Nickel-containing metal wire production and processing platform
The integrated design of the nickel-containing metal wire production and processing platform solves the problem of the scattered layout of traditional equipment, realizes multi-angle bending and straightness control, improves the quality of finished products and the versatility of equipment, and meets the processing needs of three-dimensional complex shapes.
Patent Information
- Application Number
- CN202511748276.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-11-26
- Publication Date
- 2025-12-26
AI Technical Summary
Traditional nickel-containing metal wire processing equipment has a scattered layout, cannot achieve complex bending, occupies a large area, has a long operating distance, low material transfer efficiency, and is cumbersome to adjust parameters.
The integrated nickel-containing metal wire production and processing platform includes straightening, wire feeding, and bending components. Multi-angle bending is achieved by driving the sliding housing with a roller motor. Combined with the lateral and longitudinal collaborative work of the straightening components, it can adapt to metal wires of different diameters. The wire feeding tube is detachable and replaceable, and the clamping plate spacing is adjustable.
It improves the quality of finished products, shortens equipment debugging time, meets the processing needs of complex three-dimensional shapes, expands the possibilities of processing design, and enhances space utilization and equipment versatility.
Smart Images

Figure CN121198972A_ABST
Abstract
Description
Technical Field
[0001] This invention belongs to the field of metal wire processing technology, specifically referring to a nickel-containing metal wire production and processing platform. Background Technology
[0002] Traditional nickel-containing metal wire processing equipment generally adopts a split layout design, which only supports the processing of straight profiles and cannot achieve complex bends (such as spiral structures). The processes such as straightening, wire feeding, and bending are scattered, resulting in a large equipment footprint and excessively long operating distances, leading to low material transfer efficiency and low space utilization. Furthermore, when changing metal wires of different diameters, the process of adjusting equipment parameters is cumbersome, and the time required to adjust the spacing and pressure of the straightening wheels is too long. Summary of the Invention
[0003] In order to overcome the shortcomings of the prior art, the present invention provides a nickel-containing metal wire production and processing platform, which effectively solves the above problems.
[0004] The technical solution adopted by this invention is as follows: This invention proposes a nickel-containing metal wire production and processing platform, including a frame, a straightening component, a wire feeding component, and a wire bending component. The straightening component is located at the center of the frame, the wire bending component is located on the right side of the frame, and the wire feeding component is located between the wire bending component and the straightening component. The frame includes a base, a sliding housing, and a positioning rotating frame. The sliding housing slides on the base, and the positioning rotating frame is located inside the sliding housing and rotates within the sliding housing.
[0005] Furthermore, the base has guide rails on both sides of the top, guide rail grooves between the guide rails, a support platform on the right side of the base, slide rails on both sides of the bottom of the sliding housing, the slide rails slide on the guide rails, a roller support is provided on the inner side of the slide rail, the roller support is located in the guide rail groove, a slide rail roller is provided on the roller support, a roller motor is provided on the slide rail roller, and the slide rail roller rolls on the guide rail.
[0006] Preferably, the roller motor drives the sliding housing to reciprocate, and combined with the uniform speed wire feeding, it realizes the precise bending of the metal wire at multiple angles on the bending tool, which meets the processing requirements of three-dimensional complex shapes.
[0007] Furthermore, the sliding housing has a wire hole on its side wall, a partition plate on its right side, a rotating seat inside the sliding housing, a positioning rotating frame mounted on the rotating seat, a straightening assembly slot on the positioning rotating frame, a straightening component in the straightening assembly slot, a rotating wheel at the right end of the positioning rotating frame, a bracket mounting plate at the left end of the positioning rotating frame, and a through guide channel at the center of the positioning rotating frame, the guide channel being coaxial with the wire hole.
[0008] Preferably, the metal wire achieves ideal straightness before processing by the coordinated operation of the two sets of straightening components on the positioning rotating frame, which are horizontal and vertical. This improves the quality of the finished product.
[0009] Furthermore, the frame also includes a rotating wheel motor and a damping wheel bracket. The rotating wheel motor is located on the back of the sliding housing, and the rotating wheel of the rotating wheel motor is connected by a transmission belt. The damping wheel bracket is located on a bracket mounting plate. The bracket mounting plate is provided with a damping wheel and a fixed frame. The damping wheel rotates on the fixed frame. The end of the fixed frame is provided with a pressure roller, and the pressure roller rolls in the groove of the damping wheel.
[0010] Preferably, the combination of the damping wheel and the pressure roller effectively prevents the metal wire from loosening or detaching during processing, ensuring continuous and stable wire feeding. At the same time, the rotating wheel motor drives the positioning rotating frame to rotate, allowing the metal wire to adjust its angle in three-dimensional space, expanding the possibilities of processing design (such as spiral structures or spatial curves).
[0011] Furthermore, the straightening assembly includes a top plate and a bottom plate. The top plate is disposed on the bottom plate. The top plate is provided with a pressure groove. The bottom of the top plate is provided with an insert plate. The top two sides of the top plate are provided with knob seats. The top of the pressure groove is provided with a knob hole. The top of the bottom plate is provided with a slot. The insert plate is disposed in the slot. The bottom plate is provided with support back plates on both sides. The top of the support back plates is provided with a gap adjustment plate.
[0012] Furthermore, the straightening assembly also includes a straightening wheel and a pressing device. The straightening wheel is provided with a straightening wheel shaft, and the straightening wheel rotates on the straightening wheel shaft. A positioning shaft is provided at the rear end of the straightening wheel shaft. The pressing device is located in the pressing groove. The pressing device is provided with a straightening wheel rotating seat and a pressure spring. One end of the pressure spring is provided on the straightening wheel rotating seat, and the other end of the pressure spring is provided with a spring plate. The positioning shaft rotates on the base plate and the straightening wheel rotating seat respectively.
[0013] Furthermore, the straightening assembly also includes a gap adjustment knob and a pressure adjustment knob. The gap adjustment knob is threadedly connected to the knob seat, and the bottom of the gap adjustment knob is located on the gap adjustment plate. The pressure adjustment knob is threadedly connected to the knob hole, and the bottom of the pressure adjustment knob is attached to the spring plate. Mounting posts are respectively provided at the top two ends of the top plate and the bottom two ends of the bottom plate, and the mounting posts are located on the straightening assembly groove.
[0014] Preferably, the design of the gap adjustment knob and the pressure adjustment knob allows for precise adjustment of the straightening wheel spacing and the pressure spring force, adapting to metal wires of different diameters and enhancing the versatility of the equipment. Furthermore, the pressure adjustment knob changes the spring force of the pressure spring by changing the height of the spring plate, which in turn changes the force exerted by the wire pressing device on the upper straightening wheel, thereby changing the pressure of the straightening wheel on the metal wire and thus calibrating the straightening of the metal wire.
[0015] Furthermore, the wire feeding assembly includes a wire feeding assembly plate, wire feeding rollers, and a wire feeding tube. The wire feeding assembly plate is mounted on a rotating wheel, and the wire feeding rollers are symmetrically arranged on the wire feeding assembly plate. A wire feeding motor is located on the back of the wire feeding rollers. A wire feeding tube support is located on the right side of the wire feeding assembly plate. The wire feeding tube is mounted on the wire feeding tube support. The outer wall of the wire feeding tube has a threaded wall, and the threaded wall is connected to the wire feeding tube support by threads. A shrink tube is located on the front side of the wire feeding tube, and the wire feeding tube is coaxially arranged with the guide channel.
[0016] Furthermore, the bending assembly includes a support side plate, a support upright plate, and a support frame. The support frame is mounted on a support platform, the support side plate is mounted on the support frame, and the support side plates are symmetrically arranged on both sides of the contraction tube. The support upright plate is located on the right side of the support side plate, and the right edge of the support side plate is provided with a tangent groove. The center of the left side of the support upright plate is provided with a tool groove.
[0017] Furthermore, the bending assembly also includes a wire clamp, a wire cutting device, and a bending cutter. The wire clamp is symmetrically arranged between the gaps of the two supporting side plates. The wire clamp is provided with a clamp positioning stud, which is located on the supporting side plate. The wire cutting device is provided with a cutter head at the top, which is located in the wire cutting groove. The wire cutting device is provided with a wire cutting motor at the bottom, which is fixed on the support frame. The bending cutter is located at the bottom on the support frame, and at the top of the bending cutter in the cutter groove.
[0018] Preferably, the wire feed tube is detachable and replaceable, and users can select the matching shrink tube specifications according to the thickness of the metal wire. The combination design of the wire feed tube and the metal wire clamp not only guides the direction of the metal wire forward and avoids jamming or deformation during the wire feeding process, but also prevents accidental deviation during the bending process, improving processing consistency. Furthermore, the operation of adjusting the spacing of the metal wire clamp and replacing the wire feed tube by adjusting the clamp positioning stud is simple and intuitive, shortening the equipment debugging time.
[0019] The beneficial effects achieved by the present invention using the above structure are as follows: 1. The combination of the damping wheel and the pressure roller effectively prevents the metal wire from loosening or detaching during processing, ensuring continuous and stable wire feeding. At the same time, the coordinated work of the two sets of straightening components on the positioning rotating frame, namely the transverse and longitudinal sets, ensures that the metal wire achieves ideal straightness before processing, thereby improving the quality of the finished product.
[0020] 2. The design of the gap adjustment knob and pressure adjustment knob allows for precise adjustment of the straightening wheel spacing and pressure spring force, adapting to metal wires of different diameters and enhancing the equipment's versatility. Furthermore, the pressure adjustment knob changes the spring force of the pressure spring by altering the height of the spring plate, which in turn changes the force exerted by the wire pressing device on the upper straightening wheel, thereby changing the pressure of the straightening wheel on the metal wire and thus calibrating the straightening of the metal wire.
[0021] 3. The wire feeding tube is detachable and replaceable. Users can select the matching shrink tube specifications according to the thickness of the metal wire. The combination design of the wire feeding tube and the metal wire clamp not only guides the direction of the metal wire forward and avoids jamming or deformation during the wire feeding process, but also prevents accidental deviation during the bending process, improving processing consistency. Furthermore, the operation of adjusting the spacing of the metal wire clamp and replacing the wire feeding tube through the clamp positioning stud is simple and intuitive, shortening the equipment debugging time.
[0022] 4. The roller motor drives the sliding housing to reciprocate, and combined with the uniform speed wire feeding, it realizes the precise bending of the metal wire at multiple angles on the bending tool, which meets the processing requirements of complex three-dimensional shapes. In addition, the rotating wheel motor drives the positioning rotating frame to rotate, so that the metal wire can adjust the angle in three-dimensional space, which expands the possibility of processing design (such as spiral structure or spatial curve). Attached Figure Description
[0023] Figure 1 This is a perspective view of a nickel-containing metal wire production and processing platform proposed in this invention; Figure 2 This is a front view of a nickel-containing metal wire production and processing platform proposed in this invention; Figure 3 for Figure 2 A cross-sectional view along the cutting line AA; Figure 4 for Figure 2 A cross-sectional view along the cutting line BB; Figure 5 for Figure 3 A cross-sectional view along the section line CC; Figure 6 This is a schematic diagram of the straightening component of a nickel-containing metal wire production and processing platform proposed in this invention; Figure 7 for Figure 6 A cross-sectional view along the cutting line DD; Figure 8 for Figure 6 A cross-sectional view along the cutting line EE; Figure 9 for Figure 2 A magnified view of a section at point I; Figure 10 for Figure 5A magnified view of section II in the middle.
[0024] Among them, 1. Frame, 11. Base, 111. Guide rail, 112. Support platform, 113. Guide rail groove, 12. Sliding housing, 121. Slide rail, 122. Roller support, 123. Slide rail roller, 1231. Roller motor, 124. Wire hole, 125. Divider plate, 126. Rotating seat, 13. Positioning rotating frame, 131. Straightening assembly groove, 132. Rotating wheel, 133. Guide channel, 134. Bracket mounting plate, 14. Rotating wheel motor, 15. Damping wheel bracket, 151. Damping wheel, 152. Fixing frame, 153. Wire pressing roller, 2. Straightening assembly, 21. Top plate, 211. Wire pressing groove, 212. Insert plate, 213. Knob seat, 214. Knob hole, 22. Base plate, 221. Slot, 222. Support 223. Back support plate, 23. Gap adjustment plate, 23. Straightening wheel, 231. Straightening wheel shaft, 232. Positioning shaft, 24. Wire pressing device, 241. Straightening wheel rotating seat, 242. Pressure spring, 243. Spring plate, 25. Gap adjustment knob, 26. Pressure adjustment knob, 27. Mounting column, 3. Wire feeding assembly, 31. Wire feeding assembly plate, 312. Wire feeding tube support, 32. Wire feeding roller, 33. Wire feeding tube, 331. Threaded wall, 332. Shrink tube, 4. Wire bending assembly, 41. Support side plate, 411. Wire cutting groove, 42. Support upright plate, 421. Tool groove, 43. Support frame, 44. Wire clamp plate, 441. Clamp plate positioning stud, 45. Wire cutting device, 451. Cutting head, 452. Wire cutting motor, 46. Bending tool.
[0025] The accompanying drawings are provided to further illustrate the invention and form part of the specification. They are used together with the embodiments of the invention to explain the invention and do not constitute a limitation thereof. Detailed Implementation
[0026] The technical solutions of the present invention will be clearly and completely described below with reference to the accompanying drawings of the embodiments of the present invention. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. All other embodiments obtained by those skilled in the art based on the embodiments of the present invention without creative effort are within the scope of protection of the present invention.
[0027] In the description of this invention, it should be understood that the terms "upper", "lower", "front", "rear", "left", "right", "top", "bottom", "inner", "outer", etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are only for the convenience of describing this invention and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on this invention.
[0028] like Figures 1-10 As shown, the present invention proposes a nickel-containing metal wire production and processing platform, including a frame 1, a straightening component 2, a wire feeding component 3 and a wire bending component 4. The straightening component 2 is located at the center of the frame 1, the wire bending component 4 is located on the right side of the frame 1, and the wire feeding component 3 is located between the wire bending component 4 and the straightening component 2. The frame 1 includes a base 11, a sliding housing 12 and a positioning rotating frame 13. The sliding housing 12 slides on the base 11, and the positioning rotating frame 13 is disposed inside the sliding housing 12 and rotates inside the sliding housing 12.
[0029] The base 11 has guide rails 111 on both sides of the top, and guide rail grooves 113 between the guide rails 111. The base 11 has a support platform 112 on the right side. The sliding housing 12 has slide rails 121 on both sides of the bottom. The slide rails 121 slide on the guide rails 111. The inner side of the slide rails 121 has a roller support 122. The roller support 122 is located in the guide rail groove 113. The roller support 122 has a slide rail roller 123. The slide rail roller 123 has a roller motor 1231. The slide rail roller 123 rolls on the guide rails 111.
[0030] The sliding housing 12 has a wire hole 124 on its side wall, a partition plate 125 on its right side, a rotating seat 126 inside the sliding housing 12, a positioning rotating frame 13 on the rotating seat 126, a straightening assembly groove 131 on the positioning rotating frame 13, a straightening component 2 in the straightening assembly groove 131, a rotating wheel 132 on the right end of the positioning rotating frame 13, a bracket mounting plate 134 on the left end of the positioning rotating frame 13, and a through guide channel 133 in the center of the positioning rotating frame 13. The guide channel 133 is coaxial with the wire hole 124.
[0031] The frame 1 also includes a rotating wheel motor 14 and a damping wheel bracket 15. The rotating wheel motor 14 is located on the back of the sliding housing 12. The rotating wheel motor 14 is connected to the rotating wheel 132 via a transmission belt. The damping wheel bracket 15 is located on the bracket mounting plate 134. The bracket mounting plate 134 is provided with a damping wheel 151 and a fixed frame 152. The damping wheel 151 rotates on the fixed frame 152. The fixed frame 152 has a pressing roller 153 at its end. The pressing roller 153 rolls in the groove of the damping wheel 151.
[0032] The straightening assembly 2 includes a top plate 21 and a bottom plate 22. The top plate 21 is mounted on the bottom plate 22. The top plate 21 has a wire pressing groove 211 and an insert plate 212 at the bottom. The top of the top plate 21 has knob seats 213 on both sides. The top of the wire pressing groove 211 has a knob hole 214. The bottom plate 22 has a slot 221 on the top. The insert plate 212 is placed in the slot 221. The bottom plate 22 has support back plates 222 on both sides. The top of the support back plates 222 has a gap adjustment plate 223.
[0033] The straightening assembly 2 also includes a straightening wheel 23 and a pressing device 24. The straightening wheel 23 is provided with a straightening wheel shaft 231, and the straightening wheel 23 rotates on the straightening wheel shaft 231. The rear end of the straightening wheel shaft 231 is provided with a positioning shaft 232. The pressing device 24 is located in the pressing groove 211. The pressing device 24 is provided with a straightening wheel rotating seat 241 and a pressure spring 242. One end of the pressure spring 242 is provided on the straightening wheel rotating seat 241, and the other end of the pressure spring 242 is provided with a spring plate 243. The positioning shaft 232 rotates on the base plate 22 and the straightening wheel rotating seat 241 respectively.
[0034] The straightening assembly 2 also includes a gap adjustment knob 25 and a pressure adjustment knob 26. The gap adjustment knob 25 is connected to the knob seat 213 by a thread, and the bottom of the gap adjustment knob 25 is located on the gap adjustment plate 223. The pressure adjustment knob 26 is connected to the knob hole 214 by a thread, and the bottom of the pressure adjustment knob 26 is attached to the spring plate 243. The top two ends of the top plate 21 and the bottom two ends of the bottom plate 22 are respectively provided with mounting posts 27, and the mounting posts 27 are located on the straightening assembly groove 131.
[0035] The wire feeding assembly 3 includes a wire feeding assembly plate 31, a wire feeding roller 32, and a wire feeding tube 33. The wire feeding assembly plate 31 is mounted on the rotating wheel 132, and the wire feeding roller 32 is symmetrically mounted on the wire feeding assembly plate 31. A wire feeding motor 321 is mounted on the back of the wire feeding roller 32. A wire feeding tube support 312 is mounted on the right side of the wire feeding assembly plate 31, and the wire feeding tube 33 is mounted on the wire feeding tube support 312. The outer wall of the wire feeding tube 33 is provided with a threaded wall 331, and the threaded wall 331 is connected to the wire feeding tube support 312 by threads. A shrink tube 332 is provided on the front side of the wire feeding tube 33, and the wire feeding tube 33 is coaxially arranged with the guide channel 133.
[0036] The bending assembly 4 includes a support side plate 41, a support upright plate 42, and a support frame 43. The support frame 43 is mounted on the support platform 112, the support side plate 41 is mounted on the support frame 43, and the support side plate 41 is symmetrically arranged on both sides of the shrink tube 332. The support upright plate 42 is located on the right side of the support side plate 41. The right edge of the support side plate 41 is provided with a tangent groove 411, and the center of the left side of the support upright plate 42 is provided with a tool groove 421.
[0037] The bending assembly 4 also includes a wire clamp 44, a wire cutting device 45, and a bending cutter 46. The wire clamp 44 is symmetrically arranged between the gaps of the two supporting side plates 41. The wire clamp 44 is provided with a clamp positioning stud 441, which is located on the supporting side plate 41. The wire cutting device 45 is provided with a cutter head 451 at the top, which is located in the wire cutting groove 411. The wire cutting device 45 is provided with a wire cutting motor 452 at the bottom, which is fixed on the support frame 43. The bending cutter 46 is located at the bottom on the support frame 43, and the top of the bending cutter 46 is located in the cutter groove 421.
[0038] In practical use, the metal wire passes through the wire hole 124 and wraps around the damping wheel 151. At the same time, the wire pressing roller 153 presses on the metal wire of the damping wheel 151 to prevent the metal wire from loosening or detaching during processing, ensuring continuous and stable wire feeding. Then, the metal wire passes from the bottom of the damping wheel 151 into the guide channel 133. The metal wire is laterally straightened by the straightening component 2 in the first straightening assembly groove 131, and longitudinally straightened by the straightening component 2 in the second straightening assembly groove 131, ensuring that the metal wire reaches the required standard before processing. To achieve the desired straightness, the metal wire passes through the guide channel 133 in the center of the rotating wheel 132, and then through the wire feeding roller 32. The wire feeding motor 321 drives the wire feeding roller 32 to rotate, and the wire feeding roller 32 pulls and feeds the metal wire forward. The metal wire passes through the wire feeding tube 33 and the metal wire clamp 44, and moves into the bending cutter 46. The bending cutter 46 rotates to bend the metal wire. After the processing is completed, the wire cutting motor 452 drives the wire cutting device 45 to rotate, so that the cutter head 451 cuts the metal wire.
[0039] Before processing the metal wire, the equipment needs to be adjusted according to the diameter of the metal wire. This involves rotating the gap adjustment knob 25 on the straightening assembly 2, causing the top plate 21 and bottom plate 22 to slide relative to each other, thereby adjusting the distance between the straightening wheels 23 on the top plate 21 and bottom plate 22 to accommodate metal wires of different thicknesses. Simultaneously, rotating the pressure adjustment knob 26 raises or lowers it within the pressure groove 211, thus changing the height of the spring plate 243. This alters the elastic force of the pressure spring 242 on the straightening wheel rotating seat 241, further changing the force exerted by the pressure device 24 on its upper straightening wheel 23. By changing the pressure of the straightening wheel 23 on the metal wire, the straightening of the metal wire is calibrated. The wire feeding tube 33 can be removed from the wire feeding tube support 312. The wire feeding tube 33 is selected and installed according to the specifications of the shrink tube 332 to match the thickness of the metal wire. Furthermore, by turning the clamping plate positioning stud 441, the distance between the two metal wire clamping plates 44 is adjusted. The wire feeding tube 33 and the metal wire clamping plates 44 guide the metal wire forward. The combined design of the wire feeding tube 33 and the metal wire clamping plates 44 not only guides the direction of the metal wire forward, avoiding jamming or deformation during the wire feeding process, but also prevents accidental deviation during the bending process, thus improving the consistency of processing.
[0040] During the metal wire processing, the roller motor 1231 can drive the slide rail roller 123 to rotate, which in turn drives the sliding housing 12 to slide on the base 11. During the uniform feeding of the metal wire, the metal wire is actively fed in or pulled back, allowing the metal wire to move back and forth on the bending cutter 46. This achieves the technical effect of bending the metal wire at multiple angles on the bending cutter 46. The rotating wheel motor 14 can drive the rotating wheel 132 to rotate, which in turn drives the positioning rotating frame 13 to rotate. The positioning rotating frame 13 will then drive the metal wire on it to rotate, allowing the metal wire to adjust its angle in three-dimensional space, expanding the possibilities of processing design (such as spiral structures or spatial curves).
[0041] The above is the overall workflow of this invention. Simply repeat this process the next time you use it.
[0042] It should be noted that, in this document, relational terms such as "first" and "second" are used only to distinguish one entity or operation from another, and do not necessarily require or imply any such actual relationship or order between these entities or operations. Furthermore, the terms "comprising," "including," or any other variations thereof are intended to cover non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements includes not only those elements but also other elements not expressly listed, or elements inherent to such process, method, article, or apparatus.
[0043] Although embodiments of the invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the invention.
[0044] The present invention and its embodiments have been described above. This description is not restrictive, and the accompanying drawings are only one embodiment of the present invention; the actual structure is not limited thereto. In conclusion, if those skilled in the art are inspired by this description and design similar structures and embodiments without departing from the spirit of the invention, such designs should fall within the protection scope of the present invention.
Claims
1. A nickel-containing metal wire production and processing platform, characterized in that: It includes a frame (1), a straightening assembly (2), a wire feeding assembly (3) and a wire bending assembly (4). The straightening assembly (2) is located at the center of the frame (1), the wire bending assembly (4) is located on the right side of the frame (1), and the wire feeding assembly (3) is located between the wire bending assembly (4) and the straightening assembly (2). The frame (1) includes a base (11), a sliding housing (12) and a positioning rotating frame (13). The sliding housing (12) slides on the base (11), and the positioning rotating frame (13) is located inside the sliding housing (12) and rotates inside the sliding housing (12).
2. The nickel-containing metal wire production and processing platform according to claim 1, characterized in that: The base (11) has guide rails (111) on both sides of the top, and guide rail grooves (113) are provided between the guide rails (111). The base (11) has a support platform (112) on the right side. The sliding housing (12) has slide rails (121) on both sides of the bottom. The slide rails (121) slide on the guide rails (111). The inner side of the slide rails (121) has a roller support (122). The roller support (122) is located in the guide rail groove (113). The roller support (122) has a slide rail roller (123). The slide rail roller (123) has a roller motor (1231). The slide rail roller (123) rolls on the guide rails (111).
3. The nickel-containing metal wire production and processing platform according to claim 2, characterized in that: The sliding housing (12) has a wire hole (124) on its side wall, a partition plate (125) on the right side of the sliding housing (12), a rotating seat (126) inside the sliding housing (12), a positioning rotating frame (13) on the rotating seat (126), a straightening assembly groove (131) on the positioning rotating frame (13), a straightening component (2) in the straightening assembly groove (131), a rotating wheel (132) on the right end of the positioning rotating frame (13), a bracket mounting plate (134) on the left end of the positioning rotating frame (13), and a through guide channel (133) in the center of the positioning rotating frame (13). The guide channel (133) is coaxial with the wire hole (124).
4. The nickel-containing metal wire production and processing platform according to claim 3, characterized in that: The frame (1) also includes a rotating wheel motor (14) and a damping wheel bracket (15). The rotating wheel motor (14) is located on the back of the sliding housing (12). The rotating wheel motor (14) and the rotating wheel (132) are connected by a transmission belt. The damping wheel bracket (15) is located on a bracket mounting plate (134). The bracket mounting plate (134) is provided with a damping wheel (151) and a fixed frame (152). The damping wheel (151) rotates on the fixed frame (152). The fixed frame (152) has a pressing roller (153) at its end. The pressing roller (153) rolls in the groove of the damping wheel (151).
5. The nickel-containing metal wire production and processing platform according to claim 4, characterized in that: The straightening assembly (2) includes a top plate (21) and a bottom plate (22). The top plate (21) is located on the bottom plate (22). The top plate (21) has a wire pressing groove (211). The bottom of the top plate (21) has an insert plate (212). The top of the top plate (21) has knob seats (213) on both sides. The top of the wire pressing groove (211) has a knob hole (214). The bottom plate (22) has a slot (221) on the top. The insert plate (212) is located in the slot (221). The bottom plate (22) has a support back plate (222) on both sides. The support back plate (222) has a gap adjustment plate (223) on the top.
6. The nickel-containing metal wire production and processing platform according to claim 5, characterized in that: The straightening assembly (2) further includes a straightening wheel (23) and a pressing device (24). The straightening wheel (23) is provided with a straightening wheel shaft (231). The straightening wheel (23) rotates on the straightening wheel shaft (231). The rear end of the straightening wheel shaft (231) is provided with a positioning shaft (232). The pressing device (24) is located in the pressing groove (211). The pressing device (24) is provided with a straightening wheel rotating seat (241) and a pressure spring (242). One end of the pressure spring (242) is located on the straightening wheel rotating seat (241). The other end of the pressure spring (242) is provided with a spring plate (243). The positioning shaft (232) rotates on the base plate (22) and the straightening wheel rotating seat (241) respectively.
7. The nickel-containing metal wire production and processing platform according to claim 6, characterized in that: The straightening assembly (2) also includes a gap adjustment knob (25) and a pressure adjustment knob (26). The gap adjustment knob (25) is connected to the knob seat (213) by a thread. The bottom of the gap adjustment knob (25) is located on the gap adjustment plate (223). The pressure adjustment knob (26) is connected to the knob hole (214) by a thread. The bottom of the pressure adjustment knob (26) is attached to the spring plate (243). The top two ends of the top plate (21) and the bottom two ends of the bottom plate (22) are respectively provided with mounting posts (27). The mounting posts (27) are located on the straightening assembly groove (131).
8. The nickel-containing metal wire production and processing platform according to claim 7, characterized in that: The wire feeding assembly (3) includes a wire feeding assembly plate (31), a wire feeding roller (32), and a wire feeding tube (33). The wire feeding assembly plate (31) is mounted on a rotating wheel (132). The wire feeding roller (32) is symmetrically mounted on the wire feeding assembly plate (31). A wire feeding motor (321) is mounted on the back of the wire feeding roller (32). A wire feeding tube support (312) is mounted on the right side of the wire feeding assembly plate (31). The wire feeding tube (33) is mounted on the wire feeding tube support (312). The outer wall of the wire feeding tube (33) is provided with a threaded wall (331). The threaded wall (331) is connected to the wire feeding tube support (312) by threads. A shrink tube (332) is provided on the front side of the wire feeding tube (33). The wire feeding tube (33) is coaxially arranged with the guide channel (133).
9. The nickel-containing metal wire production and processing platform according to claim 8, characterized in that: The bending assembly (4) includes a support side plate (41), a support upright plate (42), and a support frame (43). The support frame (43) is mounted on the support platform (112). The support side plate (41) is mounted on the support frame (43) and is symmetrically mounted on both sides of the shrink tube (332). The support upright plate (42) is mounted on the right side of the support side plate (41). The right edge of the support side plate (41) is provided with a tangent groove (411), and the center of the left side of the support upright plate (42) is provided with a tool groove (421).
10. The nickel-containing metal wire production and processing platform according to claim 9, characterized in that: The bending assembly (4) further includes a wire clamp (44), a wire cutting device (45), and a bending cutter (46). The wire clamp (44) is symmetrically arranged between the gaps of the two supporting side plates (41). The wire clamp (44) is provided with a clamp positioning stud (441) and the clamp positioning stud (441) is located on the supporting side plate (41). The wire cutting device (45) is provided with a cutter head (451) at the top and the cutter head (451) is located in the wire cutting groove (411). The wire cutting device (45) is provided with a wire cutting motor (452) at the bottom and the wire cutting motor (452) is fixed on the support frame (43). The bottom of the bending cutter (46) is located on the support frame (43) and the top of the bending cutter (46) is located in the cutter groove (421).
Citation Information
Patent Citations
Double-cable feeding straightener for cables
CN112719139A
Wire unwrapping wire device of flare -outing
CN205165666U
Straightening mechanism of spring machine
CN211638119U
Automatic butt welding equipment
CN212760835U
Tool-free wire guide tube switching device
CN214133727U