A straightening device for wire
Patent Information
- Application Number
- CN202610909340.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2026-06-23
- Publication Date
- 2026-09-25
AI Technical Summary
常用的绑扎材料为与导绑扎丝质相同的绑扎丝,直径根据导线规格选择,绑线应均匀紧密、无松动,输电线路绑扎工艺要求细致操作和严格检查,确保线路的稳固和安全运行,此类绑扎丝通常由铝绞线或钢绞线剥离制得,剥离后仍呈螺旋绞制的自然形态,无法直接使用,需先经矫直处理并缠绕成规整线圈后,方可满足现场施工操作要求,但目前施工现场通常采用棍棒、瓶子等简易圆柱体进行手工缠绕,此操作方式,存在手工缠绕的半径难以精准把控,半径过小易造成绑扎丝金属疲劳而失效的问题,且人力拖拽的绑扎丝往往不能均匀紧密地成型,分布杂乱,导致绑扎时相邻线圈留有空隙、凹凸不平等情况,影响绑扎效果
[0014]本发明的有益效果在于:通过设置主体部和矫直部,能够对绑扎丝纵向和横向的弯曲形变进行矫直,配合设置的排线部,能够对矫直后的绑扎丝进行排线收卷,使矫直后的绑扎丝经过排线收卷后形成规整的绑扎丝线圈,实现绑扎丝的矫直收纳,避免绑扎丝线圈出现留隙、凹凸不平等情况,有效减少手工制作绑扎丝弯曲、排列分布不均的情况,有效提高线路绑扎质量,提高绑扎效果。
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Figure CN122806960A_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of auxiliary tools, and in particular to a straightening cable device. Background Technology
[0002] The binding process for transmission lines is a crucial step in ensuring the stability and safe operation of the lines. It primarily involves connecting conductors to insulators, towers, and other components, and is also commonly used for repairing damaged conductors and ground wires, and for guy wire fabrication. The commonly used binding material is binding wire of the same material as the conductor binding wire, with the diameter selected according to the conductor specifications. The binding wire should be evenly and tightly bound without any looseness. The transmission line binding process requires meticulous operation and strict inspection to ensure the stability and safe operation of the line. This type of binding wire is usually made by stripping aluminum stranded wire or steel stranded wire. After stripping, it still retains its natural spiral twisted shape and cannot be used directly. It must first be straightened and wound into a regular coil before it can meet the requirements of on-site construction operations. However, currently, simple cylindrical objects such as sticks and bottles are often used for manual winding on construction sites. This method has several drawbacks: the radius of manual winding is difficult to control precisely; a radius that is too small can easily cause metal fatigue and failure of the binding wire. Furthermore, the binding wire dragged by hand often cannot be evenly and tightly formed, resulting in a messy distribution and gaps between adjacent coils, unevenness, and other issues that affect the binding effect. Summary of the Invention
[0003] In view of the problems existing in the prior art, the present invention is proposed.
[0004] The above-mentioned technical problems are solved by the following technical solution: The present invention proposes a straightening and wiring device, which includes a main body; a straightening part, which includes a first straightening member disposed on the main body for longitudinal straightening and a second straightening member for transverse straightening; and a wiring part disposed on the main body; wherein, the first straightening member and the second straightening member straighten the binding wire, and the wiring part winds up the straightened binding wire to realize the straightening and storage of the binding wire.
[0005] In a preferred embodiment of the straightening and wiring device of the present invention: the main body includes a base, a first support seat is provided on the base, a fixing plate is provided on the side wall of the first support seat, a connecting groove is provided on the fixing plate, a fixing bolt is provided in the connecting groove, a second support seat is provided on the base, a third support seat is provided on the base, and a stabilizing member is provided on the base; wherein, the fixing bolt is slidably connected to the connecting groove.
[0006] In a preferred embodiment of the straightening and wiring device of the present invention: the first straightening member includes two first adjusting bolts disposed on a first support base, the two first adjusting bolts are provided with a first adjusting plate, and both the first adjusting plate and the first support base are provided with a first straightening wheel set; wherein, the first adjusting plate is threadedly connected to the fixing bolt.
[0007] In a preferred embodiment of the straightening and wiring device of the present invention: the second straightening member includes two second adjusting bolts disposed on the first support base, the two second adjusting bolts are provided with a second adjusting plate, the second adjusting plate and the first support base are provided with a second straightening wheel set, and the first support base and the second adjusting plate are both provided with a rotating column.
[0008] In a preferred embodiment of the straightening and wiring device of the present invention: both the first straightening wheel group and the second straightening wheel group include eight rollers, and the eight rollers are symmetrically distributed.
[0009] In a preferred embodiment of the straightening and wiring device of the present invention: both the first straightening wheel group and the second straightening wheel group include seven rollers, and the seven rollers are distributed in an alternating and symmetrical manner.
[0010] In a preferred embodiment of the straightening and wiring device of the present invention: it further includes a wire feeding component, which includes a third adjusting bolt disposed on a first adjusting plate. The third adjusting bolt, the second adjusting bolt, and the first adjusting bolt are all provided with a handle. The handle has anti-slip texture. The third adjusting bolt has an adjusting block. The first adjusting plate has an adjusting groove. The side wall of the adjusting block has a first wire feeding wheel. The first support seat has a second wire feeding wheel. The second wire feeding wheel has a plurality of protrusions arranged in a circular array. The side wall of the second wire feeding wheel has a connecting shaft. The connecting shaft has a knob. The fixing plate has a wire feeding hole. The adjusting block is slidably connected to the adjusting groove, and the first and second wire feeding wheels are symmetrically distributed.
[0011] In a preferred embodiment of the straightening and wiring device of the present invention: the stabilizing member includes a rubber anti-slip foot provided on the side wall of the base, the anti-slip foot is provided with a connecting bolt, the connecting bolt is provided with a nut, and the side wall of the base is provided with two steel plates; wherein, the steel plates are detachably connected to the base.
[0012] In a preferred embodiment of the straightening and wiring device of the present invention: the wiring section includes a wiring component disposed on a second support base, the wiring component includes two support columns disposed on the second support base, the two support columns are provided with a wiring slider, the wiring slider is provided with a fixing block, the wiring slider and the fixing block are provided with two wiring wheels, and the fixing block is threadedly connected with a movable handle; wherein, the wiring wheels are rotatably connected to the wiring slider and the fixing block.
[0013] In a preferred embodiment of the straightening and wiring device of the present invention: the wiring part further includes a winding component disposed on a third support base, the winding component includes a support shaft disposed on the third support base, the support shaft is provided with a through hole, an R-pin is provided in the through hole, a support rod is provided on the support shaft, a connecting block is provided on the side wall of the support shaft, a rotating handle is provided on the connecting block, a winding cylinder is provided on the outer surface of the support rod, an end cap is provided on the side wall of the winding cylinder, and both the end cap and the winding cylinder are provided with limiting holes; wherein, the support shaft is rotatably connected to the third support base.
[0014] The beneficial effects of this invention are as follows: by setting the main body and the straightening part, the longitudinal and transverse bending deformation of the binding wire can be straightened. With the help of the wire laying part, the straightened binding wire can be laid and wound up, so that the straightened binding wire forms a regular binding wire coil after the wire laying and winding. This achieves the straightening and storage of the binding wire, avoids gaps, unevenness and other problems in the binding wire coil, effectively reduces the bending and uneven distribution of binding wire in manual production, effectively improves the quality of line binding and improves the binding effect. Attached Figure Description
[0015] To more clearly illustrate the technical solutions of the embodiments of the present invention, the accompanying drawings of the embodiments of the present invention will be briefly described below. Obviously, the drawings described below only relate to some embodiments of the present invention and are not intended to limit the present invention. Wherein: Figure 1 A schematic diagram of the straightening cable assembly is shown. Figure 2 It shows Figure 1 Enlarged view of point A in the middle; Figure 3 A schematic diagram of the straightening cable assembly is shown. Figure 4 An exploded view of the straightening cable assembly is shown; Figure 5 It shows Figure 4 Enlarged view at point B in the middle; Figure 6 A schematic diagram of the wire feeding component of the straightening and wiring device is shown. Figure 7 A schematic diagram of the wire feeding component of the straightening and wiring device is shown. Figure 8 A schematic diagram of the overall cable straightening assembly is shown. Figure 9 A schematic diagram of the winding component structure of the straightening and aligning device is shown. Figure 10 A schematic diagram of the winding component of the straightening and wiring device is shown. Detailed Implementation
[0016] To enable those skilled in the art to better understand the present invention, the present invention will be further described in detail below with reference to specific embodiments and accompanying drawings.
[0017] The terminology used in this invention is that which is currently widely used in the art in consideration of the function of the invention; however, these terms may vary according to the intent of those skilled in the art, precedent, or new technology in the art. Furthermore, specific terms may be chosen by the applicant, and in such cases, their detailed meanings will be described in the detailed description of the invention. Therefore, the terms used in this specification should not be construed as simple names, but rather based on their meanings and the overall description of the invention.
[0018] Example 1 Reference Figure 1 This embodiment provides a straightening and wiring device, including a main body 1; a straightening part 2, which includes a first straightening member 21 for longitudinal straightening and a second straightening member 22 for transverse straightening disposed on the main body 1; and a wiring part 3 disposed on the main body 1; wherein the binding wire is straightened by the first straightening member 21 and the second straightening member 22, and the straightened binding wire is wound up by the wiring part 3, thereby realizing the straightening and storage of the binding wire.
[0019] Specifically, the main body 1 provides a supporting foundation for the straightening operation of the binding wire, ensuring the stability of the binding wire during the straightening and storage operation. When the binding wire passes through the first straightening member 21, the first straightening member 21 straightens the longitudinal bending deformation of the binding wire. When the binding wire passes through the second straightening member 22, the second straightening member 22 straightens the lateral bending deformation of the binding wire. The straightened binding wire is wound up by the wire winding part 3 to ensure that the binding wire forms a regular binding wire coil after winding, thus realizing the straightening and storage of the binding wire.
[0020] It should be noted that the binding wire is made from scrap steel strand or aluminum strand. The entire device is simple to operate and lightweight. It transforms scrap steel strand or aluminum strand into binding wire coils necessary for power transmission line construction, effectively saving costs. It can convert binding wire into standardized binding wire coils, reducing the problems of bending and uneven distribution of binding wire during manual production, effectively improving the quality and effect of line binding.
[0021] Example 2 Reference Figures 1 to 10 This embodiment differs from the first embodiment in that the main body 1 includes a base 11, a first support seat 12 is provided on the base 11, a fixing plate 13 is provided on the side wall of the first support seat 12, a connecting groove 14 is provided on the fixing plate 13, a fixing bolt 15 is provided in the connecting groove 14, a second support seat 16 is provided on the base 11, a third support seat 17 is provided on the base 11, and a stabilizing member 18 is provided on the base 11; wherein, the fixing bolt 15 is slidably connected to the connecting groove 14.
[0022] Specifically, the base 11 is arranged in a Chinese character "zhong"-shaped configuration, the first support seat 12 and the base 11 are fixedly connected by bolts, the first support seat 12 is arranged in a π-shaped configuration, the fixing plate 13 is fixedly connected with the first support seat 12 by bolts, the fixing plate 13 is arranged in a pentagonal configuration, there are two second support seats 16 and two third support seats 17, and the two second support seats 16 and the two third support seats 17 are both arranged symmetrically.
[0023] The first straightening member 21 comprises two first adjusting bolts 211 arranged on the first support seat 12, a first adjusting plate 212 is commonly arranged on the two first adjusting bolts 211, and a first straightening wheel set 213 is arranged on both the first adjusting plate 212 and the first support seat 12; wherein the first adjusting plate 212 is in threaded connection with the fixing bolt 15.
[0024] Specifically, the two first adjusting bolts 211 are arranged symmetrically, both of the two first adjusting bolts 211 are rotatably connected with the first support seat 12, the two first adjusting bolts 211 penetrate the first adjusting plate 212 and are in threaded connection with the first adjusting plate 212, and the spacing between the first adjusting plate 212 and the first support seat 12 is adjusted through the two first adjusting bolts 211.
[0025] The second straightening member 22 comprises two second adjusting bolts 221 arranged on the first support seat 12, a second adjusting plate 222 is commonly arranged on the two second adjusting bolts 221, a second straightening wheel set 223 is arranged on the second adjusting plate 222 and the first support seat 12, and rotating columns 224 are arranged on both the first support seat 12 and the second adjusting plate 222.
[0026] Specifically, the two second adjusting bolts 221 are arranged symmetrically, both of the two second adjusting bolts 221 are rotatably connected with the first support seat 12, the two second adjusting bolts 221 penetrate the second adjusting plate 222 and are in threaded connection with the second adjusting plate 222, the spacing between the second adjusting plate 222 and the first support seat 12 is adjusted through the two second adjusting bolts 221, the two rotating columns 224 are arranged symmetrically, and the two rotating columns 224 are rotatably connected with the first support seat 12 and the second adjusting plate 222 respectively.
[0027] Both the first straightening wheel set 213 and the second straightening wheel set 223 comprise eight rollers 23, and the eight rollers 23 are distributed symmetrically.
[0028] Specifically, the corresponding roller 23 is rotatably connected with the first support seat 12, the corresponding roller 23 is rotatably connected with the first adjusting plate 212, the corresponding roller 23 is rotatably connected with the second adjusting plate 222, and straightening of binding wires is realized through the symmetrically distributed rollers 23.
[0029] The cable routing section 3 includes a cable routing component 31 mounted on a second support base 16. The cable routing component 31 includes two support columns 311 mounted on the second support base 16. A cable routing slider 312 is mounted on both support columns 311. A fixing block 313 is mounted on the cable routing slider 312. Two cable routing wheels 314 are mounted between the cable routing slider 312 and the fixing block 313. A movable handle 315 is mounted on the fixing block 313. The cable routing wheels 314 are rotatably connected to the cable routing slider 312 and the fixing block 313.
[0030] Specifically, two support columns 311 are located between two second support seats 16, and the side walls of the two support columns 311 are fixedly connected to the two second support seats 16. The cable slider 312 is provided with a groove that matches the support column 311. The cable slider 312 is slidably connected to the support column 311 through the groove. The fixing block 313 is fixedly connected to the cable slider 312 by bolts. The two cable wheels 314 are symmetrically arranged. The moving handle 315 is threadedly connected to the fixing block 313.
[0031] The cable routing section 3 also includes a winding component 32 mounted on the third support base 17. The winding component 32 includes a support shaft 321 mounted on the third support base 17. The support shaft 321 has a through hole 322 and an R-pin 323 inside the through hole 322. The support shaft 321 has a support rod 324. The side wall of the support shaft 321 has a connecting block 325. The connecting block 325 has a rotating handle 326. The outer surface of the support rod 324 has a winding cylinder 327. The side wall of the winding cylinder 327 has an end cap 328. Both the end cap 328 and the winding cylinder 327 have limiting holes 329. The support shaft 321 is rotatably connected to the third support base 17.
[0032] Specifically, the support shaft 321 is mounted on two third support seats 17, and the support shaft 321 is detachably and rotatably connected to the third support seats 17. The R pin 323 is inserted into the support shaft 321 through the through hole 322. The support rod 324 is fixedly connected to the support shaft 321 and is hexagonal in shape. The connecting block 325 is fixedly connected to the support shaft 321. The rotating handle 326 is provided with a fixing groove a that matches the connecting block 325, so that the rotating handle 326 is inserted into the connecting block 325 through the fixing groove a. The end cover 328 and the winding drum 327 are both provided with hexagonal grooves that match the support rod 324, so that when the support shaft 321 rotates, the support rod 324 can drive the winding drum 327 and the end cover 328 to rotate.
[0033] In use, the binding wire is first passed through the first straightening member 21 and the second straightening member 22, so that the binding wire is positioned between the first straightening wheel group 213, the second straightening wheel group 223, and the two rotating columns. Then, the first adjusting bolt 211 is rotated, causing the first adjusting plate 212 to drive the upper roller 23 downward, thereby adjusting the spacing of the eight symmetrical rollers 23 of the first straightening wheel group 213. This allows the first straightening wheel group 213 to straighten the longitudinal bending deformation of the binding wire. Then, the second adjusting bolt 221 is rotated, causing the second adjusting plate 222 to drive the front roller 23 backward, thereby adjusting the spacing of the eight symmetrical rollers 23 of the second straightening wheel group 223. This allows the second straightening wheel group 223 to straighten the lateral bending deformation of the binding wire. After straightening, the binding wire passes through the rotating columns and then through the two wire guide wheels 314 to wind around... The wire component 32 moves while the end of the binding wire is slightly bent and inserted into the limiting hole 329 to fix the binding wire to the winding drum 327. This prevents the binding wire from being unable to rotate and be wound around the winding drum 327 when it rotates. The rotating handle 326 is connected to the connecting block 325 through the fixing groove a. Then, by rotating the rotating handle 326, the support shaft 321 drives the support rod 324 to rotate, which in turn drives the winding drum 327 and the end cap 328 to rotate. This allows the winding drum 327 to wind up the straightened wire. While the binding wire is being wound up, the operator moves the handle 315 to push the position of the wire-laying slider 312 back and forth, which serves to lay the wire and ensure that the binding wire forms a neat coil after winding. This prevents the binding wire from being wrapped in one place and causing it to pile up, thus achieving the straightening and storage of the binding wire. After the binding wire is wound up, turn the handle 326 forward to disengage the connecting block 325 from the fixing groove a, so that the handle 326 can be removed and the R pin 323 can be disengaged from the through hole 322. Then, turn the connecting block 325 forward to move the support shaft 321 and the support rod 324 forward to disengage from the winding drum 327 and the end cover 328. At this time, the winding drum 327 can be removed. Then, turn the end cover 328 to move the end cover 328 away from the winding drum 327. Then, the wound binding wire coil can be removed from the winding drum 327 for later use. In summary, the ability to transform binding wire into standardized binding wire coils effectively reduces the bending and uneven distribution of binding wire during manual production, thereby improving the quality and effectiveness of line binding.
[0034] Example 3 Reference Figure 3 This embodiment differs from the second embodiment in that both the first straightening roller group 213 and the second straightening roller group 223 include seven rollers 23, and the seven rollers 23 are distributed in an alternating and symmetrical manner.
[0035] Specifically, the staggered and symmetrically distributed rollers allow for more flexible adjustment of the roller spacing compared to eight symmetrically arranged rollers, accommodating smaller diameter binding wires and avoiding incomplete straightening of smaller diameter binding wires due to limited spacing adjustment.
[0036] Example 4 Reference Figures 1 to 7 This embodiment differs from the second embodiment in that it also includes a wire feeding component 24. The wire feeding component 24 includes a third adjusting bolt 241 disposed on the first adjusting plate 212. The third adjusting bolt 241, the second adjusting bolt 221, and the first adjusting bolt 211 are all provided with a handle 2411. The handle 2411 is provided with anti-slip texture 2412. The third adjusting bolt 241 is provided with an adjusting block 242. The first adjusting plate 212 is provided with an adjusting groove 243. The side wall of the adjusting block 242 is provided with a first wire feeding wheel 244. The first support base 12 is provided with a second wire feeding wheel 245. The second wire feeding wheel 245 is provided with a plurality of protrusions 246 arranged in a ring array. The side wall of the second wire feeding wheel 245 is provided with a connecting shaft 247. The connecting shaft 247 is provided with a knob 248. The fixing plate 13 is provided with a wire feeding hole 249. The adjusting block 242 is slidably connected to the adjusting groove 243, and the first wire feeding wheel 244 and the second wire feeding wheel 245 are symmetrically distributed.
[0037] Specifically, the third adjusting bolt 241 is rotatably connected to the first adjusting plate 212, and the corresponding handle 2411 is fixedly connected to the third adjusting bolt 241. The corresponding handle 2411 is fixedly connected to the second adjusting bolt 221, and the corresponding handle 2411 is fixedly connected to the first adjusting bolt 211. The anti-slip texture 2412 makes it easy for the operator to rotate the first adjusting bolt 211 / second adjusting bolt 221 / third adjusting bolt 241 by the handle 2411. The adjusting block 242 is threadedly connected to the third adjusting bolt 241, and the adjusting block 242 is slidably connected to the adjusting groove 243. The first wire feeding wheel 244 is rotatably connected to the adjusting block 242. The connecting shaft 247 passes through the first support base 12 and is rotatably connected to the first support base 12. The connecting shaft 247 is fixedly connected to the second wire feeding wheel 245 and the knob 248. The protrusion 246 is fixedly connected to the second wire feeding wheel 245. The protrusion 246 can increase the friction with the binding wire.
[0038] In use, in conjunction with Embodiment 2, before the binding wire passes through the first straightening member 21 and the second straightening member 22, the binding wire passes through the wire feeding hole into the wire feeding member 24, so that the binding wire is located between the first wire feeding wheel 244 and the second wire feeding wheel 245. At this time, the throttle handle 2411 is turned, causing the third adjusting bolt 241 to rotate, so that the adjusting block 242 drives the first wire feeding wheel 244 to move downward under the action of the third adjusting bolt 241 and the adjusting groove 243, so that the first wire feeding wheel 244 contacts the binding wire. Then, the knob 248 is turned, causing the connecting shaft 247 to drive the second wire feeding wheel 245 to rotate. Under the action of the friction of the protrusion 246, the binding wire is fed into the first straightening wheel and the second straightening wheel, which plays the role of feeding.
[0039] Example 6 Reference Figures 1 to 5 The difference between this embodiment and the second embodiment is that the stabilizing member 18 includes a rubber anti-slip foot 181 provided on the side wall of the base 11, a connecting bolt 182 provided on the anti-slip foot, a nut 183 provided on the connecting bolt 182, and two steel plates 184 provided on the side wall of the base 11; wherein, the steel plates 184 are detachably connected to the base 11.
[0040] Specifically, multiple rubber anti-slip feet 181 are provided and symmetrically distributed at the bottom of the base 11. The rubber anti-slip feet 181 are fixedly connected to the base 11 by connecting bolts 182 and nuts 183. Two steel plates 184 are located between the corresponding rubber anti-slip feet 181 and the base 11, so that the two steel plates 184 are detachably connected to the base 11 by connecting bolts 182 and nuts 183. The two steel plates 184 are symmetrically arranged and arranged in an L-shape. The rubber anti-slip feet 181 that do not contact the steel plates 184 are higher than the rubber anti-slip feet 181 that contact the steel plates 184, so as to avoid the device being unstable due to uneven height.
[0041] In use, two steel plates 184 are placed between the corresponding rubber anti-slip feet 181 and the base 11, and the two steel plates 184 and the corresponding rubber anti-slip feet 181 are fixed to the base 11 by connecting bolts 182 and nuts 183. The remaining corresponding rubber anti-slip feet 181 are also fixed to the base 11 by connecting bolts 182 and nuts 183. The rubber anti-slip feet 181 increase the friction with the placement area, prevent displacement during the straightening and winding of the binding wire, and improve the stability of the straightening and winding of the binding wire. The two new steel plates 184 strengthen the bending strength of the base 11, further improving the stability of the straightening and winding of the binding wire and ensuring the quality of the straightening and winding of the binding wire.
[0042] Finally, it should be noted that the methods and devices described in detail above are merely embodiments, and those skilled in the art can modify these embodiments in different ways as long as they do not depart from the scope of the present invention.
Claims
1. A straightening and wiring device, characterized in that: include, Main body (1); The straightening part (2) includes a first straightening member (21) disposed on the main body part (1) for longitudinal straightening and a second straightening member (22) for transverse straightening. The wiring section (3) is located on the main body section (1); The binding wire is straightened by the first straightening member (21) and the second straightening member (22), and the straightened binding wire is wound up by the wiring part (3) to achieve straightening and storage of the binding wire.
2. The straightening and wiring device according to claim 1, characterized in that: The main body (1) includes a base (11), a first support seat (12) is provided on the base (11), a fixing plate (13) is provided on the side wall of the first support seat (12), a connecting groove (14) is provided on the fixing plate (13), a fixing bolt (15) is provided in the connecting groove (14), a second support seat (16) is provided on the base (11), a third support seat (17) is provided on the base (11), and a stabilizing member (18) is provided on the base (11). The fixing bolt (15) is slidably connected to the connecting groove (14).
3. The straightening and wiring device according to claim 2, characterized in that: The first straightening member (21) includes two first adjusting bolts (211) provided on the first support base (12), and a first adjusting plate (212) is provided on both the two first adjusting bolts (211). A first straightening wheel set (213) is provided on both the first adjusting plate (212) and the first support base (12). The first adjusting plate (212) is threadedly connected to the fixing bolt (15).
4. The straightening and wiring device according to claim 3, characterized in that: The second straightening member (22) includes two second adjusting bolts (221) provided on the first support seat (12). The two second adjusting bolts (221) are provided with a second adjusting plate (222). The second adjusting plate (222) and the first support seat (12) are provided with a second straightening wheel set (223). The first support seat (12) and the second adjusting plate (222) are both provided with a rotating column (224).
5. The straightening and wiring device according to claim 4, characterized in that: The first straightening wheel group (213) and the second straightening wheel group (223) each include eight rollers (23), and the eight rollers (23) are symmetrically distributed.
6. The straightening and wiring device according to claim 4, characterized in that: The first straightening roller group (213) and the second straightening roller group (223) each include seven rollers (23), and the seven rollers (23) are distributed in an alternating symmetrical manner.
7. The straightening and wiring device according to claim 4, characterized in that: It also includes a wire feeding component (24), which includes a third adjusting bolt (241) on a first adjusting plate (212). The third adjusting bolt (241), the second adjusting bolt (221) and the first adjusting bolt (211) are all provided with a handle (2411). The handle (2411) is provided with anti-slip texture (2412). The third adjusting bolt (241) is provided with an adjusting block (242). The first adjusting plate (212) is provided with an adjusting groove (243). The side wall of the adjusting block (242) is provided with a first wire feeding wheel (244). The first support base (12) is provided with a second wire feeding wheel (245). The second wire feeding wheel (245) is provided with a plurality of protrusions (246) arranged in a ring array. The side wall of the second wire feeding wheel (245) is provided with a connecting shaft (247). The connecting shaft (247) is provided with a knob (248). The fixed plate (13) is provided with a wire feeding hole (249). The adjusting block (242) is slidably connected to the adjusting groove (243), and the first wire feeding wheel (244) and the second wire feeding wheel (245) are symmetrically distributed.
8. The straightening and wiring device according to claim 7, characterized in that: The stabilizing component (18) includes a rubber anti-slip foot (181) provided on the side wall of the base (11), a connecting bolt (182) provided on the anti-slip foot, a nut (183) provided on the connecting bolt (182), and two steel plates (184) provided on the side wall of the base (11). The steel plate (184) is detachably connected to the base (11).
9. The straightening and wiring device according to claim 8, characterized in that: The wiring section (3) includes a wiring component (31) disposed on a second support base (16). The wiring component (31) includes two support columns (311) disposed on the second support base (16). The two support columns (311) are provided with a wiring slider (312). The wiring slider (312) is provided with a fixing block (313). The wiring slider (312) and the fixing block (313) are provided with two wiring wheels (314). The fixing block (313) is threaded with a moving handle (315). The cable wheel (314) is rotatably connected to the cable slider (312) and the fixing block (313).
10. The straightening and wiring device according to claim 9, characterized in that: The wiring section (3) further includes a winding component (32) disposed on a third support base (17). The winding component (32) includes a support shaft (321) disposed on the third support base (17). The support shaft (321) is provided with a through hole (322). An R-pin (323) is provided in the through hole (322). A support rod (324) is provided on the support shaft (321). A connecting block (325) is provided on the side wall of the support shaft (321). A rotating handle (326) is provided on the connecting block (325). A winding cylinder (327) is provided on the outer surface of the support rod (324). An end cap (328) is provided on the side wall of the winding cylinder (327). A limiting hole (329) is provided on both the end cap (328) and the winding cylinder (327). The support shaft (321) is rotatably connected to the third support base (17).