Rapid cable wiring device for electrical automation
By combining the design of the moving docking component and the ring cutting component, the problem of unstable cable sheath cutting is solved, achieving stable docking and rapid removal of the cable sheath, thus improving the quality and efficiency of wiring.
Patent Information
- Application Number
- CN202520057813.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-10
- Publication Date
- 2026-01-02
- Estimated Expiration
- 2035-01-10
AI Technical Summary
In existing technologies, the cutting of cable sheaths is unstable, resulting in inconsistent lengths and uneven edges, which affects the quality and efficiency of wiring.
The design employs a combination of a moving docking component and a ring-cutting component. The cutting assembly is driven by a motor-driven connecting rod and a sprocket, enabling stable docking and rapid cutting of the cable sheath.
It enables stable connection and rapid removal of cable sheaths, avoiding problems such as inconsistent lengths and uneven edges, and improving the quality and efficiency of wiring.
Smart Images

Figure CN223757836U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model belongs to cable quick wiring technical field, concretely is a kind of for electrical automation cable quick wiring device. BACKGROUND
[0002] Usually, the cable is transmitted to the designated place by copper wire, and the copper wire is wrapped with insulating plastic. Usually, two cables are aligned and connected manually. When the cable is manually grabbed, the connection process is not stable, the efficiency is low, and the cable sheath removal is an important preliminary preparation work for wiring. Usually, manual cutting needs to rely on manpower to operate with tools, which can easily cause the cable sheath cutting length to be inconsistent, the edge to be irregular, etc. This will bring difficulties to the subsequent wiring work, affect the wiring quality, and reduce the efficiency of wiring.
[0003] According to the authorized publication No. CN213278676U, a kind of cable wiring can be quickly connected with device, by installing auxiliary group, auxiliary group is used for quickly completing the work of cable binding, by the cylindrical hole of the center of the top end of outer cover, the plug-in rod can be rotatably connected in the inside of cylindrical hole, and the clamping frame is fixedly welded at one end of plug-in rod, so the clamping frame can be freely rotated, the insert buckle is fixedly connected at the top of one end of clamping frame, and the clamping frame is rotated to the limit position and the top surface of fixed seat is attached, so when the clamping frame is rotated, the insert buckle can be inserted into the plug-in slot, so that the cable can be buckled between the clamping frame and the fixed seat, the limiting frame is fixedly welded on the side of clamping frame, the film can be rotated on the limiting frame, and the screw rod fixedly connected at one end of the fixed disc is screwed into the limiting frame, so that the film can be limited on the limiting frame, so that the film can be prevented from falling off from the limiting frame when rotating, and the two ends of the outer cover are set at 45° slope, which can prevent the support from being damaged when dragging the cable.
[0004] In the above patent, the function of cable alignment wiring is realized, but it cannot stably dock and quickly and stably remove the cable sheath, avoid the problem of inconsistent cutting length of cable sheath and irregular edge, bring difficulties to the subsequent wiring work, affect the wiring quality and reduce the efficiency of wiring. Therefore, we propose a kind of electrical automation cable quick wiring device. Utility model content
[0005] The utility model aims at providing a kind of electrical automation cable quick wiring device to solve the problems raised in the above background.
[0006] To achieve the above object, the utility model provides the following technical scheme: A kind of electrical automation cable quick wiring device for electrical automation, including base, base top is provided with square shell, and the inner cavity of square shell is provided with mobile docking component, and the top of the execution end of mobile docking component is symmetrically provided with two groups of same structure's ring cutting component.
[0007] Preferably, the mobile docking component includes a bracket disposed in the inner cavity of the square shell, the bracket is mounted with a first motor, the execution end of the first motor is connected with a first connecting round rod, the first connecting round rod is hinged with a horizontal plate, the two ends of the horizontal plate are each hinged with two groups of square connecting rods of the same structure, the two groups of square connecting rods are each hinged with a sliding block of the same structure, and the two sides of the inner wall of the sliding block are each symmetrically connected with two groups of sliding round rods of the same structure.
[0008] Preferably, the ring cutting component includes a square support sliding block disposed on the top of the sliding block, one side of the top of the square support sliding block is mounted with a second motor, the execution end of the second motor is connected with a sprocket, the sprocket is sleeved with a chain belt on the outer periphery, the other end of the chain belt is sleeved with a rotating sprocket disc, the rotating sprocket disc is rotatably connected with a first bearing member at the center position, one side of the outer wall of the rotating sprocket disc away from the center position is provided with a round rod, the one end of the round rod is provided with a cutter assembly, the inner wall of the first bearing member is provided with a hollow sleeve, one end of the hollow sleeve extends to one side of the outer wall of the rotating sprocket disc, the other end of the hollow sleeve extends to one end of the outer wall of the square support sliding block, and the two ends of the outer wall of the hollow sleeve are symmetrically provided with two groups of fixing members of the same structure.
[0009] Preferably, the cutter assembly includes a square block disposed on one end of the round rod, the one side of the bottom of the square block is provided with a first threaded rod, one end of the first threaded rod is threadedly connected with a threaded cap, the outer wall of the first threaded rod is provided with a square sliding block, the top of the square sliding block is provided with a square groove on both sides, one side of the bottom of the square sliding block is provided with a second connecting round rod, one end of the second connecting round rod is rotatably connected with a second bearing member, and the outer wall of the second bearing member is provided with a ring cutter blade.
[0010] Preferably, the fixing member includes a round surface support block provided on the outer wall of the hollow sleeve, the two sides of the outer wall of the round surface support block are each threadedly connected with two groups of second threaded rods of the same structure, one end of the second threaded rod is provided with an arc-shaped fixed rubber block, one end of the two groups of second threaded rods extends to the inner cavity of the hollow sleeve, and the outer side wall of the execution end of the two groups of arc-shaped fixed rubber blocks is provided with a cable tube.
[0011] Preferably, the top of the square shell is provided with a support sliding groove matched with the square support sliding block.
[0012] Compared with the prior art, the utility model discloses the beneficial effect is: the utility model discloses the stable docking and the quick stable cutting of cable sheath through the mobile docking part cooperation ring cutting part, avoid the cable sheath cutting length inconsistency, the edge is not neat problem, bring the difficulty to subsequent wiring work, influence wiring quality, reduce the efficiency of wiring, wherein, through the first motor execution end drive the connection of first connection round stick and rotate, the rotation of first connection round stick drive articulated horizontal version and rotate, and the horizontal version rotates and drive two ends articulated two groups of square connecting rods of same structure and rotate, the rotation of two groups of square connecting rods drive the sliding support of two groups of sliding round rods of same structure that the sliding block of same structure that articulated all has on the both sides of inner wall all symmetrical sliding connection, and two groups of square connecting rods are connected respectively in two groups of sliding block bottom opposite sides, and two groups of sliding blocks drive the linear movement of two groups of ring cutting parts of same structure that top setting is mutually close or mutually far apart and expand, the linear movement of mutually close docking of cable is stable, and through the second motor execution end drive the connection of sprocket and rotate, the rotation of sprocket drive the rotation of chain belt that is equipped with, and the chain belt drive the support rotation of another end rotating sprocket disc that is equipped with in the outer ring wall of first bearing piece, and the inner ring of first bearing piece is fixed in the outer wall of hollow sleeve, further rotating sprocket disc drive the rotation of round stick that sets up on the side far from the center position, and the rotation of cutter assembly that sets up on one end of round stick, it is convenient for the quick stable cutting of cable, the square groove that sets up on both sides of square sliding block top makes square sliding block on first screw rod outer wall can slide up or down and adjust, and the up or down sliding adjustment of square sliding block also will drive second bearing piece and second bearing piece outer wall setting up ring cutting blade that one end outer wall rotation connection of second connection round stick, and the height of ring cutting blade is adjusted to adapt to the cable of different sizes, and two groups of second screw rods of same structure that are connected with the outer wall of both sides of round surface support block are screwed through the rotation and drive two groups of arc fixed rubber blocks that set up all and resist the cable pipe, it is convenient for the support fixed of cable of different sizes, and the support sliding groove that sets up with square support sliding block matching is convenient for the support sliding of ring cutting part through the square shell top. BRIEF DESCRIPTION OF DRAWINGS
[0013] Figure 1 It is structure schematic diagram of the utility model;
[0014] Figure 2 It is structure cross section schematic diagram of the utility model;
[0015] Figure 3 It is ring cutting part structure schematic diagram of the utility model;
[0016] Figure 4The utility model discloses a fixed part structure schematic view.
[0017] Figure 5 The utility model discloses a cutter assembly structure schematic view.
[0018] In the drawing: 1, base, 2, square shell, 21, support sliding slot, 3, mobile butt joint part, 31, support, 32, first motor, 33, first connection round bar, 34, horizontal version, 35, square connecting rod, 36, sliding block, 37, sliding round bar, 4, ring cutting part, 41, second motor, 42, chain wheel, 43, chain belt, 44, rotating chain wheel disc, 45, hollow sleeve, 46, first bearing piece, 47, fixed part, 471, round face support block, 472, second threaded rod, 473, arc fixed rubber block, 474, cable tube, 48, round bar, 49, cutter assembly, 491, square block, 492, first threaded rod, 493, threaded cap, 494, square sliding block, 495, second connection round bar, 496, second bearing piece, 497, ring cutter blade, 498, square groove. DETAILED DESCRIPTION
[0019] The technical solutions in the embodiments of the utility model will be clearly and completely described below with reference to the drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, rather than all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without creative work fall within the scope of the utility model.
[0020] Please refer to Figures 1-5 As mentioned in the background, the prior art realizes the function of cable alignment in the above patent, but it cannot stably butt joint and quickly and stably cut off the cable sheath, avoid the problem of inconsistent cutting length and irregular edge of the cable sheath, bring difficulty to subsequent wiring work, affect wiring quality and reduce the efficiency of wiring. The utility model provides a technical scheme: including base 1, the top of base 1 is provided with square shell 2, the inner cavity of square shell 2 is provided with mobile butt joint part 3, the execution end top of mobile butt joint part 3 is provided with two groups of ring cutting part 4 of the same structure symmetrically, the cable sheath is stably butt joint and quickly and stably cut off through mobile butt joint part 3 and ring cutting part 4, the problem of inconsistent cutting length and irregular edge of the cable sheath is avoided, difficulty is brought to subsequent wiring work, wiring quality is affected, and the efficiency of wiring is reduced.
[0021] Please refer to Figures 1-2As shown, the mobile docking component 3 includes a bracket 31 arranged in the inner cavity of the square shell 2, the bracket 31 is installed with a first motor 32, the first motor 32 is connected with a first connecting round rod 33 at the execution end, the first connecting round rod 33 is hinged with a horizontal plate 34, the horizontal plate 34 is hinged with two groups of square connecting rods 35 of the same structure at both ends, the two groups of square connecting rods 35 are hinged with sliding blocks 36 of the same structure, the inner wall of the sliding block 36 is symmetrically connected with two groups of sliding round rods 37 of the same structure at both sides, the first connecting round rod 33 is driven to rotate by the first motor 32 at the execution end, the rotation of the first connecting round rod 33 drives the horizontal plate 34 hinged to rotate, and the rotation of the horizontal plate 34 drives the two groups of square connecting rods 35 hinged at both ends to rotate, the rotation of the two groups of square connecting rods 35 drives the sliding blocks 36 hinged of the same structure to slide and support on the outer wall of the two groups of sliding round rods 37 of the same structure symmetrically connected at both sides of the inner wall, and the two groups of square connecting rods 35 are respectively connected to the opposite side of the bottom of the two groups of sliding blocks 36, the two groups of sliding blocks 36 drive the two groups of ring cutting components 4 arranged at the top to move linearly to each other close or linearly to each other away, which is beneficial to the stable docking of the cables.
[0022] Please refer to Figures 2-3 As shown, the ring cutting component 4 includes a square support sliding block 40 arranged at the top of the sliding block 36, a second motor 41 is installed at one side of the top of the square support sliding block 40, a sprocket 42 is connected at the execution end of the second motor 41, a chain belt 43 is sleeved on the outer periphery of the sprocket 42, a rotating sprocket disc 44 is sleeved at the other end of the chain belt 43, a first bearing member 46 is rotatably connected at the center position of the rotating sprocket disc 44, a round rod 48 is arranged at the outer wall of the rotating sprocket disc 44 away from the center position, a cutter assembly 49 is arranged at one end of the round rod 48, a hollow sleeve 45 is arranged in the inner wall of the first bearing member 46, one end of the hollow sleeve 45 extends to one side of the outer wall of the rotating sprocket disc 44, and the other end of the hollow sleeve 45 extends to one end of the outer wall of the square support sliding block 40, two groups of fixing members 47 of the same structure are symmetrically arranged at the outer wall of the two ends of the hollow sleeve 45, and the sprocket 42 is driven to rotate by the second motor 41 at the execution end, the rotation of the sprocket 42 drives the chain belt 43 sleeved on the outer periphery to rotate, the chain belt 43 in turn drives the rotating sprocket disc 44 sleeved at the other end to rotate and supported by the outer ring wall of the first bearing member 46, and the inner ring of the first bearing member 46 is fixed to the outer wall of the hollow sleeve 45, further rotating the sprocket disc 44 drives the round rod 48 arranged away from the center position to rotate, and the cutter assembly 49 arranged at one end of the round rod 48 is also driven to rotate, which is convenient for quickly and stably cutting the cable.
[0023] Please refer to Figure 5As shown, the cutter assembly 49 includes a square block 491 arranged at one end of the round rod 48, a first threaded rod 492 arranged at one side of the bottom of the square block 491, a threaded cap 493 threadedly connected at one end of the first threaded rod 492, a square sliding block 494 arranged on the outer wall of the first threaded rod 492, square grooves 498 opened at the top of both sides of the square sliding block 494, a second connecting round rod 495 arranged at one side of the bottom of the square sliding block 494, a second bearing 496 rotatably connected at one end of the outer wall of the second connecting round rod 495, and a ring cutter 497 arranged on the outer wall of the second bearing 496. The square grooves 498 opened at the top of both sides of the square sliding block 494 allow the square sliding block 494 to slide up or down on the outer wall of the first threaded rod 492 for adjustment. The upward or downward sliding adjustment of the square sliding block 494 also drives the second connecting round rod 495, the second bearing 496 rotatably connected at one end of the outer wall of the second connecting round rod 495, and the ring cutter 497 arranged on the outer wall of the second bearing 496. The threaded cap 493 threadedly connected at one end of the first threaded rod 492 is fixed by abutting against the outer sidewall of the square sliding block 494 through rotation, thereby facilitating adjustment of the height of the ring cutter 497 to adapt to cables of different sizes.
[0024] Please refer to Figure 4 As shown, the fixing member 47 includes a circular face support block 471 arranged on the outer wall of the hollow sleeve 45, two groups of second threaded rods 472 of the same structure threadedly connected at both sides of the outer wall of the circular face support block 471, arc-shaped fixed rubber blocks 473 arranged at one end of the second threaded rods 472, the two groups of second threaded rods 472 extending into the inner cavity of the hollow sleeve 45 at one end, and cable tubes 474 arranged on the outer sidewall of the execution end of the two groups of arc-shaped fixed rubber blocks 473. The two groups of arc-shaped fixed rubber blocks 473 are driven to abut against the cable tubes 474 by rotating the two groups of second threaded rods 472 threadedly connected at both sides of the outer wall of the circular face support block 471, thereby facilitating support and fixation of cables of different sizes.
[0025] Please refer to Figures 1-2 As shown, the square shell 2 has a support sliding groove 21 opened at the top thereof and matched with the square support sliding block 40. The support sliding groove 21 opened at the top of the square shell 2 facilitates sliding support of the ring cutting member 4.
[0026] Working principle: the user will be two groups of cable required wiring pipe 474 is inserted into the hollow sleeve 45, through the outer wall of both sides of the circular face support block 471 are threadedly connected with two groups of the same structure of the second threaded rod 472 by manual rotation drive are provided with two groups of arc-shaped fixed rubber block 473 rotating abutment cable pipe 474 outer wall, is favorable to the support and fixation of different sizes of cable, and then through the first motor 32 execution end drive connected with the first connecting round bar 33 rotating, the rotation of the first connecting round bar 33 drive articulated with horizontal plate 34 rotating, while the horizontal plate 34 rotating drive both ends are hinged with the same structure of two groups of square connecting rod 35 rotating, the rotation of the two groups of square connecting rod 35 drive both ends are hinged with the same structure of the slider 36 in the inner wall both sides are symmetrically connected with two groups of the same structure of the sliding round bar 37 outer wall sliding support, and two groups of square connecting rod 35 are connected to the bottom of two groups of slider 36 opposite side, two groups of slider 36 drive the top provided with two groups of the same structure of the ring cutting component 4 linearly close to each other or linearly away from each other to open the linear movement, is favorable to the stable mutual approach of the cable, the square shell 2 top is provided with support sliding groove 21 matched with square support slider 40 for supporting the sliding of ring cutting component 4;
[0027] Further through the second motor 41 execution end drive connected with the sprocket 42 rotating, the rotation of the sprocket 42 drive the chain belt 43 rotating, the chain belt 43 also drive the other end of the rotating sprocket disc 44 in the first bearing 46 outer circle wall rotating support, and the first bearing 46 inner circle is fixed in the hollow sleeve 45 outer wall, further rotating sprocket disc 44 drive away from the center position side provided with round bar 48 rotating, while the round bar 48 drive one end provided with cutter assembly 49 rotating, wherein when the second bearing 496 outer wall is provided with ring cutter blade 497 rotating drive at the same time, the ring cutter blade 497 will be through the second bearing 496 rotating, when the cable outer wall is contacted, the friction will be generated, which is conducive to the quick and stable removal of the cable sheath, further through the square groove 498 provided on both sides of the top of the square slider 494, the square slider 494 can slide up or down on the outer wall of the first threaded rod 492, the upward or downward sliding adjustment of the square slider 494 will also drive the second connecting round bar 495 one end outer wall rotating connected with the second bearing 496 and the second bearing 496 outer wall provided with ring cutter blade 497, and the first threaded rod 492 one end threaded connected with the threaded cap 493 is fixed by rotating and abutting on the outer side wall of the square slider 494, which is conducive to adjusting the height of the ring cutter blade 497 to adapt to different sizes of cable, convenient operation.
[0028] Although the embodiments of the present application have been shown and described, it is to be understood that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present application, the scope of which is defined by the appended claims and their equivalents.
Claims
1. An electrical automation cable quick wiring device, characterized by: Including base (1), the top of base (1) is provided with square shell (2), the inner cavity of square shell (2) is provided with mobile docking component (3), the top of the execution end of mobile docking component (3) is provided with two groups of ring cutting components (4) of same structure.
2. An electrical automation cable quick wiring device according to claim 1, characterized in that: The mobile docking component (3) includes a bracket (31) disposed in the inner cavity of the square shell (2), the bracket (31) is provided with a first motor (32), the first motor (32) is provided with a first connecting round rod (33), the first connecting round rod (33) is provided with a horizontal plate (34), the horizontal plate (34) is provided with two groups of square connecting rods (35) of same structure at both ends, the two groups of square connecting rods (35) are provided with two groups of sliders (36) of same structure, the inner wall of the slider (36) is provided with two groups of sliding round rods (37) of same structure on both sides.
3. An electrical automation cable quick wiring device according to claim 2, characterized in that: The ring cutting component (4) includes a square support slider (40) disposed on the top of the slider (36), the square support slider (40) is provided with a second motor (41) on one side of the top, the second motor (41) is provided with a chain wheel (42), the chain wheel (42) is provided with a chain belt (43), the chain belt (43) is provided with a rotating chain wheel disc (44) on the other end, the rotating chain wheel disc (44) is provided with a first bearing (46) at the center position, the rotating chain wheel disc (44) is provided with a round rod (48) on the outer wall away from the center position, the round rod (48) is provided with a cutter assembly (49) on one end, and the first bearing (46) is provided with a hollow sleeve (45) on the inner wall, the hollow sleeve (45) extends to the outer wall of the rotating chain wheel disc (44) on one end, and the other end of the hollow sleeve (45) extends to the outer wall of the square support slider (40), the outer wall of the hollow sleeve (45) is provided with two groups of fixing members (47) of same structure on both ends.
4. An electrical automation cable quick wiring device according to claim 3, characterized in that: The cutter assembly (49) includes a square block (491) disposed on one end of the round rod (48), the square block (491) is provided with a first threaded rod (492) on one side of the bottom, the first threaded rod (492) is provided with a threaded cap (493) on one end, and the first threaded rod (492) is provided with a square slider (494) on the outer wall, the square slider (494) is provided with a square groove (498) on both sides of the top, the square slider (494) is provided with a second connecting round rod (495) on one side of the bottom, the second connecting round rod (495) is provided with a second bearing (496) on one end of the outer wall, and the second bearing (496) is provided with a ring cutter blade (497).
5. An electrical automation cable quick wiring device according to claim 3, characterized in that: The fixing part (47) comprises a circular surface supporting block (471) arranged on the outer wall of the hollow sleeve (45), the outer walls on both sides of the circular surface supporting block (471) are threadedly connected with two groups of second threaded rods (472) of the same structure, one end of each of the second threaded rods (472) is provided with an arc-shaped fixed rubber block (473), and one end of each of the two groups of second threaded rods (472) extends into the inner cavity of the hollow sleeve (45), and the outer walls on the execution ends of the two groups of arc-shaped fixed rubber blocks (473) are provided with cable tubes (474).
6. An electrical automation cable quick wiring device according to claim 1, characterized in that: The square shell (2) is provided with a supporting sliding groove (21) at the top, which is matched with the square supporting sliding block (40).
Citation Information
Patent Citations
Quick wiring device for cable wiring
CN213278676U