Steel wire winding device for machining steel wire mesh framework composite pipe

By designing a steel wire winding device with positioning, stroke and finishing mechanisms, the problems of length adaptability and winding uniformity of the composite pipe are solved, the close combination of the steel wire and the composite pipe is achieved, and the quality of the composite pipe is improved.

CN120755274AInactive Publication Date: 2025-10-10SHANDONG HONGTAI PLASTIC IND CO LTD
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Patent Information

Application Number
CN202511152490.1
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-08-18
Publication Date
2025-10-10
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

The existing steel wire winding device is difficult to adapt to composite pipes of different lengths, the steel wire winding is uneven, the steel wire and the composite pipe do not fit tightly, and manual finishing is required.

Method used

A wire winding device including a positioning mechanism, a stroke mechanism, an unwinding mechanism and a finishing mechanism is designed. The positioning mechanism stably clamps the composite tube, the stroke mechanism adjusts the unwinding position, and the finishing mechanism ensures uniform and tight winding of the wire.

Benefits of technology

It achieves stable positioning of composite pipes of different lengths, ensures uniform spiral winding of the steel wire, improves winding tightness, avoids steel wire displacement, and improves the quality of the composite pipe.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses a steel wire winding device for machining a steel wire mesh framework composite pipe, belongs to the technical field of composite pipe production, and aims to solve the problems that an existing device is difficult to adapt to composite pipes with different lengths, steel wires are wound unevenly, and the steel wires and the composite pipes are not tightly attached. The device comprises a base, a positioning mechanism, a stroke mechanism, an unwinding mechanism and an arrangement mechanism. The positioning mechanism can be flexibly adjusted to adapt to composite pipes with different lengths; the travel mechanism is matched with the composite pipe to rotate, so that the steel wire is uniformly and spirally wound; the unwinding mechanism can stably unwind the steel wire; the arrangement mechanism continuously rolls the steel wires in the winding process and after winding is completed through a guide pipe and a pressing roller, and steel wire displacement caused by moving the composite pipe is avoided. The steel wire winding tightness and uniformity can be improved, and the composite pipe quality is guaranteed.
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Description

Technical Field

[0001] The invention relates to the technical field of composite pipe production, in particular to a steel wire winding device for processing steel wire mesh skeleton composite pipes. Background Art

[0002] As a new type of composite pipe material, wire mesh composite pipe combines the high strength of steel pipe with the corrosion resistance of plastic pipe. It has been widely used in municipal water supply, gas transportation, chemical industry, and other fields. During the production of wire mesh composite pipe, the wire winding process is a key step, and the winding quality directly affects the performance and service life of the composite pipe.

[0003] Currently, existing steel wire winding devices on the market have several shortcomings. For one thing, many devices cannot effectively adapt to the positioning and clamping of composite pipes of varying lengths. Given the diverse specifications and lengths of composite pipes, if the positioning and clamping mechanisms cannot be flexibly adjusted, stable positioning of composite pipes of varying lengths becomes difficult. During the winding process, the composite pipes may wobble or shift, resulting in uneven winding and poor quality.

[0004] On the other hand, existing devices struggle to ensure uniform spiral winding of the wire around the composite pipe during the unwinding and winding processes. The unwinding mechanism of some devices lacks effective stroke control, resulting in uneven spacing of the wire around the composite pipe, with areas of over- or under-wound wire. This not only affects the strength and stability of the composite pipe but also results in waste of wire.

[0005] In addition, after the steel wire is wound, the tightness of the fit between the steel wire and the composite pipe is also an important issue. Existing sorting devices, such as the polyethylene steel wire mesh skeleton composite pipe steel wire winding device disclosed in announcement number CN212889054U, have a technical solution in which the device for sorting the steel wire wound on the composite pipe and the device for winding the steel wire are split. The composite pipe with the steel wire wrapped around it needs to be moved before the steel wire can be compacted. However, after the steel wire is initially wound on the composite pipe, it will remain in a relatively loose state. Therefore, in the process of moving the composite pipe, the wound steel wire and the composite pipe will inevitably be displaced. When the steel wire is subsequently pressed and sorted, it is easy to cause the wound steel wire to be misplaced on the composite pipe, and manual sorting is required.

[0006] In response to the above problems, the present invention document proposes a steel wire winding device for processing steel wire mesh skeleton composite pipes. Summary of the Invention

[0007] The present invention provides a steel wire winding device for processing steel wire mesh skeleton composite pipes, which solves the problems of existing devices such as difficulty in adapting to composite pipes of different lengths, uneven steel wire winding, and loose fitting between the steel wire and the composite pipe.

[0008] The present invention provides the following technical solutions:

[0009] A steel wire winding device for processing a steel wire mesh skeleton composite pipe, comprising:

[0010] The base has a support plate fixed on one side of its top, a first drive motor fixed on the top of one side of the support plate, an output shaft of the first drive motor passes through the support plate and is fixed to a first positioning shaft; a positioning mechanism is provided on the other side of the top of the base, and a composite tube body is sandwiched between the positioning mechanism and the first positioning shaft;

[0011] The travel mechanism is respectively connected to the top of the other side of the support plate and the positioning mechanism;

[0012] The unwinding mechanism is connected to the travel mechanism, on which a reel is installed, and the reel is wound with a steel wire, which is used to drive the reel to rotate and release the steel wire;

[0013] The finishing mechanism is installed on the unwinding mechanism and is used to press the steel wire wound on the composite pipe body so that the steel wire is wound tightly;

[0014] Among them, after the composite tube body is positioned, the first drive motor drives the first positioning shaft to drive the composite tube body to rotate, and at the same time the unwinding mechanism unwinds the steel wire, the stroke mechanism adjusts the position of the unwinding mechanism, and the finishing mechanism presses the steel wire to achieve uniform and tight winding of the steel wire.

[0015] In one possible design, the positioning mechanism includes a slide rail fixed to the top of the base, a movable plate is slidably connected to the slide rail, and the top of one side of the movable plate is rotatably connected to the second positioning shaft; an adjustment component is also provided on the top of the base, and the adjustment component is respectively connected to both sides of the movable plate, for driving the movable plate to move laterally along the slide rail, thereby driving the second positioning shaft to approach the composite pipe body for positioning and clamping.

[0016] In a possible design, the adjustment assembly includes a mounting plate fixed to the other side of the top of the base, one side of the mounting plate is symmetrically rotated to connect the two first screws, two threaded tubes are symmetrically fixed on the movable plate, and the first screws pass through the corresponding threaded tubes and are threadedly connected; a second driving motor is fixed to the other side of the mounting plate, the output shaft of which passes through the mounting plate and is fixed with a driving gear, a driven gear is fixed on the first screw, the driving gear is located between the two driven gears and meshes with them respectively, and the first screw is driven to rotate by the second driving motor to drive the movable plate to move.

[0017] In a possible design, the travel mechanism includes a second support frame, whose two sides are fixedly connected to the top of the other side of the support plate and the top of the mounting plate respectively; a movable hole is opened on the second support frame, and a sliding plate is slid through the movable hole, and the unwinding mechanism is installed at the bottom of the sliding plate; a movable component is installed on the top of the second support frame, and the movable component passes through the sliding plate and is connected to it, and is used for lateral sliding support and position adjustment of the unwinding mechanism.

[0018] In a possible design, the moving assembly includes a fourth drive motor fixed to one side of the top of the second support frame, a fourth screw is fixed on the output shaft, a nut is fixed on the top of one side of the sliding plate, the fourth screw passes through the sliding plate and the nut respectively and is threadedly connected to the nut, one end of the fourth screw is rotatably connected to the other side of the top of the second support frame, and the fourth screw is driven to rotate by the fourth drive motor to drive the sliding plate to move laterally.

[0019] In one possible design, the unwinding mechanism includes a first fixed plate fixed to the bottom of the sliding plate, with a mounting frame fixed on one side of the first fixed plate and a third drive motor fixed on the other side, whose output shaft extends into the mounting frame and fixes the first chuck; the inner wall of one side of the mounting frame passes through the clamping assembly, and the reel is located between the clamping assembly and the first chuck and is clamped by the two. The first chuck is driven to rotate by the third drive motor, and then the reel is driven to rotate to unwind the wire.

[0020] In one possible design, the clamping assembly includes a second screw that passes through the inner wall of one side of the mounting frame and is threadedly connected thereto. One end of the second screw located inside the mounting frame is rotatably connected to the support plate, and one side of the support plate is rotatably connected to the second chuck. The support plate is driven to move by rotating the second screw, so that the second chuck cooperates with the first chuck to clamp the reel.

[0021] In one possible design, the organizing mechanism includes a second fixed plate fixed on one side of the mounting frame, with two sliding rods symmetrically fixed at the bottom, and a sliding connection adjustment plate passing through the two sliding rods; an electric push rod is fixed on the top of the second fixed plate, and its output shaft passes through the second fixed plate and is fixedly connected to the top of the adjustment plate; a supporting plate is fixed on one side of the bottom of the adjustment plate, and a support plate is fixed on the top of one side of the supporting plate, a fixed guide tube passes through the support plate, and the steel wire passes through the guide tube; a pressing assembly is also connected to the supporting plate for rolling the wound steel wire.

[0022] In a possible design, the pressing assembly includes a limit frame fixed on both sides of the electric push rod, with a sliding limit rod passing through it. The two limit rods are fixed with the same fixed frame on one side close to each other, and the pressure roller is rotatably connected inside the fixed frame; the other side of the supporting plate is rotatably connected to the third screw, and one end of the two limit rods is fixed with the same linkage plate, the third screw passes through the linkage plate and is threadedly connected, and the linkage plate is driven to move by rotating the third screw to adjust the position of the pressure roller.

[0023] It should be understood that the foregoing general description and the following detailed description are exemplary only and are not restrictive of the invention.

[0024] Beneficial effects: In the present invention, by providing a positioning mechanism, the composite pipe body can be placed between the first positioning shaft and the second positioning shaft, and the composite pipe body can be clamped on the first positioning shaft. Then, by starting the adjustment component, the movable plate can be driven to move laterally along the slide rail, thereby driving the second positioning shaft to approach the composite pipe body until the composite pipe body is positioned and clamped by the second positioning shaft. In this way, when winding the steel wire on the composite pipe body, the composite pipe body can be positioned in advance, and by starting the first driving motor to drive the first positioning shaft to rotate, the composite pipe body can be driven to rotate, so that the steel wire can be wound on the composite pipe body.

[0025] In the present invention, the travel mechanism is provided, and the sliding plate can be slidably connected to the support frame, so that the unwinding mechanism can be supported by transverse sliding. The position of the unwinding mechanism can be adjusted under the power transmission of the moving component. Therefore, the steel wire can be evenly spirally wound on the composite pipe body in coordination with the rotation of the composite pipe body.

[0026] In the present invention, the unwinding mechanism is provided, and after the reel is placed between the first chuck and the clamping assembly, the clamping assembly is operated to make the clamping assembly cooperate with the first chuck to position and clamp the reel, and then the third driving motor is started to drive the first chuck to drive the reel to rotate, so that the steel wire wound on the reel can be unwound;

[0027] In the present invention, by setting up the arranging mechanism, the adjusting plate can be driven to move downward by starting the electric push rod, so that the guide tube can be moved to a position corresponding to the composite tube body, and the pressing assembly can also be moved downward at the same time, and then the steel wire is passed through the guide tube, so that the steel wire can be guided when it is wound on the composite tube body, and after the steel wire is wound on the composite tube body, the pressing assembly can be used to roll the steel wire, so that the steel wire can be evenly and tightly wound on the composite tube body.

[0028] The present invention can flexibly adjust the positioning and clamping mechanism to adapt to composite pipes of different lengths and ensure stable positioning; by controlling the stroke of the unwinding mechanism, the steel wire can be evenly spirally wound; and the pressure roller continues to roll during and after winding, without moving the composite pipe, avoiding displacement of the steel wire, effectively improving the tightness and uniformity of the steel wire winding, and ensuring the quality of the composite pipe. BRIEF DESCRIPTION OF THE DRAWINGS

[0029] Figure 1 A three-dimensional schematic diagram of the first-view structure of a steel wire winding device for processing a steel mesh skeleton composite pipe provided by an embodiment of the present invention;

[0030] Figure 2 A three-dimensional schematic diagram of the structure of a steel wire winding device for processing a steel mesh skeleton composite pipe provided by an embodiment of the present invention from a second perspective;

[0031] Figure 3 A three-dimensional diagram of the structure from a third perspective of a steel wire winding device for processing a steel mesh skeleton composite pipe provided by an embodiment of the present invention;

[0032] Figure 4 A three-dimensional schematic diagram of the connection structure of the first drive motor, two first screws and a movable plate of the steel wire winding device for processing a steel mesh skeleton composite pipe provided by an embodiment of the present invention;

[0033] Figure 5 A three-dimensional schematic diagram from a first perspective of the sliding plate, first fixing plate, mounting frame, and reel connection structure of a steel wire winding device for processing a steel mesh skeleton composite pipe provided by an embodiment of the present invention;

[0034] Figure 6 A three-dimensional schematic diagram from a second perspective of the sliding plate, first fixing plate, mounting frame, and reel connection structure of the steel wire winding device for processing a steel mesh skeleton composite pipe provided by an embodiment of the present invention;

[0035] Figure 7 A three-dimensional schematic diagram of the connection structure of the second screw, the support plate, and the second chuck of the steel wire winding device for processing a steel mesh skeleton composite pipe provided by an embodiment of the present invention;

[0036] Figure 8 A three-dimensional schematic diagram of the connection structure of the electric push rod, adjustment plate, guide tube and pressure roller of the steel wire winding device for processing the steel mesh skeleton composite pipe provided by an embodiment of the present invention;

[0037] Figure 9 This is a three-dimensional schematic diagram of the connection structure of the electric push rod, adjustment plate, bearing plate, linkage plate and two limit rods of the steel wire winding device for processing steel mesh skeleton composite pipes provided by an embodiment of the present invention.

[0038] Reference numerals:

[0039] 1. Base; 2. Support plate; 3. First drive motor; 4. First positioning shaft; 5. Slide rail; 6. Moving plate; 7. Second positioning shaft; 8. Composite pipe body; 9. Mounting plate; 10. First screw; 11. Threaded pipe; 12. First support frame; 13. Second drive motor; 14. Driving gear; 15. Driven gear; 16. Second support frame; 17. Sliding plate; 18. First fixed plate; 19. Mounting frame; 20. Third drive motor; 21. First chuck; 2 2. Second screw; 23. Support plate; 24. Second chuck; 25. Guide rod; 26. Connecting plate; 27. Reel; 28. Steel wire; 29. ​​Second fixed plate; 30. Slide rod; 31. Adjustment plate; 32. Support plate; 33. Guide tube; 34. Electric push rod; 35. Loading plate; 36. Limit frame; 37. Limit rod; 38. Fixed frame; 39. Press roller; 40. Linkage plate; 41. Third screw; 42. Fourth drive motor; 43. Fourth screw; 44. Nut. DETAILED DESCRIPTION

[0040] The embodiments of the present invention are described below with reference to the accompanying drawings.

[0041] In the description of the embodiments of the present invention, it should be noted that, unless otherwise clearly specified and limited, the terms, "connection", and "installation" should be understood in a broad sense. For example, "connection" can be a detachable connection or a non-detachable connection; it can be a direct connection or an indirect connection through an intermediate medium. In addition, "communication" can be a direct connection or an indirect connection through an intermediate medium. Here, "fixed" means that the two are connected to each other and the relative position relationship after connection remains unchanged. The directional terms mentioned in the embodiments of the present invention, such as "inside", "outside", "top", "bottom", etc., are only reference to the directions of the accompanying drawings. Therefore, the directional terms used are for better and clearer explanation and understanding of the embodiments of the present invention, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore cannot be understood as a limitation on the embodiments of the present invention.

[0042] In the embodiments of the present invention, the terms "first" and "second" are used for descriptive purposes only and should not be understood to indicate or imply relative importance or implicitly specify the number of technical features indicated. Therefore, features defined as "first" or "second" may explicitly or implicitly include one or more of the features.

[0043] In the embodiments of the present invention, "and / or" is simply a description of the association relationship between associated objects, indicating that three possible relationships exist. For example, "A and / or B" can represent three situations: A exists alone, A and B exist simultaneously, and B exists alone. Furthermore, the character " / " in this document generally indicates that the associated objects are in an "or" relationship.

[0044] References to "one embodiment" or "some embodiments" in this specification mean that a particular feature, structure, or characteristic described in connection with that embodiment is included in one or more embodiments of the present invention. Thus, phrases such as "in one embodiment," "in some embodiments," "in other embodiments," and "in yet other embodiments" appearing in various places in this specification do not necessarily refer to the same embodiment, but rather mean "one or more, but not all, embodiments," unless otherwise specifically emphasized. The terms "including," "comprising," "having," and variations thereof mean "including but not limited to," unless otherwise specifically emphasized.

[0045] Example 1: Reference Figures 1-9 A winding device includes a base 1, a support plate 2 is fixedly mounted on one side of the top of the base 1, a first drive motor 3 is fixedly mounted on one side of the top of the support plate 2, the output shaft of the first drive motor 3 passes through the support plate 2 and is fixedly mounted on a first positioning shaft 4. A positioning mechanism is provided on the other side of the top of the base 1, and a composite tube body 8 is sandwiched between the positioning mechanism and the first positioning shaft 4. The positioning mechanism includes a slide rail 5 fixedly mounted on the top of the base 1, a movable plate 6 is slidably connected to the slide rail 5, and a second positioning shaft 7 is rotatably connected to the top of one side of the movable plate 6. An adjustment component is also provided on the top of the base 1, and the adjustment component is respectively connected to both sides of the movable plate 6. The adjusting assembly includes a mounting plate 9 fixedly mounted on the other side of the top of the base 1, one side of the mounting plate 9 is symmetrically connected to the two first screws 10 for rotation, two threaded tubes 11 are symmetrically penetrated and fixedly mounted on the movable plate 6, the first screw 10 penetrates the corresponding threaded tube 11 and is threadedly connected to the threaded tube 11, a first support frame 12 is fixedly mounted on the top of the base 1, one end of the two threaded tubes 11 is rotatably connected to one side of the first support frame 12, a second drive motor 13 is fixedly mounted on the other side of the mounting plate 9, the output shaft of the second drive motor 13 penetrates the mounting plate 9 and is fixedly mounted on the driving gear 14, a driven gear 15 is fixedly mounted on the first screw 10, the driving gear 14 is located between the two driven gears 15 and is respectively engaged with the two driven gears 15.

[0046] During use, the composite pipe body 8 is placed between the first positioning shaft 4 and the second positioning shaft 7, and the composite pipe body 8 is clamped on the first positioning shaft 4. The second drive motor 13 is started, and its output shaft drives the driving gear 14 to rotate. The driving gear 14 engages with the two driven gears 15, driving the two first screws 10 to rotate. The first screws 10 are threadedly connected to the threaded tube 11, driving the movable plate 6 to move laterally along the slide rail 5, driving the second positioning shaft 7 to approach the composite pipe body 8, until the composite pipe body 8 is positioned and clamped by the second positioning shaft 7. In this way, when winding the steel wire 28 around the composite pipe body 8, the composite pipe body 8 can be pre-positioned, and the position of the second positioning shaft 7 can be adjusted according to the actual length of the composite pipe body 8, so that composite pipe bodies 8 of different lengths can be positioned and clamped. The first drive motor 3 is started to drive the first positioning shaft 4 to rotate, driving the composite pipe body 8 to rotate, thereby winding the steel wire 28 around the composite pipe body 8.

[0047] The wire winding device also includes a travel mechanism, an unwinding mechanism and a finishing mechanism. The travel mechanism includes a second support frame 16, and the two sides of the second support frame 16 are respectively fixedly connected to the top of the other side of the support plate 2 and the top of the mounting plate 9. A moving hole is provided on the second support frame 16, and a sliding plate 17 is slidably connected through the moving hole. The unwinding mechanism is installed at the bottom of the sliding plate 17. A moving assembly is installed on the top of the second support frame 16, and the moving assembly passes through the sliding plate 17 and is connected to the sliding plate 17. The moving assembly includes a fourth drive motor 42 fixedly installed on one side of the top of the second support frame 16, a fourth screw 43 is fixedly installed on the output shaft of the fourth drive motor 42, a nut 44 is fixedly installed on the top of one side of the sliding plate 17, the fourth screw 43 passes through the sliding plate 17 and the nut 44 respectively and is threadedly connected to the nut 44, and one end of the fourth screw 43 is rotatably connected to the other side of the top of the second support frame 16. By starting the fourth drive motor 42 to drive the fourth screw 43 to rotate, under the action of threaded transmission with the nut 44, the sliding plate 17 is driven to move laterally along the second support frame 16, the lateral position of the unwinding mechanism is adjusted, and the composite pipe body 8 rotates to evenly spirally wind the steel wire 28 on the composite pipe body 8.

[0048] The unwinding mechanism includes a fixed plate 18 fixedly mounted at the bottom of the sliding plate 17. A mounting frame 19 is fixedly mounted on one side of the fixed plate 18, and a third drive motor 20 is fixedly mounted on the other side of the fixed plate 18. The output shaft of the third drive motor 20 extends into the mounting frame 19 and is fixedly mounted on a first chuck 21. A clamping assembly is connected through the inner wall of one side of the mounting frame 19. The reel 27 is located between the clamping assembly and the first chuck 21 and is clamped to the first chuck 21 and the clamping assembly respectively. The clamping assembly includes a second screw 22 that penetrates the inner wall of one side of the mounting frame 19 and is threadedly connected to the inner wall of one side of the mounting frame 19. One end of the second screw 22 located in the mounting frame 19 is rotatably connected to a support plate 23. One side of the support plate 23 is rotatably connected to a second chuck 24. The second chuck 24 cooperates with the first chuck 21 to position and clamp the reel 27. Two guide rods 25 are symmetrically fixedly mounted on the other side of the support disc 23. One end of each guide rod 25 passes through the inner wall of one side of the mounting frame 19 and extends to the outside of the mounting frame 19. One end of each guide rod 25 is fixedly mounted on a common connecting plate 26. A second screw rod 22 passes through the connecting plate 26 and is rotatably connected to the connecting plate 26. During use, the reel 27 is positioned between the first chuck 21 and the second chuck 24. The second screw rod 22 is rotated. Under the action of the screw thread on the inner wall of one side of the mounting frame 19, the support disc 23 is driven toward the reel 27. The second chuck 24 is used to position and clamp the reel 27 so that the reel 27 is in close contact with the first chuck 21. The support disc 23 rotatably supports the second chuck 24. The third drive motor 20 is started to rotate the first chuck 21, which in turn drives the reel 27 to rotate and unwind the steel wire 28 wound on the reel 27. The two guide rods 25 support the support plate 23 in a transverse sliding manner, thereby increasing the supporting force of the support plate 23 and placing the reel 27 and the third drive motor 20 on the same axis, thereby ensuring that the reel 27 rotates stably to unwind the wire 28 .

[0049] The present application can be used in the field of composite pipe production technology, and can also be used in other fields applicable to the present application.

[0050] Example 2: Reference Figures 8-9On the basis of Embodiment One, improve: a steel wire winding device for processing steel wire mesh framework composite pipe, it applies to composite pipe production technical field, the arrangement mechanism includes the second fixed plate 29 fixedly installed on one side of the mounting frame 19, two slide rods 30 are symmetrically fixedly installed on the bottom of the second fixed plate 29, the same adjusting plate 31 is slidably connected on the two slide rods 30, the electric push rod 34 is fixedly installed on the top of the second fixed plate 29, the output shaft of the electric push rod 34 penetrates the second fixed plate 29 and is fixedly connected with the top of the adjusting plate 31, the bearing plate 35 is fixedly installed on the bottom of the adjusting plate 31, the supporting plate 32 is fixedly installed on the top of the bearing plate 35, the guide pipe 33 is fixedly installed on the supporting plate 32, and the steel wire 28 penetrates the guide pipe 33.The bearing plate 35 is also connected to the pressing assembly, the pressing assembly includes limiting frames 36 fixedly installed on both sides of the electric push rod 34, limiting rods 37 are slidably connected in the limiting frames 36, the same fixed frame 38 is fixedly installed on the side of the two limiting rods 37 close to each other, the pressure roller 39 is rotatably connected in the fixed frame 38, the third screw 41 is rotatably connected on the other side of the bearing plate 35, the same linkage plate 40 is fixedly installed on one end of the two limiting rods 37, and the third screw 41 penetrates the linkage plate 40 and is screw-connected with the linkage plate 40.In use, the electric push rod 34 is started to drive the adjusting plate 31 to move downwards, the guide pipe 33 is moved to the position corresponding to the composite pipe body 8, and the pressing assembly is moved downwards, the steel wire 28 is passed through the guide pipe 33, and the steel wire 28 is wound on the composite pipe body 8, the guide pipe 33 guides the steel wire 28, and the steel wire 28 is uniformly wound on the composite pipe body 8.The third screw 41 is rotated, the linkage plate 40 is driven to move under the action of screw transmission with the linkage plate 40, the fixed frame 38 is driven to move transversely by the two limiting rods 37, the position of the pressure roller 39 is adjusted, the pressure roller 39 is adjusted to the appropriate position according to the diameter size of the composite pipe body 8, the steel wire 28 wound on the composite pipe body 8 with different diameters is rolled and pressed by the pressure roller 39, the steel wire 28 is uniformly and tightly wound on the composite pipe body 8, and the applicability of the overall device is improved.

[0051] Working principle: When in use, first place the composite tube body 8 on the first positioning shaft 4, start the second drive motor 13, and its output shaft drives the driving gear 14 to rotate. The driving gear 14 is meshed with the two driven gears 15 for transmission, driving the two first screws 10 to rotate. The first screw 10 is threadedly driven with the threaded tube 11, driving the movable plate 6 to move laterally along the slide rail 5, driving the second positioning shaft 7 to approach the composite tube body 8, until the composite tube body 8 is positioned and clamped between the first positioning shaft 4 and the second positioning shaft 7, then placing the reel 27 between the first chuck 21 and the second chuck 24, rotating the second screw 22, which is threadedly driven with the inner wall of one side of the mounting frame 19, driving the support plate 23 to approach the reel 27, and the support plate 2 The guide rod 25 and the connecting plate 26 are kept in stable movement, so that the second chuck 24 cooperates with the first chuck 21 to position and clamp the reel 27. Then, the electric push rod 34 is started, and its output shaft drives the adjustment plate 31 to move downward, so that the guide tube 33 moves to the position corresponding to the composite tube body 8. At the same time, the pressure roller 39 of the pressing assembly is also moved downward. The third screw 41 is rotated, and it is threaded with the linkage plate 40 to drive the linkage plate 40 to move. The fixing frame 38 is driven to move horizontally through the limit rod 37, and the position of the pressure roller 39 is adjusted according to the diameter of the composite tube body 8. Then, the steel wire 28 is passed through the guide tube 33 and wound around the composite tube body 8. The first drive motor 3 is started, and its output shaft drives the first positioning shaft 4 to rotate, thereby driving the first positioning shaft 4 to rotate. The composite pipe body 8 is driven to rotate, and the third driving motor 20 is started at the same time. Its output shaft drives the first chuck 21 to rotate, and the first chuck 21 drives the reel 27 to rotate to unwind the steel wire 28. Then, one end of the steel wire 28 is fixed to one end of the composite pipe body 8 by a buckle. At this time, the composite pipe body 8 that keeps rotating can wind the steel wire 28 on 8. At the same time, the fourth driving motor 42 is started, and its output shaft drives the fourth screw 43 to rotate. The fourth screw 43 and the nut 44 are threadedly driven to drive the sliding plate 17 to move laterally along the second support frame 16, and the position of the unwinding mechanism is adjusted so that the steel wire 28 is evenly spirally wound on the composite pipe body 8. During the winding process of the steel wire 28, the pressure roller 39 is pressed against the steel wire 28 wound on the composite pipe body 8. The steel wire 28 on the composite tube body 8 is rolled so that the steel wire 28 is evenly and tightly wound on the composite tube body 8. After the steel wire 28 is spirally wound from one end of the composite tube body 8 to the other end of the composite tube body 8, the steel wire 28 can be cut off and the cut end is fixed to the other end of the composite tube body 8 by a buckle. Then, the first drive motor 3 is started to continue to drive the composite tube body 8 to rotate, and the fourth drive motor 42 is started to drive the fourth screw 43 to rotate in a forward and reverse cycle. At this time, the pressure roller 39 can be driven to reciprocate along the length of the composite tube body 8, so that the steel wire wrapped on the composite tube body 8 can be continued to be rolled until the steel wire 28 is evenly wrapped on the composite tube body 8, and the steel wire winding operation can be completed.

[0052] However, as known to those skilled in the art, the working principles and wiring methods of the first driving motor 3, the second driving motor 13, the third driving motor 20, the electric push rod 34 and the fourth driving motor 42 are common, which all belong to conventional means or common general knowledge, and will not be described here again. Those skilled in the art can make any selection or arrangement according to their needs or convenience.

[0053] The above is only a specific embodiment of the present application, but the protection scope of the present application is not limited thereto. Any person skilled in the art can easily think of changes or replacements within the technical range disclosed by the present application, which should be covered by the protection scope of the present application. In the case of no conflict, the embodiments of the present application and the features in the embodiments can be combined with each other. Therefore, the protection scope of the present application should be subject to the protection scope of the claims.

Claims

1. A steel wire winding device for processing a steel wire mesh skeleton composite pipe, characterized in that: include: A base (1) is provided with a support plate (2) fixed on one side of its top, a first drive motor (3) is fixed on the top of one side of the support plate (2), an output shaft of the first drive motor (3) passes through the support plate (2) and is fixed with a first positioning shaft (4); a positioning mechanism is provided on the other side of the top of the base (1), and a composite tube body (8) is sandwiched between the positioning mechanism and the first positioning shaft (4); The travel mechanism is connected to the top of the other side of the support plate (2) and the positioning mechanism respectively; An unwinding mechanism is connected to the stroke mechanism and is provided with a reel (27) mounted thereon. The reel (27) is wound with a steel wire (28) and is used to drive the reel (27) to rotate and release the steel wire (28); a tidying mechanism, mounted on the unwinding mechanism, for pressing the steel wire (28) wound on the composite pipe body (8) so that the steel wire (28) is tightly wound; After the composite tube body (8) is positioned, the first drive motor (3) drives the first positioning shaft (4) to drive the composite tube body (8) to rotate, and at the same time, the unwinding mechanism unwinds the steel wire (28), the stroke mechanism adjusts the position of the unwinding mechanism, and the finishing mechanism presses the steel wire (28), so that the steel wire (28) is evenly and tightly wound.

2. The steel wire winding device for processing a steel mesh skeleton composite pipe according to claim 1, characterized in that: The positioning mechanism comprises a slide rail (5) fixed on the top of the base (1), a movable plate (6) being slidably connected to the slide rail (5), and a top of one side of the movable plate (6) being rotatably connected to a second positioning shaft (7); an adjustment component is also provided on the top of the base (1), and the adjustment component is respectively connected to both sides of the movable plate (6) for driving the movable plate (6) to move laterally along the slide rail (5), thereby driving the second positioning shaft (7) to approach the composite pipe body (8) for positioning and clamping.

3. The steel wire winding device for processing a steel mesh skeleton composite pipe according to claim 2, characterized in that: The adjustment assembly includes a mounting plate (9) fixed to the other side of the top of the base (1), one side of the mounting plate (9) is symmetrically connected to two first screw rods (10), two threaded tubes (11) are symmetrically passed through and fixed on the movable plate (6), and the first screw rods (10) pass through the corresponding threaded tubes (11) and are threadedly connected; a second driving motor (13) is fixed on the other side of the mounting plate (9), the output shaft of which passes through the mounting plate (9) and is fixed with a driving gear (14), a sleeved driven gear (15) is fixed on the first screw rod (10), the driving gear (14) is located between the two driven gears (15) and meshes with them respectively, and the first screw rod (10) is driven to rotate by the second driving motor (13), thereby driving the movable plate (6) to move.

4. The steel wire winding device for processing a steel mesh skeleton composite pipe according to claim 1, characterized in that: The travel mechanism includes a second support frame (16), both sides of which are fixedly connected to the top of the other side of the support plate (2) and the top of the mounting plate (9); a movable hole is provided on the second support frame (16), a sliding plate (17) is passed through the movable hole, and the unwinding mechanism is installed at the bottom of the sliding plate (17); a movable component is installed on the top of the second support frame (16), the movable component passes through the sliding plate (17) and is connected to it, and is used for lateral sliding support and position adjustment of the unwinding mechanism.

5. The steel wire winding device for processing a steel mesh skeleton composite pipe according to claim 4, characterized in that: The moving assembly includes a fourth drive motor (42) fixed to one side of the top of the second support frame (16), a fourth screw (43) fixed on the output shaft thereof, a nut (44) fixed to the top of one side of the sliding plate (17), the fourth screw (43) respectively passing through the sliding plate (17) and the nut (44) and being threadedly connected to the nut (44), one end of the fourth screw (43) being rotatably connected to the other side of the top of the second support frame (16), and the fourth screw (43) is driven to rotate by the fourth drive motor (42), thereby driving the sliding plate (17) to move laterally.

6. The steel wire winding device for processing a steel mesh skeleton composite pipe according to claim 1, characterized in that: The unwinding mechanism includes a first fixed plate (18) fixed to the bottom of the sliding plate (17), a mounting frame (19) fixed on one side of the first fixed plate (18), and a third driving motor (20) fixed on the other side, wherein the output shaft of the first fixed plate extends into the mounting frame (19) and fixes the first chuck (21); an inner wall of one side of the mounting frame (19) passes through the connecting clamping assembly, and the reel (27) is located between the clamping assembly and the first chuck (21) and is clamped by the two. The first chuck (21) is driven to rotate by the third driving motor (20), thereby driving the reel (27) to rotate and unwind the wire (28).

7. The steel wire winding device for processing a steel mesh skeleton composite pipe according to claim 6, characterized in that: The clamping assembly includes a second screw (22) that passes through an inner wall of one side of the mounting frame (19) and is threadedly connected thereto. One end of the second screw (22) located in the mounting frame (19) is rotatably connected to a support plate (23). One side of the support plate (23) is rotatably connected to a second chuck (24). By rotating the second screw (22), the support plate (23) is driven to move, so that the second chuck (24) cooperates with the first chuck (21) to clamp the reel (27).

8. The steel wire winding device for processing a steel mesh skeleton composite pipe according to claim 1, characterized in that: The arranging mechanism comprises a second fixed plate (29) fixed on one side of the mounting frame (19), two sliding rods (30) being symmetrically fixed on the bottom of the second fixed plate (29), and a sliding connection adjustment plate (31) being passed through the two sliding rods (30); an electric push rod (34) being fixed on the top of the second fixed plate (29), and an output shaft of the electric push rod (34) being passed through the second fixed plate (29) and being fixedly connected to the top of the adjustment plate (31); a bearing plate (35) being fixed on one side of the bottom of the adjustment plate (31), a supporting plate (32) being fixed on the top of one side of the bearing plate (35), a fixed guide tube (33) being passed through the supporting plate (32), and a steel wire (28) being passed through the guide tube (33); a pressing assembly being further connected to the bearing plate (35) for rolling the wound steel wire (28).

9. The steel wire winding device for processing a steel mesh skeleton composite pipe according to claim 8, characterized in that: The pressing assembly includes a limit frame (36) fixed on both sides of the electric push rod (34), wherein a limit rod (37) is slidably connected therein, and the two limit rods (37) are fixed with a same fixed frame (38) on one side close to each other, and the fixed frame (38) is rotatably connected to the pressing roller (39); the other side of the bearing plate (35) is rotatably connected to the third screw (41), and one end of the two limit rods (37) is fixed with a same linkage plate (40), and the third screw (41) penetrates the linkage plate (40) and is threadedly connected. By rotating the third screw (41), the linkage plate (40) is driven to move, thereby adjusting the position of the pressing roller (39).

Citation Information

Patent Citations

  • Disclosed is polyethylene steel wire mesh framework composite pipe steel wire winding device

    CN212889054U