Cable processing auxiliary peeling machine
By designing an auxiliary cable stripping machine, an automated mechanism is used to automatically peel and collect the cable sheath and metal core, solving the problem of low automation in existing stripping machines and improving the automation and convenience of the equipment.
Patent Information
- Application Number
- CN202211530933.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2022-12-01
- Publication Date
- 2026-02-03
- Estimated Expiration
- 2042-12-01
AI Technical Summary
Existing cable stripping machines have a low degree of automation and cannot effectively collect cable sheaths and metal cores, resulting in a heavy workload for workers.
A cable processing auxiliary stripping machine was designed, comprising a worktable, a take-up reel, a cutting mechanism, an automatic mechanism, a stripping mechanism, a winding mechanism, and a collection frame. The automatic mechanism enables the automatic stripping and collection of the cable sheath and the metal core.
The automation level of the cable sheathing machine has been improved, reducing the number of manual operation steps and enabling efficient collection of cable sheaths and metal cores, thus enhancing the convenience and applicability of the equipment.
Smart Images

Figure CN116092754B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of peeling machines, and more particularly to an auxiliary peeling machine for cable processing. Background Technology
[0002] Discarded cables can be recycled not only for their internal metal cores but also for their outer insulation, typically made of rubber. Therefore, the outer sheath needs to be removed from the cable, a process known as cable stripping, with the sheath and metal cores collected separately. Current cable stripping machines only perform the stripping operation; they do not process or collect the outer insulation. Furthermore, the collection of the stripped metal cores still requires manual handling. This results in low automation, few mechanical steps, a heavy workload for workers, and low practicality for cable stripping machines. Summary of the Invention
[0003] In order to overcome the shortcomings of existing cable stripping machines, such as low automation and inability to collect both the outer sheath and the metal core, this invention provides a highly automated cable processing auxiliary stripping machine that can collect and process the cable sheath after stripping.
[0004] To address the aforementioned technical problems, the technical solution of this invention is as follows: a cable processing auxiliary stripping machine, comprising a worktable, a first take-up reel, a cutting mechanism, an automatic mechanism, a stripping mechanism, a winding mechanism, and a collection frame. A first take-up reel for winding up waste cables is connected to the right side of the worktable. A cutting mechanism capable of cutting the cable sheath is connected to the worktable. An automatic mechanism capable of automating the cutting mechanism is connected to the worktable. A stripping mechanism for stripping the sheath from the metal wire core is connected to the worktable. The worktable is also connected to a winding mechanism for neatly collecting the metal wire core and a collection frame for collecting the sheath.
[0005] Preferably, the cutting mechanism includes an outer plate, a sliding block, a connecting plate, a sliding rod, an elastic element, and a first blade. Two outer plates are fixedly connected to the worktable on the left side of the first take-up reel. Two upper and lower slide rails are provided on the inner sides of the two outer plates facing each other. Sliding blocks are slidably connected between the upper and lower slide rails of the two outer plates. A connecting plate is provided on the right side of the two sliding blocks. The connecting plate has slots corresponding to the positions of the sliding blocks. The protruding arms of the sliding blocks can slide on the slots of the connecting plate and pass through the slots of the connecting plate. A sliding rod is fixedly connected below the part of the protruding arm of the upper sliding block that passes through the connecting plate. The lower part of the sliding rod passes through the protruding arm of the connecting plate. An elastic element is sleeved on the sliding rod. One end of the elastic element is fixedly connected to the protruding arm of the upper sliding block, and the other end of the elastic element is fixedly connected to the protruding arm of the connecting plate. A through hole is also provided between the two slots of the connecting plate. The cable passes through the through hole of the connecting plate. The two sliding blocks are provided with first blades facing each other. The first blades can cut the outer sheath of the cable passing through the connecting plate laterally.
[0006] Preferably, the automatic mechanism includes a motor, a support frame, a shaped disc, and a rotating rod assembly. The motor is connected to the worktable on the right side of the cutting mechanism, the support frame is fixedly connected to the worktable, the shaped disc is rotatably connected to the rear side of the support frame, the output shaft of the motor is connected to the shaped disc through a coupling, and the rotating rod assembly is rotatably connected between the shaped disc and the sliding block of the cutting mechanism. The rotation of the shaped disc will cause the sliding block to move through the rotating rod assembly, thereby driving the first blade to cut the outer sheath of the cable.
[0007] Preferably, the peeling mechanism includes a support plate and a second blade. The support plate is fixedly connected to the worktable on the right side of the cutting mechanism. A replaceable second blade is connected to the right side of the support plate. Both the support plate and the second blade have through holes, through which the cable can pass. A drop frame is provided on the worktable below the second blade.
[0008] Preferably, the winding mechanism includes a fixed frame and a second take-up wheel. The fixed frame is fixedly connected to the worktable on the left side of the stripping mechanism, and the second take-up wheel is rotatably connected to the fixed frame.
[0009] Preferably, the collection frame is slidably connected to the bottom of the workbench surrounding the drop frame.
[0010] Preferably, it also includes a cutting mechanism, which includes a support base, a limiting plate, an electric turntable, and a third blade. The support base is fixedly connected to the worktable between the stripping mechanism and the cutting mechanism. The limiting plate is fixedly connected to the right side of the support base. The electric turntable is fixedly connected to the support base on the left side of the limiting plate. The electric turntable has a groove, and the third blade is slidably connected to the groove. The cable can pass through the entire cutting mechanism, and the third blade can cut the outer sheath of the cable.
[0011] Preferably, the mechanism further includes a rotating mechanism, which comprises a first support, a rotating frame, a limiting block, a moving rod, a second support, a pulley assembly, and a connecting rod. The first support is fixedly connected to the worktable on the front side of the winding mechanism. The rotating frame is rotatably connected between the first support and the fixed frame. The rotating arm of the rotating frame has a protrusion at its end. The rotating frame is fixedly connected to the second take-up wheel. The limiting block is rotatably connected between the first support and the rotating frame. The moving rod is slidably connected inside the limiting block. The top of the moving rod has a U-shaped fork tooth. The fork tooth of the moving rod engages with the protrusion of the rotating frame. The second support is fixedly connected to the worktable. The pulley assembly is connected to the motor on the second support. The output shaft of the motor and the second support are both directly connected to the pulleys in the pulley assembly. The rear side of the pulley in the pulley assembly on the second support is rotatably connected to the connecting rod. The end of the connecting rod is rotatably connected to the moving rod.
[0012] The beneficial effects achieved by this invention are as follows:
[0013] 1. The automatic mechanism and stripping mechanism enable highly automated cable stripping, reducing worker operation steps, lowering the difficulty of operation, and improving the automation level of the stripping machine; the placement frame and winding mechanism enable the stripping machine to collect the metal core and outer sheath at the same time without additional manual operation, thereby improving the convenience of the stripping machine.
[0014] 2. The cutting mechanism can work in conjunction with the slicing mechanism to optimize the use of the peeling mechanism, thereby improving the applicability of the peeling machine and further enhancing its automation and convenience.
[0015] 3. The rotating mechanism enables automated cable movement and can be used in conjunction with other mechanisms such as cutting mechanisms and cleavers to optimize the use of the peeling machine, further improving its automation and convenience. Attached Figure Description
[0016] Figure 1 This is a three-dimensional structural diagram of the present invention.
[0017] Figure 2 This is a three-dimensional structural diagram of the automatic mechanism of the present invention.
[0018] Figure 3 This is a three-dimensional structural diagram of the cutting mechanism and automatic mechanism of the present invention.
[0019] Figure 4 This is a three-dimensional structural diagram of the cutting mechanism of the present invention.
[0020] Figure 5 This is a three-dimensional structural diagram of the peeling mechanism of the present invention.
[0021] Figure 6 This is a three-dimensional structural diagram of the cutting mechanism of the present invention.
[0022] Figure 7 This is a three-dimensional structural diagram of the cutting mechanism and the slitting mechanism of the present invention.
[0023] Figure 8 This is a partial cross-sectional three-dimensional structural schematic diagram of the cutting mechanism of the present invention.
[0024] Figure 9 This is a three-dimensional structural diagram of the winding mechanism of the present invention.
[0025] Figure 10 This is a three-dimensional structural diagram of the collection frame and the drop frame of the present invention.
[0026] Figure 11 This is a three-dimensional structural diagram of the rotating mechanism and motor of the present invention.
[0027] Figure 12This is a three-dimensional structural diagram of the rotating mechanism of the present invention.
[0028] Figure 13 This is a partial three-dimensional structural diagram of the rotating mechanism of the present invention.
[0029] The labels in the attached diagram are as follows: 1-Workbench, 2-First take-up reel, 3-Cutting mechanism, 31-Outer plate, 32-Sliding block, 33-Connecting plate, 34-Sliding rod, 35-Elastic element, 36-First blade, 4-Automatic mechanism, 41-Motor, 42-Support frame, 43-Shaped disc, 44-Rotating rod assembly, 5-Stripping mechanism, 51-Support plate, 52-Second blade, 53-Drop frame, 6-Cutting mechanism, 61-Support base, 62-Limiting disc, 63-Electric turntable, 64-Third blade, 65-Groove, 7-Winding mechanism, 71-Fixed frame, 72-Second take-up reel, 8-Collection frame, 9-Rotating mechanism, 91-First bracket, 92-Rotating frame, 93-Limiting block, 94-Moving rod, 95-Second bracket, 96-Pulley assembly, 97-Connecting rod, 10-Cable. Detailed Implementation
[0030] The present invention will be further described below with reference to the accompanying drawings and embodiments.
[0031] Example 1
[0032] A cable processing auxiliary stripping machine, such as Figures 1-10 As shown, the device includes a workbench 1, a first take-up reel 2, a cutting mechanism 3, an automatic mechanism 4, a stripping mechanism 5, a winding mechanism 7, and a collection frame 8. The right side of the workbench 1 is connected to the first take-up reel 2 for winding up the waste cable 10. The workbench 1 is connected to the cutting mechanism 3, which can cut the outer sheath of the cable 10. The workbench 1 is connected to the automatic mechanism 4, which can automate the cutting mechanism 3. The workbench 1 is connected to the stripping mechanism 5, which strips the outer sheath from the metal wire core. The workbench 1 is also connected to the winding mechanism 7 for neatly collecting the metal wire core and the collection frame 8 for collecting the outer sheath.
[0033] like Figures 1-4As shown, the cutting mechanism 3 includes an outer plate 31, a sliding block 32, a connecting plate 33, a sliding rod 34, an elastic element 35, and a first blade 36. In this embodiment, the elastic element 35 is a spring. Two outer plates 31 are welded to the workbench 1 on the left side of the first take-up reel 2. The two outer plates 31 have two upper and lower slide rails on their opposing inner sides. Sliding blocks 32 are slidably connected between the upper and lower slide rails of the two outer plates 31. A connecting plate 33 is provided on the right side of the two sliding blocks 32. The connecting plate 33 has slots corresponding to the positions of the sliding blocks 32. The extended arms of the sliding blocks 32 can slide on the slots of the connecting plate 33. The cable 10 passes through the slot of the connecting plate 33. The upper sliding block 32 has a sliding rod 34 welded below the part of the extension arm that passes through the connecting plate 33. The lower part of the sliding rod 34 passes through the extension arm of the connecting plate 33. An elastic element 35 is sleeved on the sliding rod 34. One end of the elastic element 35 is welded to the extension arm of the upper sliding block 32, and the other end of the elastic element 35 is welded to the extension arm of the connecting plate 33. A through hole is also provided between the two slots of the connecting plate 33. The cable 10 passes through the through hole of the connecting plate 33. The two sliding blocks 32 are provided with first blades 36 facing each other. The first blades 36 can cut the outer sheath of the cable 10 that passes through the connecting plate 33 laterally.
[0034] like Figures 1-3 As shown, the automatic mechanism 4 includes a motor 41, a support frame 42, a shaped disc 43, and a rotating rod assembly 44. The motor 41 is bolted to the workbench 1 on the right side of the cutting mechanism 3. The support frame 42 is welded to the workbench 1. The shaped disc 43 is rotatably connected to the rear side of the support frame 42. The output shaft of the motor 41 is connected to the shaped disc 43 through a coupling. The rotating rod assembly 44 is rotatably connected between the shaped disc 43 and the sliding block 32 of the cutting mechanism 3. The rotation of the shaped disc 43 will cause the sliding block 32 to move through the rotating rod assembly 44, thereby driving the first blade 36 to cut the outer sheath of the cable 10.
[0035] like Figure 1 and Figure 5 As shown, the peeling mechanism 5 includes a support plate 51 and a second blade 52. The support plate 51 is welded to the workbench 1 on the right side of the cutting mechanism 3. A replaceable second blade 52 is connected to the right side of the support plate 51. Both the support plate 51 and the second blade 52 have through holes, through which the cable 10 can pass. A drop frame 53 is provided on the workbench 1 below the second blade 52.
[0036] like Figure 1 and Figure 9 As shown, the winding mechanism 7 includes a fixed frame 71 and a second take-up wheel 72. The fixed frame 71 is welded to the workbench 1 on the left side of the stripping mechanism 5, and the second take-up wheel 72 is rotatably connected to the fixed frame 71.
[0037] like Figure 1 and Figure 10As shown, the collection box 8 is slidably connected to the bottom of the workbench 1 around the drop box 53.
[0038] In this embodiment, the rear plates of both the first take-up reel 2 and the second take-up reel 72 are detachable to facilitate loading and unloading of the cable 10. First, the discarded cable 10 is wound around the first take-up reel 2. A second blade 52, with a perforation radius matching that of the metal core of the cable 10, is selected. One end of the cable 10 is pulled out and passed sequentially through the cutting mechanism 3 and the stripping mechanism 5. The second blade 52 strips a portion of one end of the cable 10, leaving the outer sheath outside the blade 52. The metal core passes through the support plate 51 of the stripping mechanism 5. Finally, the metal core is wound around the second take-up reel 72. The motor 41 is started, and the output shaft of the motor 41 rotates, driving the shaped disc 43 to rotate. Through the rotation of the rotating rod assembly 44, the sliding block 32 can slide along the track of the slide rail on the outer plate 31. The slide rail is designed as a flat ring that is parallel and interconnected vertically. When the rotating rod assembly 44 causes the upper sliding block 32 to slide... When block 32 slides in the lower part of the upper slide rail, the extended arm of the upper sliding block 32 is close to the end of the through hole in the slot of the connecting plate 33. Most of the sliding rod 34 is below the extended arm of the connecting plate 33. The elastic element 35 is compressed, and the connecting plate 33 drives the lower sliding block 32 to slide together in the upper part of the lower slide rail. The extended arm of the lower sliding block 32 is also close to the end of the through hole in the slot of the connecting plate 33. The two sliding blocks 32 move closer to each other, and the cable 10 passes through the through hole in the connecting plate 33. The two sliding blocks 32 drive the first blade 36 to move closer to the cable 10 and cut the outer sheath of the cable 10 laterally into two parts. When the upper sliding block 32 is moved to the end of the slide rail by the rotating rod assembly 44, the elastic element 35 is compressed. The reset of the mechanism causes the upper sliding block 32 to slide to the upper part of the upper slide rail, and drives the connecting plate 33 to move upward. The lower sliding block 32, pulled by the connecting plate 33, moves laterally and slides along the lower part of the lower slide rail. Even when the sliding block 32 slides on the slide rails that are far apart, it drives the first blade 36 away from the cable 10, preventing it from cutting the cable 10. At this time, by rotating the second take-up wheel 72, the cable 10 is moved to the left a certain distance, pulling the already cut cable 10 out of the cutting range of the cutting mechanism 3. Rotation of the second take-up wheel 72 stops when the sliding block 32 returns to the slide rails that are close together. During the movement of the cable 10, the cable 10 passes through the stripping mechanism 5, and the second... Blade 52 peels off the metal core from the outer sheath that has been horizontally cut into two parts. The peeled outer sheath falls from drop frame 53 into collection frame 8 at the bottom of workbench 1, and the metal core is also wound around the second take-up reel 72. After the outer sheath of the cut cable 10 is peeled off, that is, after the second take-up reel 72 stops rotating, the two sliding blocks 32 return to the slide rails that are close to each other. The cutting mechanism 3 then cuts the next section of cable 10. This enables highly automated stripping of cable 10. After stripping the entire section of cable 10, the back plate of the second take-up reel 72 is removed, the metal core is taken off, the collection frame 8 is pulled out, and the outer sheath is taken out, thus completing the final collection of the metal core and outer sheath.The automatic mechanism 4 and the stripping mechanism 5 enable highly automated stripping of the cable 10, reducing the number of steps for workers, lowering the difficulty of operation, and improving the automation level of the stripping machine. The placement frame and winding mechanism 7 enable the stripping machine to collect the metal core and outer sheath at the same time without the need for additional manual operation, thereby improving the convenience of the stripping machine.
[0039] Example 2
[0040] Based on Example 1, such as Figure 1 and Figures 6-8 As shown, it also includes a cutting mechanism 6, which includes a support base 61, a limiting plate 62, an electric turntable 63, and a third blade 64. The support base 61 is welded on the workbench 1 between the stripping mechanism 5 and the cutting mechanism 3. The limiting plate 62 is connected to the right side of the support base 61. The electric turntable 63 is connected to the support base 61 to the left side of the limiting plate 62. The electric turntable 63 has a sliding groove 65. The third blade 64 is slidably connected to the sliding groove 65. The cable 10 can pass through the entire cutting mechanism 6, and the third blade 64 can cut the outer sheath of the cable 10.
[0041] After placing the cable 10 in the stripping machine and passing it through the cutting mechanism 3, the cable 10 first passes through the cutting mechanism 6, then through the stripping mechanism 5, and finally winds onto the second take-up reel 72. When the motor 41 is started, the cutting mechanism 3 cuts the outer sheath of the cable 10, and at the same time, this section of the cable 10 that has been cut by the cutting mechanism 3 is moved to the left side of the cutting mechanism 6. During this process, the stripping mechanism 5 also strips the outer sheath of this section of the cable 10 from the outside of the metal core wire. When the cutting mechanism 3 has completed the cutting and the sliding blocks 32 are far apart and can no longer cut the cable 10, the electric turntable 63 is started. The electric turntable 63 rotates, and the sliding groove 65 on the electric turntable 63 drives the third blade 64 to squeeze inward, that is, to longitudinally cut the outer sheath of the cable 10. When this section of the cable 10 is moved to the stripping mechanism 5 and the outer sheath is stripped, the outer sheath breaks at this point, but the third blade 64... 4. The metal wire core is not cut; then, under the action of the slide 65, it resets outward and stops cutting the outer sheath of the cable 10. At this time, the electric turntable 63 stops rotating and continues to rotate the second take-up wheel 72. The automatic mechanism 4 drives the sliding blocks 32 to move closer to each other in pairs so that the cutting mechanism 3 continues to cut the uncut cable 10. The cutting mechanism 6 stops cutting, and the cable 10 passes through the cutting mechanism 6 normally. The stripping mechanism 5 peels off the outer sheath of the cut cable 10. At this time, since the outer sheath of the cable 10 has been longitudinally cut, the outer sheath of the cable 10 is broken and collected in the collection frame 8, thereby preventing the outer sheath of the cable 10 from being too long and affecting the collection of the outer sheath. The cycle of the electric turntable 63 cooperating with the motor 41 to drive the sliding blocks 32 to move closer and separate is set to intermittent start and stop of the electric turntable 63, so as not to affect the normal use of other mechanisms, that is, the automation of the cable 10 processing can be further improved. The cutting mechanism 6 can work in conjunction with the cutting mechanism 3 to optimize the use of the peeling mechanism 5, thereby improving the applicability of the peeling machine and further enhancing its automation and convenience.
[0042] like Figure 1 and Figures 11-13As shown, it also includes a rotating mechanism 9, which includes a first support 91, a rotating frame 92, a limiting block 93, a moving rod 94, a second support 95, a pulley assembly 96, and a connecting rod 97. The first support 91 is welded to the workbench 1 on the front side of the winding mechanism 7. The rotating frame 92 is rotatably connected between the first support 91 and the fixed frame 71. A protrusion is provided at the end of the rotating arm of the rotating frame 92. The rotating frame 92 is fixedly connected to the second take-up wheel 72. The limiting block 93 is rotatably connected between the first support 91 and the rotating frame 92. A movable rod 94 is slidably connected inside the position block 93. The top of the movable rod 94 is provided with a U-shaped fork tooth. The fork tooth of the movable rod 94 engages with the protrusion of the rotating frame 92. A second bracket 95 is welded on the worktable 1. A pulley group 96 is connected between the second bracket 95 and the motor 41. The output shaft of the motor 41 and the second bracket 95 are both directly connected to the pulley in the pulley group 96. A connecting rod 97 is rotatably connected to the rear side of the pulley in the pulley group 96 on the second bracket 95. The end of the connecting rod 97 is rotatably connected to the movable rod 94.
[0043] The motor 41 starts, driving the connecting rod 97 to rotate via the pulley assembly 96. When the connecting rod 97 rotates within the upper semicircle, its clockwise rotation drives the moving rod 94 to rotate clockwise. This clockwise rotation of the moving rod 94, through the fork teeth at the top and the protrusion at the end of the rotating arm of the rotating frame 92, causes the rotating frame 92 to rotate clockwise a certain distance. The rotating frame 92 then rotates the second take-up pulley 72, thereby pulling the cable 10 to the left. During this rotation, to ensure the moving rod 94 can rotate normally, the limit block 93 also rotates, and the moving rod 94 slides upward a certain distance. When the connecting rod 97 rotates to the lower... Within the semicircular range, the connecting rod 97 rotates clockwise, causing the moving rod 94 and the limiting block 93 to rotate counterclockwise. Simultaneously, the moving rod 94 slides downwards within the limiting block 93, disengaging the fork teeth of the moving rod 94 from the rotating frame 92. At this point, the rotating frame 92 and the second take-up reel 72 cease rotation, and the cable 10 is no longer pulled. This continues until the connecting rod 97 completes one cycle of rotation. Then, the fork teeth of the moving rod 94 engage with the protrusion at the end of the next rotating arm of the rotating frame 92. As the connecting rod 97 continues to rotate, it causes the rotating frame 92 to rotate automatically and intermittently, simultaneously achieving automatic and intermittent pulling of the cable 10. This mechanism can be used in conjunction with the cutting mechanism 6 and the slitting mechanism 3. The rotating mechanism 9 automates the movement of the cable 10 and can be used in conjunction with the cutting mechanism 6, the slitting machine, and other mechanisms, optimizing the use of the peeling machine and further improving its automation and convenience.
[0044] The embodiments described above are merely preferred embodiments of the present invention, and while the descriptions are specific and detailed, they should not be construed as limiting the scope of the present invention. It should be noted that those skilled in the art can make various modifications, improvements, and substitutions without departing from the concept of the present invention, and these all fall within the scope of protection of the present invention. Therefore, the scope of protection of this patent should be determined by the appended claims.
Claims
1. A cable processing auxiliary stripping machine, characterized in that, The device includes a workbench (1), a first take-up reel (2), a cutting mechanism (3), an automatic mechanism (4), a stripping mechanism (5), a winding mechanism (7), and a collection frame (8). The right side of the workbench (1) is connected to a first take-up reel (2) for winding up waste cable (10). The workbench (1) is connected to a cutting mechanism (3) capable of cutting the outer sheath of the cable (10). The workbench (1) is connected to an automatic mechanism (4) capable of automating the cutting mechanism (3). The workbench (1) is connected to a stripping mechanism (5) for stripping the outer sheath from the metal wire core. The workbench (1) is also connected to a winding mechanism (7) for neatly collecting the metal wire core and a collection frame (8) for collecting the outer sheath. The cutting mechanism (3) includes an outer plate (31), a sliding block (32), a connecting plate (33), a sliding rod (34), an elastic element (35), and a first blade (36). Two outer plates (31) are fixedly connected to the workbench (1) on the left side of the first take-up reel (2). The inner sides of the two outer plates (31) are provided with upper and lower slide rails. The upper and lower slide rails of the two outer plates (31) are slidably connected with sliding blocks (32). The right side of the two sliding blocks (32) is provided with a connecting plate (33). The connecting plate (33) is provided with slots corresponding to the positions of the sliding blocks (32). The extended arms of the sliding blocks (32) can slide on the slots of the connecting plate (33) and pass through the slots of the connecting plate (33). A sliding rod (34) is fixedly connected below the part of the upper sliding block (32) that passes through the connecting plate (33). The lower part of the sliding rod (34) passes through the extended arm of the connecting plate (33). An elastic element (35) is sleeved on the sliding rod (34). One end of the elastic element (35) is fixedly connected to the extended arm of the upper sliding block (32), and the other end of the elastic element (35) is fixedly connected to the extended arm of the connecting plate (33). A through hole is also provided between the two slots of the connecting plate (33). The cable (10) passes through the through hole of the connecting plate (33). The two sliding blocks (32) are provided with first blades (36) facing each other. The first blades (36) can cut the outer sheath of the cable (10) that passes through the connecting plate (33) laterally. The automatic mechanism (4) includes a motor (41), a support frame (42), a shaped disc (43), and a rotating rod assembly (44). The motor (41) is connected to the workbench (1) on the left side of the cutting mechanism (3). The support frame (42) is fixedly connected to the workbench (1). The shaped disc (43) is rotatably connected to the rear side of the support frame (42). The output shaft of the motor (41) is connected to the shaped disc (43) through a coupling. The rotating rod assembly (44) is rotatably connected between the shaped disc (43) and the sliding block (32) of the cutting mechanism (3). The rotation of the shaped disc (43) will cause the sliding block (32) to move through the rotating rod assembly (44), thereby driving the first blade (36) to cut the outer sheath of the cable (10). The peeling mechanism (5) includes a support plate (51) and a second blade (52). The support plate (51) is fixedly connected to the workbench (1) on the left side of the cutting mechanism (3). A replaceable second blade (52) is connected to the right side of the support plate (51). Both the support plate (51) and the second blade (52) have through holes. The cable (10) can pass through the through holes provided on the support plate (51) and the second blade (52). A drop frame (53) is provided on the workbench (1) below the second blade (52). The winding mechanism (7) includes a fixed frame (71) and a second take-up wheel (72). The fixed frame (71) is fixedly connected to the workbench (1) on the left side of the stripping mechanism (5), and the second take-up wheel (72) is rotatably connected to the fixed frame (71). It also includes a cutting mechanism (6) for cutting the cable sheath. The cutting mechanism (6) includes a support base (61), a limiting plate (62), an electric turntable (63) and a third blade (64). The support base (61) is fixedly connected to the worktable (1) between the stripping mechanism (5) and the cutting mechanism (3). The limiting plate (62) is fixedly connected to the left side of the support base (61). The electric turntable (63) is fixedly connected to the support base (61) to the left side of the limiting plate (62). The electric turntable (63) has a groove (65) and the third blade (64) is slidably connected to the groove (65). The cable (10) can pass through the entire cutting mechanism (6), and the third blade (64) can cut the sheath of the cable (10). It also includes a rotating mechanism (9) for rotating the winding mechanism (7). The rotating mechanism (9) includes a first bracket (91), a rotating frame (92), a limiting block (93), a moving rod (94), a second bracket (95), a pulley group (96), and a connecting rod (97). The first bracket (91) is fixedly connected to the workbench (1) on the front side of the winding mechanism (7). The rotating frame (92) is rotatably connected between the first bracket (91) and the fixed frame (71). The rotating arm end of the rotating frame (92) is provided with a protrusion. The rotating frame (92) is fixedly connected to the second take-up wheel (72). The first bracket (91) and the rotating frame (92) are rotatably connected with a limiting block. The block (93) has a sliding connection to a moving rod (94). The top of the moving rod (94) is provided with a U-shaped fork tooth. The fork tooth of the moving rod (94) is engaged with the protrusion of the rotating frame (92). The worktable (1) is fixedly connected to a second bracket (95). The second bracket (95) is connected to the motor (41) via a pulley group (96). The output shaft of the motor (41) and the second bracket (95) are both directly connected to the pulley in the pulley group (96). The rear side of the pulley in the pulley group (96) on the second bracket (95) is rotatably connected to a connecting rod (97). The end of the connecting rod (97) is rotatably connected to the moving rod (94).
2. The cable processing auxiliary stripping machine according to claim 1, characterized in that, The collection box (8) is slidably connected to the bottom of the workbench (1) around the drop box (53).
Citation Information
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