Pipeline support

By designing a detachable pipe support assembly, the problem that traditional supports cannot be prefabricated is solved, efficient and safe installation and maintenance are achieved, the cost and difficulty of high-altitude operations are reduced, and the installation quality is improved.

CN223318610UActive Publication Date: 2025-09-09THE 711TH RES INST OF CHINA STATE SHIPBUILDING CORP +1
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Patent Information

Application Number
CN202423019144.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-06
Publication Date
2025-09-09
Estimated Expiration
2034-12-06

AI Technical Summary

Technical Problem

Traditional welded tower supports cannot be prefabricated in manufacturing plants, resulting in large installation deviations, difficulty in ensuring quality, a large amount of high-altitude welding, difficulty in high-altitude operations, high labor costs, and difficulty in disassembly during maintenance. They cannot meet the strict dimensional positioning requirements of the fuel gas pipeline tower supports for guidance and limitation.

Method used

A pipe support is designed, including a first support assembly and a second support assembly that are detachably connected. A detachable connection is formed by pre-fixing a pad and a support rod at the manufacturing plant, thereby avoiding on-site welding, reducing the amount of high-altitude work, and improving installation efficiency and quality.

Benefits of technology

The pipe supports can be prefabricated in the manufacturing plant, which reduces the difficulty of high-altitude operations, reduces labor costs, improves installation efficiency and quality, simplifies the maintenance process, and reduces the impact of welding on pipeline strength.

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Abstract

The utility model relates to a pipe support. The pipeline support comprises the first support assembly and the second support assembly which are detachably connected, and the pipeline is detachably connected to the second support assembly, so that the base plate and the first supporting rod can be fixed to form the first support assembly in a manufacturing plant, and the second supporting rod and the third supporting rod can be fixed to form the second support assembly. The first support assembly is fixed to the cross beam, the first supporting rod, the second supporting rod and the third supporting rod are pre-holed, then the first supporting rod and the second supporting rod are detachably connected through the first fastening piece on the construction site, and the third supporting rod and the pipeline are detachably connected through the second fastening piece. Therefore, the pipeline support and the pipeline can be prevented from being welded and assembled on a construction site, the influence of welding on the strength of the pipeline is reduced, the high-altitude operation amount is reduced, the high-altitude operation difficulty on the construction site is reduced, the construction and installation efficiency is improved, the labor cost is reduced, and the fault-tolerant rate and the construction quality of construction and installation are improved.
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Description

Technical Field

[0001] The present application relates to the technical field of supports, and in particular to a pipe support. Background Art

[0002] Flares are a crucial safety feature in petrochemical production facilities. They channel exhaust gases generated during normal or unexpected operation into the flare for combustion and subsequent discharge, ensuring the safety of the facility. The combustion of the flame generates a significant amount of heat radiation. To meet these requirements, the flare head of an elevated flare is typically located at a height ranging from tens to over a hundred meters above the ground.

[0003] The pilot light is a long-burning flame located at the flare head. Its mission is to promptly ignite the flare gas emitted from the flare barrel. Therefore, regardless of weather conditions, whether rainy or windy, the pilot light of an industrial torch must be able to maintain stable and continuous combustion to ignite the exhaust gas, thereby meeting safety and environmental protection requirements. The pilot light relies on a continuous supply of fuel gas to meet this long-burning requirement. Therefore, a fuel gas pipeline must be led to the top of the flare stack. The fuel gas pipeline is supported by a tower bracket installed on the tower crossbar and is installed along the side of the tower.

[0004] The towers of elevated flares are often hundreds of meters high, and their superstructures are relatively narrow, resulting in limited space between the tower crossbars and the auxiliary tower supports. Furthermore, for ease of transportation, flange joints are required between the tower crossbars, further compressing the space between the tower crossbars and the auxiliary tower supports. Consequently, traditional welded auxiliary tower supports cannot be prefabricated at the manufacturer and cannot be shipped integrally with the tower assembly. They must be welded and assembled on-site. On-site construction presents significant installation deviations, difficulty in ensuring quality, high-altitude welding workloads, difficulty in performing high-altitude operations, high labor costs, and difficulty disassembling for maintenance. These supports cannot meet the stringent dimensional positioning requirements for guidance and positioning of the fuel gas pipeline auxiliary tower supports. Utility Model Content

[0005] The embodiment of the present application provides a pipe support that can solve the technical problems of the current tower support that cannot be prefabricated in the manufacturing plant and cannot be shipped as a whole with the tower assembly, and needs to be welded and assembled on site, resulting in large installation deviations, difficult quality assurance, large amount of high-altitude welding, difficult high-altitude operations, high labor costs, and difficulty in disassembly during maintenance.

[0006] 18. The swiftly and minutely adjusting device for a wood-planer working table as claimed in claim 15, wherein the lifting arm is a key equipment for the user, and the key is a key tool for the user to carry out the at least one of the steps of: first, a key tool for the user to control the position of the key, and a key tool for the user to control the position of the key.

[0007] In some embodiments, the second support rod is detachably connected to the first support rod via a first fastener.

[0008] In some embodiments, the first support rod includes: a first web, a first upper wing plate, and a first lower wing plate, wherein the first upper wing plate and the first lower wing plate are respectively arranged on the upper side and the lower side of the first web in the first direction.

[0009] In some embodiments, in a cross section perpendicular to the second direction, the shape of the pad is a first arc, the shape of the side of the first web close to the pad is a second arc, the surface of the side of the pad close to the beam is fitted to the outer wall of the beam, and the surface of the side of the first web close to the pad is fitted to the surface of the side of the pad away from the beam.

[0010] In some embodiments, the angle of the second arc is greater than or equal to 120°.

[0011] In some embodiments, the second support rod includes: a second web, a second upper wing plate and a second lower wing plate, wherein the second upper wing plate and the second lower wing plate are respectively arranged on the upper side and the lower side of the second web in the first direction.

[0012] In some embodiments, a first through hole is provided on the first web, a second through hole is provided on the second web, and the first fastener includes a hexagonal bolt and a first nut. The hexagonal bolt passes through the first through hole and the second through hole and cooperates with the first nut to fix the first support rod and the second support rod.

[0013] In some embodiments, the second upper wing plate and the second lower wing plate are located on the side of the second web away from the third support rod, the first web is located on the side of the second web close to the third support rod, and the first upper wing plate and the first lower wing plate are located on the side of the first web away from the second web.

[0014] In some embodiments, the pipe is detachably connected to the third support rod via a second fastener.

[0015] In some embodiments, the third support rod includes: a third web, a third upper wing plate, and a third lower wing plate, wherein the third upper wing plate and the third lower wing plate are respectively arranged on the upper side and the lower side of the third web in the first direction.

[0016] In some embodiments, a third through hole is provided on the third web, and the second fastener includes a U-shaped bolt and a second nut. The U-shaped bolt passes through the pipe and the third through hole and cooperates with the second nut to fix the pipe and the third support rod.

[0017] In some embodiments, the backing plate is welded and fixed to the crossbeam, the first support rod is welded and fixed to the backing plate, and the third support rod is welded and fixed to the second support rod.

[0018] In some embodiments, the beam includes a first sub-beam, a second sub-beam and a connecting member, the first sub-beam and the second sub-beam both extend along the second direction, and the connecting member is connected between the first sub-beam and the second sub-beam; wherein the two pads are respectively fixed on the first sub-beam and the second sub-beam.

[0019] In some embodiments, the second fastener also includes a third nut, and the third nut and the second nut are respectively arranged on both sides of the third web in the third direction. The U-shaped bolt passes through the pipe, the third nut and the third through hole and cooperates with the second nut to guide the pipe.

[0020] The pipe support provided in the embodiment of the present application is divided into a first support assembly and a second support assembly that are detachably connected, so that the pad and the first support rod can be fixed at the manufacturing plant to form a first support assembly, and the second support rod and the third support rod can be fixed at the manufacturing plant to form a second support assembly, and the first support assembly can be fixed to the beam at the manufacturing plant. By pre-drilling holes in the first support rod, the second support rod and the third support rod at the manufacturing plant, and then the first support rod and the second support rod are detachably connected by the first fastener at the construction site, and the third support rod is detachably connected to the pipe by the second fastener, it is possible to avoid welding and assembling the pipe support and the pipe at the construction site, thereby reducing the impact of welding on the strength of the pipe, effectively reducing the amount of high-altitude work, reducing the difficulty of high-altitude work at the construction site, improving the efficiency of construction and installation, reducing labor costs, and improving the fault tolerance and construction quality of construction and installation.

[0021] By dividing the pipe support into a first support assembly and a second support assembly that are detachably connected, the present application can avoid the need for tower manufacturers to provide additional pipe supports when pipe supports cannot be provided on traditional beams to meet the pipe design, thereby avoiding the need to increase the support structure, reducing costs, and avoiding affecting the strength of the tower itself.

[0022] The pipeline of the present application is detachably connected to the third support rod, which solves the problem of having to cut the pipeline support when repairing the pipeline in previous projects, and improves the safety and convenience during repair.

[0023] The second bracket assembly of the present application is detachably connected to the first bracket assembly. During regular maintenance, if the pipe bracket is rusted, the second bracket assembly can be directly replaced, which is simpler to operate.

[0024] By adjusting the spacing between the two pads of the first support assembly, the third support rod can be made to span the connector on the crossbeam. During renovations and expansions, one of the two first support rods can be kept stationary while the other is adjusted to meet the new pipe support requirements, thus reusing the existing pipe supports and reducing welding work on the tower. BRIEF DESCRIPTION OF THE DRAWINGS

[0025] In order to more clearly illustrate the technical solutions in the embodiments of the present application, the following briefly introduces the drawings required for use in the description of the embodiments. Obviously, the drawings described below are only some embodiments of the present application. For those skilled in the art, other drawings can be obtained based on these drawings without creative work.

[0026] Figure 1 A top view of a pipe support according to an embodiment of the present application;

[0027] Figure 2 A side view of a pipe support according to an embodiment of the present application;

[0028] Figure 3 This is a schematic structural diagram of the first support rod according to an embodiment of the present application;

[0029] Figure 4 This is a schematic structural diagram of the second support rod in an embodiment of the present application;

[0030] Figure 5 This is a schematic structural diagram of a third support rod according to an embodiment of the present application;

[0031] Figure 6 This is a schematic structural diagram of the second fastener guiding the pipeline in an embodiment of the present application.

[0032] The symbols in the figure are as follows:

[0033] 1. Tower; 2. Pipe; 3. Pipe support; 4. First fastener; 5. Second fastener; 6. First through hole; 7. Second through hole; 8. Third through hole;

[0034] 11. crossbeam; 111. first sub-crossbeam; 112. second sub-crossbeam; 113. connecting member;

[0035] 31. First bracket assembly; 32. Second bracket assembly;

[0036] 311, pad; 312, first support rod; 321, second support rod; 322, third support rod;

[0037] 3121, first web; 3122, first upper wing plate; 3123, first lower wing plate;

[0038] 3211, second web plate; 3212, second upper wing plate; 3213, second lower wing plate;

[0039] 3221, third web plate; 3222, third upper wing plate; 3223, third lower wing plate;

[0040] 41. Hexagonal bolt; 42. First nut;

[0041] 51. U-bolt; 52. Second nut; 53. Third nut. DETAILED DESCRIPTION

[0042] The following describes in detail the preferred embodiments of the present invention in conjunction with the accompanying drawings to fully introduce the technical content of the present invention to those skilled in the art, to illustrate that the present invention can be implemented, to make the technical content disclosed in the present invention clearer, and to make it easier for those skilled in the art to understand how to implement the present invention. However, the present invention can be embodied in many different forms of embodiments, and the scope of protection of the present invention is not limited to the embodiments described herein. The description of the embodiments below is not intended to limit the scope of the present invention.

[0043] The directional terms mentioned in the present invention, such as "up", "down", "front", "back", "left", "right", "inside", "outside", "side", etc., are only directions in the drawings. The directional terms used in this document are used to explain and illustrate the present invention, and are not used to limit the scope of protection of the present invention.

[0044] In the accompanying drawings, components with the same structure are represented by the same numerical labels, and components with similar structures or functions are represented by similar numerical labels. In addition, for the sake of ease of understanding and description, the size and thickness of each component shown in the accompanying drawings are arbitrarily shown, and the present invention does not limit the size and thickness of each component.

[0045] See also Figure 1 and Figure 2This embodiment provides a pipe support 3. The pipe support 3 includes a first direction M, a second direction N, and a third direction P that intersect each other. In this embodiment, the first direction M is a vertical direction. The pipe support 3 is used to secure the pipe 2 to the tower 1.

[0046] The tower 1 extends along a first direction M, meaning that in this embodiment, the tower 1 is arranged vertically. The tower 1 includes a crossbeam 11, which extends along a second direction N. The crossbeam 11 includes a first sub-crossbeam 111, a second sub-crossbeam 112, and a connector 113. Both the first sub-crossbeam 111 and the second sub-crossbeam 112 extend along the second direction N, and the connector 113 connects the first sub-crossbeam 111 and the second sub-crossbeam 112. In this embodiment, the connector 113 is a flange.

[0047] See also Figure 1 The pipeline 2 extends along the first direction M. In this embodiment, the pipeline 2 is a fuel gas pipeline of the torch. In other embodiments, the pipeline 2 can also be other non-insulated pipelines, such as an electrical instrument threading pipeline.

[0048] See also Figure 1 and Figure 2 The pipe support 3 is used to fix the pipe 2 on the beam 11. The pipe support 3 includes: a first support assembly 31 and a second support assembly 32.

[0049] The first bracket assembly 31 includes at least two pads 311 and at least two first support rods 312. The pads 311 are arranged at intervals along the second direction N, and the first support rods 312 are arranged at intervals along the second direction N and extend along the third direction P. Each first support rod 312 is fixed to the crossbeam 11 via a pad 311. The two pads 311 are fixed to the first sub-crossbeam 111 and the second sub-crossbeam 112, respectively. Thus, by adjusting the spacing between the two pads 311 of the first bracket assembly 31, the third support rod 322 of the second bracket assembly 32 can be made to span the connecting piece 113 on the crossbeam 11. In this embodiment, the pads 311 are welded to the crossbeam 11, and the first support rods 312 are welded to the pads 311. In other embodiments, the crossbeam 11, the pads 311, and the first support rods 312 can also be formed integrally.

[0050] The second bracket assembly 32 is detachably connected to the first bracket assembly 31. The second bracket assembly 32 includes at least one third support rod 322 and at least two second support rods 321. The third support rods 322 extend along the second direction N. The second support rods 321 are spaced apart along the second direction N and extend along the third direction P. Each third support rod 322 is fixed between two adjacent second support rods 321. Each second support rod 321 is detachably connected to a first support rod 312. The pipe 2 is detachably connected to the third support rod 322. In this embodiment, the third support rod 322 is welded to the second support rod 321. In other embodiments, the third support rod 322 and the second support rod 321 may be integrally formed.

[0051] See also Figure 2 and Figure 3 The first support rod 312 includes a first web 3121, a first upper wing plate 3122, and a first lower wing plate 3123. The first upper wing plate 3122 and the first lower wing plate 3123 are respectively disposed on the upper and lower sides of the first web 3121 in the first direction M. Specifically, in this embodiment, the first support rod 312 is a U-shaped channel steel.

[0052] See also Figure 2 and Figure 3 , in the cross section perpendicular to the second direction N, the shape of the pad 311 is a first arc, the shape of the side of the first web 3121 close to the pad 311 is a second arc, the surface of the pad 311 close to the beam 11 is attached to the outer wall of the beam 11, and the surface of the first web 3121 close to the pad 311 is attached to the surface of the pad 311 away from the beam 11. The angle α of the second arc is greater than or equal to 120°. In this embodiment, the angle α of the second arc is 120°, thereby increasing the contact area between the first web 3121 and the pad 311 and improving the connection stability between the first support rod 312 and the pad 311. In this embodiment, the angle of the first arc is 180°, thereby increasing the contact area between the pad 311 and the beam 11 and improving the connection stability between the pad 311 and the beam 11.

[0053] See also Figure 2 and Figure 4 The second support rod 321 includes a second web 3211, a second upper wing plate 3212, and a second lower wing plate 3213. The second upper wing plate 3212 and the second lower wing plate 3213 are respectively disposed on the upper and lower sides of the second web 3211 in the first direction M. Specifically, in this embodiment, the second support rod 321 is a U-shaped channel steel.

[0054] See also Figures 1-4, the second support rod 321 is detachably connected to the first support rod 312 through the first fastener 4. Specifically, a first through hole 6 is provided on the first web 3121, and a second through hole 7 is provided on the second web 3211. The first fastener 4 includes a hexagonal bolt 41 and a first nut 42. The hexagonal bolt 41 passes through the first through hole 6 and the second through hole 7 and cooperates with the first nut 42 to fix the first support rod 312 and the second support rod 321. In order to ensure the reliability of the connection between the first support rod 312 and the second support rod 321, the number of the first fasteners 4 detachably connected between the first support rod 312 and the second support rod 321 is greater than or equal to 4. In this embodiment, the first support rod 312 and the second support rod 321 are detachably connected through six first fasteners 4.

[0055] See also Figure 1 The second upper wing plate 3212 and the second lower wing plate 3213 are located on the side of the second web 3211 away from the third support rod 322, the first web 3121 is located on the side of the second web 3211 close to the third support rod 322, and the first upper wing plate 3122 and the first lower wing plate 3123 are located on the side of the first web 3121 away from the second web 3211.

[0056] See also Figure 2 and Figure 5 The third support rod 322 includes a third web 3221, a third upper wing plate 3222, and a third lower wing plate 3223. The third upper wing plate 3222 and the third lower wing plate 3223 are respectively disposed on the upper and lower sides of the third web 3221 in the first direction M. Specifically, in this embodiment, the third support rod 322 is a U-shaped channel steel.

[0057] See also Figure 1 、 Figure 2 and Figure 5 The pipe 2 is detachably connected to the third support rod 322 via a second fastener 5. Specifically, a third through hole 8 is defined in the third web 3221. The second fastener 5 includes a U-bolt 51 and a second nut 52. The U-bolt 51 passes through the pipe 2 and the third through hole 8 and cooperates with the second nut 52 to secure the pipe 2 to the third support rod 322.

[0058] See also Figure 6 The second fastener 5 further includes a third nut 53. The third nut 53 and the second nut 52 are respectively disposed on both sides of the third web 3221 in the third direction P. The U-bolt 51 passes through the pipe 2, the third nut 53, and the third through hole 8 and cooperates with the second nut 52 to guide the pipe 2. At this time, the second fastener 5 does not fix the pipe 2 but only guides the pipe 2.

[0059] In some embodiments, a stopper is provided on the outer wall of the pipe 2. The stopper is provided on both sides of the pipe support 3 in the first direction M. Specifically, the stopper is provided on both sides of the third support rod 322 in the first direction M. Thus, the stopper abuts against the pipe support 3, thereby preventing the pipe 2 from deflecting in the first direction M.

[0060] In this embodiment, the backing plate 311 is welded to the crossbeam 11 at the manufacturing plant, and then the first support rod 312 is welded to the backing plate 311 to form the first bracket assembly 31; then the second support rod 321 is welded to the third support rod 322 at the manufacturing plant to form the second bracket assembly 32; then the first support rod 312 and the second support rod 321 are pre-drilled at the manufacturing plant according to the connection position of the first support rod 312 and the second support rod 321 to form the first through hole 6 and the second through hole 7 respectively; then the third support rod 322 is pre-drilled at the manufacturing plant according to the position of the clamping pipe and the spacing and column diameter of the corresponding model of U-bolt to form the third through hole 8; then The manufacturer performs overall galvanizing for corrosion protection on the first and second bracket assemblies 31, 32. The first and second bracket assemblies 31, 32 are then pre-assembled at the manufacturer and disassembled and transported separately to the construction site. The pipe 2 and the third support rod 322 of the second bracket assembly 32 are then pre-assembled on the ground at the construction site and the pipe 2 and the second bracket assembly 32 are disassembled. At high altitude at the construction site, the first and second bracket assemblies 31, 32 are assembled using the first fastener 4, and the pipe 2 and the second bracket assembly 32 are assembled using the second fastener 5. This avoids welding and assembling the pipe support 3 and the pipe 2 at the construction site, thereby reducing the impact of welding on the strength of the pipe 2, effectively reducing the amount of high-altitude work, making high-altitude work easier, improving the efficiency of construction and installation, reducing labor costs, improving the fault tolerance and quality of construction and installation, and avoiding damage to the galvanized coating of the pipe and bracket by welding, and avoiding the need for zinc supplementation on the pipe and bracket.

[0061] By dividing the pipe support 3 into a first support assembly 31 and a second support assembly 32 that are detachably connected, the present application can avoid the need for tower manufacturers to propose additional pipe support components when the pipe support 3 cannot be set on the traditional beam 11 to meet the pipeline design, avoid adding support structures, reduce costs, and avoid affecting the strength of the tower itself.

[0062] The pipe 2 of the present application is detachably connected to the third support rod 322, which solves the problem of having to cut the pipe support 3 when repairing the pipe in previous projects, and improves the safety and convenience during repair.

[0063] The second bracket assembly 32 of the present application is detachably connected to the first bracket assembly 31. During regular maintenance, if the pipe bracket 3 is rusted, the second bracket assembly 32 can be directly replaced, which is simpler to operate.

[0064] In this application, by adjusting the spacing between the two pads 311 of the first support assembly 31, the third support rod 322 can be made to span the connector 113 on the crossbeam. During renovation and expansion, one of the two first support rods 312 can be kept stationary while the other one can be adjusted to meet the requirements of the new pipe support 3, thus enabling the reuse of the pipe support 3 from the renovation and expansion, and reducing the welding work on the tower.

[0065] The above is a detailed introduction to a pipe support provided in an embodiment of the present application. Specific examples are used in this article to illustrate the principles and implementation methods of the present application. The description of the above embodiments is only used to help understand the technical solution and core idea of ​​the present application; ordinary technicians in this field should understand that: they can still modify the technical solutions recorded in the aforementioned embodiments, or replace some of the technical features therein with equivalents; and these modifications or replacements do not cause the essence of the corresponding technical solution to deviate from the scope of the technical solution of the embodiments of the present application.

Claims

1. A pipe support (3), characterized in that: The invention comprises a first direction (M), a second direction (N), and a third direction (P) intersecting each other, the pipe support (3) being used to fix the pipe (2) on the tower (1), the tower (1) extending along the first direction (M), the tower (1) comprising a crossbeam (11), the crossbeam (11) extending along the second direction (N), the pipe (2) extending along the first direction (M), and the pipe support (3) being used to fix the pipe (2) on the crossbeam (11); Wherein, the pipeline support (3) comprises: a first bracket assembly (31), the first bracket assembly (31) comprising at least two pads (311) and at least two first support rods (312), the pads (311) being arranged at intervals along the second direction (N), the first support rods (312) being arranged at intervals along the second direction (N) and extending along a third direction (P), and any one of the first support rods (312) being fixed to the crossbeam (11) via one of the pads (311); and A second bracket assembly (32) is detachably connected to the first bracket assembly (31), the second bracket assembly (32) comprises at least one third support rod (322) and at least two second support rods (321), the third support rod (322) extending along the second direction (N), the second support rods (321) being arranged at intervals along the second direction (N) and extending along the third direction (P), any one of the third support rods (322) being fixed between two adjacent second support rods (321), any one of the second support rods (321) being detachably connected to one of the first support rods (312), and the pipeline (2) being detachably connected to the third support rod (322).

2. The pipe support (3) according to claim 1, characterized in that: The second support rod (321) is detachably connected to the first support rod (312) via a first fastener (4).

3. The pipe support (3) according to claim 2, characterized in that: The first support rod (312) includes: a first web (3121), a first upper wing plate (3122) and a first lower wing plate (3123), wherein the first upper wing plate (3122) and the first lower wing plate (3123) are respectively arranged on the upper side and the lower side of the first web (3121) in the first direction (M).

4. The pipe support (3) according to claim 3, characterized in that: In a cross section perpendicular to the second direction (N), the shape of the pad (311) is a first arc, the shape of the side of the first web (3121) close to the pad (311) is a second arc, the surface of the side of the pad (311) close to the beam (11) is in contact with the outer wall of the beam (11), and the surface of the side of the first web (3121) close to the pad (311) is in contact with the surface of the side of the pad (311) away from the beam (11).

5. The pipe support (3) according to claim 4, characterized in that: The angle of the second arc is greater than or equal to 120°.

6. The pipe support (3) according to claim 3, characterized in that: The second support rod (321) includes: a second web (3211), a second upper wing plate (3212) and a second lower wing plate (3213), wherein the second upper wing plate (3212) and the second lower wing plate (3213) are respectively arranged on the upper side and the lower side of the second web (3211) in the first direction (M).

7. The pipe support (3) according to claim 6, characterized in that: The first web (3121) is provided with a first through hole (6), the second web (3211) is provided with a second through hole (7), the first fastener (4) comprises a hexagonal bolt (41) and a first nut (42), the hexagonal bolt (41) passes through the first through hole (6) and the second through hole (7) and cooperates with the first nut (42) to fix the first support rod (312) and the second support rod (321).

8. The pipe support (3) according to claim 7, characterized in that: The second upper wing plate (3212) and the second lower wing plate (3213) are located on the side of the second web (3211) away from the third support rod (322), the first web (3121) is located on the side of the second web (3211) close to the third support rod (322), and the first upper wing plate (3122) and the first lower wing plate (3123) are located on the side of the first web (3121) away from the second web (3211).

9. The pipe support (3) according to claim 1, characterized in that: The pipe (2) is detachably connected to the third support rod (322) via a second fastener (5).

10. The pipe support (3) according to claim 9, characterized in that: The third support rod (322) includes: a third web (3221), a third upper wing plate (3222) and a third lower wing plate (3223), and the third upper wing plate (3222) and the third lower wing plate (3223) are respectively arranged on the upper side and the lower side of the third web (3221) in the first direction (M).

11. The pipe support (3) according to claim 10, characterized in that: A third through hole (8) is provided on the third web (3221), and the second fastener (5) comprises a U-shaped bolt (51) and a second nut (52), wherein the U-shaped bolt (51) passes through the pipe (2) and the third through hole (8) and cooperates with the second nut (52) to fix the pipe (2) and the third support rod (322).

12. The pipe support (3) according to claim 11, characterized in that: The pad (311) is welded and fixed on the crossbeam (11), the first support rod (312) is welded and fixed on the pad (311), and the third support rod (322) is welded and fixed on the second support rod (321).

13. The pipe support (3) according to claim 11, characterized in that: The crossbeam (11) comprises a first sub-crossbeam (111), a second sub-crossbeam (112), and a connecting member (113); the first sub-crossbeam (111) and the second sub-crossbeam (112) both extend along the second direction (N); and the connecting member (113) is connected between the first sub-crossbeam (111) and the second sub-crossbeam (112); The two pads (311) are respectively fixed on the first sub-crossbeam (111) and the second sub-crossbeam (112).

14. The pipe support (3) according to claim 11, characterized in that: The second fastener (5) further includes a third nut (53), wherein the third nut (53) and the second nut (52) are respectively arranged on both sides of the third web (3221) in the third direction (P), and the U-bolt (51) passes through the pipe (2), the third nut (53) and the third through hole (8) and cooperates with the second nut (52) to guide the pipe (2).