A low-temperature deformation-resistant PIR cold-insulating prefabricated pipe support, characterized in that, include: Fastening mechanism (100), the fastening mechanism (100) includes two pipe clamps (110) arranged opposite each other and a cold insulation layer (120) connected to the inner wall of the pipe clamps (110); The drive mechanism (200) includes a support (210) connected to a pipe clamp (110), two portal frames (220) slidably passing through both ends of the support (210), two balls (230) movably embedded at the bottom end of the portal frames (220), and a spring (240) connecting the support (210) and the portal frames (220). The locking mechanism (300) includes two support frames (310) connected to the top of the support (210), a rotating plate (320) movably connected to the inner end of the support frame (310), two rods (330) installed on the inner side of the rotating plate (320), two insert rods (350) inserted into the support frame (310), and a plurality of insertion holes (340) opened on the rotating plate (320) and suitable for inserting the insert rods (350). The two rods (330) slide into the inside of the pipe clamp (110).

2. The low-temperature deformation-resistant PIR cold-insulating prefabricated pipe support according to claim 1, characterized in that, The portal frame (220) is composed of a rectangular bar and two round rods. The two round rods are respectively close to the two ends of the rectangular bar and fixed to the bottom of the rectangular bar. The round rods movably pass through the bottom of the support (210).

3. The low-temperature deformation-resistant PIR cold-insulating prefabricated pipe support according to claim 2, characterized in that, The outer side of the round rod is integrally formed with an annular protrusion, which is located on the top of the support (210). The bottom end of the spring (240) is fixedly connected to the top of the support (210), and the top end of the spring (240) is fixedly connected to the bottom of the annular protrusion. The diameter of the spring (240) is smaller than the diameter of the annular protrusion.

4. The low-temperature deformation-resistant PIR cold-insulating prefabricated pipe support according to claim 1, characterized in that, Two support frames (310) are respectively attached to the outside of two portal frames (220). The support frame (310) is composed of an L-shaped plate (311) and a convex disk (312), and the convex disk (312) extends rotatably into the interior of the rotating plate (320).

5. The low-temperature deformation-resistant PIR cold-insulating prefabricated pipe support according to claim 1, characterized in that, Multiple sockets (340) are equally spaced and arranged in a ring. The distance between two symmetrically arranged sockets (340) is equal to the distance between two plug rods (350).

6. The low-temperature deformation-resistant PIR cold-insulating prefabricated pipe support according to claim 1, characterized in that, The cold insulation layer (120) is provided with retaining rings (400) on both the front and rear sides, and the retaining rings (400) are fixedly connected to the inner wall of the pipe clamp (110).