Roll conveying device for steel wire rope machining

By designing a coiled conveying device for wire rope processing, including flow, coiling and packaging mechanism, the automatic coiling, winding and coiling output of wire ropes is realized, solving the problems of low degree of automation and poor continuity in the prior art, and improving the safety and convenience of wire rope transportation.

CN120024572AInactive Publication Date: 2025-05-23XINGHUA YUNYUAN METAL PROD CO LTD
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Patent Information

Application Number
CN202510378693.6
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-03-28
Publication Date
2025-05-23
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

In the prior art, the wire rope winding conveying device cannot realize automatic winding and winding of protective film, which has low degree of automation and poor continuity, which leads to inconvenience and danger in the transportation process.

Method used

A coil conveying device for processing wire ropes is designed, including a flow mechanism, a winding mechanism and a sealing mechanism. The flow mechanism drives the gears and transmission belts through the motor to drive the reel plate to flow; the winding mechanism uses the outer shaft, the winding gear and the lifting convex ball to automatically wind and cut the wire rope; the sealing mechanism automatically wraps and cuts the wound adhesive cloth through the winding seat, the glue column and the cutting knife.

Benefits of technology

It realizes fully automatic wire rope coiling, winding and coiling output, improves the degree of automation and continuity, and solves the problems of inconvenience and danger of wire rope transportation.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses a coiled conveying device for steel wire rope machining, and belongs to the technical field of steel wire rope conveying, the coiled conveying device comprises a circulation mechanism for driving a steel wire rope to circulate in each process, and the circulation mechanism is provided with a winding mechanism for winding the steel wire rope and a packaging mechanism for externally packaging the wound steel wire rope; the rotating mechanism can drive the winding disc to rotate, full-automatic steel wire rope winding, steel wire rope outer film winding and coiled steel wire rope output are achieved, the automation degree is high, and continuity is good; the winding mechanism can automatically wind the steel wire rope, the wire inlet guide pipe continuously ascends and descends during winding, winding is more uniform, the steel wire rope is automatically cut off through a cutter after winding is completed, and the winding effect is good; when the electric cylinder contracts, the center rotating frame rotates by 90 degrees every time, station switching is achieved, when the electric cylinder extends, winding, film wrapping and discharging of the steel wire rope are conducted, and full-automatic operation is achieved.
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Description

Technical Field

[0001] The invention relates to the technical field of steel wire rope conveying, and in particular to a coiling and conveying device for steel wire rope processing. Background Art

[0002] Wire rope is a spiral steel wire bundle made of multiple strands of steel wire twisted according to certain rules. It has high strength, light weight, and is not easy to break suddenly. It plays an important role in lifting, pulling, tightening and other operations. After winding, the wire rope has a large weight and is difficult to load, which makes its subsequent transportation very inconvenient. During transportation, especially when the wire rope is placed upright, it can be very dangerous. The wire rope winding and conveying device in the prior art is usually unable to automatically wind the wire rope and wrap the protective film, and has a low degree of automation and poor continuity. Summary of the invention

[0003] In view of the above technical problems, the technical solution adopted by the present invention is: a coiling conveying device for processing steel wire ropes, comprising a circulation mechanism for driving the steel wire ropes to circulate in various processes, the circulation mechanism comprising a main frame, the circulation mechanism being provided with a winding mechanism for winding the steel wire ropes and a packaging mechanism for externally packaging the wound steel wire ropes, the winding mechanism comprising an outer shaft, the outer shaft being rotatably mounted on the main frame, the packaging mechanism comprising a winding seat, the winding seat being rotatably mounted on the main frame; The circulation mechanism comprises a central rotating frame rotatably mounted on the main frame, and a lifting block is slidably mounted on the central rotating frame; The winding mechanism comprises a lower wheel fixedly mounted on the outer shaft, and an outer gear ring is rotatably mounted on the main frame.

[0004] Furthermore, the circulation mechanism also includes a central gear fixedly mounted on the central rotating frame, four outrigger blocks are slidably mounted on the central rotating frame, an inner spring is arranged between the outrigger block and the central rotating frame, a lifting and lowering rotating rod is rotatably mounted on the lifting and lowering block, the lifting and lowering rotating rod is rotatably mounted on the outrigger block, a rotating drum is rotatably mounted on the outrigger block, a rotating drum gear is fixedly mounted on the rotating drum, a winding disk is slidably mounted on the rotating drum, and a plurality of vertical slots are arranged on the winding disk.

[0005] Furthermore, a motor is fixedly mounted on the main frame, a motor gear is fixedly mounted on the motor shaft of the motor, a gear shaft is rotatably mounted on the main frame, a driving gear and a lower transmission wheel are fixedly mounted on the gear shaft, the driving gear is meshed with the motor gear, a movable rotating rod is rotatably mounted on the gear shaft, an upper rotating wheel is rotatably mounted on the movable rotating rod, a lower rotating wheel is fixedly mounted on the upper rotating wheel, a driving transmission belt is wrapped around the lower rotating wheel and the lower transmission wheel, a follower rotating rod is rotatably mounted on the movable rotating rod, the follower rotating rod is rotatably mounted with the upper rotating wheel, a rotating shaft is rotatably mounted on the follower rotating rod, a movable wheel and a docking gear are fixedly mounted on the rotating shaft, an upper transmission belt is wrapped around the movable wheel and the upper rotating wheel, a slide groove is provided on the main frame, and the rotating shaft slides in the slide groove.

[0006] Furthermore, an electric cylinder is fixedly mounted on the main frame, a movable frame is fixedly mounted on the output end of the electric cylinder, the rotating shaft is rotatably mounted on the movable frame, a push plate is fixedly mounted on the movable frame, and when the electric cylinder retracts, the docking gear meshes with the central gear.

[0007] Furthermore, a lower guide seat and a discharging slope are fixedly installed on the main frame, an upper top slope block is slidably installed on the lower guide seat, the top of the upper top slope block is a slope, a lifting cylinder is fixedly installed below the upper top slope block, an inner convex ball is fixedly installed on the inner wall of the lifting cylinder, a two-way stud is rotatably installed on the main frame, a jacking wheel is fixedly installed on the two-way stud, a driving wheel is rotatably installed on the main frame, an external docking gear is fixedly installed on the driving wheel, a bottom transmission belt is wrapped around the driving wheel, a two-way thread is arranged on the two-way stud, the inner convex ball slides in the two-way thread of the two-way stud, and when the electric cylinder is extended to the longest, the docking gear engages with the external docking gear.

[0008] When the electric cylinder is in the retracted state, the center gear meshes with the docking gear, and the motor drives the motor gear to rotate, thereby driving the driving gear, the movable rod and the lower transmission wheel to rotate, and the lower rotating wheel and the upper rotating wheel are driven by the driving belt, and the movable wheel, the docking gear and the rotating shaft are driven by the upper transmission belt, thereby driving the center gear to rotate, thereby driving the extension block, the winding disk and the rotating drum to rotate, each time rotating ninety degrees.

[0009] When the electric cylinder is extended, it drives the movable frame and the push plate to move, thereby driving the rotating shaft to slide along the slide groove, thereby driving the follower rotating rod to rotate, and driving the movable rotating rod to rotate. At this time, the transmission of the driving transmission belt and the upper transmission belt is not affected, and the motor finally drives the docking gear to rotate. When the electric cylinder is extended to its longest length, the docking gear engages with the external docking gear. The rotation of the docking gear drives the external docking gear and the driving wheel to rotate, thereby driving the lower wheel and the lifting wheel to rotate through the bottom transmission belt.

[0010] The rotation of the jacking wheel drives the two-way stud to rotate, and the lifting cylinder and the upper top slope block rise through the inner convex ball, jacking up the winding disk above the upper top slope block, and the winding disk slides upward along the rotating drum. Finally, the winding disk separates from the rotating drum and slides along the top slope of the upper top slope block to the discharging slope to realize discharging.

[0011] Furthermore, the winding mechanism also includes a winding gear fixedly mounted on the outer shaft, the winding gear meshing with the outer gear ring, a pushing block slidably mounted on the main frame, a lifting rod rotatably mounted on the pushing block, the lifting rod contacts the lifting block, a fixing column is fixedly mounted on the main frame, a bidirectional threaded column is slidably mounted outside the fixing column, a rope feed duct is fixedly mounted on the bidirectional threaded column, a bidirectional thread is provided on the bidirectional threaded column, a lifting convex ball is fixedly mounted inside the outer shaft, and the lifting convex ball slides in the bidirectional thread of the bidirectional threaded column.

[0012] Furthermore, two cutters are slidably mounted on the main frame, an outer top block is fixedly mounted on the cutter, and a cutter spring is arranged between the cutter and the main frame.

[0013] When the electric cylinder is extended, it drives the push plate to move, and the push plate pushes the push block to slide toward the center rotating frame, thereby driving the lifting rod to rotate, and the lifting rod lifts the lifting block, and the outward extension block is driven to slide outward through the lifting rotating rod, the inner spring is stretched, and the outward extension block pushes the outer top block and the cutter to slide outward, and the cutter spring is compressed, and then the wire rope passes through the rope feed guide tube and is inserted into the vertical slot of the winding disk. At this time, the winding gear is meshed with the drum gear, and the lower wheel drives the outer shaft and the winding gear to rotate, driving the outer gear ring to rotate, thereby driving the drum gear, the drum and the winding disk to rotate, and the wire rope is wound onto the winding disk. At the same time, the rotation of the outer shaft will drive the two-way threaded column and the rope feed guide tube to rise and fall along the fixed column through the lifting convex ball, so that the wire rope is evenly wound on the winding disk, and then when the electric cylinder contracts, the inner spring rebounds, causing the outward extension block and the push block to reset, and the cutter spring rebounds, so that the cutter cuts the wire rope.

[0014] Furthermore, the packaging mechanism includes a rubber column rotatably mounted on a winding seat, a torsion spring is arranged between the winding seat and the main frame, a winding tape is wound around the rubber column, a top rubber column is fixedly mounted on the winding seat, the end of the winding tape is tightly attached to the rubber column, a cutting knife is slidably mounted on the main frame, a knife spring is arranged between the cutting knife and the main frame, a winding gear is rotatably mounted on the main frame, and the winding gear is meshed with an outer gear ring.

[0015] The lifting block rises and drives the overhanging block to slide outward along the central rotating frame. The overhanging block located on the side of the winding seat pushes the winding seat to rotate, and at the same time drives the cutting knife to slide outward, the knife spring is compressed, and the winding seat rotates, driving the tape end on the top rubber column to contact the steel wire rope on the winding disk, the winding gear is meshed with the rotating drum gear, and the outer gear ring drives the winding gear to rotate, driving the rotating drum gear, the rotating drum and the winding disk to rotate, thereby winding the winding tape around the outside of the steel wire rope of the winding disk. When it is wound to a certain thickness, the winding tape contacts the cutting knife, cuts off the winding tape, and completes the tape winding. Then, when the overhanging block retracts, the torsion spring between the winding seat and the main frame rebounds and resets, and the knife spring rebounds and resets.

[0016] Compared with the prior art, the present invention has the following beneficial effects: (1) the circulation mechanism provided in the present invention can drive the winding drum to circulate, thereby realizing fully automatic winding of the wire rope, outer film winding of the wire rope and output of the rolled wire rope, with a high degree of automation and good continuity; (2) the winding mechanism provided in the present invention can automatically wind the wire rope, and during winding, the wire inlet guide tube is continuously raised and lowered, so that the winding is more uniform, and after the winding is completed, the wire rope is automatically cut off by the cutter, so that the winding effect is good; (3) when the electric cylinder provided in the present invention is retracted, the central rotating frame rotates ninety degrees each time to realize the switching of the workstations, and when the electric cylinder is extended, the wire rope is wound, coated and discharged, so as to realize fully automatic operation. BRIEF DESCRIPTION OF THE DRAWINGS

[0017] Figure 1 It is a schematic diagram of the overall structure of the present invention.

[0018] Figure 2 Schematic diagram of the circulation mechanism structure of the present invention Figure 1 .

[0019] Figure 3 Schematic diagram of the circulation mechanism structure of the present invention Figure 2 .

[0020] Figure 4 Schematic diagram of the circulation mechanism structure of the present invention Figure 3 .

[0021] Figure 5 Schematic diagram of the circulation mechanism structure of the present invention Figure 4 .

[0022] Figure 6 Schematic diagram of the circulation mechanism structure of the present invention Figure 5 .

[0023] Figure 7 The structure of the winding mechanism of the present invention is schematically shown in FIG. Figure 1 .

[0024] Figure 8 The structure of the winding mechanism of the present invention is schematically shown in FIG. Figure 2 .

[0025] Fig. 9 The structure of the winding mechanism of the present invention is schematically shown in FIG. Figure 3 .

[0026] Fig.10 The structure of the winding mechanism of the present invention is schematically shown in FIG. Figure 4 .

[0027] Fig.11 The packaging mechanism structure of the present invention is shown in FIG. Figure 1 .

[0028] Fig.12 The structure of the packaging mechanism of the present invention is shown in FIG. Figure 2 .

[0029] Figure numerals: 101-main frame; 102-motor; 103-motor gear; 104-lower transmission wheel; 105-driving gear; 106-moving rotating rod; 107-gear shaft; 108-driving transmission belt; 109-lower rotating wheel; 110-upper rotating wheel; 111-upper transmission belt; 112-discharging slope; 113-lower guide seat; 114-upper top slope block; 115-lifting cylinder; 116-two-way stud; 117-lifting wheel; 118-inner convex ball; 119-electric cylinder; 120-movable frame; 121-push plate; 122-movable wheel; 123-jointing gear; 124-rotating shaft; 125-slide; 126-external joint gear; 127-bottom transmission belt; 128-driving wheel; 129-center Rotating frame; 130-center gear; 131-lifting block; 132-lifting rotating rod; 133-extending block; 134-inner spring; 135-winding disk; 136-rotating drum; 137-rotating drum gear; 138-following rotating rod; 201-outer shaft; 202-lower wheel; 203-winding gear; 204-rope inlet guide tube; 205-push block; 206-lifting rod; 207-cutter; 208-cutter spring; 209-outer top block; 210-lifting convex ball; 211-two-way threaded column; 212-outer gear ring; 213-fixed column; 301-winding seat; 302-rubber column; 303-winding tape; 304-top rubber column; 305-cutting knife; 306-knife spring; 307-winding gear. DETAILED DESCRIPTION

[0030] The specific implementation of the present invention will be further described below in conjunction with the accompanying drawings.

[0031] Example: Reference Figure 1-Figure 12A coiling and conveying device for processing steel wire ropes, comprising a circulation mechanism for driving the steel wire ropes to circulate in various processes, the circulation mechanism comprising a main frame 101, the circulation mechanism being provided with a winding mechanism for winding the steel wire ropes and a packaging mechanism for externally packaging the wound steel wire ropes, the winding mechanism comprising an outer shaft 201, the outer shaft 201 being rotatably mounted on the main frame 101, the packaging mechanism comprising a winding seat 301, the winding seat 301 being rotatably mounted on the main frame 101; The circulation mechanism includes a central rotating frame 129 rotatably mounted on the main frame 101, and a lifting block 131 is slidably mounted on the central rotating frame 129; The winding mechanism includes a lower wheel 202 fixedly mounted on an outer shaft 201 , and an outer gear ring 212 is rotatably mounted on the main frame 101 .

[0032] like Figure 2-Figure 6 As shown, the circulation mechanism also includes a central gear 130 fixedly mounted on the central rotating frame 129, four protruding blocks 133 are slidably mounted on the central rotating frame 129, an inner spring 134 is arranged between the protruding block 133 and the central rotating frame 129, a lifting rod 132 is rotatably mounted on the lifting block 131, the lifting rod 132 is rotatably mounted on the protruding block 133, a rotating drum 136 is rotatably mounted on the protruding block 133, a rotating drum gear 137 is fixedly mounted on the rotating drum 136, a winding disk 135 is slidably mounted on the rotating drum 136, and a plurality of vertical grooves are arranged on the winding disk 135.

[0033] like Figure 2-Figure 6 As shown, a motor 102 is fixedly mounted on the main frame 101, a motor gear 103 is fixedly mounted on the motor shaft of the motor 102, a gear shaft 107 is rotatably mounted on the main frame 101, a driving gear 105 and a lower transmission wheel 104 are fixedly mounted on the gear shaft 107, the driving gear 105 is meshed with the motor gear 103, a movable rotating rod 106 is rotatably mounted on the gear shaft 107, an upper rotating wheel 110 is rotatably mounted on the movable rotating rod 106, a lower rotating wheel 109 is fixedly mounted on the upper rotating wheel 110, and a lower rotating wheel 109 is fixedly mounted on the lower rotating wheel 110. A driving transmission belt 108 is wound around the rotating wheel 109 and the lower transmission wheel 104, a follower rotating rod 138 is rotatably installed on the movable rotating rod 106, the follower rotating rod 138 is rotatably installed with the upper rotating wheel 110, a rotating shaft 124 is rotatably installed on the follower rotating rod 138, a movable wheel 122 and a docking gear 123 are fixedly installed on the rotating shaft 124, an upper transmission belt 111 is wound around the movable wheel 122 and the upper rotating wheel 110, a slide groove 125 is provided on the main frame 101, and the rotating shaft 124 slides in the slide groove 125.

[0034] like Figure 2-Figure 6As shown, an electric cylinder 119 is fixedly mounted on the main frame 101, a movable frame 120 is fixedly mounted on the output end of the electric cylinder 119, a rotating shaft 124 is rotatably mounted with the movable frame 120, a push plate 121 is fixedly mounted on the movable frame 120, and when the electric cylinder 119 is retracted, the docking gear 123 is meshed with the central gear 130.

[0035] like Figure 2-Figure 6 As shown, a lower guide seat 113 and a discharge slope 112 are fixedly mounted on the main frame 101, an upper top slope block 114 is slidably mounted on the lower guide seat 113, the top of the upper top slope block 114 is a slope, a lifting cylinder 115 is fixedly mounted below the upper top slope block 114, an inner convex ball 118 is fixedly mounted on the inner wall of the lifting cylinder 115, a two-way stud 116 is rotatably mounted on the main frame 101, a jacking wheel 117 is fixedly mounted on the two-way stud 116, a driving wheel 128 is rotatably mounted on the main frame 101, an external docking gear 126 is fixedly mounted on the driving wheel 128, a bottom transmission belt 127 is wound around the driving wheel 128, the jacking wheel 117 and the lower wheel 202, a two-way thread is provided on the two-way stud 116, the inner convex ball 118 slides in the two-way thread of the two-way stud 116, and when the electric cylinder 119 is extended to the longest, the docking gear 123 engages with the external docking gear 126.

[0036] When the electric cylinder 119 is in a retracted state, the central gear 130 meshes with the docking gear 123, and the motor 102 drives the motor gear 103 to rotate, thereby driving the driving gear 105, the movable rotating rod 106 and the lower transmission wheel 104 to rotate, and driving the transmission belt 108 to drive the lower rotating wheel 109 and the upper rotating wheel 110 to rotate, and the upper transmission belt 111 drives the movable wheel 122, the docking gear 123 and the rotating shaft 124 to rotate, thereby driving the central gear 130 to rotate, thereby driving the extension block 133, the winding disk 135 and the rotating drum 136 to rotate, each time rotating ninety degrees.

[0037] When the electric cylinder 119 is extended, the movable frame 120 and the push plate 121 are driven to move, thereby driving the rotating shaft 124 to slide along the slide groove 125, thereby driving the follower rotating rod 138 to rotate, and driving the movable rotating rod 106 to rotate. At this time, the transmission of the driving transmission belt 108 and the upper transmission belt 111 is not affected, and the motor 102 finally drives the docking gear 123 to rotate. When the electric cylinder 119 is extended to the longest, the docking gear 123 is engaged with the external docking gear 126. The rotation of the docking gear 123 drives the external docking gear 126 and the driving wheel 128 to rotate, thereby driving the lower wheel 202 and the lifting wheel 117 to rotate through the bottom transmission belt 127.

[0038] The rotation of the lifting wheel 117 drives the two-way stud 116 to rotate, and the lifting cylinder 115 and the upper top slope block 114 are lifted up through the inner convex ball 118, and the winding disk 135 located above the upper top slope block 114 is lifted up, and the winding disk 135 slides upward along the rotating drum 136. Finally, the winding disk 135 is separated from the rotating drum 136 and slides along the top slope of the upper top slope block 114 to the discharge slope 112 to realize discharge.

[0039] like Figure 7-10 As shown, the winding mechanism also includes a winding gear 203 fixedly mounted on the outer shaft 201, the winding gear 203 is meshed with the outer gear ring 212, a push block 205 is slidably mounted on the main frame 101, a lifting rod 206 is rotatably mounted on the push block 205, the lifting rod 206 is in contact with the lifting block 131, a fixed column 213 is fixedly mounted on the main frame 101, a bidirectional threaded column 211 is slidably mounted outside the fixed column 213, a rope feed guide 204 is fixedly mounted on the bidirectional threaded column 211, and a bidirectional thread is arranged on the bidirectional threaded column 211, a lifting convex ball 210 is fixedly mounted inside the outer shaft 201, and the lifting convex ball 210 slides in the bidirectional thread of the bidirectional threaded column 211.

[0040] like Figure 7-10 As shown, two cutters 207 are slidably mounted on the main frame 101 , an outer top block 209 is fixedly mounted on the cutter 207 , and a cutter spring 208 is provided between the cutter 207 and the main frame 101 .

[0041] When the electric cylinder 119 extends, it drives the push plate 121 to move, and the push plate 121 pushes the push block 205 to slide toward the central rotating frame 129, thereby driving the lifting rod 206 to rotate, and the lifting rod 206 lifts the lifting block 131, and drives the extension block 133 to slide outward through the lifting rotating rod 132, the inner spring 134 is stretched, and the extension block 133 pushes the outer lifting block 209 and the cutter 207 to slide outward, and the cutter spring 208 is compressed, and then the wire rope passes through the rope inlet guide tube 204 and is inserted into the vertical slot of the winding disk 135. At this time, the winding gear 203 is meshed with the drum gear 137, and the lower wheel 20 2 drives the outer shaft 201 and the winding gear 203 to rotate, drives the outer gear ring 212 to rotate, thereby drives the drum gear 137, the drum 136 and the winding disk 135 to rotate, and the wire rope is wound onto the winding disk 135. At the same time, the rotation of the outer shaft 201 drives the two-way threaded column 211 and the rope feeding guide 204 to rise and fall along the fixed column 213 through the lifting convex ball 210, so that the wire rope is evenly wound on the winding disk 135. Then, when the electric cylinder 119 contracts, the inner spring 134 rebounds, so that the extension block 133 and the push block 205 are reset, and the cutter spring 208 rebounds, so that the cutter 207 cuts the wire rope.

[0042] like Fig.11 , Fig.12As shown, the packaging mechanism includes a rubber column 302 rotatably mounted on a winding seat 301, a torsion spring is arranged between the winding seat 301 and the main frame 101, a winding tape 303 is wound around the rubber column 302, a top rubber column 304 is fixedly mounted on the winding seat 301, the end of the winding tape 303 is tightly attached to the rubber column 302, a cutting knife 305 is slidably mounted on the main frame 101, a knife spring 306 is arranged between the cutting knife 305 and the main frame 101, and a winding gear 307 is rotatably mounted on the main frame 101, and the winding gear 307 is meshed with the outer gear ring 212.

[0043] The lifting block 131 rises and drives the overhanging block 133 to slide outward along the central rotating frame 129. The overhanging block 133 located on the side of the winding seat 301 pushes the winding seat 301 to rotate, and at the same time drives the cutting knife 305 to slide outward, the knife spring 306 is compressed, and the winding seat 301 rotates, driving the tape end on the top rubber column 304 to contact the steel wire rope on the winding disk 135, and the winding gear 307 is meshed with the rotating drum gear 137. The outer gear ring 212 drives the winding gear 307 to rotate, and drives the rotating drum gear 137, the rotating drum 136 and the winding disk 135 to rotate, thereby winding the winding tape 303 around the outer side of the steel wire rope of the winding disk 135. When the winding reaches a certain thickness, the winding tape 303 contacts the cutting knife 305, cuts the winding tape 303, and completes the tape winding. Subsequently, when the overhanging block 133 retracts, the torsion spring between the winding seat 301 and the main frame 101 rebounds and resets, and the knife spring 306 rebounds and resets.

[0044] The working principle of the coiling conveying device for wire rope processing disclosed in the present invention is as follows: when the electric cylinder 119 is extended, the push plate 121 is driven to move, and the push plate 121 pushes the push block 205 to slide toward the central rotating frame 129, thereby driving the lifting rod 206 to rotate, and the lifting rod 206 lifts the lifting block 131, and drives the extension block 133 to slide outward through the lifting rotating rod 132, the inner spring 134 is stretched, and the extension block 133 pushes the outer lifting block 209 and the cutter 207 outward. The cutter spring 208 is compressed, and then the wire rope passes through the rope inlet guide tube 204 and is inserted into the vertical slot of the winding disk 135. At this time, the winding gear 203 is meshed with the drum gear 137, and the motor 102 drives the motor gear 103 to rotate, thereby driving the driving gear 105, the movable rod 106 and the lower transmission wheel 104 to rotate, and the lower rotating wheel 109 and the upper rotating wheel 110 are driven to rotate through the driving belt 108, and the movable wheel 110 is driven through the upper transmission belt 111. 22. The docking gear 123 and the rotating shaft 124 rotate. When the electric cylinder 119 is extended to the longest, the docking gear 123 meshes with the outer docking gear 126. The docking gear 123 rotates to drive the outer docking gear 126 and the driving wheel 128 to rotate, thereby driving the lower wheel 202 and the jacking wheel 117 to rotate through the bottom transmission belt 127. The lower wheel 202 drives the outer shaft 201 and the winding gear 203 to rotate, and drives the outer gear ring 212 to rotate, thereby driving the drum gear 137 and the rotating drum gear 137. The cylinder 136 and the winding drum 135 rotate to wind the wire rope onto the winding drum 135. At the same time, the rotation of the outer shaft 201 will drive the bidirectional threaded column 211 and the rope feed guide tube 204 to rise and fall along the fixed column 213 through the lifting convex ball 210, so that the wire rope is evenly wound on the winding drum 135. Then, when the electric cylinder 119 contracts, the inner spring 134 rebounds, so that the extension block 133 and the push block 205 are reset, and the cutter spring 208 rebounds, so that the cutter 207 cuts the wire rope. At the same time, the lifting block 131 rises and drives the overhanging block 133 to slide outward along the central rotating frame 129. The overhanging block 133 located on the side of the winding seat 301 pushes the winding seat 301 to rotate, and at the same time drives the cutting knife 305 to slide outward, the knife spring 306 is compressed, and the winding seat 301 rotates, driving the tape end on the top rubber column 304 to contact the steel wire rope on the winding disk 135, and the winding gear 307 is meshed with the rotating drum gear 137. The outer gear ring 212 drives the winding gear 307 to rotate, drives the rotating drum gear 137, the rotating drum 136 and the winding disk 135 to rotate, thereby winding the winding tape 303 around the outer side of the steel wire rope of the winding disk 135. When it is wound to a certain thickness, the winding tape 303 contacts the cutting knife 305, cuts off the winding tape 303, and completes the tape winding. Subsequently, when the overhanging block 133 retracts, the torsion spring between the winding seat 301 and the main frame 101 rebounds and resets, and the knife spring 306 rebounds and resets.At the same time, the rotation of the lifting wheel 117 drives the two-way stud 116 to rotate, and the lifting cylinder 115 and the upper top slope block 114 are lifted up through the inner convex ball 118, and the winding disk 135 located above the upper top slope block 114 is lifted up, and the winding disk 135 slides upward along the rotating drum 136. Finally, the winding disk 135 is separated from the rotating drum 136 and slides along the top slope of the upper top slope block 114 to the discharge slope 112 to realize discharge. Then the electric cylinder 119 contracts, the central gear 130 meshes with the docking gear 123, and the motor 102 drives the motor gear 103 to rotate, thereby driving the driving gear 105, the movable rotating rod 106 and the lower transmission wheel 104 to rotate, and the lower rotating wheel 109 and the upper rotating wheel 110 are driven to rotate by the driving belt 108, and the movable wheel 122, the docking gear 123 and the rotating shaft 124 are driven to rotate by the upper transmission belt 111, thereby driving the central gear 130 to rotate, thereby driving the extension block 133, the winding disk 135 and the rotating drum 136 to rotate, and each rotation is ninety degrees to realize the automatic and continuous winding, winding and unloading.

[0045] The above description is only a preferred specific implementation manner of the present invention, but the protection scope of the present invention is not limited thereto. Any technician familiar with the technical field can make equivalent replacements or changes according to the technical scheme and inventive concept of the present invention within the technical scope of the present invention, which should be covered by the protection scope of the present invention.

Claims

1. A coiling and conveying device for wire rope processing, comprising a circulation mechanism for driving the wire rope to circulate in various processes, characterized in that: The circulation mechanism comprises a main frame (101), on which a winding mechanism for winding the steel wire rope and a packaging mechanism for externally packaging the wound steel wire rope are arranged, the winding mechanism comprises an outer shaft (201), the outer shaft (201) is rotatably mounted on the main frame (101), and the packaging mechanism comprises a winding seat (301), the winding seat (301) is rotatably mounted on the main frame (101); The circulation mechanism comprises a central rotating frame (129) rotatably mounted on the main frame (101), and a lifting block (131) is slidably mounted on the central rotating frame (129); The winding mechanism comprises a lower wheel (202) fixedly mounted on an outer shaft (201), and an outer gear ring (212) is rotatably mounted on the main frame (101).

2. A coiling and conveying device for wire rope processing according to claim 1, characterized in that: The circulation mechanism further comprises a central gear (130) fixedly mounted on the central rotating frame (129); four overhanging blocks (133) are slidably mounted on the central rotating frame (129); an inner spring (134) is arranged between the overhanging blocks (133) and the central rotating frame (129); a lifting rod (132) is rotatably mounted on the lifting block (131); the lifting rod (132) is rotatably mounted on the overhanging blocks (133); a rotating drum (136) is rotatably mounted on the overhanging blocks (133); a rotating drum gear (137) is fixedly mounted on the rotating drum (136); a winding disk (135) is slidably mounted on the rotating drum (136); and a plurality of vertical grooves are arranged on the winding disk (135).

3. A coiling and conveying device for wire rope processing according to claim 2, characterized in that: A motor (102) is fixedly mounted on the main frame (101), a motor gear (103) is fixedly mounted on the motor shaft of the motor (102), a gear shaft (107) is rotatably mounted on the main frame (101), a driving gear (105) and a lower transmission wheel (104) are fixedly mounted on the gear shaft (107), the driving gear (105) is meshed with the motor gear (103), a movable rotating rod (106) is rotatably mounted on the gear shaft (107), an upper rotating wheel (110) is rotatably mounted on the movable rotating rod (106), a lower rotating wheel (109) is fixedly mounted on the upper rotating wheel (110), and the lower rotating wheel (109) is fixedly mounted on the lower rotating wheel (110). A driving belt (108) is wound around the lower transmission wheel (109) and the lower transmission wheel (104); a follower rod (138) is rotatably mounted on the movable rod (106); the follower rod (138) is rotatably mounted on the upper rotating wheel (110); a rotating shaft (124) is rotatably mounted on the follower rod (138); a movable wheel (122) and a docking gear (123) are fixedly mounted on the rotating shaft (124); an upper transmission belt (111) is wound around the movable wheel (122) and the upper rotating wheel (110); a slide groove (125) is provided on the main frame (101); and the rotating shaft (124) slides in the slide groove (125).

4. A coiling and conveying device for wire rope processing according to claim 3, characterized in that: An electric cylinder (119) is fixedly mounted on the main frame (101), a movable frame (120) is fixedly mounted on the output end of the electric cylinder (119), a rotating shaft (124) is rotatably mounted on the movable frame (120), a push plate (121) is fixedly mounted on the movable frame (120), and when the electric cylinder (119) is retracted, the docking gear (123) meshes with the central gear (130).

5. A coiling and conveying device for processing steel wire ropes according to claim 4, characterized in that: The main frame (101) is fixedly mounted with a lower guide seat (113) and a discharge slope (112); an upper slope block (114) is slidably mounted on the lower guide seat (113); the top of the upper slope block (114) is a slope; a lifting cylinder (115) is fixedly mounted below the upper slope block (114); an inner convex ball (118) is fixedly mounted on the inner wall of the lifting cylinder (115); a bidirectional stud (116) is rotatably mounted on the main frame (101); a jacking wheel (117) is fixedly mounted on the bidirectional stud (116); A driving wheel (128) is rotatably mounted on the main frame (101), an external docking gear (126) is fixedly mounted on the driving wheel (128), a bottom transmission belt (127) is wound around the driving wheel (128), a jacking wheel (117) and a lower wheel (202), a bidirectional thread is arranged on the bidirectional stud (116), an inner convex ball (118) slides in the bidirectional thread of the bidirectional stud (116), and when the electric cylinder (119) is extended to the longest, the docking gear (123) meshes with the external docking gear (126).

6. A coiling and conveying device for processing steel wire ropes according to claim 1, characterized in that: The winding mechanism further comprises a winding gear (203) fixedly mounted on the outer shaft (201), the winding gear (203) meshing with the outer gear ring (212), a push block (205) slidably mounted on the main frame (101), a lifting rod (206) rotatably mounted on the push block (205), the lifting rod (206) contacting the lifting block (131), a fixed column (213) fixedly mounted on the main frame (101), a bidirectional threaded column (211) slidably mounted outside the fixed column (213), a rope feed guide tube (204) fixedly mounted on the bidirectional threaded column (211), a bidirectional thread being arranged on the bidirectional threaded column (211), a lifting convex ball (210) fixedly mounted inside the outer shaft (201), the lifting convex ball (210) sliding in the bidirectional thread of the bidirectional threaded column (211).

7. A coiling and conveying device for processing a steel wire rope according to claim 6, characterized in that: Two cutters (207) are slidably mounted on the main frame (101), an outer top block (209) is fixedly mounted on the cutter (207), and a cutter spring (208) is provided between the cutter (207) and the main frame (101).

8. The coiling and conveying device for wire rope processing according to claim 1, characterized in that: The packaging mechanism comprises a rubber column (302) rotatably mounted on a winding seat (301), a torsion spring is arranged between the winding seat (301) and the main frame (101), a winding tape (303) is wound around the rubber column (302), a top rubber column (304) is fixedly mounted on the winding seat (301), an end of the winding tape (303) is tightly attached to the rubber column (302), a cutting knife (305) is slidably mounted on the main frame (101), a knife spring (306) is arranged between the cutting knife (305) and the main frame (101), and a winding gear (307) is rotatably mounted on the main frame (101), and the winding gear (307) is meshed with an outer gear ring (212).