High-speed coiling machine for seat cables
The high-speed winding machine for seat cables, which integrates winding, bending, positioning, locking, sorting, and cutting components, solves the problem of cumbersome processes in existing technologies and achieves high production efficiency and low-cost automated production.
Patent Information
- Application Number
- CN202311844181.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-12-28
- Publication Date
- 2026-02-13
- Estimated Expiration
- 2043-12-28
AI Technical Summary
In the existing technology, the assembly process of seat cable is complicated, requiring the cutting, locking, bending and winding of steel wire rope on multiple machines, resulting in low production efficiency.
Design a high-speed winding machine for seat cables, integrating winding components, bending components, positioning components, lock knot sorting components, lock knot threading components and cutting components into one unit, so as to realize the cutting, lock knot threading, bending and winding of steel wire rope on the same machine.
It reduces operational steps, improves production efficiency, lowers labor costs, and automates multiple processes through a single positioning, simplifying the operation process.
Smart Images

Figure CN117772954B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The application belongs to the technical field of automobile cable assembly, and particularly relates to a high-speed winding machine for seat cable. BACKGROUND
[0002] The structure of the seat cable (as shown in FIG. 1) comprises a steel wire rope, a sleeve, and end sleeve caps located at two ends of the sleeve, wherein a handle is riveted on one end of the end sleeve cap, the steel wire rope is arranged in the sleeve, one end of the steel wire rope is connected with the handle, and the other end of the steel wire rope is outwardly arranged out of the end sleeve cap and sleeved with a lock knot, and the steel wire rope is provided with a winding after passing through the lock knot, wherein the length of the steel wire rope after passing out of the other end of the end sleeve cap is a length dimension.
[0003] In the prior art, the assembly process of the seat cable is as follows: first, the sleeve is arranged on the cut-off steel wire rope, then the end sleeve caps are riveted at two ends of the sleeve, then the handle is riveted, then the excess steel wire rope is cut off in a steel wire cutting machine according to the length dimension, then the cut-off steel wire rope is placed in an angle tool, the lock knot is arranged and then bent, then the product is placed in a winding machine for winding, and then the product is taken out for riveting of the lock knot and size detection. In the above assembly mode, the steel wire rope needs to be moved to different machines for fixing and taking out during the bending and winding of the steel wire rope, so that the operation process is complicated, thereby reducing the production efficiency.
[0004] In Chinese patent CN219292597U, a seat cable bending and winding integrated machine is disclosed, and specifically disclosed is that the integrated machine comprises a workbench and a winding assembly for realizing winding of the steel wire rope, the workbench is provided with a positioning assembly for fixing a handle section of the cable, a bending assembly for realizing bending of the steel wire rope at a set angle is arranged on the left side of the positioning assembly on the workbench, the winding assembly is arranged on the workbench through an up-down moving assembly, the up-down moving assembly can drive the winding assembly to move up and down, and the winding assembly is located directly above the bending assembly. Although the bending and winding can be completed at one time after one positioning, the cutting and lock knot arrangement of the cable are still separately performed in the integrated machine, which still affects the production efficiency. SUMMARY
[0005] The application provides a high-speed winding machine for seat cable, which can arrange the cutting, lock knot arrangement, bending and winding on the same machine, thereby greatly improving the production efficiency and reducing the labor cost.
[0006] To this end, the technical scheme adopted by the present application is as follows: a seat cable high-speed coiling machine, comprising a workbench, a coiling assembly, a positioning assembly, a bending assembly, an up-down moving assembly, a locking sorting assembly for locking sorting, a locking threading assembly for realizing that a steel wire rope is threaded on the locking, and a cutting assembly capable of realizing cutting of the steel wire rope, the positioning assembly and the bending assembly are arranged on the workbench, and the bending assembly is located on the left side of the positioning assembly, the coiling assembly is arranged on the workbench through the up-down moving assembly, and the coiling assembly is located directly above the bending assembly, the locking threading assembly is located on the rear side of the bending assembly, the locking sorting assembly is arranged on the rear side of the locking threading assembly, and the cutting assembly is arranged on the left side of the locking threading assembly.
[0007] As a preferred solution in the above-mentioned scheme, the locking threading assembly comprises a fixing seat arranged on the workbench, a V-shaped groove extending left and right and through which the steel wire rope passes is arranged on the fixing seat, a locking groove through which the locking moves to the fixing seat is arranged on the middle part of the V-shaped groove extending rearward, and the center of the locking located at the most front side in the locking groove coincides with the center of the V-shaped groove.
[0008] Further preferably, a trigger switch for triggering the cutting assembly is arranged on the right side of the fixing seat, a V-shaped trigger groove matched with the V-shaped groove is arranged on the most right side of the V-shaped groove, and a triggering piece of the trigger switch is located in the trigger groove, and when the steel wire rope is in place after passing through the locking, the steel wire rope can press down the triggering piece to trigger the trigger switch.
[0009] Further preferably, a cutting member arranged opposite to the cutting assembly is arranged on the left side of the fixing seat, a V-shaped cutting groove with the same height as the V-shaped groove is arranged on the upper end of the cutting member, a moving groove extending front and back and through which the cutting member moves into position is arranged on the left side surface of the fixing seat, and when the cutting member is installed, the right side of the fixing seat does not exceed the right side of the cutting member to the right.
[0010] Further preferably, the cutting assembly comprises a cutting seat and a cutting driving assembly arranged below the workbench, the cutting seat is arranged on the left side of the locking threading assembly, and the cutting seat can move up and down under the action of the cutting driving assembly, a steel wire through groove extending left and right and through which the steel wire rope passes is arranged on the cutting seat, a cutter groove recessed to the left is arranged on the right side surface of the cutting seat, a cutter is arranged in the cutter groove, the lower end of the cutter is arranged in a reverse V shape, and the steel wire rope can pass through the lower end of the cutter and the steel wire through groove.
[0011] Further preferably, the cutting driving assembly comprises a cutting cylinder arranged below the workbench through a mounting frame, the output end of the cutting cylinder and the lower end of the cutting seat are both hinged at the two ends of a cutting lever through corresponding first hinge blocks, the hinge shafts of the first hinge blocks are arranged in the strip-shaped grooves arranged at the two ends of the cutting lever, the middle part of the cutting lever is arranged on the mounting frame through a supporting shaft, and the cutting lever can rotate relative to the supporting shaft, the distance between the lower end of the cutting seat and the supporting shaft is smaller than the distance between the output end of the cutting cylinder and the supporting shaft.
[0012] Further preferably, a collecting groove for collecting the steel wire rope after cutting is arranged on the workbench and extends upward and downward, a collecting box is arranged below the workbench at the position corresponding to the collecting groove, and a protective cover capable of covering the cutting seat and the collecting box is arranged on the workbench.
[0013] Further preferably, a supporting assembly is arranged on the workbench between the positioning assembly and the bending assembly, and the supporting assembly is located in front of the positioning assembly, the supporting assembly comprises a plurality of supporting rods extending forward and backward, the front ends of the supporting rods are arranged on connecting rods extending leftward and rightward through connecting blocks, and the connecting rods are arranged on the workbench through at least two connecting seats arranged leftward and rightward.
[0014] Further preferably, a collecting frame for collecting the pull rope after the winding is arranged on the front side of the workbench, and a discharging assembly capable of discharging the pull rope from the supporting rods is further arranged on the workbench.
[0015] Further preferably, the connecting seats are two and are arranged at positions close to the left and right ends of the connecting rods, the discharging assembly is arranged at the middle part of the connecting rod, the discharging assembly comprises a discharging cylinder arranged below the workbench, the output end of the discharging cylinder is provided with a discharging rod extending forward and backward through a second hinge block, the front end of the discharging rod is sleeved on the middle part of the connecting rod, and the rear end of the supporting rod is provided with an upwardly inclined anti-segment falling part.
[0016] The present application has the following beneficial effects:
[0017] 1) The winding assembly, the bending assembly, the positioning assembly, the locking and sequencing assembly, the locking and threading assembly and the cutting assembly are arranged on the same workbench, and the position arrangement of the winding assembly, the bending assembly, the positioning assembly, the locking and sequencing assembly, the locking and threading assembly and the cutting assembly enables the exposed end of the pull rope to be positioned only once and then completed at one time when the pull rope is cut, threaded with a locking, bent and wound, thereby reducing the operation steps and improving the production efficiency.
[0018] 2) During work, one worker is needed for cutting and threading with a locking, and one worker is needed for bending and winding, which is compared with the prior art in which at least one worker is needed for each process, thereby reducing the labor cost.
[0019] 3) due to the positioning assembly is provided with one, while the bending assembly is provided on the left side of the positioning assembly, the cutting assembly is located on the rear side of the bending assembly, by setting the front and rear distance between the bending assembly and the cutting assembly, the length of the cutting can be naturally guaranteed, so that it does not need to measure the length of the cutting alone. BRIEF DESCRIPTION OF DRAWINGS
[0020] Figure 1 It is a schematic view of the seat cable in the prior art.
[0021] Figure 2 It is a schematic view of the structure of the present application Figure 1 (looking from front to back).
[0022] Figure 3 It is a schematic view of the structure of the present application Figure 2 (looking from back to front).
[0023] Figure 4 It is a schematic view of the structure of the support assembly and the unloading assembly in the present application.
[0024] Figure 5 It is a schematic view of the installation of the locking and threading assembly and the cutting assembly in the present application.
[0025] Figure 6 It is a schematic view of the structure of the locking and threading assembly and the cutting assembly in the present application.
[0026] Figure 7 It is a schematic view of the structure of the cutting assembly in the present application.
[0027] Figure 8 It is a schematic view of the structure of the locking and threading assembly in the present application Figure 1 (looking from right to left).
[0028] Figure 9 It is a schematic view of the structure of the locking and threading assembly in the present application Figure 2 (looking from left to right).
[0029] Figure 10 It is a schematic view of the structure of the cutting seat in the present application.
[0030] Figure 11 It is a schematic view of the structure of the positioning assembly in the present application.
[0031] Figure 12 It is a schematic view of the structure of the bending assembly and the winding assembly in the present application Figure 1 .
[0032] Figure 13 It is a schematic view of the structure of the bending assembly and the winding assembly in the present application Figure 2 .
[0033] Reference numerals: Workbench-A, Winding assembly-B, Positioning assembly-C, Bending assembly-D, Up-down movement assembly-E, Locking and threading assembly-F, Cutting assembly-G, Support assembly-H, Unloading assembly-J, Positioning seat-1, Receiving groove-1a, Clamping groove-1b, Pressing cylinder-2, Slide rail-3, Slider-4, Bending seat-5, Bending bracket-6, Bending motor-7, Bending block-8, Positioning pin-8a, Clamping pin-8b, Pneumatic finger-9, Clamping block-10, Confirmation bracket-11, Confirmation cylinder-12, Confirmation piece-13, Detection sensor-14, Detection seat-15, Winding mold-16, Fixing rod-17, Winding motor-18, Winding bracket-19, Moving block-20, Connecting seat-21, Up-down movement Cylinder-22, Moving seat-23, Guide rod-24, Fixing block-25, Return spring-26, Support rod-27, Anti-drop section-27a, Connecting block-28, Connecting rod-29, Connecting seat-30, Fixing seat-31, V-groove-32, Locking groove-33, Trigger switch-34, Trigger groove-35, Cutting component-36, Cutting groove-36a, Cutting seat-37, Wire through groove-37a, Cutting groove-37b, Cutting blade-38, Mounting bracket-39, Cutting cylinder-40, First hinge block-41, Cutting lever-42, Strip groove-42a, Support shaft-43, Support frame-44, Collection box-45, Protective cover-46, Collection frame-47, Unloading cylinder-48, Second hinge block-49, Unloading rod-50. Detailed Implementation
[0034] The present invention will be further described below with reference to the embodiments and accompanying drawings:
[0035] like Figures 2-13 As shown, a high-speed cable winding machine for seats mainly consists of a worktable A, a winding assembly B, a positioning assembly C, a bending assembly D, a vertical movement assembly E, a knot threading assembly F, a cutting assembly G, a support assembly H, an unloading assembly J, and a knot sorting assembly. The winding assembly B is used to achieve the winding of the wire rope after bending; the bending assembly D is used to bend the wire rope at a set angle; the positioning assembly C is used to fix the cable handle section to facilitate bending and winding of the cable; the vertical movement assembly E is used to drive the winding assembly B up and down; the knot sorting assembly is used to sort the knots; the knot threading assembly is used to thread the wire rope onto the knots; and the cutting assembly is used to cut the exposed length of the wire rope. The knot sorting assembly (not shown in the figure) uses a vibration sorting device from the prior art.
[0036] Positioning component C, bending component D, cutting component, lock knot threading component F, and lock knot sorting component are all mounted on worktable A. Bending component D is located to the left of positioning component C, lock knot threading component F is located behind bending component D, lock knot sorting component is located behind lock knot threading component F, and cutting component G is located to the left of lock knot threading component F. Coiling component B is mounted on worktable A via vertical moving component E, and is located directly above bending component D.
[0037] The locking knot threading assembly F includes a fixed base 31 set on the workbench A. The fixed base 31 is provided with a V-shaped groove 32 that extends left and right for the steel wire rope to pass through. At the same time, a locking knot groove 33 is provided in the middle of the V-shaped groove 32 that allows the locking knot to move onto the fixed base 31. The center of the locking knot at the frontmost side of the locking knot groove 33 coincides with the center of the V-shaped groove 32, so that when the steel wire rope moves to the left along the V-shaped groove, it can pass through the locking knot at the frontmost side of the locking knot groove, thereby realizing the process of threading the exposed steel wire through the locking knot.
[0038] To facilitate the automatic activation of the cutting assembly, a trigger switch 34 for triggering the cutting assembly is provided on the right side of the fixed base 31, and a V-shaped trigger groove 35 matching the V-shaped groove 32 is provided on the far right side of the V-shaped groove 32. The trigger piece of the trigger switch 34 is located in the trigger groove 35. When the wire rope passes through the locking knot and is in place, the wire rope can press down on the trigger piece to trigger the trigger switch 34.
[0039] Since the cutting component is located on the left side of the locking and threading component, the left side of the fixing seat experiences greater wear. To facilitate replacement, a cutting element 36 is provided on the left side of the fixing seat 31, opposite to the cutting component G. Simultaneously, to facilitate the insertion of the wire rope into the cutting component, a V-shaped cutting groove 36a, at the upper end of the cutting element 36, is provided, equal in height to the V-shaped groove 32. Due to the special configuration of each structure in this embodiment, to facilitate the installation of the cutting element, a moving groove extending forward and backward is provided on the left side of the fixing seat 31 to allow the cutting element 36 to move into position. After the cutting element 36 is installed, the right side of the fixing seat 31 should not extend beyond the right side of the cutting element 36; ideally, the right side of the fixing seat 31 should be flush with the right side of the cutting element 36.
[0040] The specific structure of the cutting assembly G includes a cutting seat 37 and a cutting drive assembly located below the workbench A. The cutting seat 37 is positioned to the left of the locking and threading assembly F and can move up and down under the action of the cutting drive assembly. To facilitate cutting the wire rope, a through-slot 37a is provided on the cutting seat 37, allowing the wire rope to pass through. A cutting groove 37b is recessed to the left on the right side of the cutting seat 37, and a cutter 38 is installed within the cutting groove 37b. The lower end of the cutter 38 is inverted V-shaped, allowing the wire rope to pass through the lower end of the cutter 38 and the through-slot 37a. The cutter is separately provided for easy replacement after long-term use.
[0041] In the embodiment, the fixed seat is provided with a moving sliding groove for the up-and-down movement of the cutting seat. In order to facilitate the machining of the complex structure of the fixed seat, the fixed seat comprises a trigger guide block at the front side and a sliding mounting seat at the rear side. The sliding mounting seat is arranged on the workbench, the trigger guide block is arranged on the sliding mounting seat, and V-shaped grooves are arranged on the sliding mounting seat and the trigger guide block. The moving groove and the moving sliding groove are arranged on the left side of the sliding mounting seat, and the trigger switch and the trigger groove are arranged on the right side of the trigger guide block.
[0042] The specific structure of the cutting driving assembly comprises a cutting cylinder 40 arranged below the workbench A through a mounting frame 39. The output end of the cutting cylinder 40 and the lower end of the cutting seat 37 are both hinged to the two ends of a cutting lever 42 through corresponding first hinge blocks 41. The middle part of the cutting lever 42 is arranged on the mounting frame 39 through a support shaft 43, and the cutting lever 42 can rotate relative to the support shaft 43. The distance between the lower end of the cutting seat 37 and the support shaft 43 is smaller than the distance between the output end of the cutting cylinder 40 and the support shaft 43. The arrangement of the cutting lever can achieve labor-saving cutting. In order to ensure the vertical movement of the cutting seat and the output end of the cutting cylinder, the hinge shaft of the first hinge block 41 is arranged in the strip-shaped groove 42a arranged at the two ends of the cutting lever 42.
[0043] In order to facilitate the collection of the cut steel wire, a collection groove for collecting the cut steel wire rope is arranged on the workbench A in an up-and-down extending manner. A collection box 45 is arranged below the workbench A at a position corresponding to the collection groove. The rear lower end of the steel wire through groove is provided with a downward inclined guide slope. In order to prevent the excess material from splashing when the steel wire is cut, a protective cover 46 is arranged on the workbench A and can cover the cutting seat 37 and the collection box 45.
[0044] The specific structure of the positioning assembly C comprises a positioning seat 1. The positioning seat 1 is provided with a containing groove 1a capable of containing a handle and a clamping groove 1b capable of clamping an end sleeve cap. The clamping groove 1b is in communication with the containing groove 1a and is located on the left side of the containing groove 1a. In order to prevent bending and coiling at the designed position, a clamping cylinder 2 for clamping and fixing the handle is arranged on at least one of the front and rear sides and the right side of the positioning seat 1. The extension end of the clamping cylinder 2 extends into the containing groove 1a after penetrating through the positioning seat 1, so that the extension end of the clamping cylinder can abut against the handle during clamping, thereby fixing the handle. In order to facilitate the taking of the handle, the containing groove is arranged as a through groove near the right side.
[0045] In order to make the application applicable to the cables with different lengths, the positioning assembly further comprises a slide rail 3 and a fixing bolt. The slide rail 3 extends leftward and rightward and is arranged on the right side of the workbench A. A sliding block 4 is arranged on the slide rail 3 and located at the bottom of the positioning seat 1. In order to fix the positioning seat after the position is determined, a first strip hole extending upward and downward and leftward and rightward is arranged in the center of the slide rail 3. A second strip hole is arranged on the workbench A and opposite to the first strip hole. The fixing bolt is sequentially inserted into the first strip hole and the second strip hole and is screwed on the sliding block 4 to prevent the positioning seat 1 from moving forward and backward.
[0046] The bending assembly D comprises a bending seat 5 arranged above the workbench A and a bending motor 7 arranged below the workbench A through a bending support 6. A bending block 8 extending upward and downward and capable of rotating is arranged in the middle of the bending seat 5. The lower end of the bending block 8 is sequentially inserted into the bending seat 5 and the workbench A and is connected with the output end of the bending motor 7. Rotating sleeves are arranged between the bending block and the bending seat and between the bending block and the workbench. When the bending motor rotates, the bending block can be driven to rotate. In order to clamp the steel wire rope and realize the bending when the bending block rotates, a positioning pin 8a is arranged in the center of the bending block 8. A clamping pin 8b is arranged on the bending block 8 and deviates from the positioning pin 8a. Preferably, the distance between the positioning pin 8a and the clamping pin 8b is just matched with the diameter of the steel wire rope. The height of the positioning pin is higher than that of the clamping pin. The height of the clamping pin is matched with the diameter of the steel wire rope. When bending, the steel wire rope is clamped on the clamping pin.
[0047] In order to ensure that the whole cable is not affected during the bending, a clamping assembly is arranged on the workbench A and located in front of the bending seat 5. The clamping assembly comprises a pneumatic finger 9 arranged on the workbench A. Clamping blocks 10 are arranged on the two moving parts of the pneumatic finger 9 and opposite to each other. A clamping hole is arranged on the side adjacent to the two clamping blocks 10 for the steel wire rope or the lock to pass through. In order to facilitate the steel wire rope to pass through the clamping blocks, the right end of the clamping hole is arranged with a taper section with the right side larger than the left side.
[0048] To ensure the consistency of the angle of each bending of the bending assembly, a confirmation cylinder 12 is arranged on the workbench A through the confirmation support 11 arranged in front of and behind the confirmation cylinder 12, which is used to ensure that the bending block 8 can be accurately returned to the original position after each bending, that is, to ensure the position of the steel wire rope before bending, a confirmation piece 13 is arranged on the bending block 8, and the confirmation piece 13 is arranged with an insertion slot 13a extending in front of and behind the bending seat 5 after passing through the bending seat 5 from behind, and the extension end of the confirmation cylinder 12 can extend into the insertion slot 13a when the bending motor 7 is not working, and the extension end of the confirmation cylinder 12 cannot extend into the insertion slot 13a after the bending block rotates. To ensure the angle of rotation of the bending block, a detection sensor 14 for detecting the rotation angle of the bending block 8 is arranged on the workbench A through a detection seat 15 arranged on the left side of the bending seat 5.
[0049] The specific structure of the winding assembly includes a winding die 16, a fixing rod 17 for fixing the winding die 16 is arranged at the upper end of the winding die 16, and the upper end of the fixing rod 17 is connected with the output end of the winding motor 18 through a speed change mechanism, and the winding motor 18 is arranged on the up-down moving assembly E through a winding support 19, when the winding motor rotates, the fixing rod can be driven to rotate through the speed change mechanism, so as to realize the rotation of the winding die. In this embodiment, the winding die is provided with a positioning hole for inserting a positioning pin, and an equal-height block slightly higher than the clamping pin is arranged at the bottom of the winding die, which is used to prevent the winding die from being directly pressed on the clamping pin.
[0050] The specific structure of the up-down moving assembly E includes a moving block 20 for fixing the winding assembly, and the moving block 20 is connected with the extension end of the up-down moving cylinder 22 through a connecting seat 21, and the up-down moving cylinder 22 is arranged on the workbench A through a moving seat 23 extending up and down.
[0051] To ensure the vertical movement of the moving block, guide rods 24 are arranged on the workbench A in front of and behind the guide rods 24, and the guide rods 24 are arranged extending up and down and are used to ensure the vertical movement of the moving block 20, in order to fix the guide rods, the upper ends of the guide rods 24 pass through the moving block 20 and are arranged on the upper end of the moving seat 23 through a fixing block 25, and the lower ends of the guide rods are also arranged on the lower end of the moving seat through a fixing block. To facilitate the return of the guide rods, a return spring 26 for facilitating the return of the moving block 20 is arranged on the guide rod 24.
[0052] Since the cable is long, in order to prevent the middle part of the cable from being affected by gravity and sagging, thereby affecting the bending and winding position, the support assembly H is arranged between the positioning assembly C and the bending assembly D on the workbench A, and the support assembly H is located in front of the positioning assembly C. The specific structure of the support assembly H includes a plurality of front and rear extending support rods 27, and the front ends of the support rods 27 are arranged on the left and right extending connecting rods 29 through the connecting blocks 28, and the connecting rods 29 are arranged on the workbench A through at least two connecting seats 30 arranged at intervals. The positioning assembly and the support assembly can be cancelled, and the support and positioning can be realized by manual operation.
[0053] In order to facilitate the collection of all processed cables, a collection frame 47 for collecting the cables after winding is arranged on the front side of the workbench A, and a discharging assembly J for automatically discharging the cables from the support rods 27 is also arranged on the workbench A. In this embodiment, the collection frame and the workbench are arranged on the same support frame 44, and four fixed universal wheels are arranged at the bottom of the support frame 44.
[0054] In the application, the connecting seat 30 is arranged at two positions close to the left and right ends of the connecting rod 29, and the discharging assembly J is arranged at the middle part of the connecting rod 29. The specific structure of the discharging assembly J includes a discharging cylinder 48 arranged below the workbench A, which is arranged on the mounting frame through a corresponding cylinder support, and the output end of the discharging cylinder 48 is provided with a front and rear extending discharging rod 50 through a second hinge block 49, and the front end of the discharging rod 50 is sleeved on the middle part of the connecting rod 29. When the discharging cylinder moves upward first and then downward, the cable on the support rod can be ejected and dropped into the collection frame in front, thereby realizing automatic discharging. In order to prevent the cable from moving forward when it is ejected, an upward inclined anti-falling section 27a is arranged at the rear end of the support rod 27.
[0055] In operation, the handle section of the cable is inserted into the positioning assembly, and the handle section of the cable is fixed by the abutting cylinder, and the lock is automatically moved into the lock groove through the lock sorting assembly. Then the exposed steel wire rope of the cable is passed through the V-shaped groove and the lock on the lock groove, and then it is passed through the steel wire groove. When the steel wire rope passes through the lower end of the cutter, the distance of the steel wire rope moving downward is ensured, and the trigger switch is triggered to make the cutting cylinder work to realize the cutting of the steel wire. Then the cut and locked steel wire rope is taken out and clamped between the positioning pin and the clamping pin, and then the steel wire rope is clamped by the pneumatic finger, of course, the pneumatic finger can be kept in the clamping state first, and then the steel wire rope is placed between the positioning pin and the clamping pin after passing through the clamping hole, and then the bending motor works to realize the bending of the steel wire rope. After the bending is completed, the up-down moving assembly moves downward with the winding assembly, and the winding motor and the winding die are used to realize the winding of the steel wire rope. After winding is completed, the winding assembly returns to the original position, the abutting cylinder abutting against the handle section is released, and then the unloading cylinder moves upward first, and then moves upward, so that the finished cable is bounced into the collecting frame, thereby completing the taking out of the product.
Claims
1. A high-speed winding machine for seat cable, comprising a workbench (A), a winding assembly (B), a positioning assembly (C), a bending assembly (D) and an up-down moving assembly (E), the positioning assembly (C) and the bending assembly (D) are arranged on the workbench (A), and the bending assembly (D) is located on the left side of the positioning assembly (C), the winding assembly (B) is arranged on the workbench (A) through the up-down moving assembly (E), and the winding assembly (B) is located directly above the bending assembly (D), characterized in that: Also include the locking sorting components for locking sorting, for the realization of the wire rope through the locking on the locking through the component (F) and can achieve the wire rope cutting cutting component (G), the locking through the component (F) is located in the bending assembly (D) after the side, the locking sorting components are arranged in the locking through the component (F) after the side, the cutting component (G) is arranged in the locking through the component (F) left side; The locking through the component (F) includes a fixed seat (31) arranged on the workbench (A), the fixed seat (31) is provided with a V-shaped groove (32) extending left and right and through the wire rope, the middle part of the V-shaped groove (32) is provided with a locking groove (33) for moving the locking to the fixed seat (31), and the center of the locking in the most front locking groove (33) coincides with the center of the V-shaped groove (32). The right side of the fixed seat (31) is provided with a trigger switch (34) for triggering the cutting component, the rightmost side of the V-shaped groove (32) is provided with a V-shaped trigger groove (35) matched with the V-shaped groove (32), the trigger piece of the trigger switch (34) is located in the trigger groove (35), when the wire rope is in place through the locking, the wire rope can press down the trigger piece to trigger the trigger switch (34).
2. The high speed cord winding machine for seat belts as claimed in claim 1 wherein: The left side of the fixed seat (31) is provided with a cutting member (36) arranged opposite to the cutting component (G), the upper end of the cutting member (36) is provided with a V-shaped cutting groove (36a) with the same height as the V-shaped groove (32), the left side surface of the fixed seat (31) is provided with a moving groove extending forward and backward for moving the cutting member (36) to the position, when the cutting member (36) is installed, the right side of the fixed seat (31) is not more than the right side of the cutting member (36) to the right.
3. The high speed cord winding machine for seat belts as claimed in claim 1 wherein: The cutting component (G) includes a cutting seat (37) and a cutting drive assembly arranged below the workbench (A), the cutting seat (37) is arranged on the left side of the locking through the component (F), and the cutting seat (37) can move up and down under the action of the cutting drive assembly, the cutting seat (37) is provided with a steel wire through groove (37a) extending left and right and through the steel wire, the right side of the cutting seat (37) is recessed to the left and provided with a cutter groove (37b), the cutter groove (37b) is provided with a cutter (38), the lower end of the cutter (38) is provided as an inverted V-shaped, the steel wire can pass through the lower end of the cutter (38) and the steel wire through groove (37a).
4. The high speed cord winding machine for seat belts according to claim 3, characterized in that: The cutting-off driving assembly comprises a cutting-off cylinder (40) arranged below the workbench (A) through a mounting frame (39), the output end of the cutting-off cylinder (40) and the lower end of the cutting-off seat (37) are both hinged at the two ends of a cutting-off lever (42) through corresponding first hinge blocks (41), the hinge shafts of the first hinge blocks (41) are arranged in the strip-shaped grooves (42a) arranged at the two ends of the cutting-off lever (42), the middle part of the cutting-off lever (42) is arranged on the mounting frame (39) through a supporting shaft (43), and the cutting-off lever (42) can rotate relative to the supporting shaft (43), and the distance between the lower end of the cutting-off seat (37) and the supporting shaft (43) is smaller than the distance between the output end of the cutting-off cylinder (40) and the supporting shaft (43).
5. The high speed cord winding machine for seat belts as claimed in claim 3 wherein: A collecting groove for collecting the steel wire rope after cutting-off is arranged on the workbench (A) and extends upwards and downwards, a collecting box (45) is arranged below the workbench (A) at the position corresponding to the collecting groove, and a protective cover (46) is arranged on the workbench (A) and can cover the cutting-off seat (37) and the collecting box (45).
6. The high speed cord winding machine for seat belts as defined in claim 1, wherein: A supporting assembly (H) is arranged on the workbench (A) between the positioning assembly (C) and the bending assembly (D) and in front of the positioning assembly (C), the supporting assembly (H) comprises a plurality of supporting rods (27) extending forward and backward, the front ends of the supporting rods (27) are arranged on a connecting rod (29) extending leftward and rightward through connecting blocks (28), and the connecting rod (29) is arranged on the workbench (A) through at least two connecting seats (30) arranged leftward and rightward.
7. The high speed cord winding machine for seat belts as claimed in claim 6 wherein: A collecting frame (47) for collecting the pull cable after the winding is arranged on the front side of the workbench (A), and a discharging assembly (J) for discharging the pull cable from the supporting rods (27) is further arranged on the workbench (A).
8. The high speed cord winding machine for seat belts as claimed in claim 7 wherein: The connecting seat (30) is arranged at the positions close to the left and right ends of the connecting rod (29), the discharging assembly (J) is arranged at the middle part of the connecting rod (29), the discharging assembly (J) comprises a discharging cylinder (48) arranged below the workbench (A), the output end of the discharging cylinder (48) is provided with a discharging rod (50) extending forward and backward through a second hinge block (49), the front end of the discharging rod (50) is sleeved on the middle part of the connecting rod (29), and the rear end of the supporting rod (27) is provided with an upwardly inclined anti-segment-falling part (27a).
Citation Information
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Wire core penetrating equipment for manufacturing automobile inhaul cable
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