Adjustable fixing frame for steel wire mesh framework composite pipe production

By equipping the composite pipe with distance sensors and support frames, the position of the steel wire mesh skeleton is automatically adjusted, solving the problem that the fixing frame in the existing technology cannot adapt to pipes of different sizes, and achieving coaxial positioning and uniform force distribution during processing.

CN223749492UActive Publication Date: 2026-01-02HUBEI GUOSU NEW MATERIAL TECH CO LTD
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Patent Information

Application Number
CN202520324626.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-02-27
Publication Date
2026-01-02
Estimated Expiration
2035-02-27

AI Technical Summary

Technical Problem

The existing fixing frame used in the production of steel wire mesh reinforced composite pipes cannot automatically adjust the position of the pipes, resulting in pipes of different sizes not being able to be precisely positioned on the same axis, affecting processing accuracy and performance.

Method used

Employing a structure including a distance sensor, detection seat, and support frame, the support frame is driven by a primary power source to automatically adjust the position of the pipes, ensuring that steel wire mesh reinforced composite pipes of different sizes are precisely aligned on the same axis after fixing.

Benefits of technology

It enables automatic positioning and coaxial adjustment of composite pipes with steel wire mesh skeletons of different sizes, ensuring uniform stress on the pipes during winding and other processing, and improving processing accuracy and stability.

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Abstract

The utility model relates to the field of pipeline processing equipment, and discloses an adjustable fixing frame for producing a steel wire mesh framework composite pipe, which comprises a fixing frame body, the number of the detection seats is multiple, and the multiple detection seats are arranged to be close to each other or far away from each other; the number of the distance sensors is multiple, the distance sensors are installed on the fixing frame body, and the distance sensors are used for monitoring the position of the detection base. According to the device, the distance sensor, the detection seat, the lifting frame and other structures are arranged, the positions of the steel wire mesh framework composite pipes of different sizes can be automatically monitored, the first power source drives the lifting frame to automatically adjust the positions of the pipes, and it is ensured that the steel wire mesh framework composite pipes of different sizes can be accurately located on the same axis after being fixed; and the uniform stress of the pipe in the processing processes of winding a steel wire mesh, extruding a plastic layer and the like is ensured.
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Description

TECHNICAL FIELD

[0001] The utility model relates to pipeline processing equipment field especially, relates to adjustable steel wire mesh skeleton composite pipe production with fixing frame. BACKGROUND

[0002] Steel wire mesh skeleton plastic composite pipe is a new type of steel skeleton plastic composite pipe, and the steel wire mesh skeleton composite pipe is excellent in performance, and in the production process, the fixing frame as the key auxiliary equipment plays an indispensable role in guaranteeing pipe machining precision.

[0003] In the production process of the steel wire mesh skeleton composite pipe, it is extremely important to ensure that the pipeline and the processing equipment are on the same axis. This is because only when the pipeline is accurately located at the center position of the fixing frame and coaxial with the processing equipment, the pipe material can be uniformly stressed in the processes such as winding steel wire mesh and extruding plastic layer, so that the product with accurate size and stable performance can be produced.

[0004] The existing fixing frame for steel wire mesh skeleton composite pipe production lacks the ability to automatically adjust the position of the pipeline when facing different sizes of steel wire mesh skeleton composite pipes. After replacing the pipe material of different sizes, the position of the pipe material cannot be automatically adjusted to ensure that the pipe material is on the same axis. SUMMARY

[0005] To solve the above-mentioned problems, the utility model realizes the following technical scheme.

[0006] A kind of adjustable steel wire mesh skeleton composite pipe production with fixing frame, comprising: fixed frame body;Detection seat, quantity is several, several Detection seat is set to be close to or away from each other;Distance sensor, quantity is several, the distance sensor is installed on fixed frame body, and the distance sensor is used to monitor the position of detection seat;Lifting frame, it is installed in one side of the fixed frame body, and the lifting frame is set to move on fixed frame body.

[0007] Preferably, the fixed frame body comprises: a fixing hole formed in the fixed frame body;Fixing groove is formed in the fixing hole, and the detection seat is installed in the fixing groove, and the distance sensor is installed on the inner wall of the fixing groove.

[0008] Preferably, the detection seat comprises: an elastic member, one end of which is installed on the detection seat, and the other end is installed on the inner wall of the fixing groove.

[0009] Preferably, one side of the detection seat is formed with an inclined surface.

[0010] Preferably, the fixed frame body further comprises: a first power source mounted on the fixed frame body, a power shaft of the first power source being connected with the lifting frame, and the distance sensor being connected with the first power source through the controller.

[0011] Preferably, the fixed frame body further comprises: a second power source mounted on one side of the fixed frame body, the second power source being located above the first power source; and a fixed arm mounted on a power shaft of the second power source.

[0012] Preferably, the lifting frame comprises: an ear plate mounted on one side of the lifting frame, the power shaft of the first power source being connected with the ear plate; two mounting frames mounted on the lifting frame; and a roller mounted on the mounting frame, the roller being used for lifting the steel wire mesh framework composite pipe.

[0013] Preferably, the two mounting frames are V-shaped.

[0014] The utility model provides a kind of fixed frame for adjustable steel wire mesh framework composite pipe production.Compared with prior art, it has the following beneficial effects: by being equipped with distance sensor, detection seat and lifting frame etc., the position of different sizes steel wire mesh framework composite pipe can be automatically monitored, and the pipe material position is automatically adjusted by the first power source driving lifting frame, ensure that the steel wire mesh framework composite pipe of different sizes can be accurately on the same axis after fixing, ensure that pipe material is uniformly stressed in winding steel wire mesh, extruding plastic layer etc. BRIEF DESCRIPTION OF DRAWINGS

[0015] Figure 1 It is the three-dimensional structure schematic diagram provided by the utility model.

[0016] Figure 2 It is the fixed frame and lifting frame structure schematic diagram provided by the utility model.

[0017] Figure 3 It is the fixed frame cross section schematic diagram provided by the utility model.

[0018] Figure 4 It is the lifting frame structure schematic diagram provided by the utility model.

[0019] Reference numerals in the drawings are:

[0020] 100, fixed frame body; 101, fixed hole; 102, first power source; 103, fixed groove;

[0021] 200, second power source; 201, fixed arm;

[0022] 300, lifting frame; 301, ear plate; 302, mounting frame; 303, roller;

[0023] 400, detection seat; 401, slope; 402, distance sensor; 403, elastic member. DETAILED DESCRIPTION

[0024] The utility model will be further described below in conjunction with specific embodiments, and it should be understood that these embodiments are only used to illustrate the utility model and not used to limit the protection scope of the utility model.

[0025] The embodiments of the utility model are described below through specific examples, and those skilled in the art can easily understand other advantages and effects of the utility model from the disclosure of the specification. The utility model can also be implemented or applied through other different specific embodiments, and various modifications or changes can be made to the details in the specification based on different viewpoints and applications without departing from the spirit of the utility model.

[0026] Referring to Figures 1-4 A kind of adjustable wire mesh skeleton composite pipe production with fixed rack, including: fixed rack body 100;Detection seat 400, quantity is several, several described detection seat 400 It is set to be close to each other or away from each other;Distance sensor 402, quantity is several, described distance sensor 402 It is installed on fixed rack body 100, described distance sensor 402 It is used to monitor the position of detection seat 400;Lifting frame 300, it is installed on the side of described fixed rack body 100, described lifting frame 300 It is set to move on fixed rack body 100.

[0027] In the embodiment, distance sensor 402 real-time monitoring position change of detection seat 400.Distance sensor 402 can use laser distance sensor 402, ultrasonic distance sensor 402 etc. Non-contact sensor, this kind of sensor has the characteristics of high precision, response speed is fast, can accurately obtain the distance information between detection seat 400 and fixed groove 103 inner wall, and this information is transmitted to controller in real time, the distance of detection seat 400 is monitored by distance sensor 402, can judge the position of wire mesh skeleton composite pipe according to the distance data of two detection seats 400, when the distance of two detection seats 400 monitored by two distance sensors 402 is same, it indicates that wire mesh skeleton composite pipe is at the center position of fixed rack body 100, lifting frame 300 can automatically adjust the position of wire mesh skeleton composite pipe.

[0028] Referring to Figure 2 And Figure 3 Described fixed rack body 100 includes: fixed hole 101, it is set up in described fixed rack body 100;Fixed groove 103, it is set up in described fixed hole 101, described detection seat 400 is installed in fixed groove 103, described distance sensor 402 is installed on the inner wall of fixed groove 103.

[0029] The fixed frame body 100 provides a support frame for the entire device, and a fixed hole 101 is formed on the surface thereof, and a fixed groove 103 is further formed in the fixed hole 101, the fixed groove 103 is used for installing the detection seat 400, and at the same time, the distance sensor 402 is also installed on the inner wall of the fixed groove 103. The shape and size of the fixed groove 103 are designed to be matched with the detection seat 400, so that the detection seat 400 can stably move close to or away from the fixed groove 103, and shaking does not occur, thereby ensuring the accuracy of the position monitoring of the detection seat 400.

[0030] With reference to Figure 3 , the detection seat 400 comprises: an elastic member 403, one end of which is installed on the detection seat 400, and the other end of which is installed on the inner wall of the fixed groove 103; and a slope 401 is formed on one side of the detection seat 400.

[0031] The elastic member 403 adopts a spring, and can also adopt an elastic block. When the steel wire mesh skeleton composite pipe is placed on the fixed frame body 100, pipes of different sizes will press the detection seat 400 to different degrees, and the elastic member 403 plays a role of buffering and self-adaptive adjustment in this process, so that the detection seat 400 can flexibly move in the fixed groove 103 according to the size change of the pipe; the slope 401 on the detection seat 400 has an important role. When the steel wire mesh skeleton composite pipe is placed on the fixed frame body 100, the pipe will first contact the slope 401 of the detection seat 400. Due to the guiding effect of the slope 401, the pipe can more smoothly push the detection seat 400 to move to both sides during the placement process, so as to facilitate the detection seat 400 to quickly adapt to the diameter change of the pipe, and also help the pipe to be preliminarily positioned at a relatively central position on the fixed frame body 100.

[0032] With reference to Figure 2 and Figure 3 , the fixed frame body 100 further comprises: a first power source 102 installed on the fixed frame body 100, a power shaft of the first power source 102 is connected with the lifting frame 300, and the distance sensor 402 is connected with the first power source 102 through a controller; a second power source 200 installed on one side of the fixed frame body 100, the second power source 200 is located above the first power source 102; and a fixed arm 201 installed on a power shaft of the second power source 200.

[0033] The fixed arm 201 can realize telescopic action under the drive of the second power source 200, is used for further fixing or assisting in adjusting the position of the steel wire mesh skeleton composite pipe, enhances the fixing effect of the fixed frame body 100 on the pipe, and the first power source 102 and the second power source 200 both adopt air cylinders, and can also adopt linear motors.

[0034] With reference to Figure 2 andFigure 4 The lifting frame 300 comprises an ear plate 301 mounted on one side of the lifting frame 300, and a power shaft of the first power source 102 is connected with the ear plate 301; two mounting frames 302 are mounted on the lifting frame 300, and the two mounting frames 302 are V-shaped; and a roller 303 is mounted on the mounting frame 302, and the roller 303 is used for lifting the steel wire mesh skeleton composite pipe.

[0035] The two mounting frames 302 are V-shaped, and the V-shaped structure can better adapt to steel wire mesh skeleton composite pipes of different diameters. The roller 303 is mounted on the inner side of the V-shaped mounting frame 302. The roller 303 is usually made of wear-resistant materials such as high-strength nylon and alloy steel, and has a smooth surface to reduce friction with the pipe. The roller 303 is used to directly lift the steel wire mesh skeleton composite pipe and ensure the stable placement of the pipe on the fixing frame body 100.

[0036] During use, the operator places the steel wire mesh skeleton composite pipe on the roller 303 of the lifting frame 300. At this time, the pipe first contacts the inclined surface 401 of the detection seat 400. Due to the guiding effect of the inclined surface 401, the detection seat 400 moves to both sides in the fixed groove 103. At the same time, the pipe of different sizes exerts different degrees of extrusion on the detection seat 400, and the elastic member 403 deforms to play a buffering and self-adaptive adjusting role, so that the detection seat 400 can move flexibly in the fixed groove 103 according to the size change of the pipe.

[0037] The distance sensor 402 mounted on the inner wall of the fixed groove 103 monitors the position change of the detection seat 400 in real time, accurately obtains the distance information between the detection seat 400 and the inner wall of the fixed groove 103, and transmits the information to the controller in real time. The controller judges the position of the steel wire mesh skeleton composite pipe according to the distance data of the two detection seats 400 monitored by the two distance sensors 402. When the distance of the two detection seats 400 monitored by the two distance sensors 402 is the same, it indicates that the steel wire mesh skeleton composite pipe is in the center position of the fixing frame body 100; if the distance is different, it indicates that the pipe position deviates from the center.

[0038] If the pipe position deviates from the center, the controller sends a command to the first power source 102. The power shaft of the first power source 102 is connected with the ear plate 301 on one side of the lifting frame 300, drives the lifting frame 300 to move on the fixing frame body 100, and adjusts the position of the steel wire mesh skeleton composite pipe. During the adjustment process, the distance sensor 402 continuously monitors the position of the detection seat 400 and feeds back to the controller, and the controller continuously adjusts the action of the first power source 102 until the pipe is adjusted to the center position.

[0039] When the steel wire mesh framework composite pipe is adjusted to the center position, the controller sends a command to the second power source 200. The second power source 200 drives the fixed arm 201 to perform the telescopic action, further fixes or assists in adjusting the position of the steel wire mesh framework composite pipe, enhances the fixing effect of the fixed frame body 100 on the pipe material, and ensures that the pipe material will not be displaced in the subsequent processing process.

[0040] After the pipe material is fixed, the production and processing operation of the steel wire mesh framework composite pipe can be performed, such as winding steel wire mesh and extruding plastic layer. In the processing process, the supporting roller 303 rotates with the rotation of the pipe material. Since it is made of wear-resistant material and has a smooth surface, it can reduce the friction between the pipe material and ensure the smooth rotation of the pipe material. At the same time, the distance sensor 402 and the controller continue to work, and the position of the pipe material is monitored and adjusted in real time, ensuring the processing precision.

[0041] When the production and processing of the steel wire mesh framework composite pipe are completed, the work of the first power source 102 and the second power source 200 is stopped. The second power source 200 drives the fixed arm 201 to retract and release the fixation on the pipe material. The operator takes out the processed steel wire mesh framework composite pipe from the lifting frame 300. At this time, the detection seat 400 returns to the initial position under the action of the elastic member 403, preparing for the next placement of the pipe material.

[0042] Compared with the prior art, the present application has the following beneficial effects:

[0043] By being equipped with the distance sensor 402, the detection seat 400 and the lifting frame 300, the position of the steel wire mesh framework composite pipe of different sizes can be automatically monitored, and the first power source 102 drives the lifting frame 300 to automatically adjust the position of the pipe material, ensuring that the steel wire mesh framework composite pipes of different sizes can be accurately positioned on the same axis after being fixed, and ensuring that the pipe material is evenly stressed during the winding of the steel wire mesh and the extrusion of the plastic layer.

[0044] The present application can adapt to steel wire mesh framework composite pipes of different diameters. Whether the pipe material is of a smaller diameter or a larger diameter, it can be accurately fixed and coaxially positioned through automatic adjustment, improving the versatility of the fixed frame body 100.

[0045] Thus, although the present application has been described herein with reference to particular embodiments thereof, modifications, alterations and substitutions are possible within the scope and spirit of the application as disclosed above and as claimed below, and it is understood that some features of the present application could be employed without a corresponding use of the other features, and in some instances, without departing from the scope and spirit of the application. Accordingly, many modifications can be made in the particular embodiments without departing from the scope and spirit of the application. The present application is not intended to be limited to the particular embodiments used in the following claims, and / or the particular examples disclosed as the best mode for carrying out the present application, but the present application will include any and all embodiments and equivalents falling within the scope of the appended claims. Thus, the scope of the present application will only be determined by the appended claims.

Claims

1. A fixing frame for adjustable steel wire mesh framework composite pipe production, characterized in that, The utility model relates to a kind of steel wire net framework composite pipe lifting device, including: Fixed frame body (100); Detection seat (400), quantity is several, several detection seat (400) are set to each other close or far away; Distance sensor (402), quantity is several, distance sensor (402) is installed on fixed frame body (100), and distance sensor (402) is used to monitor the position of detection seat (400); Lifting frame (300) is installed on the side of fixed frame body (100), and lifting frame (300) is arranged to move on fixed frame body (100).

2. The adjustable fixed frame for manufacturing steel wire mesh skeleton composite pipe according to claim 1, characterized in that, The fixed frame body (100) includes: Fixed hole (101) is opened in the fixed frame body (100); Fixed slot (103) is opened in the fixed hole (101), and detection seat (400) is installed in fixed slot (103), and distance sensor (402) is installed on the inner wall of fixed slot (103).

3. The adjustable fixed frame for manufacturing steel wire mesh skeleton composite pipe according to claim 2, characterized in that, The detection seat (400) includes: Elastic member (403), one end is installed on the detection seat (400), and the other end is installed on the inner wall of fixed slot (103).

4. The adjustable wire mesh carcass composite pipe production fixture of claim 1, wherein, The side of detection seat (400) is formed with inclined plane (401).

5. The adjustable wire mesh carcass composite pipe production fixture of claim 1, wherein, The fixed frame body (100) further includes: First power source (102) is installed on the fixed frame body (100), and the power shaft of first power source (102) is connected with lifting frame (300), and distance sensor (402) is connected with first power source (102) by controller.

6. The adjustable wire mesh carcass composite pipe production fixture of claim 5, wherein, The fixed frame body (100) further includes: Second power source (200) is installed on the side of fixed frame body (100), and second power source (200) is located above first power source (102); Fixed arm (201) is installed on the power shaft of second power source (200).

7. The adjustable fixed frame for manufacturing steel wire mesh skeleton composite pipe according to claim 5, characterized in that, The lifting frame (300) includes: Ear plate (301) is installed on the side of lifting frame (300), and the power shaft of first power source (102) is connected with ear plate (301); Mounting bracket (302), quantity is two, two mounting brackets (302) are installed on lifting frame (300); Roller (303) is installed on the mounting bracket (302), and roller (303) is used to lift steel wire net framework composite pipe.

8. The adjustable wire fabric carcass composite pipe production fixture of claim 7, wherein, Two mounting brackets (302) are V-shaped.