Drainage construction pipeline butt joint equipment
By designing drainage construction pipeline docking equipment with support and clamping structures, the problems of vehicle model differences and docking deviations during pipeline docking were solved, achieving efficient and precise pipeline docking operations.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- ZHEJIANG HYDRAULIC CONSTRUCTION CO LTD
- Filing Date
- 2025-05-12
- Publication Date
- 2026-04-21
AI Technical Summary
In existing technologies, different vehicle models are needed to transport pipes when they are connected due to size differences, which makes the operation cumbersome and prone to deviations during connection, resulting in time and labor costs.
A drainage construction pipeline docking device was designed, which includes a support structure, a telescopic structure, and a clamping structure. Through a first connecting rod, a connecting block, a telescopic rod, and an electric clamping device, the device enables flexible support, adjustment, and precise docking of the pipeline.
It simplifies the pipeline handling process, improves the efficiency and accuracy of docking, and reduces the time and effort required for manual adjustments.
Smart Images

Figure CN224143865U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of pipeline connection technology, specifically to a drainage construction pipeline connection device. Background Technology
[0002] Wastewater pipe connection is the process of linking two or more wastewater pipes together. This process is crucial for ensuring the proper functioning of the drainage system.
[0003] However, when connecting existing pipelines, the different diameters of the pipelines and the different widths of the pits required make the transportation of the pipelines quite troublesome. Furthermore, when the pipelines are transported to the pits and connected with other pipelines, some deviations may occur, requiring workers to manually align and adjust them, which is time-consuming and labor-intensive.
[0004] Therefore, in order to solve the above problems, a drainage construction pipeline connection device is proposed. Utility Model Content
[0005] The purpose of this utility model is to provide a drainage construction pipeline docking device to solve the problems mentioned in the background art. When docking pipelines, the pipelines are of different thicknesses, and the pits dug are of different widths. Therefore, it is troublesome to transport the pipelines by using different vehicle models. Furthermore, when the pipelines are transported to the pit and docked with other pipelines, some deviations may occur, which requires workers to manually align and adjust them, which is time-consuming and labor-intensive.
[0006] To achieve the above objectives, this utility model provides the following technical solution: a drainage construction pipeline docking device, comprising: a support structure, a telescopic structure, and a clamping structure. The support structure has a first connecting rod movably connected on both sides to the interior of the upper end of a first connecting block. The lower end of the first connecting block is movably connected to a second connecting rod and a third connecting rod. The outer side of the first connecting rod in the support structure is movably connected to the third connecting block in the telescopic structure. The inner side of the third connecting block is bolted to a second telescopic rod. The outer side of the second telescopic rod is movably connected to a moving block in the clamping structure. The lower end of the moving block is bolted to the upper end of an electric telescopic rod. The lower end of the electric telescopic rod is bolted to a second telescopic groove.
[0007] Preferably, in the support structure, the first connecting rod is welded to both sides with first connecting pieces, the outer side of the first connecting rod is movably connected to the first connecting block, the first connecting block is divided into upper and lower hollow layers, the upper end of the first connecting block is hollow to form a first threaded hole, and the lower end of the first connecting block is movably connected to the second connecting rod and the third connecting rod.
[0008] Preferably, second connecting plates are welded to both sides of the second connecting rod and the third connecting rod, the second connecting rod is hollow to form a second threaded hole, the third connecting rod is hollow to form a third threaded hole, and second connecting plates are welded to both sides of the second connecting rod and the third connecting rod.
[0009] Preferably, the first connecting rod is bolted to the outer side of the first telescopic groove, the first telescopic groove is movably connected to the inner side of the first telescopic rod, the lower end of the first connecting block is bolted to the support rod, the lower end of the support rod is bolted to the roller, and one side of the roller is connected to the motor by a coupling.
[0010] Preferably, the third connecting block in the telescopic structure has a hollow interior forming a fourth threaded hole, and the second telescopic rod is bolted to the inside of the third connecting block. The second telescopic rod has third connecting plates welded to both sides.
[0011] Preferably, the movable block in the clamping structure has a hollow interior forming a connection port. The lower end of the movable block is bolted to an electric telescopic rod, and the lower end of the electric telescopic rod is bolted to a second telescopic groove. A threaded rod is connected inside the second telescopic groove by a hinge shaft, and a motor is connected to one side of the threaded rod by a coupling.
[0012] Preferably, the lower end of the second telescopic groove is bolted to a fourth connecting piece, the inner side of the fourth connecting piece is bolted to a limiting rod, the outer side of the threaded rod is movably connected to a fifth threaded hole, the fifth threaded hole is hollow inside the slider, the lower end of the slider is welded to a fourth connecting block, the interior of the fourth connecting block is hollow to form a limiting hole, and the lower end of the fourth connecting block is welded to a clamp.
[0013] Compared with the prior art, the beneficial effects of this utility model are:
[0014] 1. This utility model comprises a first connecting rod, a first connecting piece, a first connecting block, a first threaded hole, a second connecting rod, a second threaded hole, a third connecting rod, a third threaded hole, a second connecting piece, a first telescopic groove, a first telescopic rod, a support rod, and rollers. The first connecting rod can telescopically connect to the first connecting block. The first connecting piece can limit the two sides of the first connecting rod. The first connecting block can movably connect the first connecting rod with the second and fourth connecting rods. The first threaded hole can limit the first connecting block. The second connecting rod can limit the first connecting block, allowing it to telescopically extend. The second threaded hole can limit the first connecting block. The third connecting rod can allow the first connecting block to slide. The third threaded hole can limit the first connecting block. The second connecting piece can limit the second connecting rod and the third connecting rod within the first connecting block. The first telescopic groove allows the first telescopic rod to telescopically extend. The rollers can drive the support structure to move. The motor connected to one side of the rollers has a locking structure inside to prevent the support structure from shaking when it is in place.
[0015] 2. This utility model comprises a third connecting block, a fourth threaded hole, a second telescopic rod, a third connecting piece, a clamping structure, a moving block, a connecting port, an electric telescopic rod, a second telescopic groove, a threaded rod, a fourth connecting piece, a limiting rod, a fifth threaded hole, a slider, a fourth connecting block, a limiting hole, and a clamp. The fourth threaded hole allows the connecting bolt to be rotated to fix the third connecting block. The second telescopic rod allows the moving block to move. The moving block has an internal locking structure to prevent it from easily moving when it reaches the desired position. The third connecting piece can hold the second telescopic rod... The device is capable of being limited. The movable block can be movably connected to the outside of the second telescopic rod. It can be inserted into the second telescopic rod through the connection port. The electric telescopic rod can drive the second telescopic groove to move up and down. The motor connected to one side of the threaded rod can rotate the threaded rod, allowing the clamp to hold. The fourth connecting piece can support the limiting rod. The limiting rod can be inserted into the limiting hole, so that the clamp is not affected when holding. It can be rotatably connected to the outside of the threaded rod through the fifth threaded hole. It can be movably connected to the second telescopic groove through the slider. The clamp can hold the pipe. Attached Figure Description
[0016] Figure 1 This is a three-dimensional structural schematic diagram of the present invention;
[0017] Figure 2 This is a partial three-dimensional structural diagram of the present invention;
[0018] Figure 3 This is a three-dimensional bottom view of the clamping structure of this utility model;
[0019] Figure 4 This is a three-dimensional disassembled schematic diagram of the clamping structure of this utility model.
[0020] In the diagram: 1. Support structure; 101. First connecting rod; 102. First connecting piece; 103. First connecting block; 104. First threaded hole; 105. Second connecting rod; 106. Second threaded hole; 107. Third connecting rod; 108. Third threaded hole; 109. Second connecting piece; 110. First telescopic groove; 111. First telescopic rod; 112. Support rod; 113. Roller; 2. Telescopic structure; 201. Third connecting block; 202. Fourth threaded hole; 203. Second telescopic rod; 204. Third connecting piece; 3. Clamping structure; 301. Moving block; 302. Connecting port; 303. Electric telescopic rod; 304. Second telescopic groove; 305. Threaded rod; 306. Fourth connecting piece; 307. Limiting rod; 308. Fifth threaded hole; 309. Slider; 310. Fourth connecting block; 311. Limiting hole; 312. Clamp. Detailed Implementation
[0021] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.
[0022] Please see Figure 1-4 One embodiment provided by this utility model:
[0023] A drainage construction pipeline docking device includes: a support structure 1, a telescopic structure 2, and a clamping structure 3. The first connecting rod 101 in the support structure 1 is movably connected to the upper interior of a first connecting block 103 on both sides. The lower interior of the first connecting block 103 is movably connected to a second connecting rod 105 and a third connecting rod 107. The outer side of the first connecting rod 101 in the support structure 1 is movably connected to a third connecting block 201 in the telescopic structure 2. The inner side of the third connecting block 201 is bolted to a second telescopic rod 203. The outer side of the second telescopic rod 203 is movably connected to a moving block 301 in the clamping structure 3. The lower end of the moving block 301 is bolted to the upper end of an electric telescopic rod 303. The lower end of the electric telescopic rod 303 is bolted to a second telescopic groove 304.
[0024] Furthermore, in the support structure 1, first connecting plates 102 are welded to both sides of the first connecting rod 101. The outer side of the first connecting rod 101 is movably connected to the first connecting block 103. The first connecting block 103 is divided into upper and lower hollow layers. The upper end of the first connecting block 103 is hollow to form a first threaded hole 104. The lower end of the first connecting block 103 is movably connected to the second connecting rod 105 and the third connecting rod 107. The first connecting rod 101 is used to telescopically connect to the first connecting block 103. The first connecting plates 102 are used to limit the two sides of the first connecting rod 101. The first connecting block 103 is used to movably connect the first connecting rod 101 to the second connecting rod 105 and the fourth connecting rod 107. The first threaded hole 104 is used to limit the first connecting block 103. The second connecting rod 105 is used to limit the first connecting block 103 so that the first connecting block 103 can telescopically extend.
[0025] Furthermore, second connecting pieces 109 are welded to both sides of the second connecting rod 105 and the third connecting rod 107. The second connecting rod 105 is hollow to form a second threaded hole 106, and the third connecting rod 107 is hollow to form a third threaded hole 108. The second connecting pieces 109 are welded to both sides of the second connecting rod 105 and the third connecting rod 107. The second threaded hole 106 is used to limit the first connecting block 103. The third connecting rod 107 is used to allow the first connecting block 103 to slide. The third threaded hole 108 is used to limit the first connecting block 103. The second connecting pieces 109 are used to limit the second connecting rod 105 and the third connecting rod 107 within the first connecting block 103.
[0026] Furthermore, the first connecting rod 101 is bolted to the outside of the first telescopic groove 110, and the first telescopic rod 111 is movably connected inside the first telescopic groove 110. The lower end of the first connecting block 103 is bolted to the support rod 112, and the lower end of the support rod 112 is bolted to the roller 113. A motor is connected to one side of the roller 113 by a coupling. The first telescopic groove 110 is used to enable the first telescopic rod 111 to extend and retract, and the roller 113 is used to drive the support structure 1 to move. The motor connected to one side of the roller 113 has a locking structure inside to prevent the support structure 1 from shaking when it is held upright.
[0027] Furthermore, the third connecting block 201 in the telescopic structure 2 has a hollow interior forming a fourth threaded hole 202. The second telescopic rod 203 is bolted to the inside of the third connecting block 201. The second telescopic rod 203 has third connecting pieces 204 welded to both sides. The fourth threaded hole 202 is used to rotate the connecting bolt so that the third connecting block 201 can be fixed. The second telescopic rod 203 is used to allow the moving block 301 to move. The moving block 301 has a locking structure inside so that the moving block 301 will not move easily when it moves to the required position. The third connecting piece 204 is used to limit the second telescopic rod 203.
[0028] Furthermore, the movable block 301 in the clamping structure 3 has a hollow interior forming a connection port 302. The lower end of the movable block 301 is bolted to the electric telescopic rod 303, and the lower end of the electric telescopic rod 303 is bolted to the second telescopic groove 304. The second telescopic groove 304 is connected to the threaded rod 305 by a hinge shaft. One side of the threaded rod 305 is connected to a motor by a coupling. The movable block 301 is used to movably connect to the outside of the second telescopic rod 203. The connection port 302 is used to insert and connect the second telescopic rod 203. The electric telescopic rod 303 is used to drive the second telescopic groove 304 to move up and down. The motor connected to one side of the threaded rod 305 is used to rotate the threaded rod 305 so that the clamp 312 can clamp.
[0029] Furthermore, the lower end of the second telescopic groove 304 is bolted to the fourth connecting piece 306, and the inner side of the fourth connecting piece 306 is bolted to the limiting rod 307. The outer side of the threaded rod 305 is movably connected to the fifth threaded hole 308. The fifth threaded hole 308 is hollow inside the slider 309. The lower end of the slider 309 is welded to the fourth connecting block 310. The inner side of the fourth connecting block 310 is hollow to form a limiting hole 311. The lower end of the fourth connecting block 310 is welded to the clamp 312. The fourth connecting piece 306 is used to support the limiting rod 307. The limiting rod 307 is used to be inserted into the limiting hole 311 so that the clamp 312 is not affected when clamping. The fifth threaded hole 308 is used to be rotatably connected to the outer side of the threaded rod 305. The slider 309 is used to be movably connected to the second telescopic groove 304. The clamp 312 is used to clamp the pipe.
[0030] Working principle: In use, first slide the third connecting block 201 on the outside of the first connecting rod 101 to adjust the third connecting block 201 to a suitable length and then limit it with bolts. Then slide the first connecting block 103 connected to the outside of the second connecting rod 105 and the third connecting rod 107 to adjust the support structure 1 to a suitable width. When the first connecting block 103 adjusts its width, the third connecting block 201 simultaneously adjusts its width on the outside of the second telescopic rod 203 and is locked with a locking structure. Then start the electric telescopic rod 303 to place the clamp 312 on both sides of the pipe and start the motor to rotate the threaded rod 305 so that the clamp 312 clamps the pipe. Then start the electric telescopic rod 303 to lift the pipe and start the motor to move the roller 113 to move the support structure 1 to the required position. Then start the electric telescopic rod 303 to place the pipe in the required position. When the pipe is placed off-center, the moving block 301 can be activated to move the pipe clamped inside the clamp 312 to the required position for docking.
[0031] The above description is merely a preferred embodiment of this utility model and is not intended to limit the utility model in any way. Those skilled in the art can readily implement this utility model based on the accompanying drawings and the above description. However, any modifications, alterations, or equivalent variations made by those skilled in the art without departing from the scope of the utility model's technical solution, utilizing the disclosed technical content, are considered equivalent embodiments of this utility model. Furthermore, any equivalent changes, alterations, or variations made to the above embodiments based on the essential technology of this utility model are still within the protection scope of this utility model's technical solution.
Claims
1. A sewer construction pipe butt joining apparatus comprising: The support structure (1), telescopic structure (2), and clamping structure (3) are characterized in that: the first connecting rod (101) in the support structure (1) is movably connected to the upper end of the first connecting block (103) on both sides, the lower end of the first connecting block (103) is movably connected to the second connecting rod (105) and the third connecting rod (107), the outer side of the first connecting rod (101) in the support structure (1) is movably connected to the third connecting block (201) in the telescopic structure (2), the inner side of the third connecting block (201) is bolted to the second telescopic rod (203), the outer side of the second telescopic rod (203) is movably connected to the moving block (301) in the clamping structure (3), the lower end of the moving block (301) is bolted to the upper end of the electric telescopic rod (303), and the lower end of the electric telescopic rod (303) is bolted to the second telescopic groove (304).
2. A sewer construction pipe butt joining apparatus according to claim 1, characterized in that: The first connecting rod (101) in the support structure (1) has a first connecting piece (102) welded on both sides. The outer side of the first connecting rod (101) is movably connected to the first connecting block (103). The first connecting block (103) is divided into upper and lower hollow layers. The upper end of the first connecting block (103) is hollow to form a first threaded hole (104). The lower end of the first connecting block (103) is movably connected to the second connecting rod (105) and the third connecting rod (107).
3. A sewer construction pipe butt joining apparatus according to claim 2, characterised in that: The second connecting rod (105) and the third connecting rod (107) are welded together with the second connecting piece (109) on both sides. The second connecting rod (105) is hollow inside to form a second threaded hole (106). The third connecting rod (107) is hollow inside to form a third threaded hole (108). The second connecting rod (105) and the third connecting rod (107) are welded together with the second connecting piece (109) on both sides.
4. A sewer construction pipe butt joining apparatus according to claim 3, characterised in that: The first connecting rod (101) is bolted to the outside of the first telescopic groove (110), the first telescopic rod (111) is movably connected inside the first telescopic groove (110), the lower end of the first connecting block (103) is bolted to the support rod (112), the lower end of the support rod (112) is bolted to the roller (113), and one side of the roller (113) is connected to the motor by a coupling.
5. A sewer construction pipe butt joint apparatus according to claim 1, characterized in that: The third connecting block (201) in the telescopic structure (2) is hollow inside to form a fourth threaded hole (202). The second telescopic rod (203) is bolted to the inside of the third connecting block (201). The third connecting piece (204) is welded to both sides of the second telescopic rod (203).
6. The drainage construction pipeline connection equipment according to claim 1, characterized in that: The movable block (301) in the clamping structure (3) has a hollow connection port (302). The lower end of the movable block (301) is connected to the electric telescopic rod (303) by bolts. The lower end of the electric telescopic rod (303) is connected to the second telescopic groove (304) by bolts. The threaded rod (305) is connected to the second telescopic groove (304) by a hinge shaft. The threaded rod (305) is connected to the motor on one side by a coupling.
7. A sewer construction pipe butt joining apparatus according to claim 6, characterised in that: The lower end of the second telescopic groove (304) is bolted to the fourth connecting piece (306), the inner side of the fourth connecting piece (306) is bolted to the limiting rod (307), the outer side of the threaded rod (305) is movably connected to the fifth threaded hole (308), the fifth threaded hole (308) is hollow inside the slider (309), the lower end of the slider (309) is welded to the fourth connecting block (310), the inner side of the fourth connecting block (310) is hollow to form a limiting hole (311), and the lower end of the fourth connecting block (310) is welded to the clamp (312).