A pipeline construction auxiliary positioning device

By designing a pipeline construction auxiliary positioning device that includes a positioning base, support frame, limiting components, and reinforcement components, the problem of existing supports being unable to be fixed has been solved, achieving stable positioning and high-precision installation of pipelines.

CN116642056BActive Publication Date: 2025-12-09THE 2ND ENG CO LTD OF CHINA RAILWAY 17 BUREAU GRP
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Patent Information

Application Number
CN202310509837.8
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-05-08
Publication Date
2025-12-09
Estimated Expiration
2043-05-08

AI Technical Summary

Technical Problem

Existing supports can only support pipes during pipeline construction but cannot fix them, which makes the pipes prone to shifting or tilting, affecting installation accuracy.

Method used

A pipeline construction auxiliary positioning device was designed, which includes a positioning base, a support frame, a limiting component, and a reinforcement component. Through the cooperation of a bidirectional screw drive and a limiting arc block, the device can limit and reinforce the pipeline, ensuring its stability.

Benefits of technology

This achieves stable positioning of the pipeline, avoids displacement and tilting, and improves installation accuracy and stability.

✦ Generated by Eureka AI based on patent content.

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    Figure CN116642056B_ABST
Patent Text Reader

Abstract

The utility model relates to a pipeline construction auxiliary positioning equipment relates to pipeline positioning technical field;Support base frame is four, two sets of opposite setting respectively in the front and back sides of positioning base;Limiting component is two, sets up in the open end of positioning base respectively;Reinforcing component is four, sets up in the front and back sides of positioning base respectively;Not only can support two pipelines to be aligned and installed, but also can carry out the location to the pipeline, avoid its movement, reinforce the stability of pipeline, make the pipeline installation more stable, convenient installation.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of pipeline positioning, in particular to a pipeline construction auxiliary positioning device. BACKGROUND

[0002] During water conservancy and hydropower pipeline construction and installation, the construction pipeline needs to be connected by multiple sections for installation. During the assembly process, the butt joints of two pipelines need to be completely aligned, otherwise the installation will be affected. Therefore, in view of the above phenomenon, a support device is used to support two pipelines to be connected for easy installation. However, the existing support device has some problems when used, such as: only supporting the pipeline, making the two pipelines flush, but the size of the installed pipeline is not completely consistent, and the pipeline to be installed cannot be fixed, which is easy to deviate, and if the non-installed end of the pipeline is affected by external force, the pipeline will be raised. SUMMARY

[0003] The present application aims to overcome the defects and deficiencies of the prior art, and provides a pipeline construction auxiliary positioning device with simple structure, reasonable design and convenient use. The device not only supports two pipelines to be aligned and installed, but also limits the movement of the pipelines to avoid movement, and strengthens the stability of the pipelines to make the installation more stable and convenient.

[0004] To achieve the above purpose, the technical solution adopted by the present application is as follows: it contains a positioning base and a base, and the base is provided with a positioning base on the left and right sides;

[0005] It also contains:

[0006] The support base frame is four, two groups of two are arranged on the front and rear sides of the positioning base respectively;

[0007] The limiting assembly is two, arranged in the open end of the positioning base respectively;

[0008] The reinforcing assembly is four, arranged on the front and rear sides of the positioning base respectively;

[0009] The limiting assembly limits the pipeline passing through the positioning base respectively, and the reinforcing assembly strengthens the stability of the pipeline.

[0010] As a further improvement of the present application, the limiting assembly contains:

[0011] Two bidirectional screws are arranged on the upper side of the positioning base, and the front and rear ends of the bidirectional screws are respectively rotatably connected with the vertical ends in the support base frame through bearings; the vertical end on the front side of the support base frame is fixed with a driving motor, and the output shaft of the driving motor is connected with the bidirectional screw; the driving motor is connected with an external power supply;

[0012] Two driving frames are respectively rotatably connected with the two opposite threads on the bidirectional screws through threads, and the driving frames are arranged in the open end of the positioning base;

[0013] A guide rod is arranged on the upper side of the bidirectional screw, and the front and rear ends of the guide rod are respectively connected with the inner walls of the vertical ends of the support base frame, and the guide rod is arranged in the driving frame;

[0014] Two limiting arc blocks are arranged on the lower side of the driving frame;

[0015] Through the above technical scheme design, the driving frame moves to drive the limiting arc block to limit the pipeline.

[0016] As a further improvement of the application, a through slot is arranged in the driving frame, the through slot is arranged on the lower side of the bidirectional screw, a support frame is arranged in the through slot, and the limiting arc block is arranged on the lower side of the support frame; a sliding groove is formed on the side of the driving frame away from the pipeline, and the sliding groove is in communication with the through slot; a sliding block is slidably arranged in the sliding groove, and the sliding block is connected with the support frame; a threaded rod is rotatably arranged in the sliding block through threads, and the upper and lower ends of the threaded rod are rotatably connected with the inner walls of the upper and lower sides of the sliding groove through bearings; a rotating boss is sleeved and fixed on the threaded rod, and the rotating boss is arranged on the lower side of the sliding block;

[0017] Through the above technical scheme design, the rotating boss is manually rotated to rotate the threaded rod, and the sliding block drives the support frame to move through threads.

[0018] As a further improvement of the application, a recess is formed in the horizontal end of the support frame, a support table is inserted in the recess, and the limiting arc block is fixed on the side of the support table close to the pipeline; a support shaft is rotatably arranged in the support table through a bearing and the recess; the outer end of the support shaft is rotatably connected with the support frame through a bearing, and a rotating gear is sleeved and fixed on the outer end of the support shaft after passing through the support frame; a rotating motor is fixed on the outer side of the horizontal end of the support frame, and the rotating motor is connected with an external power supply; a driving gear is sleeved and fixed on the output shaft of the rotating motor, and the driving gear is in meshing connection with the rotating gear;

[0019] Through the above technical scheme design, the driving gear is in meshing connection to rotate the rotating gear, so that the support table drives the limiting arc block to rotate to adjust the angle.

[0020] As a further improvement of the present application, the inner arc wall of the limiting arc block is provided with a limiting pad.

[0021] As a further improvement of the present application, the reinforcing assembly comprises:

[0022] The card holder is clamped on the outer side of the positioning base, and the card holder is slidably arranged with the positioning base through a sliding pair; the horizontal end of the supporting base is provided with an electric push rod connected with an external power source; the pushing end of the electric push rod is fixed to the card holder after penetrating through the supporting base;

[0023] The pushing block is two, respectively penetrating into the moving slot on the left and right sides of the card holder;

[0024] The reinforcing arc block is two, respectively fixed to the side of the pushing block close to the pipeline;

[0025] The screw rod is two, respectively arranged on the side of the pushing block away from the pipeline through a bearing, and penetrating into the moving slot, and the end of the screw rod away from the pipeline is threaded and rotated and penetrated into the card holder;

[0026] Through the above technical scheme design, the electric push rod drives the card holder to move, adjusts the height of the reinforcing arc block, and the screw rod drives the reinforcing arc block to move, and the pipeline is reinforced and limited.

[0027] As a further improvement of the present application, the outer side of the reinforcing arc block is fixed with a support, and the support is arranged in an "L" shape, the vertical end of the support is penetrated with an adjusting frame, and the adjusting frame is arranged in an inverted "L" shape; the threaded column is threaded and penetrated into the support and the adjusting frame, and the front and rear ends of the threaded column are exposed to the support, and the exposed end is threaded and rotatably connected with a locking cover; the connecting frame is arranged between the front and rear adjusting frames on the same side, and the horizontal end of the adjusting frame is penetrated into the connecting frame;

[0028] Through the above technical scheme design, the front and rear reinforcing arc blocks are reinforced through the cooperation of the adjusting frame, the connecting frame and the support.

[0029] As a further improvement of the present application, a strip-shaped slot is formed in the horizontal end of the adjusting frame, and the locking screw column is threaded and rotated and penetrated into the connecting frame and abuts against the strip-shaped slot.

[0030] Through the above technical scheme design, the locking screw column locks the adjusting frame.

[0031] After adopting the above structure, the present application has the following beneficial effects:

[0032] 1. While supporting the pipeline, the front and rear limiting arc blocks are synchronously adjusted to limit and compress the pipeline, so that the pipeline is prevented from moving;

[0033] 2. The limiting arc block can be angle-adjusted to meet the clamping requirements of different specifications of pipes;

[0034] 3. The reinforcing arc blocks on the left and right sides of the positioning base are synchronously moved to clamp the outer wall of the pipe;

[0035] 4. The reinforcing arc blocks on the front and rear sides are connected and locked to make the reinforcing arc blocks more stable. BRIEF DESCRIPTION OF DRAWINGS

[0036] In order to more clearly illustrate the technical solutions in the embodiments of the present application or the prior art, the drawings needed to be used in the embodiments or the prior art description will be briefly introduced. Obviously, the drawings in the following description are only some embodiments of the present application, and other drawings can be obtained by those skilled in the art without any creative effort on the basis of these drawings.

[0037] Figure 1 is a structural schematic diagram of the present application.

[0038] Figure 2 is a structural schematic diagram of the limiting assembly in the present application.

[0039] Figure 3 is an enlarged view of A of Figure 2

[0040] Figure 4 is an enlarged view of B of Figure 2

[0041] Figure 5 is a structural schematic diagram of the reinforcing assembly in the present application.

[0042] Figure 6 is a structural schematic diagram of the reinforcing assembly in the present application.

[0043] Explanation of reference signs:

[0044] ​​Positioning base 1, base 2, support base 3, limiting assembly 4, bidirectional screw rod 4-1, drive motor 4-2, drive frame 4-3, slot 4-3-1, sliding groove 4-3-2, guide rod 4-4, limiting arc block 4-5, support frame 4-6, groove 4-6-1, sliding block 4-7, threaded rod 4-8, rotating boss 4-9, support platform 4-10, support shaft 4-11, rotating gear 4-12, rotating motor 4-13, drive gear 4-14, limiting pad 4-15, reinforcing assembly 5, clamping frame 5-1, electric push rod 5-2, push block 5-3, reinforcing arc block 5-4, screw rod 5-5, support frame 5-6, adjusting frame 5-7, strip-shaped groove 5-7-1, threaded column 5-8, locking cover 5-9, connecting frame 5-10, locking stud 5-11. DETAILED DESCRIPTION

[0045] The application will be further described below with reference to the drawings.

[0046] Example 1

[0047] Please refer to Figures 1-6 This embodiment includes positioning base 1 and base 2, and the base 2 is provided with positioning base 1 on the left and right sides.

[0048] It also includes:

[0049] Support base 3, the support base 3 is four, two groups of two are respectively arranged on the front and rear sides of the positioning base 1.

[0050] Limiting assembly 4, the limiting assembly 4 is two, respectively arranged in the open end of the positioning base 1.

[0051] Reinforcing assembly 5, the reinforcing assembly 5 is four, respectively arranged on the front and rear sides of the positioning base 1.

[0052] The above design scheme is adopted, the limiting assembly 4 respectively limits the pipeline arranged in the respective positioning base 1, and the reinforcing assembly 5 reinforces the stability of the pipeline.

[0053] Example 2

[0054] Please refer to Figures 1-6 On the basis of example 1, the limiting assembly 4 includes:

[0055] Two bidirectional screw rods 4-1 are arranged on the upper side of the positioning base 1, and the front and rear ends of the bidirectional screw rods 4-1 are respectively connected with the vertical ends in the support base 3 through bearings;

[0056] Two driving frames 4-3 are respectively arranged on the two opposite threads of the bidirectional screw rods 4-1 through threaded connection, and the driving frames 4-3 are arranged in the open end of the positioning base 1;

[0057] Two guide rods 4-4 are arranged on the upper side of the bidirectional screw rods 4-1, and the front and rear ends of the guide rods 4-4 are respectively connected with the inner walls of the vertical ends of the support base 3, and the guide rods 4-4 are arranged in the driving frames 4-3;

[0058] Two limiting arc blocks 4-5 are arranged on the lower side of the driving frames 4-3;

[0059] According to the above design scheme, the driving frame 4-3 moves to drive the limiting arc block 4-5 to limit the pipeline.

[0060] Embodiment 3:

[0061] Please refer to Figures 1-6 On the basis of embodiment 2, the inside of the driving frame 4-3 is provided with a through slot 4-3-1 arranged on the lower side of the bidirectional screw rod 4-1, a support frame 4-6 is arranged in the through slot 4-3-1, and the limiting arc block 4-5 is arranged on the lower side of the support frame 4-6; a sliding slot 4-3-2 is arranged on the side of the driving frame 4-3 away from the pipeline, and the sliding slot 4-3-2 is arranged in communication with the through slot 4-3-1; a sliding block 4-7 is slidably arranged in the sliding slot 4-3-2, and the sliding block 4-7 is connected with the support frame 4-6; a threaded rod 4-8 is threadedly arranged in the sliding block 4-7, and the upper and lower ends of the threaded rod 4-8 are respectively connected with the inner walls of the upper and lower sides of the sliding slot 4-3-2 through bearings; a rotating boss 4-9 is sleeved and fixed on the threaded rod 4-8, and the rotating boss 4-9 is arranged on the lower side of the sliding block 4-7.

[0062] According to the above design scheme, the rotating boss 4-9 is manually rotated to rotate the threaded rod 4-8, and the sliding block 4-7 drives the support frame 4-6 to move through the thread.

[0063] Embodiment 4:

[0064] Please refer toFigures 1-6 On the basis of embodiment 3, a groove 4-6-1 is arranged in the horizontal end of the support frame 4-6, a support platform 4-10 is arranged in the groove 4-6-1, a limiting arc block 4-5 is fixed to one side of the support platform 4-10 close to the pipeline, a limiting pad 4-15 is arranged on the inner arc wall of the limiting arc block 4-5, a support shaft 4-11 is arranged in and fixed to the support platform 4-10, the support shaft 4-11 is rotatably connected to the groove 4-6-1 through a bearing, an output gear 4-12 is arranged on the outer end of the support shaft 4-11 and fixed to the support frame 4-6 through a bearing, a rotating motor 4-13 is fixed to the outer side of the horizontal end of the support frame 4-6, and the rotating motor 4-13 is connected to an external power source; the specific model of the rotating motor 4-13 is directly purchased from the market according to actual use requirements, an input gear 4-14 is arranged on the output shaft of the rotating motor 4-13 and fixed to the rotating motor 4-13, and the input gear 4-14 is rotatably connected to the output gear 4-12.

[0065] According to the above design scheme, the input gear 4-14 is rotatably connected to the output gear 4-12, the output gear 4-12 is rotatably connected to the support shaft 4-11, and the support shaft 4-11 is rotatably connected to the support platform 4-10, so that the support platform 4-10 drives the limiting arc block 4-5 to rotate and the angle is adjusted.

[0066] Embodiment 5

[0067] Please refer to Figures 1-6 On the basis of embodiment 1, the reinforcing assembly 5 comprises:

[0068] a clamping frame 5-1, the clamping frame 5-1 is arranged on the outer side of the positioning base 1, and the clamping frame 5-1 is rotatably connected to the positioning base 1 through a sliding pair, an electric push rod 5-2 is arranged on the horizontal end of the support base 3, the electric push rod 5-2 is connected to an external power source, and the specific model of the electric push rod 5-2 is directly purchased from the market according to actual use requirements; the pushing end of the electric push rod 5-2 is fixed to the clamping frame 5-1 after penetrating through the support base 3.

[0069] a pushing block 5-3, the pushing block 5-3 is arranged in the moving groove on the left and right sides of the clamping frame 5-1.

[0070] a reinforcing arc block 5-4, the reinforcing arc block 5-4 is arranged on one side of the pushing block 5-3 close to the pipeline.

[0071] a screw rod 5-5, the screw rod 5-5 is arranged on one side of the pushing block 5-3 away from the pipeline through a bearing and penetrates through the moving groove, and one end of the screw rod 5-5 away from the pipeline is arranged in the clamping frame 5-1 through screw rotation.

[0072] With the above design scheme, the electric push rod 5-2 drives the clamping frame 5-1 to move, adjusts the height of the reinforcing arc block 5-4, and the screw rod 5-5 drives the reinforcing arc block 5-4 to move, thereby reinforcing and limiting the pipeline.

[0073] Embodiment 6:

[0074] Please refer to Figures 1-6 On the basis of Embodiment 5, the reinforcing arc block 5-4 is fixed with a support 5-6 on the outer side, the support 5-6 is provided in an "L" shape structure, an adjusting frame 5-7 is arranged in the vertical end of the support 5-6, the adjusting frame 5-7 is provided in an inverted "L" shape structure; a threaded column 5-8 is arranged in the support 5-6 and the adjusting frame 5-7 through threading, the front and rear ends of the threaded column 5-8 are exposed to the support 5-6, and a locking cover 5-9 is arranged on the exposed end through screwing; a connecting frame 5-10 is arranged between the front and rear adjusting frames 5-7 on the same side, and the horizontal end of the adjusting frame 5-7 is arranged in the connecting frame 5-10; a strip-shaped groove 5-7-1 is arranged on the horizontal end of the adjusting frame 5-7, and a locking screw column 5-11 is arranged in the strip-shaped groove 5-7-1 through screwing and rotating the connecting frame 5-10;

[0075] With the above design scheme, the front and rear reinforcing arc blocks 5-4 are reinforced through the cooperation of the adjusting frame 5-7, the connecting frame 5-10 and the support 5-6.

[0076] In use of the present application, the two pipelines to be connected are respectively threaded into the corresponding positioning bases 1, and the ends to be connected are aligned; by starting the drive motor 4-2, the bidirectional screw rod 4-1 is rotated to drive the front and rear drive frames 4-3 to move synchronously, so that the limiting arc blocks 4-5 move; at the same time, the rotating boss 4-9 is manually rotated to rotate the threaded rod 4-8, and the sliding block 4-7 drives the support frame 4-6 to move through the thread, so that the limiting arc blocks 4-5 move in height and drive the limiting arc blocks 4-5 to move into contact with the pipelines; the rotating motor 4-13 is started to make the drive gear 4-14 mesh with the rotating gear 4-12 to rotate, so that the support base 4-10 drives the limiting arc blocks 4-5 to rotate, and the limiting arc blocks 4-5 are adjusted to clamp the upper arc walls on the front and rear sides of the pipelines; after the limiting arc blocks 4-5 are adjusted, the electric push rod 5-2 is started to drive the clamping frame 5-1, so that the reinforcing arc blocks 5-4 are aligned with the middle part of the arc walls of the pipelines; the screw rod 5-5 is manually rotated to drive the push block 5-3 through the thread until the reinforcing arc blocks 5-4 are arranged in close contact with the pipelines; the adjusting frames 5-7 on the front and rear sides are manually pulled to be perpendicularly inserted into the support frames 5-6 until the connecting frames 5-10 are arranged in contact with the pipelines; the threaded column 5-8 is manually threaded into the support frames 5-6 and the adjusting frames 5-7, and is locked by the locking cover 5-9, and at the same time, the locking stud 5-11 is unscrewed until it is clamped on the adjusting frames 5-7 to fix the adjusting frames 5-7 and reinforce the fixation of the reinforcing arc blocks 5-4 on the front and rear sides.

[0077] After adopting the above structure, the present embodiment has the following advantages:

[0078] 1. While supporting the pipelines, the front and rear limiting arc blocks 4-5 are synchronously adjusted to limit and press the pipelines, so that the pipelines are prevented from moving;

[0079] 2. The limiting arc blocks 4-5 can be adjusted in angle to meet the clamping requirements of pipelines of different specifications;

[0080] 3. The reinforcing arc blocks 5-4 on the left and right sides of the positioning base 1 are synchronously moved to clamp the outer walls of the pipelines by the reinforcing arc blocks 5-4;

[0081] 4. The reinforcing arc blocks 5-4 on the front and rear sides are connected and locked to make the reinforcing arc blocks 5-4 more stable.

[0082] The above description is only used to illustrate the technical solutions of the present application but not limit the present application, and other modifications or equivalent replacements to the technical solutions of the present application made by those skilled in the art should be covered in the scope of the claims of the present application.

Claims

1. A pipeline construction auxiliary positioning device, comprising a positioning base (1) and a base (2) with the positioning base (1) oppositely arranged on the left and right sides of the base (2) ; it further comprises: support base frames (3), the support base frames (3) are four, two are oppositely arranged on the front and rear sides of the positioning base (1) ; limiting assemblies (4), the limiting assemblies (4) are two, arranged in the open end of the positioning base (1) ; the limiting assembly (4) comprises: bidirectional lead screws (4-1), the bidirectional lead screws (4-1) are two, arranged on the upper side of the positioning base (1), and the front and rear ends of the bidirectional lead screws (4-1) are rotatably connected with the vertical ends of the support base frames (3) ; a drive motor (4-2) is fixed on the vertical end of the support base frame (3) on the front side, the output shaft of the drive motor (4-2) is connected with the bidirectional lead screw (4-1) ; the drive motor (4-2) is connected with an external power supply; drive frames (4-3), the drive frames (4-3) are two, threadedly rotatably sleeved on the two opposite threads of the bidirectional lead screws (4-1), and the drive frames (4-3) are arranged in the open end of the positioning base (1) ; guide rods (4-4), the guide rods (4-4) are arranged on the upper side of the bidirectional lead screws (4-1), and the front and rear ends of the guide rods (4-4) are connected with the inner walls of the vertical ends of the support base frames (3), and the guide rods (4-4) are arranged in the drive frames (4-3) ; limiting arc blocks (4-5), the limiting arc blocks (4-5) are two, arranged on the lower side of the drive frames (4-3) ; the inside of the drive frame (4-3) is provided with a through slot (4-3-1), the through slot (4-3-1) is arranged on the lower side of the bidirectional lead screw (4-1), a support frame (4-6) is arranged in the through slot (4-3-1), and the limiting arc block (4-5) is arranged on the lower side of the support frame (4-6) ; a sliding slot (4-3-2) is formed on the side of the drive frame (4-3) away from the pipeline, and the sliding slot (4-3-2) is arranged in communication with the through slot (4-3-1) ; a sliding block (4-7) is slidably arranged in the sliding slot (4-3-2), and the sliding block (4-7) is connected with the support frame (4-6) ; a threaded rod (4-8) is threadedly rotatably arranged in the sliding block (4-7), the upper and lower ends of the threaded rod (4-8) are rotatably connected with the inner walls of the upper and lower slots of the sliding slot (4-3-2) through bearings; a rotating boss (4-9) is sleeved and fixed on the threaded rod (4-8), and the rotating boss (4-9) is arranged on the lower side of the sliding block (4-7). characterized in that ​ ​ ​ ​ ​ ​ ​ ​ ​ The horizontal end of the support frame (4-6) is provided with a groove (4-6-1), a support base (4-10) is inserted in the groove (4-6-1), a limiting arc block (4-5) is fixed to one side of the support base (4-10) close to the pipeline, a support shaft (4-11) is fixedly arranged in the support base (4-10) and is rotatably connected to the groove (4-6-1) through a bearing, and a rotating gear (4-12) is fixedly arranged on the outer end of the support shaft (4-11) and passes through the support frame (4-6) through a bearing; a rotating motor (4-13) is fixed to the outer side of the horizontal end of the support frame (4-6) and is connected to an external power source; a driving gear (4-14) is fixedly arranged on the output shaft of the rotating motor (4-13) and is rotatably connected to the rotating gear (4-12). The reinforcing assembly (5) is four, respectively arranged in the front and rear sides of the positioning base (1). The reinforcing assembly (5) comprises: The clamping frame (5-1) is clamped to the outer side of the positioning base (1) and is slidably arranged with the positioning base (1) through a sliding pair; an electric push rod (5-2) is arranged on the horizontal end of the support base (3) and is connected to an external power source; the pushing end of the electric push rod (5-2) is fixed to the clamping frame (5-1) after passing through the support base (3); The pushing block (5-3) is two, respectively arranged in the moving grooves on the left and right sides of the clamping frame (5-1); The reinforcing arc block (5-4) is two, respectively fixed to one side of the pushing block (5-3) close to the pipeline; The screw rod (5-5) is two, respectively rotatably arranged on the side of the pushing block (5-3) away from the pipeline through a bearing and arranged in the moving groove, and one end of the screw rod (5-5) away from the pipeline is rotatably arranged in the clamping frame (5-1) through a thread.

2. A pipe installation aid positioning apparatus according to claim 1, wherein: The inner side of the limiting arc block (4-5) is provided with a limiting pad (4-15).

3. A pipe installation aid positioning device according to claim 1, wherein: The outer side of the reinforcing arc block (5-4) is fixed with a support (5-6), and the support (5-6) is arranged in an "L" shape, the vertical end of the support (5-6) is provided with an adjusting frame (5-7), and the adjusting frame (5-7) is arranged in an inverted "L" shape; a threaded column (5-8) is arranged in the support (5-6) and the adjusting frame (5-7) through a thread, and the front and rear ends of the threaded column (5-8) are exposed to the support (5-6), and a locking cover (5-9) is rotatably arranged on the exposed end through a thread; a connecting frame (5-10) is arranged between the front and rear adjusting frames (5-7) on the same side, and the horizontal end of the adjusting frame (5-7) is arranged in the connecting frame (5-10).

4. A pipe installation aid positioning device according to claim 3, wherein: The horizontal end of the adjusting frame (5-7) is provided with a strip-shaped groove (5-7-1), and a locking screw (5-11) is rotatably arranged in the strip-shaped groove (5-7-1) through a thread.

Citation Information

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