Processing and transferring device for steel wire mesh framework composite pipe

By designing a processing and transfer device that includes an intermediate frame, a loading frame, a unloading frame, and a moving mechanism, and utilizing the coordinated movement of V-shaped support wheels and sliding rods, the problem of time-consuming and labor-intensive existing devices is solved, and efficient transfer of steel wire mesh reinforced composite pipes is achieved.

CN224046335UActive Publication Date: 2026-03-27HUBEI GUOSU NEW MATERIAL TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-05-15
Publication Date
2026-03-27

AI Technical Summary

Technical Problem

The existing steel wire mesh reinforced composite pipe processing and transfer equipment is complex, time-consuming and labor-intensive.

Method used

A processing and transfer device comprising an intermediate frame, a loading frame, a unloading frame, a moving mechanism, and a hydraulic cylinder is adopted. Through the coordinated movement of V-shaped support wheels and sliding rods, the efficient transfer of steel wire mesh reinforced composite pipes is achieved.

Benefits of technology

The processing and transfer of steel wire mesh reinforced composite pipes has been simplified, improving efficiency and reducing manpower consumption.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model belongs to the field of pipeline machining, and provides a steel wire mesh framework composite pipe machining and transferring device which comprises a middle frame, a feeding frame is arranged on the right side of the middle frame, a discharging frame is arranged on the left side of the middle frame, the middle frame faces the feeding frame, and the discharging frame is provided with a feeding mechanism and a row of discharging plates. A moving mechanism is arranged on the middle frame, the moving mechanism comprises a row of rotating shafts, the rotating shafts are rotatably installed on the middle frame, connecting frames are arranged on the rotating shafts, V-shaped supporting wheels are rotatably arranged on the connecting frames, and a rotating assembly used for driving all the rotating shafts to rotate synchronously is arranged in the middle frame. When the feeding mechanism lifts the steel wire mesh framework composite pipe, the sliding rod slides backwards, the sliding rod drives the bottoms of all the swing arms to rotate backwards, the V-shaped supporting wheel rotates forwards by a small distance, the V-shaped supporting wheel lifts the steel wire mesh framework composite pipe, and the feeding mechanism resets. And the supporting wheel continues to rotate forwards, and the front end of the steel wire mesh framework composite pipe is transferred to a machining station.
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Description

TECHNICAL FIELD

[0001] The utility model belongs to pipeline processing field especially relates to a steel wire mesh skeleton composite pipe processing and conveying device. BACKGROUND

[0002] The steel wire mesh skeleton composite pipe has the characteristics of good corrosion resistance, high pressure and easy installation, and the steel wire mesh skeleton composite pipe utilizes the interpenetrating structure of hot melting steel mesh skeleton and plastic to ensure the long-term stability of the pipe structure. After the production of the steel wire mesh skeleton composite pipe is completed, some steel wire mesh skeleton composite pipes with end defects are selected out, and the end of the steel wire mesh skeleton composite pipe is conveyed to the processing position for processing by using the processing and conveying device. The processed steel wire mesh skeleton composite pipe meets the sales conditions.

[0003] The existing material conveying device of pipe generally includes a pair of traction wheels, the steel wire mesh skeleton composite pipe is pulled out from the middle of the traction wheels and clamped, and the supporting wheel below supports the steel wire mesh skeleton composite pipe. The defective part of the steel wire mesh skeleton composite pipe is conveyed to the processing position for processing by the traction wheel, and after the processing is completed, the traction wheel is reversely moved to the initial position, and finally the steel wire mesh skeleton composite pipe is discharged to the discharge rack. Although this can also better complete the conveying of the steel wire mesh skeleton composite pipe, the whole process is relatively complex and time-consuming and laborious. UTILITY MODEL CONTENTS

[0004] In view of the above problems, the purpose of the utility model is to provide a steel wire mesh skeleton composite pipe processing and conveying device, which aims to solve the problems of complex conveying process and time-consuming and laborious of the existing steel wire mesh skeleton composite pipe processing and conveying device.

[0005] The utility model adopts the following technical scheme:

[0006] The processing and conveying device comprises an intermediate frame, the right side of the intermediate frame is provided with a feeding rack, the left side is provided with a discharging rack, the intermediate frame is respectively provided with a feeding mechanism and a row of discharging plates towards the feeding rack and the discharging rack, a moving mechanism is arranged on the intermediate frame, the moving mechanism comprises a row of rotating shafts, the rotating shafts are rotatably installed on the intermediate frame, a connecting frame is arranged on the rotating shafts, V-shaped supporting wheels are rotatably arranged on the connecting frame, a rotating assembly for driving all the rotating shafts to rotate synchronously is arranged in the intermediate frame, the rotating assembly comprises a slide rod which can slide forward and backward, an oscillating arm is arranged on each rotating shaft, a sliding groove is formed below the oscillating arm, a connecting sleeve corresponding to each oscillating arm is arranged on the slide rod, a guide column is arranged on the connecting sleeve, a guide groove is formed in the guide column, and the guide column is embeddedly installed in the sliding groove through the guide groove.

[0007] Further, the intermediate frame is internally provided with a plurality of pairs of bases, the bases are provided with guide sleeves, guide rods are inserted into the guide sleeves, the guide rods are provided with upper feeding seats, the upper feeding seats are rotatably provided below connecting frames, the upper feeding mechanism comprises linkage rods that can slide forward and backward, the linkage rods are provided with linkage sleeves corresponding to each connecting frame, and the linkage sleeves are rotatably connected with the corresponding connecting frames.

[0008] Further, the intermediate frame is internally provided with a pair of hydraulic oil cylinders, and the two hydraulic oil cylinders are respectively used for driving the slide rods and the linkage rods to move forward and backward.

[0009] Further, the lower feeding plates are uniformly arranged on the intermediate frame, and the top surfaces of the lower feeding plates are inclined downward and leftward.

[0010] Further, the top surface of the upper feeding seat is provided with a V-shaped groove.

[0011] The beneficial effects of the present application are as follows: when the upper feeding mechanism holds up the steel wire mesh framework composite pipe, the slide rods slide backward immediately, the bottom of all swing arms rotates backward along the slide rods, then all V-shaped supporting wheels rotate forward by a small distance, the supporting wheels hold up the steel wire mesh framework composite pipe, at the same time, the upper feeding mechanism resets, the supporting wheels continue to rotate forward until the front end of the steel wire mesh framework composite pipe is moved to a processing position, after the front end of the steel wire mesh framework composite pipe is processed, the slide rods slide forward, the supporting wheels move backward along the steel wire mesh framework composite pipe until the lower feeding plates support the steel wire mesh framework composite pipe, and the steel wire mesh framework composite pipe rolls from the lower feeding plates to the lower feeding frame. BRIEF DESCRIPTION OF DRAWINGS

[0012] Figure 1 It is a side view of the steel wire mesh framework composite pipe processing and moving device provided by the present application.

[0013] Figure 2 It is a whole view of the steel wire mesh framework composite pipe processing and moving device provided by the present application.

[0014] Figure 3 It is a V-shaped supporting wheel installation schematic view provided by the present application.

[0015] Figure 4 It is an upper feeding seat installation schematic view provided by the present application. DETAILED DESCRIPTION

[0016] In order to make the patent purposes, technical solutions and advantages of the present application more clear and understandable, the present application will be further described in detail below in combination with the drawings and embodiments. It should be understood that the specific embodiments described herein are only used to explain the present application, and are not used to limit the present application.

[0017] In order to explain the technical solutions of the present application, the following will be described through specific embodiments.

[0018] For ease of illustration only shows part of the embodiments of the present utility model related.

[0019] Combined Figures 1-3 As shown in the figure, the processing transfer device includes an intermediate frame 1, the right side of the intermediate frame 1 is provided with a feeding frame 2, and the left side is provided with a discharging frame 3, the intermediate frame 1 is respectively provided with a feeding mechanism and a row of discharging plates 4 towards the feeding frame 2 and the discharging frame 3, the intermediate frame 1 is provided with a moving mechanism, the moving mechanism includes a row of rotating shafts 5, the rotating shafts 5 are rotatably installed on the intermediate frame 1, the rotating shafts 5 are provided with connecting frames 6, the connecting frames 6 are rotatably provided with V-shaped supporting wheels 7, the intermediate frame 1 is provided with a rotating assembly for driving all rotating shafts 5 to rotate synchronously, the rotating assembly includes a slide rod 8 which can slide forward and backward, each rotating shaft 5 is provided with a swing arm 9, a sliding groove 10 is formed below the swing arm 9, the slide rod 8 is provided with a connecting sleeve 11 corresponding to each swing arm 9, the connecting sleeve 11 is provided with a guide column 12, the guide column 12 is provided with a guide groove 13, and the guide column 12 is embeddedly installed in the sliding groove 10 through the guide groove 13.

[0020] The steel wire mesh framework composite pipe has the characteristics of good corrosion resistance, high pressure and easy installation, and the steel wire mesh framework composite pipe utilizes the interpenetrating structure of hot melting steel mesh framework and plastic to ensure the long-term stability of the pipe structure. After the steel wire mesh framework composite pipe is produced, some steel wire mesh framework composite pipes with end defects are selected and the end thereof is sent to a processing position for processing by using the device, and the processed steel wire mesh framework composite pipe meets the sales conditions.

[0021] When the steel wire mesh framework composite pipe is sequentially and orderly transferred to the processing position by using the processing transfer device, first of all, the staff needs to place the selected steel wire mesh framework composite pipe on the feeding frame according to the requirements, the defective end of the steel wire mesh framework composite pipe is uniformly arranged towards the processing position, at this time, the feeding mechanism lifts up the steel wire mesh framework composite pipe located at the leftmost side of the feeding frame, then the moving mechanism starts to work, and the steel wire mesh framework composite pipe is moved to the processing position by one position, and the defective end of the steel wire mesh framework composite pipe is inserted into the processing position for processing.

[0022] Specifically: when the feeding mechanism holds up the steel wire mesh framework composite pipe, at this time a row of V-shaped support wheels is located directly below the steel wire mesh framework composite pipe, then the slide rod slides backward, the bottom of all the swing arms rotates backward, the top of the swing arms drives the pivot to rotate forward, then all the V-shaped support wheels rotate forward a small distance, the support wheels support the steel wire mesh framework composite pipe, at the same time the feeding mechanism resets, the support wheels continue to rotate forward until the front end of the steel wire mesh framework composite pipe is transferred to the processing position, after the front end of the steel wire mesh framework composite pipe is processed, the slide rod slides forward, the support wheels move backward with the steel wire mesh framework composite pipe until the unloading plate supports the steel wire mesh framework composite pipe.

[0023] As Figure 3 Because the unloading plate 4 is uniformly installed on the intermediate frame 1, and the top surface of the unloading plate 4 is a downward and leftward inclined slope, when the unloading plate supports the steel wire mesh framework composite pipe, at the same time all the V-shaped support wheels reset, the steel wire mesh framework composite pipe is unloaded along the slope of the unloading plate to the unloading frame.

[0024] In the above process, when the slide rod slides forward and backward, the guide post slides in the guide slot in the sliding groove. In addition, in the illustration, the shaft rod of the V-shaped support wheel penetrates out of the V-shaped support wheel a small distance, when the V-shaped support wheel resets, the intermediate frame supports the shaft rod of the V-shaped support wheel.

[0025] As a preferred structure, as Figure 4 The intermediate frame 1 is provided with a plurality of pairs of bases 15, the bases 15 are provided with guide sleeves 16, guide rods 17 penetrate into the guide sleeves 16, the same pair of guide rods 17 are provided with feeding seats 18, the feeding seats 18 are rotatably provided with connecting frames 19, the feeding mechanism includes a linkage rod 20 that can slide forward and backward, the linkage rod 20 is provided with linkage sleeves 21 corresponding to each connecting frame 19, and the linkage sleeves 21 are rotatably connected with the corresponding connecting frames 19.

[0026] Figure 4 The right end of the feeding seat exposes the intermediate frame a small distance, when it is needed to use the feeding mechanism to hold up the current steel wire mesh framework composite pipe on the feeding frame, at this time the right end of the feeding seat is located directly below the current steel wire mesh framework composite pipe, the linkage rod slides forward, all the linkage sleeves move forward a small distance, under the drive of the connecting frame, the feeding seat moves upward a small distance, and the feeding seat holds up the current steel wire mesh framework composite pipe. During the upward movement of the feeding seat, the guide rod slides in the guide sleeve, because the vertical movement distance of the feeding seat is limited, the guide rod will not be separated from the guide sleeve.

[0027] Because the top surface of the loading seat 18 is provided with a V-shaped groove 22, when the loading seat lifts the current steel wire mesh framework composite pipe, the pipe will slide on the loading seat to the left for a short distance. After sliding into place, the steel wire mesh framework composite pipe is located directly above the V-shaped support wheel. Then the moving mechanism starts to work and moves the steel wire mesh framework composite pipe towards the processing position. At the same time, the linkage rod slides backward, and all the loading seats are reset.

[0028] Because the right end of the loading seat protrudes from the intermediate frame for a short distance, and the left end slightly protrudes from the intermediate frame, when the loading seat is reset, the intermediate frame supports the loading seat. At the same time, the right end of the loading seat is lower than the loading rack. After the current steel wire mesh framework composite pipe is processed and discharged to the discharge rack, the worker moves the next steel wire mesh framework composite pipe to the loading position, that is, the next steel wire mesh framework composite pipe is located directly above the right end of the loading seat, waiting for processing.

[0029] As a specific structure, Figure 1 Among them, the intermediate frame 1 is provided with a pair of hydraulic oil cylinders 23, and the two hydraulic oil cylinders 23 are respectively used to drive the sliding rod 8 and the linkage rod 20 to move forward and backward. The hydraulic oil cylinder serves as a driving source and drives the sliding rod and the linkage rod to move forward and backward respectively.

[0030] The above only describes the preferred embodiments of the present application and is not intended to limit the present application. Any modification, equivalent replacement and improvement made within the spirit and principle of the present application shall be included in the protection scope of the present application.

Claims

1. A wire fabric reinforcement composite pipe processing and transfer apparatus characterized by: The processing conveying device comprises an intermediate frame, the right side of the intermediate frame is provided with an upper feeding frame, the left side is provided with a lower discharging frame, the intermediate frame is respectively provided with an upper feeding mechanism and a row of lower discharging plates towards the upper feeding frame and the lower discharging frame, the intermediate frame is provided with a moving mechanism, the moving mechanism comprises a row of rotating shafts, the rotating shafts are rotatably installed on the intermediate frame, the rotating shafts are provided with connecting frames, the connecting frames are rotatably provided with V-shaped supporting wheels, the intermediate frame is provided with a rotating assembly for driving all rotating shafts to rotate synchronously, the rotating assembly comprises a slide rod which can slide forward and backward, each rotating shaft is provided with a swing arm, a slide groove is formed below the swing arm, the slide rod is provided with a connecting sleeve corresponding to each swing arm, the connecting sleeve is provided with a guide column, a guide groove is formed in the guide column, and the guide column is embeddedly installed in the slide groove through the guide groove.

2. A wire fabric carcass composite pipe processing and transfer apparatus as defined in claim 1 wherein: The intermediate frame is provided with a plurality of pairs of bases, the bases are provided with guide sleeves, guide rods are inserted into the guide sleeves, upper feeding seats are provided on the same pair of guide rods, the upper feeding seats are rotatably provided with connecting frames below, the upper feeding mechanism comprises a linkage rod which can slide forward and backward, the linkage rod is provided with a linkage sleeve corresponding to each connecting frame, and the linkage sleeve is rotatably connected with the corresponding connecting frame.

3. The steel wire fabric reinforced composite pipe processing and transferring device according to claim 2, characterized in that: The intermediate frame is provided with a pair of hydraulic oil cylinders, and the two hydraulic oil cylinders are respectively used for driving the slide rod and the linkage rod to move forward and backward.

4. The steel wire fabric carcass composite pipe processing and transferring apparatus according to claim 3, characterized in that: The lower discharging plates are uniformly installed on the intermediate frame, and the top surface of the lower discharging plate is a downward and leftward inclined inclined surface.

5. The wire fabric reinforcement composite pipe processing and transfer apparatus of claim 4 wherein: The top surface of the upper feeding seat is provided with a V-shaped groove.