Steel wire winding apparatus for steel wire fabric reinforced composite pipe

Through the integrated processing of steel wire winding equipment, the linkage problem of steel wire gluing processing is solved, the structural strength and stability of the steel wire mesh skeleton composite pipe are improved, and the compact and stable operation of the equipment is achieved.

CN119870330BActive Publication Date: 2025-10-10HUISUN PIPELINE CO LTD
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Patent Information

Application Number
CN202510203674.X
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-02-24
Publication Date
2025-10-10
Estimated Expiration
2045-02-24

AI Technical Summary

Technical Problem

Common wire winding equipment has a single function and cannot achieve the linkage of wire gluing treatment, resulting in a large equipment footprint and unstable processing conditions, which affects the structural strength of the wire mesh skeleton composite pipe.

Method used

A wire winding equipment is designed, which includes a turntable mechanism, a guide frame assembly, a wire surface grinding mechanism, a debris cleaning and adsorption mechanism, a wire winding mechanism, a gluing mechanism and a pressing mechanism. It realizes the integrated processing of wire surface grinding, debris cleaning, gluing and pressing, and improves the interface bonding and structural stability between the steel wire and the composite pipe.

Benefits of technology

By locally grinding and cleaning the surface of the steel wire, the interface bonding between the steel wire and the composite pipe is enhanced, the magnetic round rod is used to absorb debris, and the glue is sprayed to enhance the cross-linking effect. The clamping mechanism ensures that the steel wire fits tightly to the inner pipe layer, thereby improving the structural strength and stability of the composite pipe.

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Abstract

The application discloses a steel wire winding equipment for steel wire mesh framework composite pipe and belongs to the technical field of winding a wire into a special shape outside a mandrel or the like, comprising a supporting base, a rotating disc mechanism, a guide frame assembly, a steel wire surface polishing mechanism, a scrap cleaning and adsorbing mechanism, a wire winding mechanism, a gluing mechanism and a pressing mechanism which are sequentially arranged above the supporting base, wherein the rotating disc mechanism comprises an annular rotating wheel, a transmission ring is fixedly arranged on one side of the annular rotating wheel, a rotating seat is arranged on the outer side of the transmission ring and rotationally connected with the transmission ring, the bottom of the rotating seat is connected with the supporting base through a support and a screw, a connecting disc is arranged on the inner side of the annular rotating wheel and connected through a screw, and a connecting pipe barrel is arranged to penetrate through the middle of the connecting disc and connected through a screw, so that the application has the advantages of multiple auxiliary functions, high processing efficiency, good processing effect and small floor space.
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Description

Technical Field

[0001] The present invention belongs to the technical field of winding a wire into a special shape outside a mandrel or similar member during the processing or treatment of a metal wire, and particularly relates to a steel wire winding device for a steel wire mesh skeleton composite pipe. Background Art

[0002] Wire mesh composite pipe is a new type of composite pipe made from high-strength steel wire and PE plastic. It features a core layer of wound high-strength steel wire and inner and outer layers of high-density PE plastic, forming a single-wall pipe. This pipe not only offers strong pressure resistance but also retains the corrosion resistance and scale-free properties of solid-wall pipe, while also offering the flexibility of plastic pipe. It is widely used in outdoor fire protection, water supply, and other fields, offering advantages such as low construction costs and a long service life.

[0003] In the production of common wire mesh skeleton composite pipes, wire winding equipment is a relatively important production equipment. It has the function of weaving wire mesh on the outside of the inner pipe layer. However, the common wire winding equipment has a relatively single function and cannot perform other work steps besides winding the steel wire. In the process of steel wire gluing, other equipment is required to assist. Not only is the linkage effect difficult to guarantee, but it also stretches the production line and increases the equipment's footprint. In addition, the extension of the production line is prone to cause unstable processing conditions, resulting in an increase in the number of defective products.

[0004] The published patent CN114985187A discloses a wire mesh skeleton pipe steel wire gluing device, which grinds the surface of the steel wire through a grinding device to ensure the cleanliness of the steel wire surface and prevent impurities or rust on the steel wire surface from affecting the quality of its gluing. In addition, multiple steel wires can be glued at the same time during operation, and the surface of steel wires of different specifications can be automatically adjusted when being treated and heated to ensure the quality of the steel wire gluing. However, the grinding device and the coating device in this solution need to be set up in a separate device, and cannot be installed and set up in an integrated manner with the wire distribution disk and winding equipment. The linkage effect is poor, and it is impossible to ensure the consistency of tension and uniform arrangement during the weaving process of the steel mesh. These conditions have a great impact on the structural strength of the finished steel mesh skeleton composite pipe. Summary of the Invention

[0005] The purpose of the present invention is to provide a steel wire winding device for a steel wire mesh skeleton composite pipe in order to solve the problem that common steel wire winding devices have relatively single functions.

[0006] The present invention achieves the above-mentioned purpose through the following technical solutions: it includes a support base, and a turntable mechanism, a guide frame assembly, a wire surface grinding mechanism, a debris cleaning and adsorption mechanism, a wire winding mechanism, a gluing mechanism, and a pressing mechanism are sequentially arranged above the support base. The turntable mechanism includes an annular rotating wheel, a transmission ring is fixedly provided on one side of the annular rotating wheel, a rotating seat is provided on the outside of the transmission ring and is rotatably connected, the bottom of the rotating seat is connected to the support base through a bracket and screws, a connecting circular plate is provided on the inner side of the annular rotating wheel and is connected by screws, and a connecting tube is passed through the middle of the connecting circular plate and is connected by screws.

[0007] Furthermore, the guide frame assembly includes a first guide frame and a second guide frame, the first guide frame includes two first annular round rods, six first connecting round rods are provided between the two first annular round rods and are connected by welding, one end of the six first connecting round rods is fixed with a circular fixing piece, and the circular fixing piece is connected to the connecting circular plate by screws, the second guide frame includes a second annular round rod, three second connecting round rods are fixed on the inner side of the second annular round rod, and the other ends of the three second connecting round rods are all fixed with an arc-shaped fixing piece, and the arc-shaped fixing piece is connected to the outer surface of the connecting tube by screws.

[0008] Furthermore, the steel wire surface grinding mechanism includes a circular mounting plate, four arc-shaped grinding blocks are provided on the outside of the circular mounting plate, the four arc-shaped grinding blocks are all connected to the circular mounting plate by screws and buckles, the circular mounting plate is penetrated by the connecting tube and then connected by screws, the relative positions of the four arc-shaped grinding blocks are located between the two first annular rods, the outer surface diameter of the arc-shaped grinding block is smaller than the diameter of the first annular rod, and both sides of the outer surface of the arc-shaped grinding block are chamfered.

[0009] Furthermore, the debris cleaning and adsorption mechanism includes two semicircular mounting rings, the inner sides of the two semicircular mounting rings are connected to the outer surface of the connecting tube by screws, and the outer surfaces of the two semicircular mounting rings are both installed with strip combing hairs, and the semicircular mounting rings are provided with a plurality of through holes. One side of the two semicircular mounting rings is provided with an annular shell and is connected by screws, and a plurality of magnet rods are installed on the side of the annular shell, and the magnet rods are inserted into the inner side of the through hole, and part of the volume of one end of the magnet rod protrudes from the outside of the through hole.

[0010] Furthermore, the wire winding mechanism includes a conical mounting platform, and a plurality of first guide rods and a plurality of second guide rods are fixedly provided on the outer surfaces of both ends of the conical mounting platform, two semicircular ring covers are provided on the outer sides of the second guide rods, and the inner sides of the two semicircular ring covers are designed as arc-shaped grooves, and the plurality of second guide rods are located in the arc grooves of the semicircular ring covers, and the top ends of the plurality of second guide rods are against the inner bottom surface of the arc grooves of the semicircular ring covers, and connecting blocks are fixed at both ends of the semicircular ring covers, and when the two semicircular ring covers are spliced ​​together, the adjacent connecting blocks are connected by screws, and a gap is left between the inner diameter of the semicircular ring cover and the outer surface of the conical mounting platform.

[0011] Furthermore, the gluing mechanism includes an annular middle cavity, the inner side surface of the annular middle cavity is designed as a slope, a gap is left between the slope of the annular middle cavity and the slope of the conical mounting platform, a number of nozzles are installed on the slope, and a connecting pipe is provided through the outer side surface of the annular middle cavity, a number of the nozzles are connected to the connecting pipe through a pipeline, the connecting pipe is connected to an external glue supply device, a cylindrical groove is provided on the slope of the conical mounting platform, and the bottom of the annular middle cavity is connected to the support base through a bracket.

[0012] Furthermore, the clamping mechanism includes a ring seat, a rotating ring is provided on the inner side of the ring seat and is rotatably connected, a plurality of annular raised ribs are fixed on the inner side of the rotating ring, the cross-section of the raised ribs is semi-cylindrical, and the bottom of the ring seat is connected to the support base through a bracket.

[0013] Furthermore, an annular internal tooth part is provided on the inner side of the transmission ring and is connected by screws. A cylindrical external gear is provided on the annular internal tooth part and is connected by tooth meshing. A motor is provided on the side of the cylindrical external gear. The cylindrical external gear is connected to the output end of the motor by a snap fastener, and the motor is connected to the support base through a bracket.

[0014] Furthermore, a plurality of mounting round rods are fixedly provided on the other side surface of the annular rotating wheel, and a plurality of bobbins are provided on the outside of the mounting round rods and are connected by a rotating shaft.

[0015] Beneficial effects: The present invention is reasonably designed and has the following beneficial effects:

[0016] 1. In the solution of the present invention, during the process of winding the steel wire by the turntable mechanism and the wire winding mechanism, when the traveling steel wire passes through the first guide frame, the arc-shaped grinding block locally grinds the surface of the steel wire, forming a partially rough surface on the surface of the steel wire. After covering the outer tube layer of the composite tube, the interface bonding effect between the surface of the steel wire and the outer tube layer can be improved, thereby preventing the steel wire surface from separating from the tube material during use, which may cause the composite tube structure to collapse.

[0017] 2. In the scheme of the present invention, the polished steel wire passes through the strip comb, which sweeps away the metal debris on the surface of the steel wire, and the magnetic rod absorbs the fallen metal debris to the surface. When the magnetic rod is an electromagnet, it is easier to collect and separate the debris. The metal debris absorbed on the surface can be dropped by simply turning off the power.

[0018] 3. In the solution of the present invention, the glue delivered by the connecting pipe is sprayed onto the surface of the steel wire on the inclined surface of the conical mounting platform through a nozzle. The excess glue and the glue not adhering to the surface of the steel wire flow along the inclined surface of the conical mounting platform to the cylindrical groove. As the conical mounting platform rotates, the glue drips under the action of gravity. A collection bucket is placed on the support base to collect the glue. The use of glue can enhance the cross-linking effect between the steel wire and the composite pipe, thereby improving the structural strength of the composite pipe.

[0019] 4. In the solution of the present invention, the raised ribs in the pressing mechanism press the woven steel mesh close to the inner tube layer of the composite pipe, ensuring that the steel wire can fit tightly on the surface of the inner tube layer, thereby improving the overall structural stability of the composite pipe. BRIEF DESCRIPTION OF THE DRAWINGS

[0020] Figure 1 It is a schematic diagram of the structure of the present invention;

[0021] Figure 2 This is a structural diagram of the guide frame assembly of the present invention;

[0022] Figure 3 This is a schematic structural diagram of the steel wire surface grinding mechanism of the present invention;

[0023] Figure 4 This is a schematic diagram of the structure of the debris cleaning and adsorption mechanism of the present invention;

[0024] Figure 5 Schematic diagram of the structure of the wire winding mechanism of the present invention;

[0025] Figure 6 This is a structural diagram of the gluing mechanism of the present invention;

[0026] Figure 7 This is a cross-sectional view of the structure of the pressing mechanism of the present invention;

[0027] Figure 8 It is a schematic diagram of the local structure of the turntable mechanism of the present invention.

[0028] In the figure: 1-support base, 2-turntable mechanism, 3-guide frame assembly, 4-wire surface grinding mechanism, 5-debris cleaning and adsorption mechanism, 6-wire winding mechanism, 7-gluing mechanism, 8-pressing mechanism;

[0029] 21-annular rotating wheel, 22-transmission ring, 23-rotating seat, 24-connecting circular plate, 25-connecting tube, 26-annular internal gear, 27-cylindrical external gear, 28-motor, 31-first guide frame, 32-second guide frame, 41-circular mounting plate, 42-arc-shaped grinding block, 51-semicircular mounting ring, 52-strip combing hair, 53-annular shell, 54-magnet rod, 61-conical mounting platform, 62-first guide rod, 63-second guide rod, 64-semicircular ring cover, 65-connecting block, 71-annular middle cavity, 72-nozzle, 73-connecting pipe, 74-cylindrical groove, 81-annular seat, 82-rotating ring, 83-raised rib;

[0030] 211 - mounting rod, 212 - bobbin, 311 - first annular rod, 312 - first connecting rod, 313 - circular fixing piece, 321 - second annular rod, 322 - second connecting rod, 323 - arc-shaped fixing piece. DETAILED DESCRIPTION

[0031] The following will clearly and completely describe the technical solutions in the embodiments of the present invention in conjunction with the accompanying drawings. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.

[0032] In the description of the present invention, it should be understood that the terms "longitudinal", "transverse", "length", "width", "thickness", "up", "down", "front", "back", "left", "right", "vertical", "horizontal", "top", "bottom", "inside", "outside" and the like to indicate orientations or positional relationships based on the orientations or positional relationships shown in the accompanying drawings, and are only for the convenience of describing the present invention and simplifying the description, 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 should not be understood as limiting the present invention.

[0033] Combine Figures 1 to 8 The wire winding equipment of a wire mesh skeleton composite pipe shown in the figure includes a support base 1, and a turntable mechanism 2, a guide frame assembly 3, a wire surface grinding mechanism 4, a debris cleaning and adsorption mechanism 5, a wire winding mechanism 6, a gluing mechanism 7, and a pressing mechanism 8 are arranged in sequence above the support base 1. The turntable mechanism 2 includes an annular rotating wheel 21, and a transmission ring 22 is fixedly provided on one side of the annular rotating wheel 21. A rotating seat 23 is provided on the outside of the transmission ring 22 and is rotatably connected. The bottom of the rotating seat 23 is connected to the support base 1 through a bracket and screws. A connecting circular plate 24 is provided on the inner side of the annular rotating wheel 21 and is connected by screws. A connecting tube 25 is passed through the middle of the connecting circular plate 24 and is connected by screws.

[0034] Combine Figure 1 and Figure 2 As shown, the guide frame assembly 3 includes a first guide frame 31 and a second guide frame 32. The first guide frame 31 includes two first annular rods 311. Six first connecting rods 312 are provided between the two first annular rods 311 and are connected by welding. A circular fixing member 313 is fixed at one end of the six first connecting rods 312. The circular fixing member 313 is connected to the connecting circular plate 24 by screws. The second guide frame 32 includes a second annular rod 321. Three second connecting rods 322 are fixed on the inner side of the second annular rod 321. The other ends of the three second connecting rods 322 are all fixed with an arc fixing member 323. The arc fixing member 323 is connected to the outer surface of the connecting tube 25 by screws.

[0035] Combine Figure 2 and Figure 3 As shown, the steel wire surface grinding mechanism 4 includes a circular mounting plate 41, and four arc-shaped grinding blocks 42 are provided on the outside of the circular mounting plate 41. The four arc-shaped grinding blocks 42 are all connected to the circular mounting plate 41 by screws and buckles. The circular mounting plate 41 is penetrated by the connecting tube 25 and connected by screws. The relative positions of the four arc-shaped grinding blocks 42 are located between the two first annular rods 311. The outer surface diameter of the arc-shaped grinding block 42 is smaller than the diameter of the first annular rod 311. Both sides of the outer surface of the arc-shaped grinding block 42 are chamfered. The arc-shaped grinding block 42 locally grinds the surface of the steel wire passing through the first guide frame 31 to form a rough surface, thereby improving the interface adhesion effect when covering the outer pipe layer of the composite pipe and reducing the possibility of the steel wire surface being separated from the pipe material during use.

[0036] Combine Figures 2 to 4 As shown, the debris cleaning and adsorption mechanism 5 includes two semicircular mounting rings 51, the inner sides of the two semicircular mounting rings 51 are connected to the outer surface of the connecting tube 25 by screws, and the outer surfaces of the two semicircular mounting rings 51 are both installed with strip combing hairs 52, and a plurality of through holes are provided on the semicircular mounting rings 51. A ring shell 53 is provided on one side of the two semicircular mounting rings 51 and is connected by screws. A plurality of magnet rods 54 are installed on the side of the ring shell 53, and the magnet rod 54 is inserted into the inner side of the through hole, and part of the volume of one end of the magnet rod 54 protrudes from the outside of the through hole. The strip combing hairs 52 clean the metal debris on the surface of the polished steel wire, and the magnet rod 54 adsorbs the metal debris to the surface. When the magnet rod 54 selects an electromagnet, it is easier to collect and detach the debris, and the metal debris can be dropped by simply turning off the power.

[0037] Combine Figure 5As shown, the wire winding mechanism 6 includes a conical mounting platform 61, and a plurality of first guide rods 62 and a plurality of second guide rods 63 are fixedly provided on the outer surfaces of both ends of the conical mounting platform 61. Two semicircular ring covers 64 are provided on the outer side of the second guide rods 63. The inner sides of the two semicircular ring covers 64 are designed as arc grooves. The plurality of second guide rods 63 are located in the arc grooves of the semicircular ring covers 64. The top ends of the plurality of second guide rods 63 are against the inner bottom surface of the arc groove of the semicircular ring covers 64. Connecting blocks 65 are fixedly provided at both ends of the semicircular ring covers 64. When the two semicircular ring covers 64 are spliced ​​together, the adjacent connecting blocks 65 are connected by screws, and a gap is left between the inner diameter of the semicircular ring covers 64 and the outer surface of the conical mounting platform 61.

[0038] Combine Figure 5 and Figure 6 As shown, the gluing mechanism 7 includes an annular middle cavity 71, the inner side of the annular middle cavity 71 is designed as a slope, a gap is left between the slope of the annular middle cavity 71 and the slope of the conical mounting platform 61, a plurality of nozzles 72 are installed on the slope, and a connecting pipe 73 is provided through the outer side of the annular middle cavity 71. The plurality of nozzles 72 are connected to the connecting pipe 73 through a pipeline, and the connecting pipe 73 is connected to the external glue supply equipment. A cylindrical groove 74 is provided on the slope of the conical mounting platform 61. The bottom of the cavity 71 is connected to the support base 1 through a bracket. The surface of the nozzle 72 has the same flatness as the inclined surface of the annular middle cavity 71. The glue delivered by the connecting pipe 73 is sprayed onto the surface of the steel wire on the inclined surface of the conical mounting platform 61 through the nozzle 72. The excess glue flows along the inclined surface of the conical mounting platform 61 to the cylindrical groove 74. As the conical mounting platform 61 rotates, the glue drips under the action of gravity. The glue is used to enhance the cross-linking effect between the steel wire and the composite pipe, thereby improving the structural strength of the composite pipe.

[0039] Combine Figure 1 and Figure 7 As shown, the clamping mechanism 8 includes a ring seat 81, a rotating ring 82 is provided on the inner side of the ring seat 81 and is rotatably connected, a plurality of annular raised ribs 83 are fixed on the inner side of the rotating ring 82, and the cross-section of the raised ribs 83 is semi-cylindrical. The bottom of the ring seat 81 is connected to the support base 1 through a bracket. The raised ribs 83 press the woven steel mesh close to the inner tube layer of the composite tube to ensure that the steel wire can fit tightly on the surface of the inner tube layer.

[0040] Combine Figure 1 and Figure 8 As shown, an annular internal gear 26 is provided on the inner side of the transmission ring 22 and is connected by screws. A cylindrical external gear 27 is provided on the annular internal gear 26 and is connected by teeth meshing. A motor 28 is provided on the side of the cylindrical external gear 27. The cylindrical external gear 27 is connected to the output end of the motor 28 by a snap fastener, and the motor 28 is connected to the support base 1 through a bracket.

[0041] Combine Figure 1 and Figure 8 As shown, a plurality of mounting rods 211 are fixedly provided on the other side surface of the annular rotating wheel 21 , and a plurality of spools 212 are provided on the outside of the mounting rods 211 and connected through a rotating shaft.

[0042] Working principle: During the use of the present invention, when the turntable mechanism 2 and the wire winding mechanism 6 are winding the steel wire, when the traveling steel wire passes through the first guide frame 31, the arc-shaped grinding block 42 locally grinds the surface of the steel wire to form a partially rough surface on the surface of the steel wire. After covering the outer tube layer of the composite tube, the interface bonding effect between the surface of the steel wire and the outer tube layer can be improved, thereby avoiding the steel wire surface and the tube material from being separated during use, resulting in the collapse of the composite tube structure. The ground steel wire passes through the strip combing hair 52, and the strip combing hair 52 cleans the metal debris on the surface of the steel wire, and the magnet rod 54 absorbs the fallen metal debris to the surface. When the magnet rod 54 selects an electromagnet, it is easier to collect and separate the debris, and only needs to turn off the power. The metal debris adsorbed on the surface falls off, and the glue delivered by the connecting pipe 73 is sprayed onto the surface of the steel wire on the inclined surface of the conical mounting platform 61 through the nozzle 72. The excess glue and the glue that does not adhere to the surface of the steel wire flow along the inclined surface of the conical mounting platform 61 to the cylindrical groove 74. As the conical mounting platform 61 rotates, the glue drips under the action of gravity, and a collection bucket is placed on the support base 1 to collect the glue. The use of glue to enhance the cross-linking effect between the steel wire and the composite pipe can improve the structural strength of the composite pipe. The raised ribs 83 in the clamping mechanism 8 press the woven steel wire mesh close to the inner pipe layer of the composite pipe, ensuring that the steel wire can fit tightly on the surface of the inner pipe layer, thereby improving the overall structural stability of the composite pipe.

[0043] It will be apparent to those skilled in the art that the present invention is not limited to the details of the exemplary embodiments described above and that the invention can be embodied in other specific forms without departing from the spirit or essential characteristics of the invention. Therefore, the embodiments should be considered in all respects as illustrative and non-restrictive, and the scope of the invention is defined by the appended claims, not the foregoing description, and all variations within the meaning and range of equivalents of the claims are intended to be included therein. Any reference sign in a claim should not be construed as limiting the claim to which it relates.

[0044] In addition, it should be understood that although this specification is described in terms of implementation methods, not every implementation method contains only one independent technical solution. This narrative method of the specification is only for the sake of clarity. Those skilled in the art should regard the specification as a whole. The technical solutions in each embodiment can also be appropriately combined to form other implementation methods that can be understood by those skilled in the art.

Claims

1. A wire winding device for a steel wire mesh skeleton composite pipe, comprising a support base (1), characterized in that: A turntable mechanism (2), a guide frame assembly (3), a wire surface grinding mechanism (4), a debris cleaning and adsorption mechanism (5), a wire winding mechanism (6), a gluing mechanism (7), and a pressing mechanism (8) are sequentially provided above the support base (1). The turntable mechanism (2) includes an annular rotating wheel (21), a transmission ring (22) is fixedly provided on one side of the annular rotating wheel (21), a rotating seat (23) is provided on the outside of the transmission ring (22) and is rotatably connected, the bottom of the rotating seat (23) is connected to the support base (1) through a bracket and screws, a connecting circular plate (24) is provided on the inside of the annular rotating wheel (21) and is connected by screws, and a connecting tube (25) is passed through the middle of the connecting circular plate (24) and is connected by screws; The guide frame assembly (3) comprises a first guide frame (31) and a second guide frame (32), wherein the first guide frame (31) comprises two first annular round rods (311); The steel wire surface grinding mechanism (4) includes a circular mounting plate (41), and four arc-shaped grinding blocks (42) are provided on the outside of the circular mounting plate (41), and the four arc-shaped grinding blocks (42) are all connected to the circular mounting plate (41) by screws and buckles. The circular mounting plate (41) is penetrated by the connecting tube (25) and then connected by screws. The relative positions of the four arc-shaped grinding blocks (42) are located between the two first annular rods (311). The outer surface diameter of the arc-shaped grinding block (42) is smaller than the diameter of the first annular rod (311), and both sides of the outer surface of the arc-shaped grinding block (42) are chamfered. The debris cleaning adsorption mechanism (5) includes two semicircular mounting rings (51), the inner sides of the two semicircular mounting rings (51) are connected to the outer surface of the connecting tube (25) by screws, and the outer surfaces of the two semicircular mounting rings (51) are both installed with strip combing hairs (52), and the semicircular mounting rings (51) are provided with a plurality of through holes. One side of the two semicircular mounting rings (51) is provided with an annular shell (53) and connected by screws, and the side of the annular shell (53) is installed with a plurality of magnet rods (54), and the magnet rods (54) are inserted into the inner side of the through hole, and one end portion of the magnet rods (54) protrudes out of the outside of the through hole.

2. The wire winding device for a steel wire mesh skeleton composite pipe according to claim 1, characterized in that: Six first connecting rods (312) are provided between the two first annular rods (311) and are connected by welding. A circular fixing piece (313) is fixed at one end of the six first connecting rods (312). The circular fixing piece (313) is connected to the connecting circular plate (24) by screws. The second guide frame (32) includes a second annular rod (321). Three second connecting rods (322) are fixed on the inner side of the second annular rod (321). The other ends of the three second connecting rods (322) are all fixed with an arc-shaped fixing piece (323). The arc-shaped fixing piece (323) is connected to the outer surface of the connecting tube (25) by screws.

3. The wire winding device for a steel wire mesh skeleton composite pipe according to claim 2, characterized in that: The wire winding mechanism (6) includes a conical mounting platform (61), and a plurality of first guide rods (62) and a plurality of second guide rods (63) are fixedly provided on the outer surfaces of both ends of the conical mounting platform (61), and two semicircular ring covers (64) are provided on the outer sides of the second guide rods (63), and the inner sides of the two semicircular ring covers (64) are designed as arc grooves. The plurality of second guide rods (63) are located in the arc grooves of the semicircular ring covers (64), and the top ends of the plurality of second guide rods (63) are supported on the inner bottom surface of the arc groove of the semicircular ring covers (64). Connecting blocks (65) are fixedly provided at both ends of the semicircular ring covers (64), and when the two semicircular ring covers (64) are spliced ​​together, the adjacent connecting blocks (65) are connected by screws, and a gap is left between the inner diameter of the semicircular ring cover (64) and the outer surface of the conical mounting platform (61).

4. The wire winding device for a steel wire mesh skeleton composite pipe according to claim 3, characterized in that: The gluing mechanism (7) includes an annular middle cavity (71), the inner side surface of the annular middle cavity (71) is designed as an inclined surface, a gap is left between the inclined surface of the annular middle cavity (71) and the inclined surface of the conical mounting platform (61), a plurality of nozzles (72) are installed on the inclined surface, a connecting pipe (73) is provided through the outer side surface of the annular middle cavity (71), a plurality of the nozzles (72) and the connecting pipe (73) are connected to the external glue supply equipment through a pipeline, a cylindrical groove (74) is provided on the inclined surface of the conical mounting platform (61), and the bottom of the annular middle cavity (71) is connected to the support base (1) through a bracket.

5. The steel wire winding device for a steel wire mesh skeleton composite pipe according to claim 4, characterized in that: The clamping mechanism (8) comprises a ring seat (81), a rotating ring (82) is provided on the inner side of the ring seat (81) and is rotatably connected, a plurality of annular raised ribs (83) are fixedly provided on the inner side of the rotating ring (82), and the cross section of the raised ribs (83) is semi-cylindrical, and the bottom of the ring seat (81) is connected to the support base (1) through a bracket.

6. The wire winding device for a steel wire mesh skeleton composite pipe according to claim 5, characterized in that: An annular inner toothed part (26) is provided on the inner side of the transmission ring (22) and is connected by screws. A cylindrical outer gear (27) is provided on the annular inner gear (26) and is connected by teeth meshing. A motor (28) is provided on the side of the cylindrical outer gear (27). The cylindrical outer gear (27) is connected to the output end of the motor (28) by a snap fastener. The motor (28) is connected to the support base (1) by a bracket.

7. The steel wire winding device for a steel wire mesh skeleton composite pipe according to claim 6, characterized in that: A plurality of mounting round rods (211) are fixedly provided on the other side surface of the annular rotating wheel (21), and a plurality of spools (212) are provided on the outside of the mounting round rods (211) and are connected via a rotating shaft.

Citation Information

Patent Citations

  • Steel wire gluing equipment for steel wire mesh framework pipe

    CN114985187A

  • Steel wire mesh framework composite pipe and production process thereof

    CN118544622A