Wire stripping machine with separation structure
By designing a wire stripper with a detachable structure, and utilizing the driving force of the wire feeding wheel set and moving components, stable placement and outer sheath screening of cables are achieved, solving the problem of messy cables in traditional wire strippers and improving material collection efficiency.
Patent Information
- Application Number
- CN202511781622.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-11-29
- Publication Date
- 2026-02-27
AI Technical Summary
Traditional wire stripping machines result in messy cable arrangement after stripping, leading to reduced capacity of the receiving box and requiring additional sorting time.
Design a wire stripper with a separation structure. Through the driving force of the wire feeding wheel group, in conjunction with the moving component and the amplification component, the wire can be stably placed and the outer sheath can be screened. The feeding component is used to separate and collect the cut outer sheath and the wire.
This enabled the orderly placement of cables, reduced manual sorting time, and improved material collection efficiency and equipment utilization.
Smart Images

Figure CN121584440A_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of wire stripping machines, in particular to a wire stripping machine with a separation structure. BACKGROUND
[0002] As the core equipment for processing electric wires and cables, the core function of a wire stripping machine is to efficiently strip the outer insulating material from the metal core wire. To achieve lean and clean processing of cables, wire stripping equipment equipped with a wire skin separation and collection structure has become the mainstream configuration. Such equipment usually sets a special recycling channel near the cutting tool or uses negative pressure adsorption and other methods to try to separate the cut cable outer skin from the core conductor and collect them centrally.
[0003] Taking the middle wire stripping process as an example, after the traditional equipment completes the cutting of the middle insulating layer of the cable, the processed cable is directly transported to the collection frame, which is easy to entangle and kink due to disordered stacking. This not only greatly reduces the actual capacity of the material collection frame, but also requires the operator to spend additional time for manual arrangement and combing before subsequent processing or quality inspection. SUMMARY
[0004] In view of the above or the problem of disordered placement of stripped cables in the prior art, the present application is proposed.
[0005] Therefore, the purpose of the present application is to provide a wire stripping machine with a separation structure.
[0006] To solve the above technical problems, the present application provides the following technical solutions:
[0007] A wire stripping machine with a separation structure, comprising a wire stripping machine body and a wire feeding wheel group arranged on the outer wall of the wire stripping machine body;
[0008] and a moving assembly comprising a driving member arranged inside the wire stripping machine body and an amplifying member arranged outside the driving member;
[0009] wherein the driving member comprises a special-shaped plate arranged inside the wire stripping machine body, a guide block arranged outside the special-shaped plate, and a positioning plate integrally formed on the outer wall of the guide block;
[0010] and the amplifying member comprises a second driving plate and a guide frame arranged on the outer wall of the second driving plate;
[0011] and a feeding assembly comprising a collection frame arranged on the outer wall of the wire stripping machine body, a convex plate integrally formed on the end face of the collection frame, and a first blanking slot opened in the interior of the wire stripping machine body;
[0012] The up and down movement of the wire feeding wheel set provides driving force for the moving assembly, the movement of the wire feeding wheel set is transmitted to the collecting frame through the driving member, the small stroke of the wire feeding wheel set is amplified by the amplifying member, so that the cable after stripping is stably placed by the feeding assembly, and the cut sheath and cable are screened.
[0013] As a preferred scheme of the wire stripping machine with a separation structure, the driving member further comprises a first fixing seat arranged on the inner wall of the wire stripping machine body and a connecting seat arranged on the end face of the wire feeding wheel set, the outer wall of the positioning plate is provided with a through slot, one end of the special-shaped plate is arranged on the inner side of the connecting seat, and the other two ends of the special-shaped plate are arranged on the outer wall of the first fixing seat and the inner side of the through slot respectively.
[0014] As a preferred scheme of the wire stripping machine with a separation structure, the inner wall of the wire stripping machine body is provided with a second fixing seat, the outer wall of the second fixing seat is provided with a guide rod, the guide rod penetrates through the outer wall of the guide block, the outer side of the guide block is provided with a first driving plate, and the end face of the first driving plate is provided with a first rack.
[0015] As a preferred scheme of the wire stripping machine with a separation structure, the inner wall of the wire stripping machine body is provided with a gear, the first rack is in meshing connection with the gear, and the other side of the first driving plate is in meshing connection with a second rack.
[0016] As a preferred scheme of the wire stripping machine with a separation structure, the amplifying member further comprises a first connecting plate arranged on the outer wall of the second rack, the outer wall of the first connecting plate is provided with a first transmission plate and a second transmission plate which are arranged in parallel on the upper side and the lower side, and the outer side of the first connecting plate is further provided with a second connecting plate which is arranged in parallel.
[0017] As a preferred scheme of the wire stripping machine with a separation structure, the second connecting plate is in movable connection with the first transmission plate and the second transmission plate, the end of the first transmission plate is provided with a third connecting plate, the third connecting plate is arranged in parallel with the second connecting plate and is connected with the guide frame, and the guide frame is always kept in horizontal movement by being limited by the wire stripping machine body.
[0018] As a preferred scheme of the wire stripping machine with a separation structure, the outer wall of the second driving plate is provided with a third transmission plate, the third transmission plate and the second transmission plate are arranged in parallel, the third transmission plate is further connected with the end of the second connecting plate and the third connecting plate respectively, and the end face of the second driving plate is provided with a connecting block.
[0019] As a preferred scheme of the wire stripping machine with the separated structure, the feeding assembly further comprises a discharging groove and the second feeding groove, one side of the second feeding groove is designed to be inclined, and the second feeding groove is communicated with the discharging groove.
[0020] As a preferred scheme of the wire stripping machine with the separated structure, the first feeding groove is internally provided with a groove, the end surface of the first feeding groove and the sieve hole are provided with sieve holes, and the first feeding groove is communicated with the second feeding groove through the sieve holes.
[0021] As a preferred scheme of the wire stripping machine with the separated structure, the discharging groove is internally provided with a guide plate matched with the space of the discharging groove, and the lower end surface of the guide plate is arranged on the inner wall of the wire stripping machine body.
[0022] The wire stripping machine with the separated structure has the following beneficial effects: the driving member is used to convert the movement direction of the wire feeding wheel set into the corresponding movement action of the collecting frame, and the amplifying member is used to ensure that the collecting frame has sufficient movement stroke, so that the cable can be placed in a direction, and the cut sheath can be screened and removed. BRIEF DESCRIPTION OF DRAWINGS
[0023] In order to more clearly illustrate the technical solutions of the embodiments of the present application, the drawings needed in the embodiment description will be briefly introduced. Obviously, the drawings in the following description are only some embodiments of the present application, and other drawings can be obtained by those skilled in the art without creative labor.
[0024] Figure 1 It is a whole structure schematic diagram of the wire stripping machine with the separated structure.
[0025] Figure 2 It is a partial structure schematic diagram of the wire stripping machine with the separated structure.
[0026] Figure 3 It is a movement assembly structure schematic diagram of the wire stripping machine with the separated structure.
[0027] Figure 4 It is a driving member structure schematic diagram of the wire stripping machine with the separated structure.
[0028] Figure 5 It is a partial structure schematic diagram of the driving member of the wire stripping machine with the separated structure.
[0029] Figure 6 It is a connection seat structure schematic diagram of the wire stripping machine with the separated structure.
[0030] Figure 7 It is a feeding wheel group structure diagram of a wire stripping machine with a separation structure.
[0031] Figure 8 It is an enlarged piece structure diagram of a wire stripping machine with a separation structure.
[0032] Figure 9 It is a feeding assembly structure diagram of a wire stripping machine with a separation structure.
[0033] Figure 10 It is a collection frame structure diagram of a wire stripping machine with a separation structure.
[0034] In the figure, 1 is a wire stripping machine body; 2 is a wire feeding wheel group; 3 is a moving assembly; 31 is a driving piece; 311 is a first fixed seat; 312 is a special-shaped plate; 313 is a guide block; 314 is a positioning plate; 315 is a through slot; 316 is a connecting seat; 317 is a second fixed seat; 318 is a guide rod; 319 is a first driving plate; 3110 is a first rack; 3111 is a second rack; 3112 is a gear; 32 is an enlarged piece; 321 is a second driving plate; 322 is a first connecting plate; 323 is a first transmission plate; 324 is a second transmission plate; 325 is a second connecting plate; 326 is a third connecting plate; 327 is a third transmission plate; 328 is a guide frame; 329 is a connecting block; 4 is a feeding assembly; 41 is a collection frame; 42 is a convex plate; 43 is a material guiding plate; 44 is a first blanking slot; 45 is a groove; 46 is a second blanking slot; 47 is a discharging slot; 48 is a screen hole. DETAILED DESCRIPTION
[0035] In order to make the above-mentioned objectives, features and advantages of the present application more obvious and easy to understand, the specific embodiments of the present application will be described in detail below with reference to the accompanying drawings.
[0036] In the following description, a lot of specific details are set forth in order to provide a thorough understanding of the present application, but the present application can also be implemented in other ways different from those described herein, and those skilled in the art can make similar generalizations without departing from the concept of the present application, so the present application is not limited to the specific embodiments disclosed below.
[0037] Secondly, the "one embodiment" or "embodiment" referred to herein means that the specific features, structures or characteristics can be included in at least one implementation of the present application. "In one embodiment" appearing in different places in the specification does not mean the same embodiment, nor is it an independent or alternative embodiment that excludes other embodiments.
[0038] Embodiment 1
[0039] Reference Figures 1 to 10For the first embodiment of the application, the embodiment provides a wire stripping machine with a separation structure, which can realize the effect of moving the second rack 3111 horizontally as a driving force by the up and down movement of the wire feeding wheel set 2.
[0040] Specifically, a wire stripping machine with a separation structure includes a wire stripping machine body 1 and a wire feeding wheel set 2 installed on the outer wall of the wire stripping machine body 1. The application takes a device that can realize intermediate wire stripping as an example for illustration. The wire feeding wheel set 2 includes two wire feeding wheels. A cylinder and a servo motor are arranged in the wire stripping machine body 1. The driving of the cylinder and the motor can move in opposite directions or in reverse directions in the vertical direction while rotating, thereby completing the wire feeding action. In order to ensure that the structures do not interfere with each other, the motor can be installed inside the outer connecting rod of the wire feeding wheel to drive the wire feeding wheel to rotate. The wire feeding wheel set 2 not only limits the position but also feeds the wire. After the wire stripping is completed, the wire will be given an outward force due to its own rotating force.
[0041] In addition, the moving assembly 3 includes a driving member 31 arranged inside the wire stripping machine body 1 and an amplifying member 32 arranged outside the driving member 31. The driving member 31 is symmetrically distributed as a whole, which is used to transmit the moving force of the wire feeding wheel set 2 to the amplifying member 32. The amplifying member 32 amplifies the small movement of the wire feeding wheel set 2 to the horizontal movement of the collecting frame 41 with a certain stroke through the connecting rod structure.
[0042] The driving member 31 includes a special-shaped plate 312 arranged inside the wire stripping machine body 1, a guide block 313 arranged outside the special-shaped plate 312, and a positioning plate 314 integrally formed on the outer wall of the guide block 313. The transmission components in the driving member 31 are symmetrically designed according to the design of the two wire feeding wheels, which are connected to the two wire feeding wheels respectively. The special-shaped plate 312 is triangular as a whole, and the three ends are rotationally connected to the corresponding structures. The guide block 313 is always linearly moved in the horizontal direction under the limitation of the guide rod 318. The positioning plate 314 is designed in two groups and located on both sides of the lower end surface of the guide block 313.
[0043] In addition, the amplifying member 32 includes a second driving plate 321 and a guide frame 328 slidingly connected to the outer wall of the second driving plate 321. The second driving plate 321 transmits the moving action of the driving member 31 to the feeding assembly 4. The guide frame 328 is a frame structure, which limits the moving direction of the second driving plate 321.
[0044] And, the feeding assembly 4 comprises a collecting frame 41 slidably connected to the outer wall of the wire stripping machine body 1, a protruding plate 42 integrally formed at the end face of the collecting frame 41, and a first discharging groove 44 opened in the interior of the wire stripping machine body 1; wherein the collecting frame 41 is located outside the wire stripping machine body 1 and bears the task of wire collecting and sheath screening, the protruding plate 42 is located at the bottom of the collecting frame 41 close to the wire feeding wheel set 2 and the upper end face is designed to be inclined at both ends, the first discharging groove 44 is composed of a horizontal section and an inclined section, and the bottom of the inclined section is communicated with the outside, and the protruding plate 42 needs to extend to the projection plane of the wire feeding wheel set 2 to ensure that the sheath can enter the discharging groove 47 when the wire is cut.
[0045] Wherein, the up-down movement of the wire feeding wheel set 2 provides driving force for the moving assembly 3, and the movement of the wire feeding wheel set 2 by the driving part 31 makes the collecting frame 41 move correspondingly, and the smaller stroke of the wire feeding wheel set 2 is amplified by the amplifying part 32, so as to realize the stable placement of the stripped cable by the feeding assembly 4, and the screening of the cut sheath and cable.
[0046] Further, the driving part 31 further comprises a first fixed seat 311 fixedly connected to the inner wall of the wire stripping machine body 1 and a connecting seat 316 fixedly connected to the end face of the wire feeding wheel set 2, the outer wall of the positioning plate 314 is provided with a through groove 315, one end of the special-shaped plate 312 is rotatably connected to the inner side of the connecting seat 316, and the other two ends of the special-shaped plate 312 are rotatably connected to the outer wall of the first fixed seat 311 and the inner side of the through groove 315 respectively. Wherein, the first fixed seat 311 is in a fixed state and limits one end of the special-shaped plate 312, the connecting seat 316 is connected with the wire feeding wheel, so as to drive the special-shaped plate 312 to move synchronously, and since the guide block 313 is horizontally limited, the design of the through groove 315 ensures that the special-shaped plate 312 can shake in the through groove 315 during movement, so as to adapt to the swing of the special-shaped plate 312. It should be noted that a certain length of horizontal groove needs to be opened in the outer wall of the connecting seat 316 to cooperate with the movement of the special-shaped plate 312, and the connecting seat 316 drives the special-shaped plate 312 to rotate during the vertical up-down movement under the allowance of the horizontal groove.
[0047] It should be noted that the inner wall of the wire stripping machine body 1 is fixedly connected with a second fixed seat 317, the outer wall of the second fixed seat 317 is fixedly connected with a guide rod 318, the guide rod 318 penetrates through the outer wall of the guide block 313, the outer side of the guide block 313 is fixedly connected with a first driving plate 319, and the end face of the first driving plate 319 is fixedly connected with a first rack 3110. Wherein, the second fixed seat 317 is also fixed in the interior of the wire stripping machine body 1 and is located at the middle position of the two wire feeding wheels, so as to realize the synchronous pushing of the two transmission components on the upper side and the lower side, and then complete the movement of the first driving plate 319.
[0048] Preferably, the inside of the wire stripping machine body 1 is rotatably connected with a gear 3112, the first rack 3110 is meshingly connected with the gear 3112, and the other side of the first driving plate 319 is meshingly connected with a second rack 3111. Among them, the two sides of the gear 3112 are distributed with the first rack 3110 and the second rack 3111, and since the two racks are distributed in opposite directions, the movement of one side of the rack drives the movement of the other side of the rack in the opposite direction.
[0049] In use, when the upper and lower movement of the wire feeding wheel set 2 in the wire stripping machine body 1, taking the reverse movement of the two wire feeding wheels as an example, when the two wire feeding wheels move reversely, that is, after stripping, the wire feeding, at this time, it will drive the synchronous reverse movement of the two connecting seats 316 in the wire stripping machine body 1, for example, when the bottom connecting seat 316 moves downward, it will drive the special-shaped plate 312 to rotate clockwise with the first fixed seat 311 as the axis, and since the one end of the special-shaped plate 312 connected with the guide block 313 is longer, the clockwise movement of the special-shaped plate 312 will make the guide block 313 move synchronously with the special-shaped plate 312, that is, it has the trend of horizontal movement and upward movement at the same time, and the outer wall of the guide block 313 will always keep horizontal movement along the guide rod 318, that is, it is limited in the horizontal direction;
[0050] During the clockwise movement of the special-shaped plate 312, the guide block 313 will move towards the side close to the amplifying member 32, and the top end of the special-shaped plate 312 will make a small swing in the slot 315 to adapt to the horizontal limitation of the guide block 313, so that the guide blocks 313 on the upper and lower sides synchronously drive the first driving plate 319 to move towards that side, and the first rack 3110 drives the gear 3112 to mesh transmission, at this time, the moving direction of the first rack 3110 is the same as that of the guide block 313, so that the second rack 3111 moves in the opposite direction of the first rack 3110 through the gear 3112, that is, the driving force of the amplifying member 32, and vice versa, when the two wire feeding wheels move towards each other, the second rack 3111 will move towards the direction close to the driving member 31.
[0051] In summary, the up and down clamping action of the wire feeding wheel set 2 in the prior art is used as the initial power source to save energy, and the clockwise and counterclockwise movement of the special-shaped plate 312 realizes different effects, when the two wire feeding wheels move reversely, that is, after stripping, the wire feeding is needed, the second rack 3111 drives the feeding assembly 4 to move towards the side close to the wire feeding wheel set 2, which is convenient for receiving material, when the two wire feeding wheels move towards each other, that is, the wire needs to be clamped for stripping, the second rack 3111 drives the feeding assembly 4 to move away from the wire feeding wheel set 2, which is convenient for feeding.
[0052] Embodiment 2
[0053] Reference Figures 3~8For the second embodiment of the present application, unlike the previous embodiment, this embodiment provides a method of amplifying the smaller stroke of the wire feeding wheel set 2 and transmitting it to the collection frame 41.
[0054] Specifically, the amplifying member 32 further comprises a first connecting plate 322 rotatably connected to the outer wall of the second rack 3111, and parallel first and second transmission plates 323 and 324 rotatably connected to the outer wall of the first connecting plate 322. The outer side of the first connecting plate 322 is also provided with a second connecting plate 325. The first connecting plate 322 connects the second rack 3111 and the amplifying member 32, the first and second transmission plates 323 and 324 are parallel, the length of the first transmission plate 323 is greater than that of the second transmission plate 324, the bottom of the first transmission plate 323 is connected to the center of the first connecting plate 322, the bottom of the second transmission plate 324 is connected to the end of the bottom of the first connecting plate 322, and the second connecting plate 325 is parallel to the first connecting plate 322 and has a length greater than that of the first connecting plate 322.
[0055] Further, the second connecting plate 325 is movably connected to the first and second transmission plates 323 and 324, the end of the first transmission plate 323 is rotatably connected to a third connecting plate 326, the third connecting plate 326 is parallel to the second connecting plate 325 and rotatably connected to a guide frame 328, and the guide frame 328 is always kept horizontal movement by the limiting of the wire stripping machine body 1. The top end of the second connecting plate 325 is connected to the center of the first transmission plate 323, the top end of the second transmission plate 324 is movably connected to one side near the top of the second connecting plate 325, the top end of the third connecting plate 326 is movably connected to the top end of the first transmission plate 323, and one side near the bottom thereof is connected to the guide frame 328, and the guide frame 328 realizes the guiding effect through a guide rail structure or other connecting structure and always moves horizontally at the same height as the second rack 3111.
[0056] Preferably, the outer wall of the second driving plate 321 is rotatably connected to a third transmission plate 327, the third transmission plate 327 is parallel to the second transmission plate 324, and the end of the third transmission plate 327 is rotatably connected to the second and third connecting plates 325 and 326, respectively. The end surface of the second driving plate 321 is fixedly connected to a connecting block 329. The center of the third transmission plate 327 is connected to the third connecting plate 326, and the upper and lower ends thereof are rotatably connected to the second driving plate 321 and the second connecting plate 325, respectively. The movement stroke of the second rack 3111 is amplified by the cooperation of the multiple connecting plates and transmission plates, and the amplified stroke is transmitted to the collection frame 41 by the second driving plate 321.
[0057] The remaining structures are the same as those of the first embodiment.
[0058] In use, taking the reverse movement of the two wire feeding wheels as an example, since the driving member 31 drives the second rack 3111 to move away from the wire feeding wheel set 2, the first connecting plate 322 is synchronously moved by the movement of the second rack 3111, and since the first connecting plate 322, the first transmission plate 323, the second transmission plate 324, the second connecting plate 325 and the third connecting plate 326 are all rotationally connected with each other, as the position of the first connecting plate 322 gradually tends to be horizontal, the first transmission plate 323 and the second transmission plate 324 are synchronously caused to tend to be horizontal, and the two transmission plates and the second connecting plate 325 and the third connecting plate 326 together form a scissor structure, the third connecting plate 326 is connected with the guide frame 328, and the movement of the first connecting plate 322 causes the second connecting plate 325 and the third connecting plate 326 to be synchronously opened, and the two connecting plates are also synchronously connected with the third transmission plate 327, and as the third transmission plate 327 moves while cooperating with the guiding effect of the limiting position guide frame 328, the second driving plate 321 is further caused to move away from the wire feeding wheel set 2, and the small-amplitude movement of the second rack 3111 is converted into the movement of the connecting block 329 with a certain stroke by the connection transmission between the multiple connecting plates and transmission plates.
[0059] In summary, the movement of the second rack 3111 in the driving member 31 drives the multiple connecting plates and transmission plates to perform a transmission action, converts small-amplitude movement into large-amplitude movement, realizes stroke amplification, ensures that the collecting frame 41 has a certain movement stroke, and thus completes the material receiving and feeding action.
[0060] Embodiment 3
[0061] Reference Figure 9 and Figure 10 The third embodiment of the present application is different from the previous embodiment, and provides a method for automatically collecting and pushing the cut sheath of an electric wire.
[0062] Specifically, the feeding assembly 4 further comprises a discharging groove 47 and a second discharging groove 46 which are arranged in the collecting frame 41, one side of the second discharging groove 46 is designed to be inclined, and the second discharging groove 46 is in communication with the discharging groove 47. The discharging groove 47 is in a horizontal state, is located at the bottom of the collecting frame 41 and is in communication with the outside, and the upper end surface of the second discharging groove 46 is parallel to the first discharging groove 44 and the side away from the convex plate 42 is also designed to be inclined, so as to facilitate the sheath entering the first discharging groove 44 to enter the second discharging groove 46 and the discharging groove 47.
[0063] Further, the first downcomer 44 is internally provided with a groove 45, and the end face of the first downcomer 44 and the sieve hole 48 are both provided with the sieve hole 48, and the first downcomer 44 is communicated with the second downcomer 46 through the sieve hole 48. Among them, the groove 45 is opened at the bottom of the first downcomer 44 at the same time, and the groove 45 needs to have a certain size to ensure that most of the wires can match, so that the wires can slide down along the groove 45, and the sieve hole 48 is arranged on the convex plate 42 and the first downcomer 44, and the sieve hole 48 on the first downcomer 44 only needs to be in the top section, and the aperture of the sieve hole 48 needs to ensure that the wire sheath can pass smoothly, so as to realize the centralized collection of the sheath.
[0064] Preferably, the discharge chute 47 is internally provided with a material guide plate 43 matched with the space of the discharge chute 47, and the lower end face of the material guide plate 43 is fixedly connected to the inner wall of the wire stripping machine body 1. Among them, the material guide plate 43 is fixed on the wire stripping machine body 1, the collecting frame 41 is driven to move horizontally by the moving assembly 3, and the material guide plate 43 is in a fixed state, so that the relative movement between the two completes the centralized pushing treatment and collection of the sheath in the discharge chute 47.
[0065] The rest of the structure is the same as example 2.
[0066] In use, when the two wire feeding wheels move in opposite directions, at this time, the wire feeding wheel set 2 releases the clamping control of the wire, and the stripping is completed, and at the same time, a conveying force is applied to the wire. As known from examples one and two, when the two wire feeding wheels move in opposite directions, the connecting block 329 will drive the collecting frame 41 to move away from the wire feeding wheel set 2, and before that, the collecting frame 41 is located in the middle position of the wire feeding wheel set 2. When the stripping is completed, the wire enters the first downcomer 44 in the collecting frame 41, and one side of the first downcomer 44 is in an inclined state, so that the cut wire will fall, and at the same time, the collecting frame 41 moves outward, and the triggering of the magnifying piece 32 will drive the collecting frame 41 to move to the farthest place, and the wire collecting device is arranged at the place;
[0067] And in the process of stripping the wire, the sheath is divided into two parts at this time, one part enters the discharge chute 47 through the screen hole 48 on the surface of the convex plate 42, and the other part enters the first discharge chute 44 with the wire. Since the first discharge chute 44 is also provided with a screen hole 48 in the front half, the sheath in this part enters the second discharge chute 46 through the screen hole 48, and then enters the discharge chute 47. The two parts of the sheath are collected in the discharge chute 47, and in the initial state, the guide plate 43 is located at the bottom end of the second discharge chute 46, so the guide plate 43 also has a limiting protection effect. When the collection frame 41 moves outward, the guide plate 43 does not move, and the movement of the collection frame 41 will cause the sheath in the discharge chute 47 to be pushed out of the collection frame 41 by the guide plate 43. Conversely, when the two wire feeding wheels approach each other, the collection frame 41 approaches the wire feeding wheel set 2 to complete the material receiving operation.
[0068] In summary, when the two wire feeding wheels clamp the wire, the stripping operation is performed at this time, the collection frame 41 approaches the wire feeding wheel set 2 to concentrate the sheath and the wire, when the two wire feeding wheels are loosened, the stripping work is completed, the cable is sent away, the collection frame 41 collects the sheath and the wire, and moves away from the wire feeding wheel set 2. The two discharge chutes and the guide plate 43 are used to synchronize the concentrated and orderly placement of the wire and the separation of the sheath and the wire, and the sheath is concentrated and screened.
[0069] It should be noted that the above embodiments are only used to illustrate the technical solutions of the present application and are not limiting. Although the present application has been described in detail with reference to the preferred embodiments, those skilled in the art should understand that the technical solutions of the present application can be modified or replaced by equivalents without departing from the spirit and scope of the technical solutions of the present application, which should be covered by the scope of the claims of the present application.
Claims
1. A wire stripping machine with a separation structure, characterized in that: include, The wire stripper body (1) and the wire feeding wheel assembly (2) disposed on the outer wall of the wire stripper body (1); and, The moving component (3) includes a drive unit (31) disposed inside the wire stripper body (1) and an enlarger unit (32) disposed outside the drive unit (31); wherein, The driving component (31) includes a shaped plate (312) disposed inside the wire stripper body (1), a guide block (313) disposed outside the shaped plate (312), and a positioning plate (314) integrally formed on the outer wall of the guide block (313); and, The enlarged component (32) includes a second drive plate (321) and a guide frame (328) disposed on the outer wall of the second drive plate (321); and, The feeding assembly (4) includes a collection frame (41) disposed on the outer wall of the wire stripper body (1), a protruding plate (42) integrally formed on the end face of the collection frame (41), and a first feeding groove (44) opened inside the wire stripper body (1); wherein, The up-and-down movement of the wire feeding wheel assembly (2) provides driving force for the moving component (3). The movement of the wire feeding wheel assembly (2) by the driving component (31) causes the collecting frame (41) to make corresponding movement. The small stroke of the wire feeding wheel assembly (2) is amplified by the amplifying component (32), thereby enabling the feeding component (4) to stably place the stripped cable and screen the cut outer sheath and cable.
2. The wire stripper with a separation structure as described in claim 1, characterized in that: The drive unit (31) further includes a first fixed seat (311) disposed on the inner wall of the wire stripper body (1) and a connecting seat (316) disposed on the end face of the wire feeding wheel group (2). The outer wall of the positioning plate (314) is provided with a through groove (315). One end of the irregular plate (312) is disposed on the inner side of the connecting seat (316), and the other two ends of the irregular plate (312) are respectively disposed on the outer wall of the first fixed seat (311) and the inner side of the through groove (315).
3. The wire stripper with a separation structure as described in claim 2, characterized in that: The inner wall of the wire stripper body (1) is provided with a second fixed seat (317), and the outer wall of the second fixed seat (317) is provided with a guide rod (318). The guide rod (318) passes through the outer wall of the guide block (313). The outer side of the guide block (313) is provided with a first drive plate (319), and the end face of the first drive plate (319) is provided with a first rack (3110).
4. The wire stripper with a separation structure as described in claim 3, characterized in that: The wire stripper body (1) is equipped with a gear (3112), the first rack (3110) is meshed with the gear (3112), and the other side of the first drive plate (319) is meshed with a second rack (3111).
5. The wire stripper with a separation structure as described in claim 4, characterized in that: The enlarged component (32) also includes a first connecting plate (322) disposed on the outer wall of the second rack (3111). The upper and lower sides of the outer wall of the first connecting plate (322) are provided with a first transmission plate (323) and a second transmission plate (324) distributed in parallel. The outer side of the first connecting plate (322) is also provided with a second connecting plate (325) in parallel.
6. The wire stripper with a separation structure as described in claim 5, characterized in that: The second connecting plate (325) is movably connected to the first transmission plate (323) and the second transmission plate (324). The end of the first transmission plate (323) is provided with a third connecting plate (326). The third connecting plate (326) is arranged parallel to the second connecting plate (325) and connected to the guide frame (328). The guide frame (328) is limited by the wire stripping machine body (1) and always maintains horizontal movement.
7. The wire stripper with a separation structure as described in claim 6, characterized in that: The outer wall of the second drive plate (321) is provided with a third transmission plate (327), which is arranged in parallel with the second transmission plate (324). The third transmission plate (327) is also connected to the ends of the second connecting plate (325) and the third connecting plate (326), respectively. The end face of the second drive plate (321) is provided with a connecting block (329).
8. The wire stripper with a separation structure as described in claim 7, characterized in that: The feeding assembly (4) also includes a discharge trough (47) and a second discharge trough (46) opened inside the collection frame (41). One side of the second discharge trough (46) is inclined and the second discharge trough (46) is connected to the discharge trough (47).
9. The wire stripper with a separation structure as described in claim 8, characterized in that: The first feeding trough (44) has a groove (45) inside. The end faces of the first feeding trough (44) and the sieve hole (48) are both provided with sieve holes (48). The first feeding trough (44) is connected to the second feeding trough (46) through the sieve hole (48).
10. The wire stripper with a separation structure as described in claim 9, characterized in that: The discharge trough (47) is provided with a guide plate (43) that is adapted to the space of the discharge trough (47), and the lower end face of the guide plate (43) is provided on the inner wall of the wire stripping machine body (1).