Pipeline laying supporting device

Through the design of lifting components and shock-absorbing and heat-insulating parts, the problems of fixed height and easy vibration wear of pipe supports are solved, the effects of height adjustment and shock-absorbing and heat-insulating are achieved, and the stability and durability of pipe supports are improved.

CN223399415UActive Publication Date: 2025-09-30GANZHOU YIHE CONSTRUCTION ENGINEERING CO LTD
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Patent Information

Application Number
CN202422960135.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-03
Publication Date
2025-09-30
Estimated Expiration
2034-12-03

AI Technical Summary

Technical Problem

Existing pipe supports cannot be adjusted in height, are prone to vibration-induced resonance, which increases wear, and are affected by temperature.

Method used

Adopt height-adjustable lifting components, shock-absorbing boxes and shock-absorbing and heat-insulating parts. The lifting components are used to adjust the pipeline height, the shock-absorbing boxes absorb vibrations, and the shock-absorbing and heat-insulating parts isolate the temperature influence.

Benefits of technology

It realizes flexible adjustment of pipeline height, reduces wear caused by vibration and the impact of temperature on the supporting structure, and improves support stability and shock absorption effect.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of pipeline supporting, and discloses a pipeline laying supporting device which comprises a support, a supporting rod, a first pipe support and a second pipe support, the first pipe support and the second pipe support are matched through a locking nut to clamp and limit a pipeline, and a lifting plate is arranged in the support in a sliding connection mode. A lifting assembly capable of driving the lifting plate to move up and down is connected to the support, a damping box is connected to the lifting plate, a mounting rod is connected to the bottom end of the first pipe support and slidably penetrates through the top wall of the damping box, a damping assembly capable of damping the mounting rod is connected into the damping box, and damping heat insulation parts are connected into the first pipe support and the second pipe support. Compared with the prior art, the device has the advantages that the height of the pipeline can be adjusted conveniently, damping protection is facilitated, pipeline abrasion is relieved, and the pipeline is prevented from being affected by temperature.
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Description

Technical Field

[0001] The utility model relates to the technical field of pipeline support, in particular to a pipeline laying support device. Background Art

[0002] A pipe support is a structural component used to support overhead pipes. It usually includes a support and a pipe bracket. The pipe is usually fixed to the pipe bracket. However, the height of the support is fixed, which makes it inconvenient to adjust the height of the pipe. The foundation needs to be leveled to a uniform height. Moreover, the flowing medium is often accompanied by vibration, which makes the pipe prone to resonance, which not only increases wear. Moreover, the pipe bracket is directly connected to the pipe, which is easily affected by temperature. Utility Model Content

[0003] 1. Technical Problems Solved

[0004] The technical problems to be solved by the utility model are that it is inconvenient to adjust the height of the pipeline, vibration easily causes the pipeline to resonate and aggravate wear; and the pipe support directly connected to the pipeline is easily affected by temperature.

[0005] 2. Technical Solution

[0006] In order to solve the above technical problems, the technical solution provided by the utility model is: a pipeline laying support device, including a support, a support rod, a first pipe support and a second pipe support, the first pipe support and the second pipe support are used to clamp and limit the pipeline through the cooperation of a locking nut, a lifting plate is provided in a sliding connection inside the support, a lifting assembly that can drive the lifting plate up and down is connected to the support, a shock-absorbing box is connected to the lifting plate, the bottom end of the first pipe support is connected to a mounting rod, the mounting rod slides through the top wall of the shock-absorbing box, a shock-absorbing assembly that can absorb shock of the mounting rod is connected in the shock-absorbing box, and a shock-absorbing heat-insulating part is provided in the first pipe support and the second pipe support.

[0007] Furthermore, the lifting assembly includes a first slide groove connected to the bottom wall of the support, the first slide groove is slidably connected to a first slider, a bidirectional screw is rotatably connected in the support, the other end of the bidirectional screw rotates through the support and is connected to a driving handle at the end, and sliding sleeves are respectively provided on both sides of the bidirectional screw through threaded connections, the bottom end of the sliding sleeve is connected to the first slider, and a first hinge rod is hinged on the sliding sleeve, and the other end of the first hinge rod is hinged to the lifting plate, by driving the bidirectional screw, the bidirectional screw drives the sliding sleeve to drive the first slider to move along the direction of the first slide groove through the thread cooperation with the sliding sleeve, and the sliding sleeve drives the first hinge rod to drive the lifting plate up and down.

[0008] Furthermore, a second slide groove is connected to both sides of the support, and a second slider that slides and cooperates with the second slide groove is connected to the lifting plate. The cooperation between the second slider and the second slide groove enables the lifting plate to drive the shock absorber box and the pipeline to move up and down stably.

[0009] Furthermore, the shock-absorbing assembly includes a connecting shaft connected to the free end of the mounting rod, and a second hinge rod is hingedly provided on both sides of the connecting shaft, and a connecting plate is hingedly provided at the other end of the second hinge rod. Sliding holes are respectively connected on both sides of the lifting plate, and a second slider is slidably connected in the sliding hole. A damping rod is connected between the slider and the connecting plate, and a shock-absorbing spring is sleeved between the slider and the connecting plate outside the damping rod. When the pipeline is vibrated by the medium, the mounting rod is driven downward by the first pipe support, and the mounting rod drives the second hinge rod downward near one end of the connecting shaft through the connecting shaft, and the other end of the second hinge rod upward, and the damping rod and the shock-absorbing spring block the movement tendency of the second hinge rod.

[0010] Furthermore, a guide shaft is connected to the middle of the second hinge rod, and guide grooves are respectively connected to both sides of the shock absorber box. The guide grooves cooperate with the guide shaft to avoid interference with the movement of the second hinge rod.

[0011] Furthermore, the shock-absorbing and heat-insulating component includes a first shock-absorbing and heat-insulating layer connected to the first pipe support, and a second shock-absorbing and heat-insulating layer is connected to the inner side of the second pipe support. The second shock-absorbing and heat-insulating layer and the first shock-absorbing and heat-insulating layer are detachable and matched to facilitate wrapping around the outside of the pipeline to insulate and shock-reduce the pipeline.

[0012] 3. Beneficial Effects

[0013] The advantages of this utility model compared with the prior art are:

[0014] The setting of the lifting assembly facilitates driving the lifting plate to drive the first pipe support and the second pipe support to drive the pipeline to move up and down, thereby adjusting the height of the pipeline; the coordinated setting of the shock-absorbing box, the mounting rod and the shock-absorbing assembly facilitates absorbing the vibration caused by the flow of the flowing medium on the pipeline, thereby avoiding resonance of the pipeline and aggravating the wear of the pipeline; the setting of the shock-absorbing and heat-insulating assembly prevents the pipeline from transferring the heat of the medium to the first pipe support and the second pipe support, thereby preventing the first pipe support and the second pipe support from being affected by temperature and affecting the stability of the support. BRIEF DESCRIPTION OF THE DRAWINGS

[0015] Figure 1 This is a schematic diagram of the structure of a pipeline laying support device of the utility model. Figure 1 .

[0016] Figure 2 It is a schematic diagram of the main cross-sectional structure of a pipeline laying support device of the present utility model.

[0017] Figure 3 The utility model is a structural schematic diagram of a lifting component of a pipeline laying support device.

[0018] Figure 4 yes Figure 2 Schematic diagram of the enlarged structure of A in the figure.

[0019] As shown in the figure: 1. Support, 2. Mounting rod, 3. First pipe support, 4. Second pipe support, 5. Lifting plate, 6. Shock absorber box, 7. First slide groove, 8. First slider, 9. Bidirectional screw, 10. Sliding sleeve, 11. First hinge rod, 12. Second hinge rod, 13. Sliding hole, 14. Third slider, 15. Damping rod, 16. Shock absorber spring, 17. Guide shaft, 18. Guide groove, 19. First shock-absorbing and heat-insulating layer, 20. Second shock-absorbing and heat-insulating layer. DETAILED DESCRIPTION

[0020] The technical solutions in the embodiments of the present invention will be clearly and completely described below in conjunction with the drawings in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, rather than all the embodiments; based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative work are within the scope of protection of the present invention.

[0021] Example 1

[0022] Combined with attachment Figure 1 、 Figure 2 and Figure 3 , a pipeline laying support device includes a support 1, a first pipe support 3 and a second pipe support 4, the first pipe support 3 and the second pipe support 4 are clamped and limited by a locking nut, a lifting plate 5 is slidably connected in the support 1, and a second slide groove is connected on both sides of the support 1, and a second slider that slides with the second slide groove is connected on the lifting plate 5. A lifting component that can drive the lifting plate 5 up and down is connected on the support 1, and the lifting component includes a first slide groove 7 connected to the bottom wall of the support 1, and the first slide groove 7 is slidably connected to the lifting plate 5. There is a first slider 8, a bidirectional screw 9 is rotatably connected in the support 1, the other end of the bidirectional screw 9 rotates through the support 1 and is connected to a driving handle at the end, and a sliding sleeve 10 is respectively connected on both sides of the bidirectional screw 9 by threaded penetration, the bottom end of the sliding sleeve 10 is connected to the first slider 8, and a first hinge rod 11 is hinged on the sliding sleeve 10, and the other end of the first hinge rod 11 is hinged to the lifting plate 5, and a shock absorber box 6 is connected to the lifting plate 5, and the bottom end of the first pipe support 3 is connected to the mounting rod 2, and the mounting rod 2 slides through the top wall of the shock absorber box 6;

[0023] The coordinated arrangement of the lifting components in the above structure facilitates driving the first hinge rods 11 on both sides to adjust the angle through the bidirectional screw 9 , thereby driving the height of the lifting plate 5 .

[0024] Combined with attachment Figure 2 and Figure 4, a shock-absorbing assembly for absorbing shock to the mounting rod 2 is connected to the shock-absorbing box 6, and the shock-absorbing assembly includes a connecting shaft connected to the free end of the mounting rod 2, and a second hinge rod 12 is hinged on both sides of the connecting shaft, and a guide shaft 17 is connected to the middle of the second hinge rod 12. Guide grooves 18 are respectively connected on both sides of the shock-absorbing box 6, and the guide grooves 18 cooperate with the guide shaft 17. The other end of the second hinge rod 12 is hingedly provided with a connecting plate, and sliding holes 13 are respectively connected on both sides of the lifting plate 5. A third slider 14 is slidably connected in the sliding hole 13, and a damping rod 15 is connected between the slider and the connecting plate. A shock-absorbing spring 16 is sleeved outside the damping rod 15 between the slider and the connecting plate.

[0025] The coordinated arrangement of the shock-absorbing components in the above structure facilitates the vibration of the pipeline caused by the flow of the medium to drive the mounting rod 2 up and down, and the mounting rod 2 drives the second hinge rod 12 to drive the connecting plate, and the connecting plate absorbs the shock through the damping rod 15 and the shock-absorbing spring 16.

[0026] Example 2

[0027] On the basis of embodiment 1, combined with the attached Figure 1 The first pipe support 3 and the second pipe support 4 are connected with a shock-absorbing and heat-insulating component, and the shock-absorbing and heat-insulating component includes a first shock-absorbing and heat-insulating layer 19 connected to the first pipe support 3, and a second shock-absorbing and heat-insulating layer 20 is connected to the inner side of the second pipe support 4. The second shock-absorbing and heat-insulating layer 20 and the first shock-absorbing and heat-insulating layer 19 are detachable and matched.

[0028] The coordinated arrangement of the shock-absorbing and heat-insulating components in the above structure facilitates isolating the pipeline from the first pipe support 3 and the second pipe support 4 through the second shock-absorbing and heat-insulating layer 20 and the first shock-absorbing and heat-insulating layer 19, thereby avoiding the influence of temperature on the first pipe support 3 and the second pipe support 4.

[0029] The specific usage is as follows:

[0030] By driving the bidirectional screw 9, the bidirectional screw 9 drives the sleeve 10 to drive the first slider 8 to move along the first slide groove 7 through the thread cooperation with the sleeve 10. The sleeve 10 drives the first hinge rod 11 to drive the lifting plate 5 up and down, thereby adjusting the height of the pipeline. The cooperation between the second slider and the second slide groove enables the lifting plate 5 to drive the shock absorber box 6 and the pipeline to move up and down stably.

[0031] The coordinated arrangement of the shock-absorbing box 6, the mounting rod 2, and the shock-absorbing assembly facilitates the absorption of vibrations caused by the flow of the flowing medium on the pipeline. When the pipeline is subjected to the vibrations of the medium, the mounting rod 2 is driven to slide downward through the first pipe support 3. The mounting rod 2 drives the second hinge rod 12 downward at one end close to the connecting shaft and upward at the other end through the connecting shaft. The damping rod 15 and the shock-absorbing spring 16 block the movement of the second hinge rod 12 to prevent resonance in the pipeline and aggravated wear of the pipeline. The guide groove 18 cooperates with the guide shaft 17 to avoid interference with the movement of the second hinge rod 12.

[0032] The setting of the shock-absorbing and heat-insulating assembly prevents the pipeline from transferring the heat of the medium to the first pipe support 3 and the second pipe support 4, and prevents the first pipe support 3 and the second pipe support 4 from being affected by the temperature and affecting the stability of the support. The second shock-absorbing and heat-insulating layer 20 and the first shock-absorbing and heat-insulating layer 19 are detachable and matched, and are convenient for covering the outside of the pipeline to insulate and shock-reducing the pipeline.

[0033] It should be noted that, in this document, relational terms such as first and second, etc., are used only to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any actual relationship or order between these entities or operations. Moreover, the terms "comprises," "comprising," or any other variations thereof are intended to cover non-exclusive inclusion, such that a process, method, article, or apparatus that includes a list of elements includes not only those elements but also other elements not explicitly listed, or elements inherent to such process, method, article, or apparatus.

[0034] Although the 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 variations may be made to these embodiments without departing from the principles and spirit of the present invention, and the scope of the present invention is defined by the appended claims and their equivalents.

[0035] The above description of the present invention and its embodiments is non-limiting. The drawings show only one embodiment of the present invention, and the actual structure is not limited thereto. In short, if a person skilled in the art is inspired by the above, and does not deviate from the purpose of the present invention, without inventive design, a structure and embodiment similar to the technical solution should fall within the scope of protection of the present invention.

Claims

1. A pipeline laying support device, comprising a support (1), a first pipe support (3) and a second pipe support (4), wherein the first pipe support (3) and the second pipe support (4) cooperate with each other through a locking nut to clamp and limit the pipeline, characterized in that: A lifting plate (5) is slidably connected in the support (1), a lifting assembly capable of driving the lifting plate (5) up and down is connected to the support (1), a shock-absorbing box (6) is connected to the lifting plate (5), a mounting rod (2) is connected to the bottom end of the first pipe support (3), the mounting rod (2) slides through the top wall of the shock-absorbing box (6), a shock-absorbing assembly capable of shock-absorbing the mounting rod (2) is connected in the shock-absorbing box (6), and a shock-absorbing heat-insulating component is connected in the first pipe support (3) and the second pipe support (4).

2. A pipeline laying support device according to claim 1, characterized in that: The lifting assembly includes a first slide groove (7) connected to the bottom wall of the support (1), the first slide groove (7) is slidably connected to a first slider (8), a bidirectional screw (9) is rotatably connected in the support (1), the other end of the bidirectional screw (9) rotates through the support (1) and is connected to a driving handle at the end, and a sliding sleeve (10) is respectively connected on both sides of the bidirectional screw (9) through a thread, the bottom end of the sliding sleeve (10) is connected to the first slider (8), and a first hinge rod (11) is hinged on the sliding sleeve (10), and the other end of the first hinge rod (11) is hinged to the lifting plate (5).

3. The pipeline laying support device according to claim 1, characterized in that: Second sliding grooves are respectively connected to both sides of the support (1), and a second sliding block that is slidably matched with the second sliding grooves is connected to the lifting plate (5).

4. The pipeline laying support device according to claim 1, characterized in that: The shock absorbing assembly comprises a connecting shaft connected to the free end of the mounting rod (2), a second hinge rod (12) is hingedly provided on both sides of the connecting shaft, a connecting plate is hingedly provided on the other end of the second hinge rod (12), a sliding hole (13) is connected to both sides of the lifting plate (5), a third slider (14) is slidingly connected in the sliding hole (13), a damping rod (15) is connected between the slider and the connecting plate, and a shock absorbing spring (16) is sleeved outside the damping rod (15) between the slider and the connecting plate.

5. The pipeline laying support device according to claim 4, characterized in that: A guide shaft (17) is connected to the middle of the second hinge rod (12), and guide grooves (18) are respectively connected to both sides of the shock absorber box (6), and the guide grooves (18) are matched with the guide shaft (17).

6. The pipeline laying support device according to claim 1, characterized in that: The shock-absorbing and heat-insulating component comprises a first shock-absorbing and heat-insulating layer (19) connected to the first pipe support (3); a second shock-absorbing and heat-insulating layer (20) is connected to the inner side of the second pipe support (4); and the second shock-absorbing and heat-insulating layer (20) and the first shock-absorbing and heat-insulating layer (19) are detachably matched.