Positioning support for water supply and drainage pipeline

By using a multi-point anchoring design and a gear-meshing positioning bracket, the problem of water supply and drainage pipes swaying under dynamic fluid impact is solved, achieving stable support and flexible installation, suitable for complex terrain.

CN224003293UActive Publication Date: 2026-03-17HEILONGJIANG XINHUI ENGINEERING DESIGN CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-05-18
Publication Date
2026-03-17

AI Technical Summary

Technical Problem

Existing water supply and drainage pipe supports are prone to swaying under dynamic fluid impact, affecting support stability, and are difficult to adjust in real time according to the on-site pipe layout and terrain differences, resulting in low installation efficiency.

Method used

The positioning bracket design adopts multi-point anchoring, combined with gear meshing and positive and negative thread positioning. The support angle and shape can be adjusted by rotating the knob. The sawtooth embedding interface is used to enhance frictional resistance, forming a spatial truss-type anchoring system to achieve three-dimensional force balance.

Benefits of technology

It effectively resists multi-directional vibration of pipelines, improves support stability, reduces the impact of measurement errors, and improves installation efficiency and flexibility, making it suitable for uneven foundation pit scenarios.

✦ Generated by Eureka AI based on patent content.

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Abstract

A positioning support for a water supply and drainage pipeline comprises a fixing buckle plate, a rotating sleeve, a positioning supporting rod, a movable plate, a fixing support, a linkage supporting plate, a reinforcing bottom plate and a supporting vertical rod, a fixing supporting block is arranged on the upper portion of the fixing support and connected with a lower anti-skid pad, the lower anti-skid pad is connected with the water supply and drainage pipeline, the water supply and drainage pipeline is connected with an upper anti-skid pad, and the upper anti-skid pad is connected with the fixing buckle plate. The fixing buckle plate is connected with the fixing supporting block, upper connecting plates are arranged on the two sides of the fixing buckle plate, lower connecting plates are arranged on the two sides of the fixing supporting block, the upper connecting plates are connected with the lower connecting plates, the upper connecting plates are provided with protruding rod penetrating holes, the lower connecting plates are provided with fastening protruding rods, the fastening protruding rods are matched with the protruding rod penetrating holes, and the fastening protruding rods penetrate through the protruding rod penetrating holes. The lower portion of the fixing support is provided with a supporting vertical sleeve, the supporting vertical sleeve is connected with a supporting vertical rod, the supporting vertical rod is provided with a fixing penetrating hole, the supporting vertical sleeve is provided with a plurality of positioning penetrating holes, and the positioning penetrating holes and the fixing penetrating hole are matched with the fixing screw rod.
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Description

Technical Field

[0001] This utility model relates to the field of water supply and drainage, and in particular to a positioning bracket for water supply and drainage pipelines. Background Technology

[0002] An existing patent (publication number: CN215908547U) proposes a pipe positioning bracket for water supply and drainage engineering, including a connecting rod. Both sides of the bottom of the connecting rod are fixedly connected to a sleeve. The front and rear sides of the bottom of the sleeve are respectively provided with a first arc-shaped block and a second arc-shaped block. A fixing rod is fixedly connected between the opposite sides of the two first arc-shaped blocks and between the opposite sides of the two second arc-shaped blocks. A limiting groove is opened on the top of the first arc-shaped block and the second arc-shaped block. A limiting rod that cooperates with the limiting groove is fixedly connected to the front and rear sides of the bottom of the sleeve. However, after this device is fastened and fixed to the outside of the pipe, it lacks a positioning mechanism between the device and the foundation pit. It is easily disturbed by factors such as the impact of fluid inside the pipe, which can easily cause the pipe to shake, affecting the stability of the pipe support, and has drawbacks. Summary of the Invention

[0003] This utility model addresses the aforementioned shortcomings of existing technologies by providing a positioning bracket for water supply and drainage pipelines. This bracket offers stable support and, in conjunction with multi-point anchoring, effectively resists multi-directional vibrations of water supply and drainage pipelines under dynamic fluid impact. It improves the positioning stability of the pipelines while allowing for real-time adjustment of the support height based on site pipeline layout and terrain differences. This reduces the impact of initial measurement errors on installation progress, thereby enhancing the construction efficiency and installation flexibility of water supply and drainage pipeline positioning support.

[0004] The objective of this utility model is achieved through the following technical solution:

[0005] A positioning bracket for water supply and drainage pipes includes a fixed buckle plate, a rotating sleeve, a positioning support rod, a movable plate, a fixed bracket, a connecting support plate, a reinforcing base plate, and a supporting upright. The fixed bracket has a fixed support block at its upper part, which connects to a lower anti-slip pad. The lower anti-slip pad connects to the water supply and drainage pipe, which in turn connects to an upper anti-slip pad. The upper anti-slip pad connects to the fixed buckle plate, which in turn connects to the fixed support block. The fixed buckle plate has upper connecting plates on both sides, and the fixed support block has lower connecting plates on both sides. The upper connecting plates connect to the lower connecting plates. The upper connecting plates have through holes for protruding rods, and the lower connecting plates have fastening protruding rods. The fastening protrusion is adapted to the protrusion through the protrusion hole, and the fastening protrusion is connected to the fastening nut by a thread. The lower part of the fixed bracket has a support sleeve, which is connected to the support rod. The support rod has a fixing hole, and the support sleeve has multiple positioning holes. The positioning holes and fixing holes are adapted to the fixing screw, and the fixing screw passes through the positioning holes and fixing holes in sequence. The two ends of the fixing screw are connected to the fixing nuts by threads. The lower part of the support rod has a fixed base plate, which is connected to the base body. The fixed base plate has multiple spikes, which are inserted into the base body.

[0006] The fixed bracket of this utility model is connected to the base on both sides. The fixed bracket has a placement groove in the middle, which is adapted to the rotating sleeve. The placement groove is connected to the rotating sleeve. The rotating sleeve has a driven gear on the outside. The driven gear meshes with the driving gear and is connected to the driving gear. The driving gear is attached to the inner side of the cover plate. The outer side of the cover plate is attached to the knob. The knob has a driving rod that passes through the cover plate and is connected to the driving gear. The cover plate is connected to the fixed bracket.

[0007] The rotating sleeve of this utility model is internally connected to a positioning support rod by screws. The positioning support rod passes through the fixed bracket, the movable plate, and the rotating sleeve in sequence. The two ends of the positioning support rod are connected to the movable plate by threads. The movable plate fits against the fixed bracket. The movable plate is connected to the linkage support plate by an inner shaft rod. The inner shaft rod is connected to the movable plate and the linkage support plate in sequence. Beneficial effects

[0008] This invention utilizes gear meshing and the positive and negative thread positioning between the positioning support rod and the movable plate. This allows for changes in the support angle and positioning shape between the two side linkage support plates and the reinforced base plate simply by rotating a knob. When the reinforced base plate is in contact with the substrate, the serrations on the surface of the reinforced base plate interlock with the soil to form a cross-interlocking interface. This increases the frictional resistance between the contact surfaces of the fixed support and the inner wall of the substrate, suppresses the relative slippage between the fixed support and the foundation, and improves the positioning stability of the fixed support. Furthermore, the fixed support, combined with the support pole and the bottom spike, forms a spatial truss-type anchoring system, which can achieve three-dimensional force balance between the support and the foundation pit. This effectively resists the multi-directional vibration of the water supply and drainage pipeline under dynamic fluid impact and improves the positioning stability of the water supply and drainage pipeline.

[0009] This utility model features a support sleeve that is sleeved with a support pole and positioned using a fixing screw and a fixing nut. This allows for rapid adjustment of the support height of water supply and drainage pipelines, enabling real-time adjustment based on the pipeline layout and terrain differences on site. This reduces the impact of preliminary measurement errors on the installation progress and is particularly suitable for complex scenarios with uneven foundation pit bottoms. It improves the construction efficiency and installation flexibility of water supply and drainage pipeline positioning support while ensuring the levelness of the pipelines, evenly distributing the stress on the pipelines, and avoiding deformation or subsidence caused by local pressure concentration.

[0010] This utility model provides stable support and, in conjunction with multi-point anchoring, effectively resists the multi-directional vibration of water supply and drainage pipelines under dynamic fluid impact. It improves the positioning stability of water supply and drainage pipelines and allows for real-time adjustment of the support height based on the pipeline layout and terrain differences on site. This reduces the impact of early measurement errors on the installation progress and improves the construction efficiency and installation flexibility of water supply and drainage pipeline positioning support. Attached Figure Description

[0011] Figure 1This is a schematic diagram of the positioning bracket structure for water supply and drainage pipelines described in this utility model.

[0012] Figure 2 This is an exploded view of the positioning bracket structure for water supply and drainage pipelines described in this utility model.

[0013] Figure 3 This is a schematic diagram of the movable plate driving structure described in this utility model.

[0014] Figure 4 This is a cross-sectional view of the positioning bracket structure for water supply and drainage pipelines described in this utility model.

[0015] Figure 5 This is a schematic diagram of the fixed support structure described in this utility model. Detailed Implementation

[0016] The present invention will be further described in detail below with reference to the accompanying drawings and embodiments:

[0017] Example 1:

[0018] A positioning bracket for water supply and drainage pipes includes a fixed buckle plate 03, a rotating sleeve 14, a positioning support rod 15, a movable plate 16, a fixed bracket 17, a connecting support plate 21, a reinforcing base plate 22, and a supporting upright 28. The fixed bracket 17 has a fixed support block 02 on its upper part. The fixed support block 02 is connected to a lower anti-slip pad 10, which is connected to a water supply and drainage pipe 11. The water supply and drainage pipe 11 is connected to an upper anti-slip pad 09, which is connected to the fixed buckle plate 03. The fixed buckle plate 03 is connected to the fixed support block 02. The plate 03 has upper connecting plates 07 on both sides, and the fixed support block 02 has lower connecting plates 08 on both sides. The upper connecting plates 07 are connected to the lower connecting plates 08. The upper connecting plates 07 have through holes 06 for protruding rods, and the lower connecting plates 08 have fastening protruding rods 04. The fastening protruding rods 04 are adapted to the through holes 06 and pass through the through holes 06. The fastening protruding rods 04 are connected to fastening nuts 05 by threads. The fixed bracket 17 has a supporting sleeve 29 at the bottom, which is connected to a supporting rod 28. The support sleeve 29 has multiple positioning holes 32, which are adapted to the fixing screws 34. The fixing screws 34 pass through the positioning holes 32 and the fixing holes 33 in sequence. The two ends of the fixing screws 34 are connected to the fixing nuts 35 by threads. The lower part of the support pole 28 has a fixing base plate 30, which is connected to the base 01. The fixing base plate 30 has multiple spikes 31, which are inserted into the base 01. The support sleeve 29 is sleeved with the support pole 28 and positioned by the fixing screws 34 and fixing nuts 35. This allows for rapid adjustment of the support height of the water supply and drainage pipe 11, which can be adjusted in real time according to the pipeline layout and terrain differences on site. This reduces the impact of early measurement errors on the installation progress. It is especially suitable for complex scenarios with uneven foundation pit bottoms. This improves the construction efficiency and installation flexibility of the positioning support of the water supply and drainage pipe 11, while ensuring the levelness of the water supply and drainage pipe 11, evenly distributing the force on the pipe, and avoiding deformation or subsidence caused by local pressure concentration.

[0019] Example 2:

[0020] The fixed bracket 17 of this utility model is connected to the base 01 on both sides. The fixed bracket 17 has a placement groove 24 in the middle, which is adapted to the rotating sleeve 14. The placement groove 24 is connected to the rotating sleeve 14. The rotating sleeve 14 has a driven gear 13 on its outside, which meshes with the driving gear 12. The driven gear 13 is connected to the driving gear 12. The driving gear 12 is attached to the inner side of the cover plate 25, and the outer side of the cover plate 25 is attached to the knob 27. The knob 27 has a driving rod 26, which passes through the cover plate 25 and is connected to the driving gear 12. The cover plate 25 is connected to the fixed bracket 17. Through the meshing and linkage between the gears and the positive and negative threads between the positioning support rod 15 and the movable plate 16, the knob 27 can be rotated to achieve the desired effect. The driving changes the support angle and positioning of the two-sided linkage support plate 21 and the reinforced base plate 22. When the reinforced base plate 22 is in contact with the base 01, the serrations 23 on the surface of the reinforced base plate 22 form a cross-entrapment interface by biting the soil. This can increase the frictional resistance of the contact surface between the two sides of the fixed support 17 and the inner wall of the base 01, suppress the relative slippage between the fixed support 17 and the foundation, and improve the positioning of the fixed support 17. At the same time, the fixed support 17, together with the support pole 28 and the bottom spike 31, forms a spatial truss anchoring system, which can realize the three-dimensional force system balance between the support and the foundation pit, effectively resist the multi-directional vibration of the water supply and drainage pipeline 11 under dynamic fluid impact, and improve the positioning of the water supply and drainage pipeline 11.

[0021] Example 3:

[0022] The rotating sleeve 14 of this utility model is internally connected to a positioning support rod 15 by screws. The positioning support rod 15 passes through the fixed bracket 17, the movable plate 16 and the rotating sleeve 14 in sequence. The two ends of the positioning support rod 15 are connected to the movable plate 16 by threads. The movable plate 16 fits against the fixed bracket 17. The movable plate 16 is connected to the linkage support plate 21 by an inner shaft rod 18. The inner shaft rod 18 is connected to the movable plate 16 and the linkage support plate 21 in sequence.

[0023] Example 4:

[0024] The linkage support plate 21 of this utility model is connected to the reinforcing base plate 22 via the central shaft 19. The central shaft 19 is sequentially connected to the linkage support plate 21 and the reinforcing base plate 22. The reinforcing base plate 22 is connected to the fixing bracket 17 via the outer shaft 20. The outer shaft 20 is sequentially connected to the fixing bracket 17 and the reinforcing base plate 22. The reinforcing base plate 22 is connected to the base 01. The reinforcing base plate 22 has serrations 23, which are connected to the base 01. This device provides stable support and, in conjunction with multi-point anchoring, effectively resists the multi-directional vibration of the water supply and drainage pipeline 11 under dynamic fluid impact. It improves the positioning stability of the water supply and drainage pipeline 11 and allows for real-time adjustment of the support height of the water supply and drainage pipeline 11 according to the on-site pipeline layout and terrain differences. This reduces the impact of early measurement errors on the installation progress and improves the construction efficiency and installation flexibility of the positioning support of the water supply and drainage pipeline 11.

[0025] Example 5:

[0026] Installation steps: First, assemble the drive structure of the movable plate 16. First, place the rotating sleeve 14 into the placement slot 24, then place the movable plate 16 into the fixed bracket 17, with the outer surface of the movable plate 16 fitting against the fixed bracket 17. Then, pass the positioning rod 15 through the fixed bracket 17, the movable plate 16, and the rotating sleeve 14 in sequence, and fix it to the rotating sleeve 14 with screws. The two ends of the positioning rod 15 are respectively positioned and connected to the movable plates 16 on both sides through positive and negative threads. Then, place the drive gear 12 and the knob 27 on the inner and outer sides of the cover plate 25, respectively, and the drive rod 26 passes through the cover plate 25 and is fixedly connected to the drive gear 12. The inner surface of the knob 27 fits against the outer surface of the cover plate 25. Then, install and fix the cover plate 25 to the outside of the fixed bracket 17, and the drive gear 12 and the knob 27 are fixed to the outer surface of the cover plate 25. The driven gears 13 are meshed together, and one end of the connecting support plate 21 is connected to the movable plate 16 through the inner shaft 18. The other end of the connecting support plate 21 is connected to the reinforced base plate 22 through the central shaft 19. Finally, the reinforced base plate 22 is connected to the fixed bracket 17 through the outer shaft 20. After the movable plate 16 drive structure is assembled, the fixed base plate 30 is placed under the fixed bracket 17, and the support sleeve 29 is fitted over the support rod 28. The fixed screw 34 passes through the positioning hole 32 and the fixing hole 33 in sequence for positioning connection. Finally, the fixed buckle plate 03 is placed on the fixed support block 02, and the upper connecting plate 07 is connected to the lower connecting plate 08. The fastening protrusion 04 passes through the protrusion hole 06 and is fixedly connected to the fastening nut 05 through the thread, thus completing the installation.

[0027] The above description is only a preferred embodiment of the present utility model and is not intended to limit the present utility model. It should be noted that for those skilled in the art, several improvements and modifications can be made without departing from the technical principles of the present utility model, and these improvements and modifications should also be considered within the protection scope of the present utility model.

Claims

1. A positioning support for a water supply and sewerage pipe, characterized by : Including fixed buckle plate (03), rotating sleeve (14), positioning support rod (15), movable plate (16), fixed support (17), linkage support plate (21), reinforcing bottom plate (22), support vertical rod (28), the upper part of fixed support (17) has fixed toker block (02), fixed toker block (02) is connected with lower antiskid pad (10), lower antiskid pad (10) is connected with water supply and drainage pipeline (11), water supply and drainage pipeline (11) is connected with upper antiskid pad (09), upper antiskid pad (09) is connected with fixed buckle plate (03), fixed buckle plate (03) is connected with fixed toker block (02), the both sides of fixed buckle plate (03) have upper connecting plate (07), the both sides of fixed toker block (02) have lower connecting plate (08), upper connecting plate (07) is connected with lower connecting plate (08), upper connecting plate (07) has protruding rod through hole (06), lower connecting plate (08) has fastening protruding rod (04), fastening protruding rod (04) is adapted to protruding rod through hole (06), fastening protruding rod (04) passes through protruding rod through hole (06), fastening protruding rod (04) is connected with fastening nut (05) by screw thread, the lower part of fixed support (17) has support vertical sleeve (29), support vertical sleeve (29) is connected with support vertical rod (28), support vertical rod (28) has fixed through hole (33), support vertical sleeve (29) has multiple positioning through holes (32), positioning through hole (32), fixed through hole (33) are adapted to fixed screw rod (34), fixed screw rod (34) passes through positioning through hole (32) and fixed through hole (33) in turn, the both ends of fixed screw rod (34) are connected with fixed nut (35) by screw thread, the lower part of support vertical rod (28) has fixed bottom plate (30), fixed bottom plate (30) is connected with base body (01), fixed bottom plate (30) has multiple prongs (31), prong (31) is inserted into base body (01).

2. The positioning support for a water supply and sewer pipe according to claim 1, characterized in that The both sides of fixed support (17) are connected with base body (01), the middle part of fixed support (17) has placing groove (24), placing groove (24) is adapted to rotating sleeve (14), placing groove (24) is connected with rotating sleeve (14), the outside of rotating sleeve (14) has driven gear (13), driven gear (13) is engaged with driving gear (12), driven gear (13) is connected with driving gear (12), driving gear (12) is attached to the inner side of cover plate (25), the outer side of cover plate (25) is attached to knob (27), knob (27) has driving rod (26), driving rod (26) passes through cover plate (25), driving rod (26) is connected with driving gear (12), cover plate (25) is connected with fixed support (17).

3. The positioning support for a water supply and sewer pipe according to claim 2, characterized in that The inside of rotating sleeve (14) is connected with positioning support rod (15) by screw, positioning support rod (15) passes through fixed support (17), movable plate (16) and rotating sleeve (14) in turn, the both ends of positioning support rod (15) are connected with movable plate (16) by screw thread, movable plate (16) is attached to fixed support (17), movable plate (16) is connected with linkage support plate (21) by inner shaft rod (18), inner shaft rod (18) is connected with movable plate (16) and linkage support plate (21) in turn.

4. The positioning bracket for a water supply and sewer pipe according to claim 1, wherein The linkage support plate (21) is connected with the reinforced bottom plate (22) through the middle shaft rod (19), the middle shaft rod (19) is connected with the linkage support plate (21) and the reinforced bottom plate (22) in sequence, the reinforced bottom plate (22) is connected with the fixed support (17) through the outer shaft rod (20), the outer shaft rod (20) is connected with the fixed support (17) and the reinforced bottom plate (22) in sequence, the reinforced bottom plate (22) is connected with the base body (01), and the reinforced bottom plate (22) is provided with the sawtooth (23), and the sawtooth (23) is connected with the base body (01).

Citation Information

Patent Citations

  • Pipeline positioning support for water supply and drainage engineering

    CN215908547U