A wire winding and forming device
Through the combined structure of gear rack and rack and thread sleeve, combined with the design of mold and motor cylinder, the problems of inconvenient tension adjustment and short equipment life in the wire winding equipment are solved, and the wire winding forming equipment with adjustable tension, simple operation and high winding accuracy are realized.
Patent Information
- Application Number
- CN202211171232.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2022-09-23
- Publication Date
- 2025-08-01
- Estimated Expiration
- 2042-09-23
AI Technical Summary
In the prior art, wire winding forming equipment is inconvenient when adjusting the wire tension, the equipment life is short and the operation is complicated, and the wire needs to be manually fixed when winding, which affects the processing progress.
The gear and rack structure are used to adjust the lifting and movement of the roller, combined with the threaded connection between the threaded sleeve and the wound roller, the tension adjustment of the steel wire and the quick limit fixation are achieved, the steel wire is straightened by the mold device, and the motor and cylinder are used to realize automatic cutting and recycling of the flip plate.
It realizes adjustable tension during the wire wrapping process, extends the equipment life, simple operation, improves winding accuracy and work efficiency, reduces manual intervention, and enhances the functionality of the equipment.
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Figure CN115532857B_ABST
Abstract
Description
Technical Field
[0001] The invention relates to the technical field of steel wire winding, in particular to a steel wire winding forming device. Background Art
[0002] Patent number CN201210574047.X discloses a wire ring recovery device, comprising a wire ring support device and a bracket for supporting the wire ring support device. The wire ring support device includes at least two first wire ring support rollers, each of which is provided with a groove surrounding its outer circumference for accommodating the wire ring; and a drive mechanism for controlling the radial movement of the first wire ring support rollers. The wire ring support device supports the wire ring without requiring manual support, thereby reducing the buildup of debris such as sweat and glove lint on the wire surface and improving the quality of the wire. No manual intervention is required during wire ring winding, thereby improving employee safety. Because the wire ring is held open by the wire ring support device, the winding speed of the main machine can be increased. The wire ring support device can adjust the radial distance between the first wire ring support rollers as needed, further improving the efficiency of wire ring winding.
[0003] The patent number is CN201911241905.7, a steel wire drawing machine, including a body, the top of the body is fixedly connected to a refrigeration box and an exhaust fan in sequence from left to right, the air inlet of the exhaust fan is connected to the right side of the refrigeration box through an air inlet pipe, the air outlet of the exhaust fan is connected to an air outlet head through an air outlet pipe, and the left side of the refrigeration box is fixedly connected to a drive motor. The present invention cools the cooling pipe by setting a refrigeration component and transfers the cooling temperature to the cooling plate. The exhaust fan discharges the cooling gas from the air outlet head through the air inlet pipe and the air outlet pipe. The drive motor drives the fan blades to rotate, speeding up the discharge of cold air, so that the cooling gas is blown onto the steel wire, replacing the natural air cooling method. The servo motor is set to rotate forward and reverse to drive the second bevel gear to rotate, and the second bevel gear drives the first bevel gear to rotate, thereby adjusting the tightness of the steel wire during the wire drawing process.
[0004] The above patents propose winding and recycling of steel wire, as well as recycling of steel wire after drawing. The above-mentioned method of winding and forming and recycling steel wire, wherein it is inconvenient to adjust the tension of the steel wire during winding and forming and recycling of the steel wire, and the adjustment equipment has a short life and single functionality. When winding and forming the steel wire, one end of the steel wire needs to be fixed on the recycling device for winding, which increases the difficulty of operation for the staff and delays the processing progress. Summary of the Invention
[0005] Technical problems solved
[0006] In view of the deficiencies of the prior art, the present invention provides a wire winding and forming device, which solves the problems of adjustable wire tension, long service life of the device, simple operation, clamping and limiting of the wire when replacing a new recovery roller, and quick limiting and fixing of one end of the wire to the recovery roller during wire winding and recovery, and simple operation improves the work progress.
[0007] Technical solution
[0008] To achieve the above object, the present invention is realized through the following technical solutions: A wire winding and forming device includes a recovery table, on the top surface of the recovery table, a mounting plate is fixed. On the front surface of the mounting plate, two groups of limiting rollers are provided. Between the two groups of limiting rollers, a straightening device is provided. On the front surface of the mounting plate, a tension adjusting device is provided. The tension adjusting device includes an adjusting roller. One end of the adjusting roller is welded with a reinforcing rod. One end of the reinforcing rod is bolt-fixed with a linear motor. The working end of the linear motor is fixed with a gear. In the groove on the front surface of the mounting plate, a rack is provided, and the rack is fixed to the inner wall of the groove of the mounting plate by bolts. In the groove on the front surface of the mounting plate, a matching roller is provided. On the back surface of the matching roller, a fixing rod is fixed. On the front surface of the mounting plate, a recovery device is provided. The recovery device includes a rotating motor. The working end of the rotating motor is fixed with a threaded sleeve. In the threaded sleeve, a winding roller is provided, and the winding roller is in threaded cooperation with the inner wall of the threaded sleeve. On the surface of the winding roller, limiting channels are circumferentially and arrayedly arranged.
[0009] Preferably, the reinforcing rod and the fixing rod are simultaneously fitted into the groove on the front surface of the mounting plate. The reinforcing rod is movably connected to the groove on the front surface of the mounting plate, and the fixing rod is fixed to the groove on the front surface of the mounting plate. The gear is located between the two racks, and the gear meshes with the surface of the rack.
[0010] Preferably, one end of the winding roller is circumferentially and arrayedly fixed with springs. One end of the springs is welded with a push plate. On one side of the push plate, cutting tools are circumferentially and arrayedly arranged, and the cutting tools correspond to the positions of the limiting channels.
[0011] Preferably, a bracket is fixed on the top surface of the recovery table, and one end of the mounting plate is fixed to the top surface of the bracket. On the side surface of the bracket, a reinforcing plate is bolt-fixed. In the through hole on the front surface of the reinforcing plate, a recovery roller is provided. The recovery roller is engaged with the through hole on the front surface of the reinforcing plate, and grooves are circumferentially and arrayedly arranged on the front surface of the recovery roller.
[0012] Preferably, a rotating shaft is provided in the groove on the front surface of the bracket. The rotating shaft is located on the bracket close to the recovery roller, and the rotating shaft is movably connected to the bracket. On the surface of the rotating shaft, a turning plate is fixed, and the turning plate is L-shaped. An electromagnet is bolt-fixed to the inner wall of the groove on the front surface of the bracket, and the electromagnet magnetically attracts the protrusion on one side of the turning plate.
[0013] Preferably, one side of the turning plate is provided with a cylinder, the cylinder is fixed to the back of the turning plate by bolts, a push plate is fixed to the telescopic end of the cylinder, and the protrusion on one side of the push plate is matched with the groove of the recovery roller.
[0014] Preferably, the straightening device includes a fixed disc, the fixed disc is fixed to the front of the mounting plate by bolts, a limiting plate is welded to the front of the fixed disc, a groove is formed in the front of the limiting plate, a lower die is fixed to the front of the limiting plate, and an upper die is arranged on the top surface of the lower die.
[0015] Preferably, the protrusion on the back of the upper die is fitted into the groove on the front of the limiting plate, the upper die is movably connected to the limiting plate, and through holes are formed in the surface of the upper die adjacent to the lower die.
[0016] Preferably, a lead screw is arranged in the through holes on the top surfaces of the upper die and the lower die, the lead screw is fitted into the through hole on the top surface of the lower die, the lead screw is matched with the through hole on the top surface of the upper die, and the lead screw is threadedly connected to the through hole on the top surface of the upper die.
[0017] Preferably, a rotary handle is fixed to the top surface of the lead screw, the rotary handle is fixed to the top surfaces of the two lead screws respectively, a fixed nut is sleeved on the surface of the lead screw, the lead screw is threadedly connected to the fixed nut, and the fixed nut is in contact with the bottom surface of the lower die.
[0018] Working principle: After the steel wire undergoes the wire drawing step, it is cooled. When the steel wire is being drawn or recycled, one end of the steel wire is passed through between the limit rollers, and the positions of the upper die and the lower die are adjusted. First, the fixing nut on the surface of the lead screw is removed, and the rotating handle on the top surface of the lead screw is rotated. Since the upper die is threadedly connected to the surface of the lead screw, the rotation of the lead screw can move the upper die. Because the protrusion on the back surface of the upper die is fitted into the groove on the front surface of the limit plate, the upper die can be limited when the upper die is moving. When the upper die is moved to a suitable position, the steel wire just passes through the through hole on the adjacent side of the upper die and the lower die. The fixing nut is installed and abuts against the lower die to limit and fix the lead screw. When the steel wire passes through the through hole between the upper die and the lower die, the steel wire can be straightened, straightening the bent steel wire and ensuring the quality of winding. One end of the steel wire is passed through between the adjusting roller and the matching roller, and one end of the steel wire is wound along the limit channel on the surface of the winding roller to quickly limit and fix the steel wire. At the same time, the rotating motor is rotated at this time. Since the threaded sleeve is fixed to the working end of the rotating motor, the threaded sleeve can rotate. Since the threaded sleeve is threadedly connected to the winding roller, the winding roller can rotate and move linearly during the rotation of the threaded sleeve, winding the steel wire on the surface of the winding roller. When the rotating motor rotates forward to the set number of turns, the rotating motor rotates in reverse, neatly winding the steel wire on the surface of the winding roller. At this time, the air cylinder on the back surface of the flipping plate is started, and the air cylinder pushes the recycling roller. Through the cooperation of the protrusion on the back surface of the push plate and the groove on the front surface of the recycling roller, it can ensure that the recycling roller can still be limited by force when it is pushed out of the reinforcing plate until one end of the recycling roller abuts against the push plate and squeezes the push plate. The push plate is stressed and squeezes the spring. Since the cutting tool on the back surface of the push plate corresponds to the position of the limit channel, when the push plate is squeezed to a certain force, the cutting tool can cut the steel wire in the limit channel, and the staff can cut the wound steel wire and the unwound steel wire to separate them, which is convenient for the staff to smooth the steel wire on the surface of the winding roller onto the recycling roller. At this time, the air cylinder returns to its original position. Since the surface of the recycling roller is increased with the wound steel wire and cannot enter the through hole on the front surface of the reinforcing plate, the recycling roller falls into the recycling table, and the staff can sort out the recycling roller and wait for recycling together. The staff can turn off the electromagnet, rotate the plate by 90 degrees, and install a new recycling roller. By operating in sequence, the recycling roller can be recycled and moved. The staff can directly use the steel wire on the recycling roller or braid the steel wire on the recycling roller, twisting multiple steel wires together to form a steel wire lock. When recycling the wound steel wire, the linear motor on the back surface of the adjusting roller can work. The working end of the linear motor is fixed with a gear. When the linear motor rotates, the gear moves linearly on the gear in the groove on the front surface of the mounting plate until the adjusting roller moves to abut against the matching roller, and the steel wire can be clamped between the adjusting roller and the matching roller, which is convenient for installing the steel wire and the winding roller next time. At the same time, the lifting movement of the adjusting roller can adjust the tension of the wound steel wire, and the operation is simple.Using gears and racks simultaneously increases the service life of the equipment, with high precision and easy operation.
[0019] Advantageous Effects
[0020] The present invention provides a wire winding forming device. It has the following advantageous effects:
[0021] 1. By adopting gears and racks in the present invention, when winding the wire, the adjusting roller can be lifted and lowered. Since the back of the adjusting roller is fixed to the linear motor through a reinforcing rod, and the linear motor is fixed with a gear, when the linear motor works, the gear can move on the surface of the rack, causing the adjusting roller to move up and down. Therefore, the adjusting roller can adjust the tension of the wire. When the adjusting roller moves to the highest position and abuts against the cooperating roller, the wire on the adjusting roller can be clamped and fixed, realizing that the tension of the equipment can be adjusted conveniently by adding the structure of gears and racks. The equipment is simple, has a long service life, is easy to repair, and increases functionality. It can clamp and fix the wire, facilitating subsequent operations.
[0022] 2. Through the thread sleeve and the limiting through holes in the present invention, by threadedly connecting the winding roller to the inner wall of the thread sleeve, when the winding roller winds the wire, the winding roller can rotate and move linearly, winding the wire orderly on the surface of the winding roller. Through the limiting through holes on the surface of the winding roller, one end of the wire can pass through the limiting through holes in sequence, quickly limiting and fixing the wire, realizing that it is convenient for the staff to limit and wind the wire, improving the winding precision, with simple operation, and making the wire wind neatly and orderly on the winding roller, facilitating the subsequent recovery of the wire by the staff.
[0023] 3. Through the threaded rod, the upper die and the lower die in the present invention, by installing the straightening device between two limiting rollers, the distance between the upper die and the lower die can be adjusted by rotating the screw rod, enabling the wire to be fitted into the through holes on the adjacent sides of the upper die and the lower die, and fixing the screw rod with a fixing nut. When the wire passes through the through holes between the upper die and the lower die, the wire is straightened, the bent parts on the surface of the wire can be processed, improving the quality of the wire during winding, and facilitating the subsequent use of the wire by the staff. BRIEF DESCRIPTION OF THE DRAWINGS
[0024] Figure 1 is the axonometric view of the present invention;
[0025] Figure 2 is the perspective view of the present invention;
[0026] Figure 3 is Figure 2 the enlarged view of part A;
[0027] Figure 4Front view of the present invention;
[0028] Figure 5 Top view of the present invention;
[0029] Figure 6 Side view of the present invention;
[0030] Figure 7 Partial sectional view of the present invention;
[0031] Figure 8 Overall view of the tension adjustment device of the present invention;
[0032] Figure 9 Overall view of the recycling device of the present invention.
[0033] Wherein, 1, recycling table; 2, mounting plate; 3, limiting roller; 4, straightening device; 401, fixed disc; 402, limiting plate; 403, lower die; 404, upper die; 405, lead screw; 406, rotating handle; 407, fixed nut; 5, tension adjustment device; 501, adjusting roller; 502, reinforcing rod; 503, linear motor; 504, rack; 505, gear; 506, cooperating roller; 507, fixed rod; 6, recycling device; 601, rotating motor; 602, threaded sleeve; 603, winding roller; 604, limiting channel; 605, spring; 606, cutting tool; 607, push plate; 608, bracket; 609, reinforcing plate; 610, recycling roller; 611, rotating shaft; 612, turning plate; 613, electromagnet; 614, cylinder; 615, push disc. Specific embodiments
[0034] The technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present invention without creative efforts shall fall within the protection scope of the present invention.
[0035] Embodiment 1:
[0036] As Figures 1-9As shown in the figure, a wire winding and forming device includes a recycling table 1. A mounting plate 2 is fixed on the top surface of the recycling table 1. Two groups of limiting rollers 3 are provided on the front surface of the mounting plate 2. A straightening device 4 is provided between the two groups of limiting rollers 3. A tension adjusting device 5 is provided on the front surface of the mounting plate 2. The tension adjusting device 5 includes an adjusting roller 501. One end of the adjusting roller 501 is welded with a reinforcing rod 502. One end of the reinforcing rod 502 is bolt-fixed with a linear motor 503. A gear 505 is fixed at the working end of the linear motor 503. A rack 504 is provided in the groove on the front surface of the mounting plate 2. The rack 504 is fixed to the inner wall of the groove of the mounting plate 2 by bolts. A mating roller 506 is provided in the groove on the front surface of the mounting plate 2. A fixing rod 507 is fixed to the back surface of the mating roller 506. The reinforcing rod 502 and the fixing rod 507 are simultaneously fitted into the groove on the front surface of the mounting plate 2. The reinforcing rod 502 is movably connected to the groove on the front surface of the mounting plate 2. The fixing rod 507 is fixed to the groove on the front surface of the mounting plate 2. The gear 505 is located between the two racks 504. The surface of the gear 505 meshes with the rack 504. When recycling the wound wire, the linear motor 503 on the back surface of the adjusting roller 501 can be operated. The gear 505 is fixed at the working end of the linear motor 503. When the linear motor 503 rotates, the gear 505 makes a linear movement on the gear 505 in the groove on the front surface of the mounting plate 2 until the adjusting roller 501 moves to abut against the mating roller 506. The wire can be clamped between the adjusting roller 501 and the mating roller 506, which is convenient for installing the wire and the winding roller 603 next time. At the same time, the lifting movement of the adjusting roller 501 can adjust the tension of the wound wire. The operation is simple. At the same time, the use of the gear 505 and the rack 504 increases the service life of the device and has high precision and is convenient for operation.
[0037] Embodiment 2:
[0038] As Figures 1-9As shown, a recycling device 6 is provided on the front of the mounting plate 2. The recycling device 6 includes a rotating motor 601. A threaded sleeve 602 is fixed to the working end of the rotating motor 601. A winding roller 603 is provided inside the threaded sleeve 602. The winding roller 603 is in threaded engagement with the inner wall of the threaded sleeve 602. A plurality of limiting channels 604 are circumferentially arranged on the surface of the winding roller 603. A plurality of springs 605 are fixedly arranged around one end of the winding roller 603. One end of each spring 605 is welded to a push plate 607. A plurality of cutting tools 606 are arranged around one side of the push plate 607. The cutting tools 606 correspond to the positions of the limiting channels 604. One end of the steel wire is passed between the adjusting roller 501 and the mating roller 506, and one end of the steel wire is wound along the limiting channels 604 on the surface of the winding roller 603 to quickly limit and fix the steel wire. At the same time, the rotating motor 601 is rotated. Since the threaded sleeve 602 is fixed to the working end of the rotating motor 601, the threaded sleeve 602 can rotate. Since the threaded sleeve 602 is in threaded connection with the winding roller 603, the winding roller 603 can rotate and move linearly during the rotation of the threaded sleeve 602, and the steel wire is wound around the surface of the winding roller 603. When the rotating motor 601 rotates forward to the set number of turns, the rotating motor 601 rotates in reverse to neatly wind the steel wire around the surface of the winding roller 603.
[0039] A support 608 is fixed on the top surface of the recycling table 1. One end of the support 608 is fixed to the top surface of the mounting plate 2. A reinforcing plate 609 is bolted to the side surface of the support 608. A recycling roller 610 is arranged in the through hole on the front surface of the reinforcing plate 609. The recycling roller 610 is engaged with the through hole on the front surface of the reinforcing plate 609. Grooves are circumferentially arranged on the front surface of the recycling roller 610. A rotating shaft 611 is arranged in the groove on the front surface of the support 608. The rotating shaft 611 is located on the support 608 close to the recycling roller 610. The rotating shaft 611 is movably connected to the support 608. A turning plate 612 is fixed on the surface of the rotating shaft 611. The turning plate 612 is L-shaped. An electromagnet 613 is bolted to the inner wall of the groove on the front surface of the support 608. The electromagnet 613 is magnetically attracted to the protrusion on one side of the turning plate 612. A cylinder 614 is arranged on one surface of the turning plate 612. The cylinder 614 is fixed to the back surface of the turning plate 612 by bolts. A push plate 615 is fixed to the telescopic end of the cylinder 614. The protrusion on one surface of the push plate 615 cooperates with the groove of the recycling roller 610. When the cylinder 614 on the back surface of the turning plate 612 is started, the cylinder 614 pushes the recycling roller 610. Through the cooperation of the protrusion on the back surface of the push plate 615 and the groove on the front surface of the recycling roller 610, it can be ensured that the recycling roller 610 can still be limited by force when it is pushed out of the reinforcing plate 609 until one end of the recycling roller 610 abuts against the push plate 607 and squeezes the push plate 607. The push plate 607 is forced to squeeze the spring 605. Since the cutting tool 606 on the back surface of the push plate 607 corresponds to the position of the limiting channel 604, when the push plate 607 is squeezed to a certain force, the cutting tool 606 can cut the steel wire in the limiting channel 604. The staff can cut the wound steel wire and the unwound steel wire to separate them, which is convenient for the staff to straighten the steel wire on the winding roller 603 onto the recycling roller 610. At this time, the cylinder 614 returns to its original position. Since the wound steel wire is added on the surface of the recycling roller 610, it cannot enter the through hole on the front surface of the reinforcing plate 609, and the recycling roller 610 falls into the recycling table 1. The staff can sort out the recycling roller 610 and wait for recycling together. The staff can turn off the electromagnet 613 to rotate the plate by 90 degrees and install a new recycling roller 610. By operating in sequence, the recycling roller 610 can be recycled and moved. The staff can directly use the steel wire on the recycling roller 610 or braid the steel wire on the recycling roller 610 to twist multiple steel wires together to form a steel wire lock.
[0040] Embodiment 3:
[0041] Such as Figures 1-9As shown in the figure, the straightening device 4 includes a fixed disc 401. The fixed disc 401 is fixed to the front of the mounting plate 2 by bolts. A limiting plate 402 is welded to the front of the fixed disc 401. A groove is formed on the front of the limiting plate 402. A lower die 403 is fixed to the front of the limiting plate 402. An upper die 404 is arranged on the top surface of the lower die 403. The convex part on the back of the upper die 404 is fitted into the groove on the front of the limiting plate 402. The upper die 404 is movably connected to the limiting plate 402. A through hole is formed on the adjacent surface of the upper die 404 and the lower die 403. A lead screw 405 is arranged in the through holes on the top surfaces of the upper die 404 and the lower die 403. The lead screw 405 is fitted into the through hole on the top surface of the lower die 403. The lead screw 405 cooperates with the through hole on the top surface of the upper die 404. The lead screw 405 is threadedly connected to the through hole on the top surface of the upper die 404. A rotary handle 406 is fixed to the top surface of the lead screw 405. The rotary handle 406 is fixed to the top surfaces of the two lead screws 405 respectively. A fixing nut 407 is sleeved on the surface of the lead screw 405. The lead screw 405 is threadedly connected to the fixing nut 407. The fixing nut 407 is in contact with the bottom surface of the lower die 403. After the steel wire undergoes the wire drawing step, it is cooled. When the steel wire is being drawn or recycled, one end of the steel wire is passed through between the limiting rollers 3, and the positions of the upper die 404 and the lower die 403 are adjusted. First, the fixing nut 407 on the surface of the lead screw 405 is removed, and the rotary handle 406 on the top surface of the lead screw 405 is rotated. Since the upper die 404 is threadedly connected to the surface of the lead screw 405, the rotation of the lead screw 405 can move the upper die 404. Because the convex part on the back of the upper die 404 is fitted into the groove on the front of the limiting plate 402, the upper die 404 can be limited when it is moving. When the upper die 404 is moved to a suitable position, the steel wire just passes through the through holes on the adjacent surfaces of the upper die 404 and the lower die 403. The fixing nut 407 is installed and abuts against the lower die 403 to limit and fix the lead screw 405. When the steel wire passes through the through holes between the upper die 404 and the lower die 403, the steel wire can be straightened, and the bent steel wire is straightened, ensuring the quality of winding.
[0042] Embodiment 4:
[0043] A pneumatic telescopic device can be installed on the front of the mounting plate 2. A pusher with a required shape is fixed to the working end of the pneumatic telescopic device. The pusher and the pneumatic telescopic device are both two groups and are respectively installed on both sides of the winding roller 603. The pusher is semi-circular. When the thickness of the steel wire wound on the winding roller 603 contacts the pusher, the rotation of the motor 601 stops, and the recovery roller 610 is pushed to contact the winding roller 603, and the steel wire in the limiting channel 604 is cut off. Through the operation of the pneumatic telescopic device, the pusher pushes the steel wire on the surface of the winding roller 603 to the surface of the recovery roller 610, realizing the automatic transfer of the wound steel wire.
[0044] It should be noted that in this text, relational terms such as first and second are only used to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any actual relationship or order between these entities or operations. Moreover, the terms "comprising", "including" or any other variant thereof are intended to cover non-exclusive inclusion, such that a process, method, article or device comprising a series of elements not only includes those elements but also includes other elements not expressly listed, or elements inherent to such process, method, article or device. Without further limitation, an element defined by the statement "comprising a reference structure" does not exclude the presence of additional identical elements in the process, method, article or device comprising the element.
[0045] Although embodiments of the present invention have been shown and described, it will be understood by those of ordinary skill in the art that various changes, modifications, substitutions and variations can be made to these embodiments without departing from the principles and spirit of the present invention, and the scope of the present invention is defined by the appended claims and their equivalents.
Claims
1. A steel wire winding and forming device, comprising a recycling table (1), characterized in that: A mounting plate (2) is fixed on the top surface of the recycling table (1). Two groups of limiting rollers (3) are arranged on the front surface of the mounting plate (2). A straightening device (4) is arranged between the two groups of limiting rollers (3). A tension adjusting device (5) is arranged on the front surface of the mounting plate (2). The tension adjusting device (5) includes an adjusting roller (501). One end of the adjusting roller (501) is welded with a reinforcing rod (502). One end of the reinforcing rod (502) is bolted with a linear motor (503). A gear (505) is fixed on the working end of the linear motor (503). A rack (504) is arranged in the groove on the front surface of the mounting plate (2), and the rack (504) is fixed to the inner wall of the groove of the mounting plate (2) by bolts. A matching roller (506) is arranged in the groove on the front surface of the mounting plate (2). A fixing rod (507) is fixed on the back surface of the matching roller (506). A recycling device (6) is arranged on the front surface of the mounting plate (2). The recycling device (6) includes a rotating motor (601). A threaded sleeve (602) is fixed on the working end of the rotating motor (601). A winding roller (603) is arranged in the threaded sleeve (602), and the winding roller (603) is matched with the thread on the inner wall of the threaded sleeve (602). A limiting channel (604) is circumferentially and arrayedly arranged on the surface of the winding roller (603). The reinforcing rod (502) and the fixing rod (507) are simultaneously fitted into the groove on the front surface of the mounting plate (2), and the reinforcing rod (502) is movably connected with the groove on the front surface of the mounting plate (2), and the fixing rod (507) is fixed to the groove on the front surface of the mounting plate (2). The gear (505) is located between the two racks (504), and the gear (505) meshes with the surface of the rack (504). One end of the winding roller (603) is circumferentially and arrayedly fixed with springs (605). One end of the spring (605) is welded with a push plate (607). Cutting tools (606) are circumferentially arrayed on one side of the push plate (607), and the cutting tools (606) correspond to the positions of the limiting channels (604). A bracket (608) is fixed on the top surface of the recycling table (1), and one end of the mounting plate (2) is fixed to the top surface of the bracket (608). A reinforcing plate (609) is bolted to the side surface of the bracket (608). A recycling roller (610) is arranged in the through hole on the front surface of the reinforcing plate (609), and the recycling roller (610) is engaged with the through hole on the front surface of the reinforcing plate (609). Grooves are circumferentially arrayed on the front surface of the recycling roller (610). A rotating shaft (611) is arranged in the groove on the front surface of the bracket (608), and the rotating shaft (611) is movably connected with the bracket (608). A turning plate (612) is fixed on the surface of the rotating shaft (611), and the turning plate (612) is L-shaped. An electromagnet (613) is bolted to the inner wall of the groove on the front surface of the bracket (608), and the electromagnet (613) magnetically attracts the protrusion on one side of the turning plate (612).
2. The wire winding and forming equipment according to claim 1, characterized in that: One side of the flipping plate (612) is provided with a cylinder (614), and the cylinder (614) is fixed to the back of the flipping plate (612) by bolts. A push plate (615) is fixed to the telescopic end of the cylinder (614), and the protrusion on one side of the push plate (615) cooperates with the groove of the recovery roller (610).
3. A wire winding and forming device according to claim 1, characterized in that: The straightening device (4) includes a fixed disk (401), and the fixed disk (401) is fixed to the front of the mounting plate (2) by bolts. A limiting plate (402) is welded to the front of the fixed disk (401), and a groove is formed in the front of the limiting plate (402). A lower mold (403) is fixed to the front of the limiting plate (402), and an upper mold (404) is arranged on the top surface of the lower mold (403).
4. A wire winding and forming device according to claim 3, characterized in that: The protrusion on the back of the upper mold (404) is fitted into the groove on the front of the limiting plate (402), and the upper mold (404) is movably connected to the limiting plate (402). Through holes are formed in the adjacent surfaces of the upper mold (404) and the lower mold (403).
5. A wire winding and forming device according to claim 3, characterized in that: A lead screw (405) is arranged in the through holes on the top surfaces of the upper mold (404) and the lower mold (403). The lead screw (405) is fitted into the through hole on the top surface of the lower mold (403), and the lead screw (405) cooperates with the through hole on the top surface of the upper mold (404) and is threadedly connected to the through hole on the top surface of the upper mold (404).
6. The wire winding and forming device according to claim 5, characterized in that: A rotary handle (406) is fixed to the top surface of the lead screw (405), and the rotary handle (406) is fixed to the top surfaces of the two lead screws (405) respectively. A fixed nut (407) is sleeved on the surface of the lead screw (405), and the lead screw (405) is threadedly connected to the fixed nut (407). The fixed nut (407) is in contact with the bottom surface of the lower mold (403).
Citation Information
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