Water pipeline butt joint device

By designing a water conservancy pipeline docking device, the system utilizes an operating platform and transmission system to achieve precise docking and stable clamping of pipelines, solving the problems of shaking and collision during hoisting and docking, and improving the safety and efficiency of installation.

CN224301489UActive Publication Date: 2026-05-29HUZHOU YOUJIAN DECORATION ENGINEERING CO LTD

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
HUZHOU YOUJIAN DECORATION ENGINEERING CO LTD
Filing Date
2025-06-25
Publication Date
2026-05-29

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Abstract

The utility model belongs to water conservancy pipeline installation field, concretely is a kind of water conservancy pipeline butt joint device, including operation platform, the operation platform is provided with operating groove, operating groove is equipped with slide bar, slide bar is equipped with adjusting block, adjusting block is provided with placing mouth, adjusting block is provided with pipe outlet, operating groove is provided with moving mouth, adjusting block is equipped with traction block, traction block is correspondingly equipped with moving mouth, the cooperation of the above-mentioned water conservancy pipeline butt joint device through placing mouth and traction block solves the installation of the butt joint of existing water conservancy pipeline by lifting, due to the heavy water conservancy pipeline, when moving in the air, the amplitude of the swing of lifting rope is larger, and the pipe that is extremely easy to butt joint collides, causes the damage of interface, it is difficult to aim installation, increase the difficulty of installation, simultaneously, the fragment of pipeline collision and fall is easy to injure passerby, make the installation safety between pipe reduce the problem.
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Description

Technical Field

[0001] This utility model relates to the field of water conservancy pipeline installation, specifically a water conservancy pipeline connection device. Background Technology

[0002] Water conservancy projects are engineering projects constructed to control and regulate surface water and groundwater in nature to achieve the purpose of eliminating harm and promoting benefits. They are also called water engineering. Water is an essential and precious resource for human production and life, but its natural state does not fully meet human needs. Only by constructing water conservancy projects can we control water flow, prevent floods, and regulate and distribute water to meet the needs of people's lives and production for water resources. Water conservancy projects require the construction of different types of hydraulic structures such as dams, dikes, spillways, sluice gates, intakes, canals, ferries, rafts, and fishways to achieve their goals.

[0003] Existing water pipelines require connection during installation, but the following problems still exist in the connection process:

[0004] Currently, water pipelines are installed by hoisting and connecting them. However, due to the weight of the pipelines, the hoisting ropes sway significantly when moving them in the air, and the pipes being connected are prone to collisions, causing damage to the joints and making it difficult to align them for installation. This increases the difficulty of installation, and the falling debris from the pipes can easily injure pedestrians, reducing the safety of the pipe installation. Therefore, it is necessary to develop a water pipeline connection device for use in the current field of water pipeline installation. Utility Model Content

[0005] To address the shortcomings of existing technologies, current water pipelines are installed by hoisting and connecting them. However, due to the weight of the water pipelines, the hoisting ropes sway significantly during aerial movement, making it extremely easy for the pipes to collide and damage the joints. This makes it difficult to align and install them, increasing the installation difficulty. Furthermore, debris from pipe collisions can easily injure pedestrians, reducing the safety of pipe installation. This utility model proposes a water pipeline connection device.

[0006] The technical solution adopted by this utility model to solve its technical problem is as follows: The water conservancy pipeline docking device of this utility model includes an operating platform. An operating groove is provided on the operating platform. Slide rods are symmetrically fixedly mounted on the inner wall of the operating groove. Two adjusting blocks are movably mounted on the two slide rods. Each adjusting block has a placement port through it. Each adjusting block has a pipe outlet through it on its side. The pipe outlet communicates with the placement port. A movable port is symmetrically provided on the bottom surface of the operating groove. A traction block is fixedly mounted on the bottom of each adjusting block. The traction block is movably mounted corresponding to the movable port.

[0007] Preferably, the bottom of the operating platform is symmetrically and fixedly equipped with sliding blocks, each sliding block is movably equipped with a transmission rack, and one end of each transmission rack is fixedly equipped with an assembly block, which is fixedly assembled with the traction block.

[0008] Preferably, a fixed frame is fixedly mounted on the slide block, an operating motor is fixedly mounted on the bottom of the fixed frame, a rotating rod is fixedly mounted on the output end of the operating motor, the rotating rod moves through the fixed frame, and a transmission gear is fixedly mounted on one end of the rotating rod. The transmission gear is located between two transmission racks, and the transmission gear is respectively engaged with the two transmission racks in toothed assembly.

[0009] Preferably, each of the adjusting blocks has a through-hole on its surface, which is connected to the outlet. Each adjusting block has an operating block fixedly mounted on its surface. Each operating block has a rotating cavity inside. Each of the two symmetrical sides of the operating block has a traction groove, which is connected to the rotating cavity. A threaded sleeve is movably mounted on the rotating cavity. One end of the threaded sleeve moves through the operating block and the adjusting block into the placement port. An arc block is fixedly mounted at the bottom of the threaded sleeve, and the arc block is located in the placement port.

[0010] Preferably, each of the threaded sleeve rods is symmetrically fixedly fitted with mounting blocks, and the mounting blocks are movably assembled with the traction groove.

[0011] Preferably, a connecting plate is fixedly mounted on one end of each mounting block, the connecting plate is located on one side of the operating block, a connecting block is fixedly mounted on one end of each of the two connecting plates, and a stop bar is fixedly mounted on the bottom of each connecting block, the stop bar being movably assembled with the insertion hole.

[0012] Preferably, each of the rotating cavities is movably fitted with a lead screw, which is threadedly fitted with a threaded sleeve. One end of each lead screw movably passes through the operating block, and a knob is fixedly fitted to one end of each lead screw, with the knob located above the operating block.

[0013] The advantages of this utility model are:

[0014] This invention involves placing the water pipe in the placement opening, turning the knob to rotate the transmission screw in the threaded sleeve, causing the installation block to move in the traction groove. The threaded sleeve drives the arc block to clamp the water pipe in the placement opening. Simultaneously, the installation block, through the connecting plate, moves the stop bar at the bottom of the connecting block on the insertion hole, causing the stop bar to fit against the side of the water pipe, restricting the water pipe from moving out of the outlet. Starting the operating motor causes the rotating rod to drive the transmission gear to rotate, which in turn drives two transmission racks to move in opposite directions on the sliding block. This causes the assembly block to move the traction block in the moving opening, causing the adjusting block to move on the sliding rod. The two adjusting blocks move closer together, connecting the water pipes on the two adjusting blocks, facilitating the connection of the two water pipes. After connection, turning the knob in the opposite direction moves the arc block and stop bar away from the water pipe, allowing the connected water pipe to be removed through the outlet, avoiding swaying during hoisting and improving safety. Attached Figure Description

[0015] To more clearly illustrate the technical solutions in the embodiments of this utility model or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0016] Figure 1 This is a three-dimensional structural diagram of the water conservancy pipeline docking device of this utility model;

[0017] Figure 2 This is a schematic diagram of the transmission rack structure of the water conservancy pipeline docking device of this utility model;

[0018] Figure 3 This is a schematic diagram of the placement mechanism of this utility model;

[0019] Figure 4 For the present utility model Figure 3 A cross-sectional structural diagram.

[0020] In the picture:

[0021] 10. Control panel; 11. Control slot; 12. Movable port; 13. Slide bar;

[0022] 20. Adjusting block; 21. Traction block; 22. Placement port; 23. Outlet port;

[0023] 30. Sliding block; 31. Transmission rack; 32. Assembly block; 33. Fixing bracket;

[0024] 40. Operating motor; 41. Rotating rod; 42. Transmission gear; 43. Operating block;

[0025] 50. Traction groove; 51. Mounting block; 52. Connecting plate; 53. Connecting block;

[0026] 60. Socket; 61. Stop bar; 62. Arc block; 63. Knob;

[0027] 70. Rotating cavity; 71. Threaded sleeve; 72. Transmission screw. Detailed Implementation

[0028] 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 scope of protection of the present utility model.

[0029] Please see Figure 1 - Figure 4 As shown, a water conservancy pipeline docking device includes an operating platform 10, an operating groove 11 on the operating platform 10, and sliding rods 13 symmetrically fixedly mounted on the inner wall of the operating groove 11. Two adjusting blocks 20 are movably mounted on the two sliding rods 13. Each adjusting block 20 has a placement port 22 through it. Each adjusting block 20 has an outlet port 23 through it on its side, which communicates with the placement port 22. The bottom surface of the operating groove 11 is symmetrically provided with a moving port 12. Each adjusting block 20 has a traction block 21 fixedly mounted on its bottom, which moves in the moving port 12.

[0030] During operation, the two water pipes that need to be connected are placed into the placement port 22 respectively. The traction block 21 is moved on the moving port 12, so that the adjusting block 20 moves on the sliding rod 13. The two adjusting blocks 20 move closer to each other, and the water pipes on the two adjusting blocks 20 are connected to facilitate the connection of the two water pipes. The connected water pipes are then removed through the outlet port 23.

[0031] Furthermore, symmetrical sliding blocks 30 are fixedly mounted on the bottom of the operating table 10. Each sliding block 30 is movably mounted with a transmission rack 31. One end of each transmission rack 31 is fixedly mounted with an assembly block 32. The assembly block 32 is fixedly mounted with the traction block 21. A fixing frame 33 is fixedly mounted on the two sliding blocks 30. An operating motor 40 is fixedly mounted on the bottom of the fixing frame 33. A rotating rod 41 is fixedly mounted on the output end of the operating motor 40. The rotating rod 41 moves through the fixing frame 33, and a transmission gear 42 is fixedly mounted on one end of the rotating rod 41. The transmission gear 42 is toothed and assembled with the two transmission racks 31 on both sides.

[0032] During operation, the operating motor 40 is started, which causes the rotating rod 41 to drive the transmission gear 42 to rotate. The transmission gear 42 drives the two transmission racks 31 to move in opposite directions on the sliding block 30, which causes the assembly block 32 to drive the traction block 21 to move on the moving port 12, facilitating the movement and docking of the water conservancy pipeline.

[0033] Furthermore, each surface of the adjusting block 20 is provided with a through hole 60 communicating with the outlet 23. Each surface of the adjusting block 20 is fixedly fitted with an operating block 43. Each operating block 43 has a rotating cavity 70 inside. Both symmetrical sides of the operating block 43 are provided with traction grooves 50 communicating with the rotating cavity 70. A threaded sleeve 71 is movably fitted onto the rotating cavity 70. One end of the threaded sleeve 71 movably passes through the operating block 43 and the adjusting block 20 into the placement port 22. An arc block 62 located in the placement port 22 is fixedly fitted to the bottom of the threaded sleeve 71. Each surface of the threaded sleeve 71 is symmetrically fitted with... Mounting block 51 is movably assembled with traction groove 50. One end of mounting block 51 is fixedly equipped with connecting plate 52, which is located on one side of operating block 43. One end of the two connecting plates 52 is fixedly equipped with connecting block 53. The bottom of the connecting block 53 is fixedly equipped with stop bar 61 that moves in insertion hole 60. The rotating cavity 70 is movably equipped with transmission screw 72 that is threaded with threaded sleeve rod 71. One end of the transmission screw 72 moves through operating block 43, and one end of the transmission screw 72 is fixedly equipped with knob 63, which is located above operating block 43.

[0034] During operation, the water pipe is placed in the placement port 22, and the knob 63 is turned, causing the transmission screw 72 to rotate in the threaded sleeve 71, which in turn moves the mounting block 51 in the traction groove 50. The threaded sleeve 71 drives the arc block 62 to clamp the water pipe on the placement port 22. At the same time, the mounting block 51 drives the stop bar 61 at the bottom of the connecting block 53 to move on the insertion hole 60 through the connecting plate 52, so that the stop bar 61 fits against the side of the water pipe, restricting the water pipe from moving from the outlet 23.

[0035] Working principle: The water pipe is placed in the placement port 22. Turning the knob 63 causes the transmission screw 72 to rotate in the threaded sleeve 71, moving the mounting block 51 in the traction groove 50. The threaded sleeve 71 drives the arc block 62 to clamp the water pipe in the placement port 22. Simultaneously, the mounting block 51, through the connecting plate 52, drives the stop bar 61 at the bottom of the connecting block 53 to move on the insertion hole 60, causing the stop bar 61 to fit against the side of the water pipe, restricting its movement from the outlet 23. Starting the operating motor 40 causes the rotating rod 41 to drive the transmission gear 42 to rotate. The transmission gear 42 drives the two transmission racks 31 to move in opposite directions on the slide block 30, which causes the assembly block 32 to drive the traction block 21 to move on the moving port 12, and causes the adjusting block 20 to move on the slide rod 13. The two adjusting blocks 20 move closer to each other, connecting the water pipes on the two adjusting blocks 20, which facilitates the connection of the two water pipes. After the connection is completed, the knob 63 is turned in the opposite direction, so that the arc block 62 and the stop rod 61 move away from the water pipes, which facilitates the removal of the connected water pipes through the outlet 23, avoids the shaking caused by hoisting, and improves the safety of use.

[0036] The foregoing has shown and described the basic principles, main features, and advantages of this utility model. Those skilled in the art should understand that this utility model is not limited to the above embodiments. The embodiments and descriptions in the specification are merely illustrative of the principles of this utility model. Various changes and modifications can be made to this utility model without departing from its spirit and scope, and all such changes and modifications fall within the scope of the claimed utility model.

Claims

1. A water conservancy pipeline connection device, characterized in that: The system includes an operating table (10), on which an operating groove (11) is provided. Slide rods (13) are symmetrically fixedly mounted on the inner wall of the operating groove (11). Two adjusting blocks (20) are movably mounted on the two slide rods (13). Each adjusting block (20) has a placement port (22) through it. Each adjusting block (20) has an outlet port (23) through it on its side. The outlet port (23) is connected to the placement port (22). A moving port (12) is symmetrically provided on the bottom surface of the operating groove (11). A traction block (21) is fixedly mounted on the bottom of each adjusting block (20). The traction block (21) is movably mounted to correspond to the moving port (12).

2. The water conservancy pipeline connection device according to claim 1, characterized in that: The bottom of the operating table (10) is symmetrically fixedly equipped with sliding blocks (30), and each sliding block (30) is movably equipped with a transmission rack (31). One end of each transmission rack (31) is fixedly equipped with an assembly block (32), and the assembly block (32) is fixedly assembled with the traction block (21).

3. A water pipeline connection device according to claim 2, characterized in that: A fixed frame (33) is fixedly mounted on the slide block (30). An operating motor (40) is fixedly mounted on the bottom of the fixed frame (33). A rotating rod (41) is fixedly mounted on the output end of the operating motor (40). The rotating rod (41) moves through the fixed frame (33). A transmission gear (42) is fixedly mounted on one end of the rotating rod (41). The transmission gear (42) is located between two transmission racks (31), and the transmission gear (42) is toothed and threadedly assembled with the two transmission racks (31) respectively.

4. A water pipeline connection device according to claim 3, characterized in that: The surface of the adjusting block (20) is provided with a through hole (60), which is connected to the outlet (23). The surface of the adjusting block (20) is fixedly equipped with an operating block (43). The inside of the operating block (43) is provided with a rotating cavity (70). The two symmetrical sides of the operating block (43) are provided with a traction groove (50), which is connected to the rotating cavity (70). A threaded sleeve rod (71) is movably mounted on the rotating cavity (70). One end of the threaded sleeve rod (71) movably passes through the operating block (43) and the adjusting block (20) into the placement port (22). An arc block (62) is fixedly mounted at the bottom of the threaded sleeve rod (71), which is located in the placement port (22).

5. A water conservancy pipeline connection device according to claim 4, characterized in that: The threaded sleeve (71) is symmetrically fixed with mounting blocks (51) on its surface, and the mounting blocks (51) are movably assembled with the traction groove (50).

6. A water conservancy pipeline connection device according to claim 5, characterized in that: One end of each mounting block (51) is fixedly fitted with a connecting plate (52), which is located on one side of the operating block (43). One end of each of the two connecting plates (52) is fixedly fitted with a connecting block (53), and the bottom of each connecting block (53) is fixedly fitted with a stop bar (61). The stop bar (61) is movably fitted with the insertion hole (60).

7. A water pipeline connection device according to claim 6, characterized in that: Each of the rotating cavities (70) is movably equipped with a transmission screw (72), which is threadedly assembled with the threaded sleeve (71). One end of the transmission screw (72) movably passes through the operating block (43), and a knob (63) is fixedly mounted on one end of the transmission screw (72). The knob (63) is located above the operating block (43).