Auxiliary installation equipment for natural gas pipeline
The combined use of the base and the mounting assembly solves the problem of inconvenient position adjustment of the natural gas pipeline after it is fixed in the prior art, and achieves convenient and efficient pipeline docking.
Patent Information
- Application Number
- CN202422300604.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-20
- Publication Date
- 2025-10-28
- Estimated Expiration
- 2034-09-20
AI Technical Summary
The existing technology does not facilitate adjusting the position of the pipeline according to the docking effect after the natural gas pipeline is fixed, resulting in a time-consuming and labor-intensive docking process.
The natural gas pipeline auxiliary installation equipment includes a base, a mounting assembly, an adjustment motor, a docking motor and a stabilizer bar. The alignment and docking of the pipelines are achieved through the combined movement of the drive cylinder, the adjustment screw rod and the docking screw rod.
The natural gas pipeline docking process is simplified, and the convenience of position adjustment and docking efficiency are improved.
Smart Images

Figure CN223483622U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of auxiliary installation technology for natural gas pipelines, and in particular to an auxiliary installation device for natural gas pipelines. Background Technology
[0002] Natural gas pipelines are pipelines that transport natural gas (including associated gas produced from oil fields) from extraction sites or processing plants to urban gas distribution centers or industrial users. They are also known as gas transmission pipelines. The process of fixing natural gas pipelines is usually time-consuming, labor-intensive, and inconvenient, which affects the performance of the equipment.
[0003] Existing technology CN213319820U discloses an auxiliary device for the installation of natural gas pipelines, including a first knob, a second threaded rod, a pressure plate, a slider, a slide groove, a fifth fixing plate, a second groove, a through hole, a pressure plate, a third fixing plate, a drive cylinder, a second knob, a first threaded rod, and a second fixing plate. Rotating the first knob drives the second threaded rod to rotate, driving the pressure plate to move the slider in the slide groove. Adjusting the position of the pressure plate, the natural gas pipeline is placed in the second groove on the fifth fixing plate, positioned between the through hole and the pressure plate and the third fixing plate. Activating the drive cylinder moves the third fixing plate downwards, causing the pressure plate to press against the natural gas pipeline, placing the pipeline horizontally. Then, rotating the second knob drives the first threaded rod to rotate, causing the second fixing plate to fix the natural gas pipeline.
[0004] In normal use, existing technology makes it inconvenient to adjust the position of natural gas pipelines after they are fixed, based on the connection effect. This makes the connection process time-consuming and labor-intensive, resulting in inconvenience for the equipment to connect the natural gas pipelines. Utility Model Content
[0005] The purpose of this utility model is to provide an auxiliary installation device for natural gas pipelines, which solves the problem that in the existing technology, after the natural gas pipeline is fixed, it is inconvenient to adjust the position of the natural gas pipeline according to the connection effect, making the connection process time-consuming and laborious, thus making it inconvenient for the device to connect the natural gas pipeline.
[0006] To achieve the above objectives, this utility model provides an auxiliary installation device for natural gas pipelines, including a base and an installation assembly. The installation assembly includes a frame, a mounting plate, a drive cylinder, a fixed plate, a housing, an adjusting screw, a slider, an adjusting motor, and a docking component. The housing is slidably installed on one side of the base. The docking component is connected to the base and the housing. The frame is slidably installed on the side of the housing away from the base. The adjusting screw is rotatably connected to the housing and threadedly connected to the frame. The adjusting motor is fixedly connected to the housing, and its output shaft is connected to the adjusting screw. The drive cylinder is fixedly installed on the side of the housing away from the housing. The fixed plate is slidably connected to the housing and connected to the output end of the drive cylinder. The slider is fixedly connected to the housing and slidably connected to the frame. The mounting plate is fixedly connected to the housing and located on the side of the housing away from the fixed plate.
[0007] The docking component includes a docking lead screw and a docking motor. The docking lead screw is rotatably connected to the base and threadedly connected to the frame. The docking motor is fixedly connected to the base, and the output shaft of the docking motor is connected to the docking lead screw.
[0008] The docking component further includes a stabilizing rod and a stabilizing cylinder. The stabilizing cylinder is fixedly connected to the frame and is located on the side of the frame away from the docking screw. The stabilizing rod is slidably connected to the stabilizing cylinder and fixedly connected to the base.
[0009] The installation assembly further includes a limiting rod and a limiting block. The limiting block is slidably connected to the frame and fixedly connected to the fixed plate. The limiting rod is slidably connected to the limiting block and fixedly connected to the frame.
[0010] The mounting assembly further includes a rubber pad and a mounting screw. The mounting screw is threadedly connected to the fixed plate and is located on the side of the fixed plate away from the drive cylinder. The rubber pad is threadedly connected to the mounting screw and is located on the side of the mounting screw closer to the fixed plate.
[0011] This utility model discloses an auxiliary installation device for natural gas pipelines. A natural gas pipeline is placed on a mounting plate. A drive cylinder drives a fixed plate to move, and the fixed plate moves a limiting block on a limiting rod, limiting the movement angle of the fixed plate. The fixed plate abuts against the natural gas pipeline, fixing the natural gas pipeline to the mounting plate. An adjusting motor drives an adjusting screw to rotate on a frame. When the adjusting screw rotates, it drives the frame to move the mounting plate, the fixed plate, the drive cylinder, and the natural gas pipelines, aligning the two natural gas pipelines. A docking motor drives a docking screw to rotate on a base. When the docking screw rotates, it drives two frames to move on the base, bringing the two natural gas pipelines closer together for docking. This allows the position of the natural gas pipeline to be adjusted according to the docking effect after it is fixed, thus facilitating the docking of natural gas pipelines. Attached Figure Description
[0012] To more clearly illustrate the technical solutions in the embodiments of this application or the prior art, the accompanying drawings used in the description of the embodiments or the prior art will be briefly introduced below.
[0013] Figure 1 This is a schematic diagram of the overall structure of the natural gas pipeline auxiliary installation equipment according to the first embodiment of this utility model.
[0014] Figure 2 This is a schematic diagram of the adjusting screw and adjusting motor of this utility model.
[0015] Figure 3 This is a structural schematic diagram of the frame and slider of this utility model.
[0016] Figure 4 This is a schematic diagram of the structure of the rubber pad and mounting screw of this utility model.
[0017] In the diagram: 101-base, 102-frame, 103-positioning plate, 104-drive cylinder, 105-fixed plate, 106-frame, 107-adjusting screw, 108-slider, 109-adjusting motor, 110-limiting rod, 111-limiting block, 112-connecting screw, 113-connecting motor, 114-stabilizing rod, 115-stabilizing cylinder, 201-rubber pad, 202-mounting screw. Detailed Implementation
[0018] The embodiments of the present invention are described in detail below. Examples of the embodiments are shown in the accompanying drawings. The embodiments described below with reference to the accompanying drawings are exemplary and intended to explain the present invention, but should not be construed as limiting the present invention.
[0019] The first embodiment of this application is as follows:
[0020] Please see Figures 1-3 , Figure 1 This is a schematic diagram of the overall structure of the natural gas pipeline auxiliary installation equipment according to the first embodiment of this utility model. Figure 2 This is a schematic diagram of the adjusting screw and adjusting motor of this utility model. Figure 3 This is a structural schematic diagram of the frame and slider of this utility model. This utility model provides an auxiliary installation device for natural gas pipelines, including a base 101 and an installation assembly. The installation assembly includes a frame 102, a mounting plate 103, a drive cylinder 104, a fixing plate 105, a frame 106, an adjusting screw 107, a slider 108, an adjusting motor 109, a docking component, a limiting rod 110, and a limiting block 111. The docking component includes a docking screw 112, a docking motor 113, a stabilizing rod 114, and a stabilizing cylinder 115. The aforementioned solution solves the problem in the prior art where it is inconvenient to adjust the position of the natural gas pipeline according to the docking effect after the natural gas pipeline is fixed, making the docking process time-consuming and laborious, thus causing inconvenience for the equipment to dock the natural gas pipeline. It can be understood that the aforementioned solution can be used in situations where it is inconvenient to adjust the position of the natural gas pipeline according to the docking effect after the natural gas pipeline is fixed.
[0021] In this specific embodiment, by placing the natural gas pipeline on the mounting plate 103, the drive cylinder 104 drives the fixed plate 105 to move, thus fixing the natural gas pipeline on the mounting plate 103. The adjusting motor 109 drives the adjusting screw 107 to rotate on the frame 106. When the adjusting screw 107 rotates, it drives the frame 102 to move the mounting plate 103, the fixed plate 105, the drive cylinder 104, and the natural gas pipeline, aligning the two natural gas pipelines. The docking component drives the two frames 106 to move on the base 101, bringing the two natural gas pipelines closer together for docking. This allows the position of the natural gas pipeline to be adjusted according to the docking effect after it is fixed, thereby facilitating the docking of the natural gas pipeline.
[0022] The frame 106 is slidably mounted on one side of the base 101. The docking member is connected to the base 101 and the frame 106. The bracket 102 is slidably mounted on the side of the frame 106 away from the base 101. The adjusting screw 107 is rotatably connected to the frame 106 and threadedly connected to the bracket 102. The adjusting motor 109 is fixedly connected to the frame 106, and the output shaft of the adjusting motor 109 is connected to the adjusting screw 107. The drive cylinder 104 is fixedly mounted on the side of the bracket 102 away from the frame 106. The fixed plate 105 is slidably connected to the bracket 102 and connected to the output end of the drive cylinder 104. The slider 1... 08 is fixedly connected to the frame 106 and slidably connected to the bracket 102. The mounting plate 103 is fixedly connected to the bracket 102 and located on the side of the bracket 102 away from the fixed plate 105. The top of the base 101 is hollow, and the top of the frame 106 is hollow. A through hole is designed on the upper left side of the frame 106, and multiple through holes are designed on the right side of the frame 106. A through threaded hole is designed on the left side of the bottom end of the bracket 102, and a through hole is designed on the top of the bracket 102. Sliding grooves are designed on the lower left and right sides of the bracket 102. There are multiple brackets 102, and the bottom end of the bracket 102 is slidably connected to the inner side of the frame 106. There are multiple sliders 108, and the sliders 108 are located on the frame. Inside the body 106, the outer side of the slider 108 is slidably connected to the slide groove of the frame 102. There are multiple adjusting motors 109 and multiple adjusting lead screws 107. The outer side of each adjusting lead screw 107 is designed with an external thread, which connects to a through threaded hole in the frame 102. The end of each adjusting lead screw 107 is fixedly connected to the output shaft of the adjusting motor 109 through a through hole in the frame 106. There are multiple mounting plates 103 located at the bottom inner side of the frame 102. There are multiple fixed plates 105 and multiple drive cylinders 104. The output end of each drive cylinder 104 is fixedly connected to the top of the fixed plate 105 through a through hole in the frame 102. Next, by placing the natural gas pipeline on the mounting plate 103, the drive cylinder 104 drives the fixed plate 105 to move, thus fixing the natural gas pipeline on the mounting plate 103. The adjusting motor 109 drives the adjusting screw 107 to rotate on the frame 106. When the adjusting screw 107 rotates, it drives the frame 102 to move the mounting plate 103, the fixed plate 105, the drive cylinder 104, and the natural gas pipeline, aligning the two natural gas pipelines. The docking component drives the two frames 106 to move on the base 101, bringing the two natural gas pipelines closer together for docking. This allows the position of the natural gas pipeline to be adjusted according to the docking effect after it is fixed.This allows the equipment to be easily connected to natural gas pipelines.
[0023] Secondly, the docking screw 112 is rotatably connected to the base 101 and threadedly connected to the frame 106; the docking motor 113 is fixedly connected to the base 101, and the output shaft of the docking motor 113 is connected to the docking screw 112. The left end of the base 101 is designed with a rotating hole, the side of the frame 106 is designed with a through threaded hole, and the outer side of the docking screw 112 is designed with an external thread, with the external threads at both ends being opposite. The external thread of the docking screw 112 is connected to the through threaded hole of the frame 106. The end of the docking screw 112 is fixedly connected to the output shaft of the docking motor 113 through the rotation of the base 101. The docking motor 113 drives the docking screw 112 to rotate on the base 101. When the docking screw 112 rotates, it drives the frame 106 to move on the base 101, thereby driving the frame 106 to move.
[0024] Then, the stabilizing cylinder 115 is fixedly connected to the frame 106 and to the side of the frame 106 away from the connecting screw 112; the stabilizing rod 114 is slidably connected to the stabilizing cylinder 115 and fixedly connected to the base 101. The frame 106 has through holes on its left and right sides. There are multiple stabilizing cylinders 115, and each stabilizing cylinder 115 has a through hole at its end. The outer side of the stabilizing cylinder 115 is fixedly connected to the through hole of the frame 106. There are multiple stabilizing rods 114, and the end of each stabilizing rod 114 is fixedly connected to the inner side of the base 101 through the through hole of the stabilizing cylinder 115. By driving the frame 106 to move on the base 101, the frame 106 drives the stabilizing cylinder 115 to move on the stabilizing rod 114, thereby improving the stability of the frame 106 during movement.
[0025] Finally, the limiting block 111 is slidably connected to the frame 102 and fixedly connected to the fixed plate 105; the limiting rod 110 is slidably connected to the limiting block 111 and fixedly connected to the frame 102. The vertical end of the frame 102 is designed with a sliding groove. There are multiple limiting blocks 111, and the top of each limiting block 111 is designed with a sliding hole. The right side of the limiting block 111 is fixedly connected to the left side of the fixed plate 105. There are multiple limiting rods 110, and the end of each limiting rod 110 is fixedly connected to the sliding groove of the frame 102 through the sliding hole of the limiting block 111. When the fixed plate 105 moves, it drives the limiting block 111 to move on the limiting rod 110, thereby limiting the movement angle of the fixed plate 105 and improving the stability of the fixed plate 105 when it moves.
[0026] When using the natural gas pipeline auxiliary installation equipment of this embodiment, the natural gas pipeline is placed on the mounting plate 103. The drive cylinder 104 drives the fixed plate 105 to move. The fixed plate 105 drives the limiting block 111 to move on the limiting rod 110, limiting the movement angle of the fixed plate 105. The fixed plate 105 abuts against the natural gas pipeline, fixing the natural gas pipeline on the mounting plate 103. The adjusting motor 109 drives the adjusting screw 107 to rotate on the frame 106. When the adjusting screw 107 rotates, it drives the frame... Body 102 drives the mounting plate 103, the fixed plate 105, the drive cylinder 104, and the natural gas pipeline to move, aligning the two natural gas pipelines. The docking motor 113 drives the docking screw 112 to rotate on the base 101. When the docking screw 112 rotates, it drives the two frame bodies 106 to move on the base 101, bringing the two natural gas pipelines closer together for docking. This makes it easy to adjust the position of the natural gas pipelines after they are fixed, based on the docking effect, thereby making it easy for the equipment to dock natural gas pipelines.
[0027] The second embodiment of this application is as follows:
[0028] Please see Figure 4 , Figure 4 This is a schematic diagram of the structure of the rubber pad and mounting screw of this utility model. Based on the first embodiment, the mounting assembly of this embodiment also includes a rubber pad 201 and a mounting screw 202.
[0029] In this specific embodiment, the rubber pad 201 is installed at the bottom of the fixed plate 105 by the mounting screw 202. When the fixed plate 105 moves, it causes the rubber pad 201 to abut against the natural gas pipeline, thereby increasing the friction when fixing the natural gas pipeline.
[0030] The mounting screw 202 is threadedly connected to the fixed plate 105 and is located on the side of the fixed plate 105 away from the drive cylinder 104. The rubber pad 201 is threadedly connected to the mounting screw 202 and is located on the side of the mounting screw 202 close to the fixed plate 105. The bottom of the fixed plate 105 is designed with multiple internal threaded holes, and the bottom of the rubber pad 201 is designed with multiple mounting holes. The rubber pad 201 is made of rubber. There are multiple mounting screws 202. The mounting screws 202 are connected to the internal threaded holes of the fixed plate 105 through the mounting holes of the rubber pad 201. The rubber pad 201 is installed on the bottom of the fixed plate 105 through the mounting screws 202. When the fixed plate 105 moves, it causes the rubber pad 201 to abut against the natural gas pipeline, thereby increasing the friction when fixing the natural gas pipeline.
[0031] When using the natural gas pipeline auxiliary installation equipment of this embodiment, the installation screw 202 installs the rubber pad 201 at the bottom of the fixed plate 105. When the fixed plate 105 moves, it drives the rubber pad 201 to abut against the natural gas pipeline, thereby increasing the friction when fixing the natural gas pipeline.
[0032] The above-disclosed embodiments are merely one or more preferred embodiments of this application and should not be construed as limiting the scope of this application. Those skilled in the art can understand that all or part of the processes for implementing the above embodiments and equivalent changes made in accordance with the claims of this application still fall within the scope of this application.
Claims
1. A natural gas pipeline auxiliary installation device, comprising a base, characterized in that, It also includes installation components; The mounting assembly includes a frame, a mounting plate, a drive cylinder, a fixed plate, a housing, an adjusting screw, a slider, an adjusting motor, and a docking component. The housing is slidably mounted on one side of the base. The docking component is connected to the base and the housing. The housing is slidably mounted on the side of the housing away from the base. The adjusting screw is rotatably connected to the housing and threadedly connected to the housing. The adjusting motor is fixedly connected to the housing, and its output shaft is connected to the adjusting screw. The drive cylinder is fixedly mounted on the side of the housing away from the housing. The fixed plate is slidably connected to the housing and connected to the output end of the drive cylinder. The slider is fixedly connected to the housing and slidably connected to the housing. The mounting plate is fixedly connected to the housing and located on the side of the housing away from the fixed plate.
2. The natural gas pipeline auxiliary installation equipment as described in claim 1, characterized in that, The docking component includes a docking lead screw and a docking motor. The docking lead screw is rotatably connected to the base and threadedly connected to the frame. The docking motor is fixedly connected to the base, and the output shaft of the docking motor is connected to the docking lead screw.
3. The natural gas pipeline auxiliary installation equipment as described in claim 2, characterized in that, The docking component further includes a stabilizing rod and a stabilizing cylinder. The stabilizing cylinder is fixedly connected to the frame and is located on the side of the frame away from the docking screw. The stabilizing rod is slidably connected to the stabilizing cylinder and fixedly connected to the base.
4. The natural gas pipeline auxiliary installation equipment as described in claim 1, characterized in that, The installation assembly further includes a limiting rod and a limiting block, the limiting block being slidably connected to the frame and fixedly connected to the fixed plate; the limiting rod being slidably connected to the limiting block and fixedly connected to the frame.
5. The natural gas pipeline auxiliary installation equipment as described in claim 1, characterized in that, The mounting assembly also includes a rubber pad and a mounting screw. The mounting screw is threadedly connected to the fixed plate and is located on the side of the fixed plate away from the drive cylinder. The rubber pad is threadedly connected to the mounting screw and is located on the side of the mounting screw closer to the fixed plate.
Citation Information
Patent Citations
Auxiliary device for butt joint installation of natural gas pipeline
CN213319820U