Pipeline butt joint supporting frame for water conservancy project
By using the support legs and threaded rod structure of the pipeline connection support frame for water conservancy projects, the problem of uneven installation during pipeline connection is solved, enabling fast and multifunctional pipeline connection and simplifying the operation process.
Patent Information
- Application Number
- CN202520514759.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-24
- Publication Date
- 2026-02-27
- Estimated Expiration
- 2035-03-24
AI Technical Summary
In existing water conservancy and hydropower projects, uneven installation is encountered when connecting pipelines, which leads to cumbersome operation and limited functionality of the connection devices, making it difficult to achieve neat pipeline connections.
A pipe docking support frame for hydraulic engineering is adopted. Through the combination of multiple support legs, bidirectional screw rods, limit blocks and sliders, centering and height adjustment are achieved. With the help of springs and telescopic rods, a reset function is provided to adapt to the positioning and docking of pipes of different sizes.
It enables rapid and multifunctional pipe connection in uneven installation areas, simplifies the operation process, and improves the convenience and adaptability of pipe connections.
Smart Images

Figure CN223947890U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to water conservancy engineering technical field especially, relates to a water conservancy engineering pipeline butt joint support frame. BACKGROUND
[0002] Water resources and hydropower engineering mainly studies the basic knowledge and skills of water resources, hydraulic structure, hydraulics and fluid dynamics, water conservancy engineering technology, carries out the survey, planning, design, construction, management etc.
[0003] But in the prior art, water conservancy and hydropower pipeline has certain length, when connecting between two pipelines, needs to align the interface to each other and is close, passes through the connecting device and fixes, but part pipeline connecting device when using, if meet uneven installation, prone to pipeline cannot butt joint neatly, therefore needs to carry out the leveling work to the installation area, therefore operation is more cumbersome, simultaneously part connecting device function is single, needs to be solved. UTILITY MODEL CONTENT
[0004] The utility model discloses a water conservancy engineering pipeline butt joint support frame, which can solve the problem of uneven installation of part pipeline connecting device when using, and can realize pipeline butt joint neatly.
[0005] In order to realize the above-mentioned purpose, the utility model adopts the following technical scheme: a water conservancy engineering pipeline butt joint support frame, which comprises: a mounting frame; a slot opening on the surface of the mounting frame; further comprising:
[0006] A plurality of supporting legs are arranged at the four corners of the side surface of the mounting frame, a plurality of limit grooves are formed in the inner walls of the supporting legs, and anti-skid feet are movably arranged in the interiors of the supporting legs;
[0007] A plurality of bidirectional lead screws are movably arranged in the interiors of the supporting legs, limit blocks are threadedly sleeved on the surfaces of the symmetrical parts of the bidirectional lead screws, connecting rods are movably arranged in the inner walls of the limit blocks, connecting blocks are movably sleeved on one end of the connecting rods, one end of the connecting blocks is arranged on the surface of the anti-skid feet, springs are arranged at the symmetrical parts of the inner walls of the slot, one end of the springs is provided with a moving seat, a trapezoidal block is arranged on the side surface of the mounting frame close to the moving seat, a mounting groove is formed in the surface of the moving seat away from the trapezoidal block, a sliding groove is formed in the inner wall of the slot, a bidirectional lead screw is movably arranged in the interior of the sliding groove, and moving inclined blocks are threadedly sleeved on the surfaces of the symmetrical parts of the bidirectional lead screw.
[0008] Preferably, two said moving inclined blocks are connected on the surface of the trapezoidal block, and the inner sliding of the symmetrical part of the mounting groove is embedded with a sliding block.
[0009] The technical effect of the above further scheme is that when the moving inclined block moves, the moving seat connected with the surface of the trapezoidal block adjusts the height along the inner part of the slot, and the mounting groove provides limiting work for the sliding block.
[0010] Preferably, the surface of the two said sliding blocks is provided with a threaded hole, and a plurality of said threaded holes are internally threaded with a bolt one.
[0011] The technical effect of the above further scheme is that the bolt one is embedded in the threaded hole on the surface of the sliding block, which facilitates installation.
[0012] Preferably, one side surface of a plurality of said bolts one is movably connected to the surface of the moving seat, and the surface of the two said sliding blocks is provided with a bearing block.
[0013] The technical effect of the above further scheme is that when the surface of the bolt one installation part contacts the moving seat, the sliding block is positioned, and the sliding block provides support work for the bearing block.
[0014] Preferably, the surface of the two said bearing blocks is provided with a placing opening, and the symmetrical part of the inner wall of one side of the two said placing openings is provided with an extension rod.
[0015] The technical effect of the above further scheme is that the extension rod is fixed by the placing opening on the surface of the bearing block.
[0016] Preferably, one end of the two groups of said extension rods is provided with a positioning block, and the side surface of the two said positioning blocks is connected to the inner wall of the placing opening through a spring two.
[0017] The technical effect of the above further scheme is that the positioning block is reset by the extension rod and the spring two.
[0018] Preferably, the inner part of the two said bearing blocks is internally threaded with a bolt two, and one end of the two said bolts two is movably connected to the surface of the positioning block.
[0019] The technical effect of the above further scheme is that when the bolt two in the bearing block is rotated, the bolt two contacts the positioning block, so that the positioning block moves downward and positions the pipes of different sizes in the inner part of the placing opening.
[0020] Compared with the prior art, the advantages and positive effects of the utility model lie in that,
[0021] 1. In this utility model, when the bidirectional lead screw inside the rotating support leg is rotated, it drives the limiting block to move along the inside of the limiting groove for centering. With the help of the connecting rod, it tilts and moves. The connecting block on one end is installed on the surface of the anti-slip foot, which drives the anti-slip foot to adjust its height along the inside of the support leg. Moreover, multiple structures move independently and can be adjusted individually, which is convenient for leveling when the installation area is not stable, and enables the rapid installation of pipelines.
[0022] 2. In this utility model, by embedding one end of two pipes inside the placement opening, rotating bolt two causes the positioning block connected at one end to move downwards, which, together with the telescopic rod and spring two, provides a reset function, enabling positioning of pipes of different sizes. At the same time, rotating bolt one out of the threaded hole allows the slider to move as a whole, and positioning is completed by bolt one, facilitating docking. Simultaneously, rotating the bidirectional screw two inside the slide groove drives the moving inclined block on the outer surface to move, causing the connected trapezoidal block to move the moving seat along the inside of the groove to adjust its position and height, which, together with spring one, provides a reset function, making the overall equipment multifunctional. Attached Figure Description
[0023] Figure 1 This utility model provides a partially unfolded structural diagram of a pipe docking support frame for water conservancy projects;
[0024] Figure 2 This utility model provides a cross-sectional structural schematic diagram of a pipe connection support frame for water conservancy projects;
[0025] Figure 3 This utility model provides a partial cross-sectional structural diagram of a pipe connection support frame for water conservancy projects;
[0026] Figure 4 This utility model proposes a pipe connection support frame for water conservancy projects. Figure 1 Enlarged structural diagram at point A in the middle.
[0027] Legend:
[0028] 1. Mounting bracket; 101. Support leg; 1011. Limiting groove; 1012. Anti-slip foot; 1013. Double-acting screw one; 1014. Limiting block; 1015. Connecting rod; 1016. Connecting block; 102. Groove; 1021. Slide groove; 1022. Double-acting screw two; 1023. Moving inclined block; 1024. Spring one; 1025. Moving seat; 1026. Trapezoidal block; 1027. Mounting groove; 103. Slider; 1031. Threaded hole; 1032. Load-bearing block; 1033. Placement opening; 1034. Telescopic rod; 1035. Spring two; 1036. Positioning block; 1037. Bolt two; 104. Bolt one. Detailed Implementation
[0029] To better understand the above-mentioned objectives, features, and advantages of this utility model, the present utility model will be further described below with reference to the accompanying drawings and embodiments. It should be noted that, unless otherwise specified, the embodiments and features described in these embodiments can be combined with each other.
[0030] Many specific details are set forth in the following description in order to provide a full understanding of the present invention. However, the present invention may also be implemented in other ways different from those described herein. Therefore, the present invention is not limited to the specific embodiments disclosed in the following specification.
[0031] Example 1, such as Figures 1-4 As shown, this utility model provides a pipe connection support frame for water conservancy projects, including: a mounting frame 1; a groove 102 formed on the surface of the mounting frame 1; and multiple support legs 101, located at the four corners of one side surface of the mounting frame 1, with limiting grooves 1011 formed on the inner walls of the multiple support legs 101, and anti-slip feet 1012 movably embedded inside the multiple support legs 101; multiple bidirectional threaded rods 1013, movably disposed inside the multiple support legs 101, with limiting blocks 1014 threaded on the symmetrical surfaces of the multiple bidirectional threaded rods 1013, and connecting rods 1015 movably disposed on the inner walls of the multiple limiting blocks 1014, and connecting rods 1015... One end is movably fitted with a connecting block 1016. One end of multiple connecting blocks 1016 is set on the surface of the anti-slip foot 1012. A spring 1024 is symmetrically arranged on the inner wall of one side of the slot 102. A movable seat 1025 is set at one end of two springs 1024. A trapezoidal block 1026 is set on the surface of the movable seat 1025 near the mounting bracket 1. An installation groove 1027 is opened on the surface of the movable seat 1025 away from the trapezoidal block 1026. A sliding groove 1021 is opened on the inner wall of the slot 102. A two-way screw rod 1022 is movably arranged inside the sliding groove 1021. A movable inclined block 1023 is threaded on the surface of the two-way screw rod 1022 symmetrically.
[0032] In this embodiment, when the bidirectional lead screw 1013 inside the rotating support leg 101 is rotated, the limiting block 1014 moves along the inside of the limiting groove 1011 for centering, and tilts with the help of the connecting rod 1015. It is installed on the surface of the anti-slip foot 1012 with the connecting block 1016 on one end surface, which drives the anti-slip foot 1012 to adjust its height along the inside of the support leg 101. Multiple structures can move independently and be adjusted individually, which is convenient for leveling when the installation area is not stable, and allows for quick installation of the pipeline.
[0033] The embodiment 2, two mobile inclined blocks 1023 slidingly connect on the surface of the trapezoidal blocks 1026, the internal sliding of the symmetrical installation slot 1027 is embedded with the sliding block 103, the surface of the two sliding blocks 103 is provided with the threaded hole 1031, the internal thread of the plurality of threaded holes 1031 is embedded with the bolt one 104, one side surface of the plurality of bolt one 104 is movably connected on the surface of the moving seat 1025, the surface of the two sliding blocks 103 is provided with the bearing block 1032, the surface of the two bearing blocks 1032 is provided with the placing opening 1033, the symmetrical position of the inner wall of the two placing openings 1033 is provided with the telescopic rod 1034, one end of the two groups of telescopic rods 1034 is provided with the positioning block 1036, the one side surface of the two positioning blocks 1036 is connected on the inner wall of the placing opening 1033 through the spring two 1035, the internal thread of the two bearing blocks 1032 is embedded with the bolt two 1037, one end of the two bolt two 1037 is movably connected on the surface of the positioning block 1036.
[0034] In the embodiment, by embedding one end of the two pipes in the internal of the placing opening 1033, rotating the bolt two 1037, the positioning block 1036 connected with one end moves downward, the telescopic rod 1034 and the spring two 1035 cooperate to provide the reset work, the positioning work is carried out on the pipes with different sizes, at the same time, the bolt one 104 is rotated and separated from the internal of the threaded hole 1031, the sliding block 103 is moved in position, and the positioning is completed through the bolt one 104, which is convenient for the butt joint work, at the same time, rotating the bidirectional screw rod two 1022 in the sliding slot 1021 drives the outer surface of the mobile inclined block 1023 to move, the trapezoidal block 1026 connected with the mobile inclined block 1023 drives the moving seat 1025 to adjust the position height along the internal of the slot 102, and the reset is provided by the spring one 1024, so that the whole equipment has the multifunctionality.
[0035] Working principle: in use, by one end of the pipe embedded in the inside of the placing port 1033, rotate the bolt two 1037, make the positioning block 1036 connected with one end move down, cooperate the telescopic rod 1034 and spring two 1035 to provide reset work, position the pipe with different sizes, at the same time, rotate the bolt one 104 from the inside of the threaded hole 1031, move the slider 103 as a whole, then complete the positioning through the bolt one 104, convenient for butt joint work, at the same time, rotate the bidirectional screw rod two 1022 in the sliding groove 1021, drive the moving inclined block 1023 on the surface to move, make the connected trapezoidal block 1026 drive the moving seat 1025 to adjust the position height along the inside of the slot 102, cooperate spring one 1024 to provide reset, make the whole equipment have multifunction, in addition, when rotate the bidirectional screw rod one 1013 in the supporting leg 101, drive the limiting block 1014 to move along the inside of the limiting slot 1011, make the inclined motion through the connecting rod 1015, cooperate the connecting block 1016 on one end surface to install on the surface of the antiskid supporting leg 1012, drive the antiskid supporting leg 1012 to adjust the height along the inside of the supporting leg 101, and multiple structures move independently, can be adjusted individually, convenient for horizontal adjustment when the installation area is not stable, quickly install the pipe.
[0036] The above merely describes preferred embodiments of the present application and is not intended to limit the present application in other forms. Any skilled person in the art can modify or change the above disclosed technical content to equivalent embodiments applied to other fields. However, any simple modification, equivalent change and modification of the above embodiments according to the technical essence of the present application still fall within the protection scope of the present application.
Claims
1. A pipe butt joint support frame for hydraulic engineering, comprising: Mounting rack (1); The groove (102) is provided on the surface of the mounting rack (1); characterized in that it further comprises: A plurality of support legs (101) are arranged at the four corners of one side surface of the mounting rack (1), the inner wall of the plurality of support legs (101) is provided with a limiting groove (1011), the inside of the plurality of support legs (101) is movably embedded with an anti-skid foot (1012); A plurality of bidirectional lead screws (1013) are movably arranged in the inside of the plurality of support legs (101), the surfaces of the symmetric positions of the plurality of bidirectional lead screws (1013) are threadedly sleeved with limiting blocks (1014), the inner walls of the plurality of limiting blocks (1014) are movably provided with connecting rods (1015), one end of the plurality of connecting rods (1015) is movably sleeved with a connecting block (1016), one end of the plurality of connecting blocks (1016) is arranged on the surface of the anti-skid foot (1012), the symmetric positions of the inner walls of one side of the groove (102) are provided with springs (1024), one end of the two springs (1024) is provided with a moving seat (1025), the side surface of the moving seat (1025) close to the mounting rack (1) is provided with a trapezoidal block (1026), the surface of the moving seat (1025) away from the trapezoidal block (1026) is provided with a mounting groove (1027), the inner wall of the groove (102) is provided with a sliding groove (1021), the inside of the sliding groove (1021) is movably provided with a bidirectional lead screw (1022), the surfaces of the symmetric positions of the bidirectional lead screw (1022) are threadedly sleeved with moving inclined blocks (1023).
2. The butt joint support frame for pipes in hydraulic engineering according to claim 1, characterized in that: The two moving inclined blocks (1023) are slidably connected on the surface of the trapezoidal block (1026), the inside of the symmetric positions of the mounting groove (1027) is slidably embedded with sliding blocks (103), the surfaces of the two sliding blocks (103) are provided with threaded holes (1031), the inside of the plurality of threaded holes (1031) is threadedly embedded with bolts (104), one side surface of the plurality of bolts (104) is movably connected on the surface of the moving seat (1025), the surfaces of the two sliding blocks (103) are provided with bearing blocks (1032), the surfaces of the two bearing blocks (1032) are provided with placing openings (1033), the symmetric positions of the inner walls of the two placing openings (1033) are provided with telescopic rods (1034), one end of the two groups of telescopic rods (1034) is provided with positioning blocks (1036), one side surface of the two positioning blocks (1036) is connected on the inner wall of the placing opening (1033) through springs (1035), the inside of the two bearing blocks (1032) is threadedly embedded with bolts (1037), one end of the two bolts (1037) is movably connected on the surface of the positioning block (1036).