Civil engineering pipe fitting placing rack

By introducing elastic buffers and adjustable support structures into the civil engineering pipe fitting placement rack, the deformation problem during pipe placement was solved, thereby improving safety and space utilization.

CN224255315UActive Publication Date: 2026-05-19GUANGXI UNIV
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
GUANGXI UNIV
Filing Date
2025-06-06
Publication Date
2026-05-19

AI Technical Summary

Technical Problem

Existing civil engineering pipe fitting placement racks lack effective cushioning mechanisms, causing pipe fittings to easily deform during placement, affecting their performance and project quality.

Method used

A civil engineering pipe fitting placement rack was designed, comprising an installation component, a placement component, and an adjustment component. It utilizes elastic plates and buffer springs to cushion the impact force of pipe fittings, and combines an adjustable support structure to adapt to pipe fittings of different specifications, thereby improving placement safety.

Benefits of technology

The buffer mechanism prevents pipe deformation, ensuring the quality of the pipes and their subsequent use, and improving the space utilization and applicability of the equipment.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a civil engineering pipe fitting placing rack, which belongs to the field of civil engineering and comprises a mounting component. The placing assembly is arranged on the mounting assembly, and the first supporting column is arranged on the mounting assembly; the placing column is arranged on the front surface of the first supporting column; the second supporting column is arranged between the lower surface of the placing column and the outer side of the mounting assembly; and the two adjusting assemblies are arranged on the placing assembly. According to the civil engineering pipe fitting placing frame, through the arrangement of the placing assembly, when a pipe fitting is placed, the elastic plate firstly makes contact with the pipe fitting, force generated by falling of the pipe fitting is transmitted to the buffer spring through the elastic plate, the impact force can be effectively counteracted through elastic deformation of the buffer spring, and the pipe fitting is prevented from violently colliding with the placing column; therefore, the pipe fitting is prevented from being deformed due to stress, and the safety of placing the pipe fitting is greatly improved.
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Description

Technical Field

[0001] This utility model belongs to the field of civil engineering, and specifically relates to a civil engineering pipe fittings placement rack. Background Technology

[0002] In the field of civil engineering, from magnificent bridges and tunnels to intricate urban underground pipe networks, from towering skyscrapers to rural infrastructure, a vast and sophisticated pipeline system is often its lifeline, and pipe fittings are the cornerstone and soul of these pipeline systems, enabling them to be built, connected, operated, and maintained.

[0003] Existing civil engineering pipe fitting placement racks lack an effective buffering mechanism when placing pipes. The pipes are prone to significant impact forces when placed on the rack, leading to deformation and other damage, which affects the subsequent performance of the pipes and the quality of the project. Therefore, this application proposes a civil engineering pipe fitting placement rack to solve the above-mentioned technical problems. Utility Model Content

[0004] In view of one or more of the above-mentioned defects or improvement needs of the existing technology, this utility model provides a civil engineering pipe fitting placement rack, which has the advantage of improving the safety of pipe fitting placement.

[0005] To achieve the above objectives, this utility model provides a civil engineering pipe fitting placement rack, including an installation assembly;

[0006] The placement assembly disposed on the mounting assembly further includes a first support post disposed on the mounting assembly; a placement post disposed on the front surface of the first support post; and a second support post disposed between the lower surface of the placement post and the outer side of the mounting assembly.

[0007] Two adjustment components are provided on the placement component.

[0008] Furthermore, the mounting assembly also includes a first mounting plate, and both the first support column and the second support column are disposed on the upper surface of the first mounting plate;

[0009] A clearance groove is formed on the upper surface of the first mounting plate;

[0010] Two sliding grooves are symmetrically opened on the inner side of the clearance groove;

[0011] The second mounting plate is slidably disposed on the inner side of the relief groove;

[0012] Two sliding blocks are respectively disposed on the front and rear surfaces of the second mounting plate, and the two sliding blocks are respectively located inside the two sliding grooves.

[0013] Furthermore, the placement component also includes a mounting groove formed on the upper surface of the placement column;

[0014] A number of buffer springs are evenly distributed on the inner side of the mounting groove;

[0015] An elastic plate is disposed between the upper end faces of a plurality of the buffer springs.

[0016] Furthermore, the number of placement components is two, and the two placement components are respectively disposed on the upper surface of the first mounting plate and the second mounting plate.

[0017] Furthermore, the front end face of the elastic plate is a conical surface, and the outer side of the elastic plate is in contact with the inner side of the mounting groove, and the upper surface of the elastic plate is located above the placement column;

[0018] A rubber pad is disposed on the front surface of the first support column, and the rubber pad is located on the upper surface of the placement column;

[0019] The placement column is inclined and located on the front surface of the first support column.

[0020] Furthermore, the adjustment assembly includes a lead screw, which is located on the right side of the left first support column;

[0021] A threaded sleeve is threadedly disposed on the outside of the lead screw, and the right end of the threaded sleeve is rotatably disposed on the left side of the first support column on the right side.

[0022] Furthermore, the two adjustment components are respectively located between the outer sides of the first support column and the outer sides of the second support column of the two placement components.

[0023] In summary, the beneficial effects of the above-described technical solutions conceived by this utility model compared with the prior art include:

[0024] This utility model relates to a civil engineering pipe fitting placement rack. Through its placement components, when a pipe is placed, an elastic plate first contacts the pipe. The force generated by the pipe falling is transmitted through the elastic plate to a buffer spring. The elastic deformation of the buffer spring effectively counteracts this impact force, preventing the pipe from violently colliding with the placement column. This prevents the pipe from deforming due to stress, greatly improving the safety of pipe placement, ensuring the quality of the pipe, and its subsequent normal use. Furthermore, with the help of the installation and adjustment components, the placement components can adapt to the placement of pipes of different specifications and flexibly adjust the space they occupy according to actual needs, significantly improving the overall space utilization of the device and its applicability to different construction scenarios. Attached Figure Description

[0025] Figure 1This is a schematic diagram of the overall three-dimensional structure in a preferred embodiment of the present invention;

[0026] Figure 2 This is a top-view perspective view of the overall three-dimensional structure of the mounting components in a preferred embodiment of the present invention;

[0027] Figure 3 This is a schematic diagram of the overall three-dimensional structure of the placement component in a preferred embodiment of the present invention;

[0028] Figure 4 This is a schematic diagram of the overall three-dimensional structure of the adjustment component in a preferred embodiment of the present invention.

[0029] In all the accompanying drawings, the same reference numerals denote the same technical features, specifically: 1. Mounting assembly; 11. First mounting plate; 12. Relief groove; 13. Sliding groove; 14. Second mounting plate; 15. Sliding block; 2. Placement assembly; 21. First support column; 22. Placement column; 23. Second support column; 24. Mounting groove; 25. Buffer spring; 26. Elastic plate; 3. Adjustment assembly; 31. Lead screw; 32. Threaded sleeve. Detailed Implementation

[0030] 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.

[0031] Please see Figure 1-4 This utility model provides a civil engineering pipe fitting placement rack, including installation component 1;

[0032] The placement component 2, which is mounted on the mounting component 1, further includes a first support column 21 mounted on the mounting component 1; a placement column 22 disposed on the front surface of the first support column 21; and a second support column 23 disposed between the lower surface of the placement column 22 and the outer side of the mounting component 1.

[0033] Two adjustment components 3 are located on the placement component 2.

[0034] This embodiment provides a civil engineering pipe fitting placement rack of the present invention. The pipe fittings can be placed by the placement component 2 on the mounting component 1. The placement component 2, under its own structural function, can provide a certain buffer for the pipe fittings when they are placed on the placement component 2, thereby avoiding large impact forces between the pipe fittings and the placement component 2, which would cause deformation of the pipe fittings and thus ensure the safety of the placement of the pipe fittings.

[0035] Furthermore, such as Figure 2 As shown, the mounting assembly 1 in the preferred embodiment of this utility model further includes a first mounting plate 11, and a first support column 21 and a second support column 23 are both disposed on the upper surface of the first mounting plate 11; a clearance groove 12 is formed on the upper surface of the first mounting plate 11; two sliding grooves 13 are symmetrically formed on the inner side of the clearance groove 12; a second mounting plate 14 is slidably disposed on the inner side of the clearance groove 12; and two sliding blocks 15 are respectively disposed on the front and rear surfaces of the second mounting plate 14, and the two sliding blocks 15 are respectively located on the inner side of the two sliding grooves 13.

[0036] In this embodiment, several preferred embodiments of the mounting component 1 are given. By means of two sliding blocks 15 located in the sliding groove 13, the second mounting plate 14 can be slidably adjusted in the clearance groove 12, so that the distance between the left end of the first mounting plate 11 and the right end of the second mounting plate 14 can be adjusted.

[0037] Furthermore, such as Figure 3 As shown, the placement component 2 in the preferred embodiment of this utility model further includes a mounting groove 24, which is opened on the upper surface of the placement column 22; a number of buffer springs 25, which are evenly distributed on the inner side of the mounting groove 24; and an elastic plate 26, which is disposed between the upper end faces of the number of buffer springs 25.

[0038] Preferably, there are two placement components 2, and the two placement components 2 are respectively disposed on the upper surfaces of the first mounting plate 11 and the second mounting plate 14.

[0039] More specifically, the front end face of the elastic plate 26 is conical, and the outer side of the elastic plate 26 fits against the inner side of the mounting groove 24. The upper surface of the elastic plate 26 is located above the placement column 22. Because the front end face of the elastic plate 26 is conical, it makes it easier for workers to place the pipe between the upper surfaces of the two placement columns 22. The rubber pad is located on the front surface of the first support column 21 and on the upper surface of the placement column 22. When the pipe comes into contact with the first support column 21, the rubber pad can cushion the pipe. The placement column 22 is inclined on the front surface of the first support column 21, so that the placement column 22 can place the pipe more stably.

[0040] This embodiment provides several preferred embodiments of the placement component 2. With two placement components 2, the operator can place the pipe on the placement post 22 of the two placement components 2. Since the upper surface of the elastic plate 26 is located above the placement post 22, the pipe will contact the elastic plate 26 first. When the pipe is put down by the operator, the force generated will act on the elastic plate 26. Under the action of a number of buffer springs 25 provided on the lower surface of the elastic plate 26, the force generated when the pipe is placed can be offset, thereby preventing the pipe from deforming after being impacted when placed on the placement post 22, which would affect the subsequent use of the pipe.

[0041] Furthermore, such as Figure 4 As shown, the adjustment component 3 in the preferred embodiment of this utility model includes a lead screw 31, which is located on the right side of the left first support column 21; and a threaded sleeve 32, which is threadedly connected to the outside of the lead screw 31, and the right end of the threaded sleeve 32 is rotatably located on the left side of the right first support column 21.

[0042] More specifically, the two adjustment components 3 are respectively located between the outer sides of the first support column 21 and the outer sides of the second support column 23 of the two placement components 2.

[0043] In this embodiment, several preferred embodiments of the adjustment component 3 are given. By rotating the threaded sleeve 32, since the threaded sleeve 32 is threadedly connected to the lead screw 31, the lead screw 31 on its inner side will be moved outward when the threaded sleeve 32 rotates. This allows the spacing between the two placement components 2 to be adjusted, so that the two placement components 2 can place pipes of different specifications. When the two placement components 2 move, they will drive the first mounting plate 11 and the second mounting plate 14 to move, thereby adjusting the space occupied by the mounting component 1 and improving the overall space utilization of the device.

[0044] 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 civil engineering pipe fittings placement rack, characterized in that, Includes installation components (1); The placement assembly (2) provided on the mounting assembly (1) further includes a first support column (21) provided on the mounting assembly (1); a placement column (22) provided on the front surface of the first support column (21); and a second support column (23) provided between the lower surface of the placement column (22) and the outer side of the mounting assembly (1). Two adjustment components (3) are disposed on the placement component (2).

2. The civil engineering pipe fittings placement rack according to claim 1, characterized in that, The mounting assembly (1) further includes a first mounting plate (11), and the first support column (21) and the second support column (23) are both disposed on the upper surface of the first mounting plate (11); A clearance groove (12) is formed on the upper surface of the first mounting plate (11); Two sliding grooves (13) are symmetrically opened on the inner side of the relief groove (12); The second mounting plate (14) is slidably disposed on the inner side of the relief groove (12); Two sliding blocks (15) are respectively disposed on the front and rear surfaces of the second mounting plate (14), and the two sliding blocks (15) are respectively located inside the two sliding grooves (13).

3. The civil engineering pipe fittings placement rack according to claim 2, characterized in that, The placement component (2) further includes a mounting groove (24) formed on the upper surface of the placement column (22); A number of buffer springs (25) are evenly distributed on the inner side of the mounting groove (24); An elastic plate (26) is disposed between the upper end faces of a plurality of the buffer springs (25).

4. The civil engineering pipe fittings placement rack according to claim 3, characterized in that, The number of placement components (2) is two, and the two placement components (2) are respectively disposed on the upper surface of the first mounting plate (11) and the second mounting plate (14).

5. The civil engineering pipe fittings placement rack according to claim 4, characterized in that, The front end face of the elastic plate (26) is a conical surface, and the outer side of the elastic plate (26) is in contact with the inner side of the mounting groove (24). The upper surface of the elastic plate (26) is located above the placement column (22). A rubber pad is provided on the front surface of the first support column (21), and the rubber pad is located on the upper surface of the placement column (22); The placement column (22) is inclined on the front surface of the first support column (21).

6. The civil engineering pipe fittings placement rack according to claim 5, characterized in that, The adjustment assembly (3) includes a lead screw (31) located on the right side of the first support column (21) on the left side; A threaded sleeve (32) is threadedly connected to the outside of the lead screw (31), and the right end of the threaded sleeve (32) is rotatably located on the left side of the first support column (21) on the right side.

7. The civil engineering pipe fittings placement rack according to claim 6, characterized in that, The two adjustment components (3) are respectively located between the outer sides of the first support column (21) and the outer sides of the second support column (23) of the two placement components (2).