Wrapping equipment for enameled wire processing
By designing a multi-layer adjustable wrapping wrapping device for enameled wire processing, the existing wrapping wrapping machine cannot freely change the number of wrapping layers and installing the loop wheels is solved, and an efficient and flexible wrapping process and lower working strength are achieved.
Patent Information
- Application Number
- CN202510495418.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-21
- Publication Date
- 2025-05-16
- Estimated Expiration
- 2045-04-21
AI Technical Summary
The existing winding and charter can't freely change the number of winding layers on one device, and the installation process of the reel is cumbersome, which affects the winding efficiency.
A winding device for enameled wire processing is designed, adopting a multi-layer adjustable winding scheme, which realizes the flexibility of multi-layer winding through the design of turntable and belt winding components, and simplifies the installation and replacement process of the lug through structures such as power components and cams.
The flexibility of multi-layer wrapping on a device is achieved, the wrapping efficiency is improved, the time and working strength of replacing the winding wheels is reduced, and the bag can be continuously wound for a long time, reducing the number of times of replacing the pulleys.
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Figure CN120015430A_ABST
Abstract
Description
Technical Field
[0001] The invention relates to the technical field of winding processing, in particular to a winding device for processing enameled wires. Background Art
[0002] A wrapping machine is a device used to tightly wrap insulating materials, shielding layers or sheaths around conductors or other structures. It is widely used in wires and cables, electricity, communications, aerospace and other fields. By adjusting the tension, speed and wrapping angle of the wrapping machine, it ensures that the material can be evenly attached to the cable or conductor.
[0003] Today's taping process: The taping machine rotates the turntable to tightly wind the taping material around the core wire. The speed and direction of the taping head are precisely adjusted by the control system to adapt to cables of different specifications.
[0004] However, today's wrapping machines are usually divided into single-layer, double-layer, and triple-layer wrapping machines, and each type is a separate device. The number of wrapping layers cannot be freely changed on one device. At the same time, the installation process of the wire reel of today's wrapping machines is more cumbersome. After the current wire reel is used up, it is necessary to remove the current wire reel and install a new one. This process will affect the wrapping efficiency. Summary of the invention
[0005] In order to solve the above problems existing in the prior art, the present invention provides a winding device for enameled wire processing, which has the advantage of multi-layer adjustable winding.
[0006] In order to achieve the above-mentioned purpose of multi-layer adjustable wrapping, the present invention provides the following technical solution: comprising a device housing and an outer cover movably connected to the device housing, wrapping devices on both sides of the device housing, and both wrapping devices are provided with a tape wrapping assembly; The wrapping device comprises a turntable and a protective cover, the turntable rotates on the outer circumference of the protective cover, the protective cover is fixed on the outer surface of the device housing, and the tape winding assembly is installed in the turntable; The belt winding assembly comprises an arrangement shaft and a support rod, wherein the support rod slides in the arrangement shaft, the arrangement shafts at two sides are buckled together, and the support rod is rotatably connected in the turntable.
[0007] Preferably, the turntable is mounted on the protective cover via an annular rotating shaft, and the annular rotating shaft extends to the outside of the device casing away from both sides of the arrangement axis, and a driven pulley is fixed to its outer part, and the annular rotating shaft is respectively fixed to the inner wall of the device casing and the protective cover via two inner and outer auxiliary bearings.
[0008] Preferably, the outer part of the protective cover surrounds the outer peripheral side of the driven pulley and is fixed to the end faces of both sides of the device casing. A cam is fixed to the side of the protective cover close to the device casing, and the cam is relatively movably connected to the turntable. There are threading holes penetrating the middle of the protective cover and the turntable.
[0009] Preferably, the cam is arranged in a cam shape.
[0010] Preferably, the support rod is divided into a cylindrical part and a square column part, wherein the square column part slides in the arrangement axis, and the outer peripheral side of the cylindrical part is installed in the turntable through a one-way bearing, and an abutment wheel is fixed to the end face of the support rod away from the arrangement axis, and the abutment wheel rotates in the turntable.
[0011] Preferably, a square slide groove is provided inside the arrangement shaft, which cooperates with the square column part of the support rod, a spring is installed between the arrangement shaft and the support rod on at least one side, a slide rail is also fixed on the outer peripheral side of the arrangement shaft, and a number of symmetrical protrusions are provided on both side end faces of the slide rail, a limiting block is provided on the end face of the arrangement shaft on one side, and a limiting groove is provided on the end face of the arrangement shaft on the other side, and the limiting block and the limiting groove cooperate with each other.
[0012] Preferably, the arrangement shaft is also provided with a plurality of belt winding wheels, on which a winding belt is wound, and a sliding slot and a belt wheel hole are provided at the middle of the belt winding wheel, wherein the belt wheel hole cooperates with the arrangement shaft, and the sliding slot cooperates with the slide rail.
[0013] Preferably, at least two groups of symmetrical limiting grooves are formed on the inner walls on both sides of the sliding slot, and the limiting grooves cooperate with the protrusions on the slide rail.
[0014] Preferably, power components are also provided on both sides of the device housing, and the power components transmit power to the turntable through a belt.
[0015] Preferably, the power assembly comprises a synchronous motor, a motor pulley is fixed on the motor shaft of the synchronous motor, and the motor shaft on the motor pulley extends into the device housing and is rotationally connected thereto.
[0016] Compared with the prior art, the present invention provides a wrapping device for enameled wire processing, which has the following beneficial effects: 1. The winding equipment for enameled wire processing drives the winding wheel to unwind the winding belt through the rotation of the turntable, and winds the unwound winding belt on the wrapped raw material. However, only a part of the winding belt wound on the raw material is unwound, and the unwound part will be scattered outside. The cam drives the abutment wheel to rotate, so that the unwound and scattered part of the winding belt can be rewound on the winding wheel. At the same time, the inertia generated by the rotation of the abutment wheel will straighten the winding belt wound on the raw material, so that the winding belt is in a taut state, so that the wound winding belt can be tightly wrapped on the raw material, which is convenient for the subsequent varnishing process.
[0017] 2. The winding equipment for enameled wire processing can be equipped with a plurality of winding wheels on the arrangement shaft through the arrangement of the arrangement shaft and the winding wheel. The number of required winding layers can be adapted according to the bending stress limit of the arrangement shaft. The upper limit of the number of winding layers is higher. Other winding wheels that are not involved in the operation can be directly replaced after the winding tape on the participating winding wheels is used up, which reduces the time for replacing the winding wheels and greatly reduces the work intensity of the staff.
[0018] 3. The winding equipment for enameled wire processing can connect two adjacent winding wheels in series, that is, the end of the winding belt on the previous winding wheel and the beginning of the winding belt on the next winding wheel are bonded together to achieve series connection. Therefore, when multi-layer winding is not required, the redundant winding wheels can be connected in series, that is, continuous winding can be performed for a long time, effectively reducing the number of times the winding wheels are replaced. BRIEF DESCRIPTION OF THE DRAWINGS
[0019] Figure 1 It is a schematic diagram of the three-dimensional structure of the present invention; Figure 2 It is a schematic diagram of a partial three-dimensional structure of the present invention; Figure 3 For the present invention Figure 2 Schematic diagram of the half-section structure; Figure 4 For the present invention Figure 2 Schematic diagram of the internal structure of Figure 5 It is a schematic diagram of the three-dimensional structure of the belt winding wheel of the present invention; Figure 6 It is a schematic diagram of a partial three-dimensional structure of the present invention; Figure 7 It is a schematic diagram of the structure of the leveling component of the present invention.
[0020] In the figure: 10, equipment housing; 11, outer cover; 20, turntable; 201, threading hole; 202, driven pulley; 203, auxiliary bearing; 21, protective cover; 211, cam; 30, arrangement shaft; 301, limit block; 302, slide rail; 303, limit groove; 31, winding pulley; 311, winding belt; 312, sliding slot; 3121, limit groove; 313, pulley hole; 32, support rod; 321, abutment wheel; 322, one-way bearing; 40, synchronous motor; 401, motor pulley; 41, belt; 50, ring; 501, pressure strip; 5011, pressure plane; 502, connecting rod. DETAILED DESCRIPTION
[0021] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. 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 creative work are within the scope of protection of the present invention. Example 1
[0022] like Figure 1-6 As shown, it includes a device housing 10 and an outer cover 11 movably connected to the device housing 10, so that the entire wrapping process is in a closed environment, avoiding external dust and other debris from adhering to the winding tape, thereby affecting the wrapping quality, and avoiding bulging and wrinkling of the winding tape. A handle is also provided on the outer cover 11 for opening and closing the outer cover 11. A plurality of switches are provided on the end surface of the device housing 10 near the outer cover 11 for controlling the state of the entire wrapping device. The wrapping devices on both sides of the device housing 10 are provided with winding assemblies. Power components are also provided on both sides of the equipment housing 10. The power components transmit power to the turntable 20 through a belt 41. The power components include a synchronous motor 40. A motor pulley 401 is fixed on the motor shaft of the synchronous motor 40. The motor shaft on the motor pulley 401 extends into the equipment housing 10 and is rotatably connected thereto. The equipment housing 10 can be used to fix both sides of the synchronous motor 40, which can effectively prevent the motor pulley 401 from shaking, making its power transmission more stable. The two synchronous motors 40 need to rotate synchronously in the same direction, and the power components can also be transmitted through gears.
[0023] The wrapping device includes a turntable 20 and a protective cover 21. The turntable 20 rotates on the outer peripheral side of the protective cover 21. The protective cover 21 is fixed on the outer surface of the equipment housing 10. The belt winding assembly is installed in the turntable 20. The turntable 20 is installed on the protective cover 21 through an annular rotating shaft, and the annular rotating shaft extends to the outside of the equipment housing 10 away from both sides of the arrangement shaft 30. A driven pulley 202 is fixed to its outer part, wherein a belt 41 can be sleeved on the driven pulley 202 to provide power for the turntable 20. The annular rotating shaft is respectively fixed to the inner wall of the equipment housing 10 and the protective cover 21 through two inner and outer auxiliary bearings 203. The two auxiliary bearings 203 allow the turntable 20 to rotate easily without contacting the inner wall of the equipment housing 10 and the protective cover 21 to generate friction.
[0024] The outer part of the protective cover 21 is surrounded by the outer peripheral side of the driven pulley 202 and is fixed to the end faces of the device housing 10 on both sides. A cam 211 is fixed to the side of the protective cover 21 close to the device housing 10. The cam 211 is relatively movably connected to the turntable 20. The cam 211 is cam-shaped, wherein the raised part of the cam and the abutment wheel 321 can be frictionally connected or gear meshingly connected, wherein the cam 211 is in a fixed state, and the abutment wheel 321 rotates around the winding belt 311, and the abutment wheel 321 itself can also rotate. There are through threading holes 201 in the middle of the protective cover 21 and the turntable 20, and the raw materials to be wrapped, such as copper wire, glass wire, etc., can be inserted into the threading holes 201.
[0025] The belt winding assembly includes an arrangement shaft 30 and a support rod 32. The support rod 32 slides in the arrangement shaft 30. The arrangement shafts 30 on both sides are interlocked with each other. The support rod 32 is rotatably connected in the turntable 20. The support rod 32 is divided into a cylindrical part and a square column part. The square column part slides in the arrangement shaft 30. The square column part can limit the arrangement shaft 30 from rotating, so that the arrangement shaft 30 can only rotate with the support rod 32, so as to avoid the winding belt 311 from being completely loosened and causing disorder. The outer peripheral side of the cylindrical part is installed in the turntable 20 through a one-way bearing 322. The one-way bearing 322 can make the support rod 32 rotate only in one direction. The end face of the support rod 32 away from the arrangement shaft 30 is fixed with an abutment wheel 321, which abuts against the support rod 32. The wheel 321 rotates in the turntable 20, and the abutting wheel 321 and the raised portion of the cam 211 can contact each other. When the abutting wheel 321 contacts the raised portion of the cam 211 during the rotation of the turntable 20, the abutting wheel 321 can rotate on its own, and it cannot rotate in the opposite direction. Therefore, the turntable 20 can rotate to drive the winding wheel 31 to unwind the winding belt 311, and the unwound winding belt 311 is wound around the wrapped raw material, but only a part of the winding belt 311 wound around the raw material is unwound. The unwound part will be scattered outside, and the cam 211 drives the abutting wheel 321 to rotate, so that the unwound and scattered part of the winding belt 311 can be rewound onto the winding wheel 31. At the same time, the inertia generated by the rotation of the abutting wheel 321 will straighten the winding belt 311 wrapped around the raw material, so that the winding belt 311 is in a tensioned state, so that the wound winding belt 311 can be tightly wrapped around the raw material, which is convenient for the subsequent coating process. A square slide groove is provided in the arrangement shaft 30, which cooperates with the square column part of the support rod 32. A spring is installed between the arrangement shaft 30 and the support rod 32 on at least one side, and the support rod 32 and the arrangement shaft 30 are installed together through the spring. In the process of installing the winding wheel 31, it is only necessary to push the arrangement shaft 30 to compress the spring to put the winding wheel 31 onto the arrangement shaft 30, so that the process of installing the winding wheel 31 is more convenient and quick, and the setting of the spring is also to keep the arrangement shaft 30 in the middle and will not move easily, so as to avoid confusion in the winding process.
[0026] Working principle: When in use, push the arrangement shaft 30 to both sides so that the limit block 301 and the limit groove 303 are separated from each other, and the winding wheel 31 can be installed on the arrangement shaft 30, and then the beginning of the winding belt 311 is adhered to the winding material, and then the equipment can be started, and the synchronous motors 40 on both sides can be started, so that the motor pulley 401 drives the driven pulley 202 to rotate through the belt 41, thereby driving the turntable 20 to rotate. Since the protective cover 21 is fixed to the equipment housing 10, the cam 211 is in a stationary state, and the rotation of the turntable 20 can drive the winding assembly to rotate, so that the winding belt 311 on the winding wheel 31 is gradually untied, and the untied winding belt 311 will be wound around the winding material.
[0027] When the turntable 20 drives the belt winding assembly to rotate one circle, the belt winding wheel 31 will unwind one circle of the winding belt 311 thereon, and at the same time, the unwound winding belt 311 is wound around the packaging material one circle. At this time, the unwound part of the unwound winding belt 311 is in a loose state, and the turntable 20 rotates one circle to drive the abutment wheel 321 to rotate one circle. When the abutment wheel 321 abuts against the raised part of the cam 211, the abutment wheel 321 can be driven to rotate, and its rotation direction is consistent with the rotation direction of the turntable 20. The abutment wheel 321 rotates by itself to pass through the support rod The arranging shaft 32 drives the arranging shaft 30 to rotate, thereby causing the winding wheel 31 to rotate and retract the unwound winding belt 311, and rewind it onto the winding wheel 31. The rotational force generated by the abutment wheel 321 after the cam 211 abuts against the abutment wheel 321 will drive the abutment wheel 321 to continue rotating, thereby tightening the winding belt 311 wound on the wrapping material, so that the winding belt 311 on it is arranged tightly to avoid looseness. Moreover, due to the setting of the one-way bearing 322, the abutment wheel 321 cannot rotate in the opposite direction after rotating on its own, so it can only retract the unwound winding belt 311. Example 2
[0028] On the basis of implementation one, a slide rail 302 is fixed to the outer peripheral side of the arrangement shaft 30, and a plurality of symmetrical convex points are provided on the end faces of both sides of the slide rail 302. A plurality of belt winding wheels 31 are also mounted on the arrangement shaft 30, and a winding belt 311 is wound around the belt winding wheel 31. The material of the winding belt 311 can be a mica belt, a cotton paper belt, an aluminum foil, a polyester film or other wrapping material. A sliding slot 312 and a belt wheel hole 313 are provided in the middle of the belt winding wheel 31, wherein the belt wheel hole 313 cooperates with the arrangement shaft 30, and the sliding slot 312 cooperates with the slide rail 302. The slide rail 302 and the convex points thereon can be used to limit the position of the belt winding wheel 31 on the arrangement shaft 30, so as to avoid the self-rotation of the belt winding wheel 31 during operation. The winding belt 311 is caused to be disorderly, and the axial position of the winding wheel 31 can be limited by the convex point, which facilitates the process of multi-layer winding and avoids the interference caused by the two adjacent winding wheels 31 being too close. In addition, the strength of the arrangement shaft 30 can be strengthened by the setting of the slide rail 302, and the bending stress of the arrangement shaft 30 is increased, so that more winding wheels 31 can be placed on the arrangement shaft 30. A limiting block 301 is set on the end face of the arrangement shaft 30 on one side, and a limiting groove 303 is set on the end face of the arrangement shaft 30 on the other side. The limiting block 301 and the limiting groove 303 are matched with each other, and the matching method of the two can be a snap connection or a magnetic connection. The limiting block 301 can avoid the bending of the two arrangement shafts 30 after matching.
[0029] By setting the arrangement shaft 30 and the winding wheel 31, a plurality of winding wheels 31 can be set on the arrangement shaft 30 until the ultimate bending stress of the arrangement shaft 30 is reached. Multi-layer wrapping can be performed according to product requirements. When two-layer wrapping is required, the winding belts 311 of two of the winding wheels 31 can be wound on the raw material, and then two-layer wrapping can be performed. The same is true for three-layer wrapping. Therefore, the number of layers required for wrapping can be adapted according to the bending stress limit of the arrangement shaft 30. The upper limit of the number of layers of wrapping is higher, and other winding wheels 31 that are not involved in the operation can be wound on the raw material. The winding belt 311 on the used winding wheel 31 can be directly replaced after use, which reduces the time for replacing the winding wheel 31, and two adjacent winding wheels 31 can be connected in series, that is, the end of the winding belt 311 on the previous winding wheel 31 and the beginning of the winding belt 311 on the next winding wheel 31 are adhered to each other to achieve series connection. Therefore, when multi-layer wrapping is not required, the redundant winding wheels 31 can be connected in series, that is, wrapping can be carried out continuously for a long time, effectively reducing the number of times the winding wheels 31 are replaced.
[0030] There are at least two groups of symmetrical limiting grooves 3121 on the inner walls on both sides of the sliding slot 312. The limiting grooves 3121 cooperate with the protrusions on the slide rail 302. Through the cooperation of the two, the winding wheel 31 can be limited to prevent the winding wheel 31 from sliding freely on the arrangement shaft 30, causing a large number of wrinkles when the winding belt 311 is wound, thereby affecting the subsequent process.
[0031] Working principle: When installing the belt winding wheel 31, the arrangement shafts 30 on both sides are pushed to make the limit blocks 301 and the limit grooves 303 disengage from each other, and then the sliding slots 312 on the belt winding wheel 31 correspond to the slide rails 302, and the belt winding wheel 31 can be pushed onto the arrangement shaft 30. During the pushing process, the limit grooves 3121 on the belt winding wheel 31 will intermittently cooperate with the convex points on the slide rails 302 until the belt winding wheel 31 is pushed to a suitable position on the arrangement shaft 30 (keeping the weight of the arrangement shafts 30 on both sides tending to be balanced), and then the cooperation between the two can play a locking role. Without external force, the belt winding wheel 31 cannot easily slide on the arrangement shaft 30. After the belt winding wheel 31 is installed, the arrangement shafts 30 on both sides can be pulled to make the limit blocks 301 and the limit grooves 303 buckle together, and the installation of the belt winding wheel 31 can be completed at this time. Example 3
[0032] like Figure 6 and Figure 7As shown, a flattening component is also provided in the threading hole 201 in the wrapping device at the outlet of the wrapped raw material, and the flattening component includes a ring 50 fixed in the threading hole 201, and at least two pressure strips 501 are fixed in the ring 50 through a connecting rod 502. The pressure strips 501 are spirally arranged, and the end faces on both sides are chamfered, and the rounded corners are pressure planes 5011. The diameter of the cylindrical cavity formed by the pressure strips 501 is consistent with the diameter of the wrapped raw material after winding, that is, when the turntable 20 rotates, the pressure strips 501 are also driven to rotate through the ring 50, and the reverse direction of the rotation of the pressure strips 501 is consistent with the winding direction of the raw material. Therefore, when the turntable 20 rotates, the surface of the wrapped raw material can be spirally flattened. If dust appears or the winding belt 311 is wrinkled and loose after being superimposed, it can be flattened by the pressure strips 501, which can further ensure that the wrapped raw material and the winding belt 311 are in a tight fit, and avoid problems such as paint accumulation in the next step of painting.
[0033] In summary, the winding equipment for enameled wire processing can drive the winding wheel 31 to unwind the winding belt 311 through the rotation of the turntable 20, and wind the unwound winding belt 311 on the wound raw material, but the winding belt 311 wound on the raw material is only partially unwound, and the unwound part will be scattered outside, and the cam 211 drives the abutment wheel 321 to rotate, so that the unwound and scattered part of the winding belt 311 can be rewound on the winding wheel 31, and at the same time, the inertia generated by the rotation of the abutment wheel 321 will straighten the winding belt 311 wound on the raw material, so that the winding belt 311 is in a tensioned state, so that the wound winding belt 311 can be tightly wrapped on the raw material, which is convenient for the subsequent varnishing process; by setting the arrangement shaft 30 and the winding wheel 31, the arrangement shaft 30 can be Several tape winding wheels 31 are set, can adapt to the number of plies of required wrapping according to the bending stress limit of the arrangement shaft 30, the upper limit of its number of wrapping plies is higher, and other tape winding wheels 31 that do not participate in the operation can be directly replaced after the use of the winding belt 311 on the tape winding wheel 31 that has participated in is finished, reduce the time of replacing the tape winding wheel 31, greatly reduce the work intensity of the staff; and two adjacent tape winding wheels 31 can be connected in series with each other, that is, the end of the winding belt 311 on the previous tape winding wheel 31 and the beginning of the winding belt 311 on the next tape winding wheel 31 are adhered to each other, reach series connection, so when there is no need for multi-layer wrapping, redundant tape winding wheels 31 can be all connected in series, that is, can wrap continuously for a long time, effectively reduce the number of times of replacing the tape winding wheel 31.
[0034] It should be noted that, in this article, relational terms such as first and second, etc. are only used to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any such actual relationship or order between these entities or operations. Moreover, the terms "include", "comprise" or any other variants thereof are intended to cover non-exclusive inclusion, so that a process, method, article or device including a series of elements includes not only those elements, but also other elements not explicitly listed, or also includes elements inherent to such process, method, article or device. In the absence of further restrictions, the elements defined by the sentence "comprise a ..." do not exclude the existence of other identical elements in the process, method, article or device including the elements.
[0035] Although embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that various changes, modifications, substitutions and variations may be made to the embodiments without departing from the principles and spirit of the present invention, and that the scope of the present invention is defined by the appended claims and their equivalents.
Claims
1. A wrapping device for processing enameled wire, comprising a device housing (10) and an outer cover (11) movably connected to the device housing (10), characterized in that: The device housing (10) has wrapping devices on both sides, both wrapping devices being provided with a tape wrapping assembly; The wrapping device comprises a turntable (20) and a protective cover (21), the turntable (20) rotates on the outer peripheral side of the protective cover (21), the protective cover (21) is fixed on the outer surface of the device housing (10), and the tape winding assembly is installed in the turntable (20); The belt winding assembly comprises an arrangement shaft (30) and a support rod (32), wherein the support rod (32) slides inside the arrangement shaft (30), the arrangement shafts (30) on both sides are interlocked with each other, and the support rod (32) is rotatably connected inside the turntable (20).
2. The wrapping equipment for enameled wire processing according to claim 1, characterized in that: The turntable (20) is mounted on the protective cover (21) via an annular rotating shaft, and the annular rotating shaft extends to the outside of the device housing (10) away from both sides of the arrangement shaft (30), and a driven pulley (202) is fixed to the outside portion thereof. The annular rotating shaft is respectively fixed to the inner wall of the device housing (10) and the protective cover (21) via two inner and outer auxiliary bearings (203).
3. The wrapping equipment for enameled wire processing according to claim 2, characterized in that: The outer portion of the protective cover (21) surrounds the outer circumference of the driven pulley (202) and is fixed to the end surfaces of both sides of the device housing (10). A cam (211) is fixed to the side of the protective cover (21) close to the device housing (10). The cam (211) is movably connected to the turntable (20) relatively. A threading hole (201) is formed in the middle of the protective cover (21) and the turntable (20).
4. The wrapping equipment for enameled wire processing according to claim 3, characterized in that: The cam (211) is arranged in a cam shape.
5. The wrapping equipment for enameled wire processing according to claim 1, characterized in that: The support rod (32) is divided into a cylindrical portion and a square column portion, wherein the square column portion slides in the arrangement shaft (30), and the outer peripheral side of the cylindrical portion is mounted in the turntable (20) via a one-way bearing (322); an abutment wheel (321) is fixed to an end surface of the support rod (32) away from the arrangement shaft (30), and the abutment wheel (321) rotates in the turntable (20).
6. The wrapping equipment for enameled wire processing according to claim 5, characterized in that: A square slide groove is provided inside the arrangement shaft (30), which cooperates with the square column part of the support rod (32); a spring is installed between the arrangement shaft (30) and the support rod (32) on at least one side; a slide rail (302) is also fixed to the outer peripheral side of the arrangement shaft (30); both side end surfaces of the slide rail (302) are provided with a plurality of symmetrical protrusions; a limit block (301) is provided on the end surface of the arrangement shaft (30) on one side, and a limit groove (303) is provided on the end surface of the arrangement shaft (30) on the other side; the limit block (301) and the limit groove (303) cooperate with each other.
7. The wrapping equipment for enameled wire processing according to claim 6, characterized in that: A plurality of belt winding wheels (31) are also mounted on the arrangement shaft (30), a winding belt (311) is wound around the belt winding wheel (31), and a sliding slot (312) and a belt wheel hole (313) are provided at the middle of the belt winding wheel (31), wherein the belt wheel hole (313) cooperates with the arrangement shaft (30), and the sliding slot (312) cooperates with the slide rail (302).
8. The wrapping equipment for enameled wire processing according to claim 7, characterized in that: At least two groups of symmetrical limiting grooves (3121) are formed on the inner walls on both sides of the sliding slot (312), and the limiting grooves (3121) cooperate with the protrusions on the slide rail (302).
9. The wrapping equipment for enameled wire processing according to claim 1, characterized in that: Power components are also provided on both sides of the device housing (10), and the power components transmit power to the rotating disk (20) via a belt (41).
10. The wrapping equipment for enameled wire processing according to claim 9, characterized in that: The power assembly comprises a synchronous motor (40), a motor pulley (401) being fixed on a motor shaft of the synchronous motor (40), and the motor shaft on the motor pulley (401) extending into the device housing (10) and being rotationally connected thereto.
Citation Information
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