Water conservancy pipeline supporting structure
By designing an adjustable angle and height hydraulic pipeline support structure, the problem of insufficient support for curved pipelines in existing technologies has been solved, achieving stable support for curved pipelines and pipelines of different heights, and improving the applicability and flexibility of the support structure.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-05-22
- Publication Date
- 2026-04-03
AI Technical Summary
Existing water conservancy pipeline support structures are insufficient to effectively support curved pipelines, resulting in inadequate practicality and flexibility.
A hydraulic pipeline support structure was designed, comprising components such as a first mounting base, a rotating block, a second mounting base, a support plate, a pipe clamp, a slide, a slider, and a locking threaded rod. It can adapt to curved and straight pipelines by adjusting the angle and height, and the angle adjustment is achieved by the cooperation of the rotating block and the slider. Combined with the height lifting structure, it can achieve multi-height support.
The applicable scope of the support structure has been expanded, enabling it to flexibly support curved and differently sized water conservancy pipelines, thus improving practicality and structural flexibility.
Smart Images

Figure CN224079719U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of pipeline support technology, and in particular to a water conservancy pipeline support structure. Background Technology
[0002] Hydraulic engineering is used to control and regulate surface water and groundwater in nature; it is also called water engineering. Water is an indispensable substance for human life, but its natural state does not fully meet human needs. Therefore, it is necessary to construct hydraulic engineering projects to control water flow, prevent floods, and regulate and distribute water. Hydraulic engineering requires water pipelines for water transport and pipeline support structures to support these pipelines and ensure their stability.
[0003] To ensure stable support of water conservancy pipelines, some pipeline support structures typically connect two supporting components together to support the ends of the pipeline. While this method guarantees pipeline stability, the supporting components are generally on the same horizontal plane, limiting the support structure to straight pipelines. However, this makes it unsuitable for curved pipelines, reducing the practicality of the support structure. Therefore, a new pipeline support structure is needed to address these issues. Utility Model Content
[0004] The purpose of this invention is to at least solve one of the aforementioned technical defects.
[0005] Therefore, one objective of this utility model is to propose a water conservancy pipeline support structure to solve the problems mentioned in the background art and overcome the shortcomings of the existing technology.
[0006] To achieve the above objectives, one embodiment of this utility model provides a water conservancy pipeline support structure, including a first mounting base, a rotating block rotatably connected to one end of the first mounting base, a second mounting base fixedly connected to one end of the rotating block, support plates fixedly connected to the top sides of both the first and second mounting bases, pipe clamps provided at the top ends of both support plates, a sliding groove provided inside the second mounting base, a slider slidably connected to the inner wall of the sliding groove, a locking threaded rod fixedly connected to one side of the slider, a locking nut threadedly connected to the outer surface of the locking threaded rod, a first connecting rod fixedly connected to the top side of the slider, a fixed pull plate rotatably connected to the outer surface of the first connecting rod, a second connecting rod fixedly connected to the top side of the first mounting base and rotatably connected to the fixed pull plate, a limiting groove communicating with the sliding groove provided on one side of the second mounting base, and a height lifting structure fixedly connected to the bottom sides of both the first and second mounting bases.
[0007] Preferably, according to any of the above solutions, the height lifting structure includes a fixed base plate, hollow tubes, adjusting bolts, lifting rods, and adjusting holes. Two hollow tubes are fixedly connected to the top side of the fixed base plate. Adjusting bolts are threaded to one side of each of the two hollow tubes. Lifting rods are slidably connected inside each of the two hollow tubes. Several adjusting holes are provided on one side of each of the two lifting rods.
[0008] Preferably, in any of the above solutions, both the slider and the groove are T-shaped, and the slider and the groove are matched in size.
[0009] Preferably, in any of the above embodiments, the locking threaded rod passes through the inside of the limiting groove, the locking threaded rod is slidably connected to the limiting groove, and the maximum diameter of the locking threaded rod is adapted to the width of the limiting groove.
[0010] Preferably, in any of the above embodiments, the cross-sectional shape of the first connecting rod and the second connecting rod is T-shaped, the fixing plate is in contact with the top side of the first mounting base, and the fixing plate is in contact with the top side of the second mounting base.
[0011] Preferably, in any of the above solutions, the position of the adjusting bolt corresponds to that of the adjusting hole, and the size of the adjusting bolt is adapted to that of the adjusting hole.
[0012] Compared with the prior art, the advantages and beneficial effects of this utility model are as follows:
[0013] 1. Through the coordinated arrangement of the first mounting base, rotating block, second mounting base, support plate, pipe clamp, slide groove, slider, locking threaded rod, locking nut, first connecting rod, second connecting rod, and limiting groove, the angle between the first and second mounting bases can be adjusted to a suitable position according to the curvature of the water conservancy pipeline. This allows for the adjustment of the two pipe clamps to the appropriate position, enabling better support for both curved and straight water conservancy pipelines. This expands the applicability of the water conservancy pipeline support structure and improves its practicality and structural flexibility.
[0014] 2. By using a combination of a fixed base plate, hollow tube, adjusting bolts, lifting rod, and adjusting socket, the first and second mounting seats can be adjusted to a suitable height, thereby enabling support operations for water conservancy pipelines at greater heights and further improving the applicability of this water conservancy pipeline support structure. Attached Figure Description
[0015] Figure 1 This is a schematic diagram of the structure of this utility model;
[0016] Figure 2 This is a top view of the structure of this utility model;
[0017] Figure 3 This is a schematic diagram of the structure of this utility model without the height lifting structure assembled;
[0018] Figure 4 This is a structural schematic diagram of the fixed pull plate and its connecting components of this utility model.
[0019] In the diagram: 1-First mounting base, 2-Rotating block, 3-Second mounting base, 4-Support plate, 5-Pipe clamp, 6-Slide groove, 7-Slider, 8-Locking threaded rod, 9-Locking nut, 10-First connecting rod, 11-Fixed pull plate, 12-Second connecting rod, 13-Limiting groove, 14-Height lifting structure, 1401-Fixed base plate, 1402-Hollow tube, 1403-Adjusting bolt, 1404-Lifting rod, 1405-Adjusting socket. Detailed Implementation
[0020] The present invention will be further described below with reference to the accompanying drawings, but the scope of protection of the present invention is not limited to the following description.
[0021] like Figures 1 to 4As shown, a water conservancy pipeline support structure includes a first mounting base 1, with a rotating block 2 rotatably connected to one end of the first mounting base 1, and a second mounting base 3 fixedly connected to one end of the rotating block 2. The second mounting base 3 is adapted to the size of the first mounting base 1. Support plates 4 are fixedly connected to the top sides of both the first mounting base 1 and the second mounting base 3. Pipe clamps 5 are provided at the top of both support plates 4, which can fix the water conservancy pipeline. A sliding groove 6 is provided inside the second mounting base 3, and a slider 7 is slidably connected to the inner wall of the sliding groove 6. A locking threaded rod 8 is fixedly connected to one side of the slider 7, and a locking nut 9 is threadedly connected to the outer surface of the locking threaded rod 8. A first connecting rod 10 is fixedly connected to the top side of the slider 7, and a fixing pull plate 11 is rotatably connected to the outer surface of the first connecting rod 10. A second connecting rod 12 is fixedly connected to the top side of the first mounting base 1 and rotatably connected to the fixing pull plate 11. A limiting groove 13 communicating with the sliding groove 6 is provided on one side of the second mounting base 3. Both the bottom sides of the first and second mounting bases 1 and 3 are fixedly connected to a height lifting structure 14. When using this hydraulic pipeline support structure to support the hydraulic pipeline, if an arc-shaped hydraulic pipeline is encountered, the second mounting base 3 will drive the rotating block 2 to rotate. As the second mounting base 3 rotates, a support plate 4 will adjust a pipe clamp 5 to move. The angle between the second mounting base 3 and the first mounting base 1 will be adjusted to a suitable angle according to the actual situation. During the rotation of the second mounting base 3, the fixed pull plate 11 will rotate accordingly, and the slider 7 will move along the direction of the slide groove 6. When the second mounting base 3 rotates to a suitable angle, the slider 7 will move to a suitable position. Then, the locking nut 9 will be rotated to make it fit tightly with the second mounting base 3, fixing the slider 7 so that it no longer moves. At this time, the first mounting base 1 and the second mounting base 3 will be fixed at a suitable angle, and then the hydraulic pipeline will be supported and fixed by the pipe clamps 5 on the first and second mounting bases 1 and 3.
[0022] As an optional technical solution of this utility model, the height lifting structure 14 includes a fixed base plate 1401, a hollow tube 1402, an adjusting bolt 1403, a lifting rod 1404, and an adjusting socket 1405. Two hollow tubes 1402 are fixedly connected to the top side of the fixed base plate 1401. An adjusting bolt 1403 is threadedly connected to one side of each of the two hollow tubes 1402. A lifting rod 1404 is slidably connected inside each of the two hollow tubes 1402. Several adjusting sockets 1405 are opened on one side of each of the two lifting rods 1404. Before supporting the water conservancy pipeline, the lifting rod 1404 is moved out of the hollow tube 1402. At this time, the first mounting seat 1 and the second mounting seat 3 move accordingly. The first mounting seat 1 and the second mounting seat 3 are adjusted to a suitable height according to the height required to support and fix the water conservancy pipeline, and the adjusting bolt 1403 is connected to the adjusting socket 1405 in a suitable position, thereby fixing the first mounting seat 1 and the second mounting seat 3 at a suitable height.
[0023] As an optional technical solution of this utility model, both the slider 7 and the slide groove 6 are T-shaped. The slider 7 and the slide groove 6 are matched in size, which can ensure that the slider 7 can move smoothly along the direction of the slide groove 6 while avoiding the separation of the slider 7 and the slide groove 6.
[0024] As an optional technical solution of this utility model, the locking threaded rod 8 passes through the inside of the limiting groove 13, and the locking threaded rod 8 is slidably connected to the limiting groove 13. The maximum diameter of the locking threaded rod 8 is adapted to the width of the limiting groove 13, so that the locking threaded rod 8 can move smoothly along the direction of the limiting groove 13.
[0025] As an optional technical solution of this utility model, the cross-sectional shape of the first connecting rod 10 and the second connecting rod 12 is T-shaped, which can ensure that the fixed pull plate 11 can rotate smoothly while avoiding separation between the fixed pull plate 11 and the first connecting rod 10 and the second connecting rod 12. The fixed pull plate 11 is in contact with the top side of the first mounting base 1 and the fixed pull plate 11 is in contact with the top side of the second mounting base 3.
[0026] As an optional technical solution of this utility model, the position of the adjusting bolt 1403 corresponds to that of the adjusting hole 1405, and the size of the adjusting bolt 1403 and the adjusting hole 1405 are adapted to each other, so that the adjusting bolt 1403 can be smoothly connected to the adjusting hole 1405.
[0027] A hydraulic pipeline support structure, the working principle of which supports an arc-shaped hydraulic pipeline is as follows:
[0028] 1) Move the lifting rod 1404 out of the hollow tube 1402. At this time, the first mounting seat 1 and the second mounting seat 3 move accordingly. Adjust the first mounting seat 1 and the second mounting seat 3 to a suitable height according to the height required for the water conservancy pipeline to be fixed.
[0029] 2) Connect the adjusting bolt 1403 to the adjusting hole 1405 in the appropriate position, and fix the first mounting base 1 and the second mounting base 3 at the appropriate height;
[0030] 3) The second mounting base 3 drives the rotating block 2 to rotate. As the second mounting base 3 rotates, a support plate 4 will adjust a pipe clamp 5 to move. Adjust the angle between the second mounting base 3 and the first mounting base 1 to a suitable angle according to the actual situation during use. During the rotation of the second mounting base 3, the fixed pull plate 11 rotates accordingly, and the slider 7 will move along the direction of the slide groove 6. When the second mounting base 3 rotates to a suitable angle, the slider 7 moves to a suitable position.
[0031] 4) Rotate the locking nut 9 to make it fit tightly against the second mounting base 3, thus fixing the slider 7 and fixing the first mounting base 1 and the second mounting base 3 at a suitable angle;
[0032] 5) The water pipeline is supported and fixed by the pipe clamps 5 on the first mounting base 1 and the second mounting base 3.
[0033] In summary, this water pipeline support structure, through the coordinated arrangement of the first mounting base 1, rotating block 2, second mounting base 3, support plate 4, pipe clamp 5, sliding groove 6, slider 7, locking threaded rod 8, locking nut 9, first connecting rod 10, second connecting rod 12, and limiting groove 13, can adjust the angle between the first mounting base 1 and the second mounting base 3 to a suitable angle according to the curvature of the water pipeline. This allows for the adjustment of the two pipe clamps 5 to appropriate positions, enabling better support for both curved and straight water pipelines. This expands the applicability of the water pipeline support structure and improves its practicality and structural flexibility. Furthermore, through the coordinated arrangement of the fixed base plate 1401, hollow tube 1402, adjusting bolt 1403, lifting rod 1404, and adjusting socket 1405, the first mounting base 1 and the second mounting base 3 can be adjusted to suitable heights, enabling support operations for water pipelines of greater height and further enhancing the applicability of the water pipeline support structure.
Claims
1. A water pipeline support structure, characterized by: The utility model provides a height lifting structure, including first mounting seat (1), one end of first mounting seat (1) rotatory connection has rotary block (2), one end of rotary block (2) fixedly connected with second mounting seat (3), and the top of first mounting seat (1) and second mounting seat (3) is fixedly connected with support plate (4), and the top of two support plate (4) is provided with pipe clamp (5), and the inside of second mounting seat (3) is provided with sliding slot (6), and the inner wall of sliding slot (6) is slidably connected with sliding block (7), and one side of sliding block (7) is fixedly connected with locking screw rod (8), and the outer surface of locking screw rod (8) is threadedly connected with locking nut (9), and the top of sliding block (7) is fixedly connected with first connecting rod (10), and the outer surface of first connecting rod (10) is rotatably connected with fixed pull plate (11), and the top of first mounting seat (1) is fixedly connected with the second connecting rod (12) of fixed pull plate (11) rotatory connection, and one side of second mounting seat (3) is provided with the limiting slot (13) of second mounting seat (3) is connected with sliding slot (6), and the bottom of first mounting seat (1) and second mounting seat (3) is fixedly connected with height lifting structure (14).
2. A hydraulic pipeline support structure according to claim 1, wherein: The height lifting structure (14) includes a fixed bottom plate (1401), a hollow tube (1402), an adjusting bolt (1403), a lifting rod (1404), and an adjusting jack (1405). The top of the fixed bottom plate (1401) is fixedly connected with two hollow tubes (1402). One side of each of the two hollow tubes (1402) is threadedly connected with an adjusting bolt (1403). The inside of each of the two hollow tubes (1402) is slidably connected with a lifting rod (1404). One side of each of the two lifting rods (1404) is provided with a plurality of adjusting jacks (1405).
3. A hydraulic pipeline support structure according to claim 2, wherein: The sliding block (7) and the sliding slot (6) are both T-shaped. The size of the sliding block (7) is suitable for the sliding slot (6).
4. A hydraulic pipeline support structure according to claim 3, wherein: The locking screw rod (8) passes through the inside of the limiting slot (13). The locking screw rod (8) is slidably connected with the limiting slot (13). The maximum diameter of the locking screw rod (8) is suitable for the width of the limiting slot (13).
5. A hydraulic pipeline support structure according to claim 4, wherein: The first connecting rod (10) and the second connecting rod (12) are both T-shaped in cross-section. The fixed pull plate (11) is attached to the top of the first mounting seat (1). The fixed pull plate (11) is attached to the top of the second mounting seat (3).
6. A hydraulic pipeline support structure according to claim 5, wherein: The adjusting bolt (1403) corresponds to the position of the adjusting jack (1405). The size of the adjusting bolt (1403) is suitable for the adjusting jack (1405).