Branching device for cable twisting machine
By designing a splitting assembly with adjustable compression force, the existing cable wire twister splitting plate device cannot adapt to the wire body of different diameters, and effective splitting of wire body of different specifications is achieved, which improves the practicality and stability of the device.
Patent Information
- Application Number
- CN202421857303.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-02
- Publication Date
- 2025-05-13
- Estimated Expiration
- 2034-08-02
AI Technical Summary
In the existing wire splitting device of cable wire twisters, the diameter of the hole slot used for threading is fixed and cannot be adjusted, resulting in the inability to adapt to wire bodies of different diameters, affecting the effect of splitting.
A splitting device including a splitting assembly is designed. The device can adjust the compression force according to the diameter of the line body according to the diameter of the line body and adapt to the line body of different specifications through the cooperation of the line roller and the electric push rod.
Effective line splitting treatment for thread bodies of different specifications is realized, the practicality and stability of the device is improved, and the stability of the thread body is avoided during braiding or twisting.
Smart Images

Figure CN222867335U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of wire splitting devices, and more specifically, to a wire splitting device for a cable twisting machine. Background Art
[0002] A cable twisting machine is a device specially used for manufacturing power cables, communication cables and fiber optic cables. It is usually composed of multiple shafts and twisting heads. It is mainly used to weave or twist multiple strands of metal wires or optical fibers into cables in a specific way. However, there are still some problems in its actual use, such as: some current cable twisting machines usually need to use devices such as splitter trays during use to split multiple strands of metal wires or optical fibers to avoid the intertwining of wires during weaving or twisting. However, the diameter of the holes and slots used for threading on the existing common splitter trays is usually fixed and cannot be adjusted to accommodate wires of different diameters. This results in wires with diameters larger than the holes and slots being unable to pass through, while wires with diameters smaller than the holes and slots are prone to move during weaving or twisting, and have poor stability, thus affecting the actual effect of the wire splitting. Utility Model Content
[0003] In order to overcome the above-mentioned defects of the prior art, the utility model provides a wire splitting device for a cable twisting machine to solve the problem that the diameter of the hole grooves for threading used in the wire splitting disk device used in some cable twisting machines in the prior art is usually fixed, thus affecting the actual effect of wire splitting.
[0004] In order to solve the above technical problems, the utility model provides the following technical solutions: a wire splitting device for a cable twisting machine, comprising
[0005] A bottom plate, a twisting device body is fixedly mounted on the top of the bottom plate, and is used to braid or twist the wire body passing through the middle of the twisting device body;
[0006] A second pillar, the bottom of which is fixedly mounted to the top of the base plate;
[0007] A wire distribution assembly, wherein the side surface of the middle part of the wire distribution assembly is fixedly installed with the top of the second pillar, and the wire distribution assembly comprises a wire distribution disk body and a wire pressing transmission mechanism. The wire distribution disk body is arranged in parallel with the twisting device body, and the middle part is fixedly installed with the top of the second pillar through a flange. There are six wire pressing transmission mechanisms, and the six wire pressing transmission mechanisms are equidistantly arranged around the inside of the wire distribution disk body.
[0008] Among them, it also includes pillar one, a wire installation component, and a connecting column. The bottom of the pillar one is fixedly installed on the top of the base plate, one side of the wire installation component is fixedly installed on the top of the pillar one through a flange, and the other side is fixedly installed on the side of the connecting column. The connecting column is fixedly installed away from the side where the wire installation component is installed and the branch line component is different from the middle part where the pillar two is installed.
[0009] Among them, the wire pressing transmission mechanism includes a wire conveying roller 1, an electric push rod, a connecting block 1, a wire conveying roller 2, a connecting block 2, and a connecting rod. The two ends of the middle part of the wire conveying roller 1 are rotatably mounted on the inner surface of the distribution disk body, the electric push rod is arranged inside the distribution disk body, the outer surface of the connecting block 1 is slidably mounted on the inner surface of the distribution disk body, and the bottom is fixedly mounted on the top of the electric push rod, one end of the middle part of the wire conveying roller 2 is rotatably mounted on the inner surface of the side surface of the connecting block 1, and the other end is rotatably mounted on the inner surface of the side surface of the connecting block 2, the outer surface of the connecting block 2 is slidably mounted on the inner surface of the distribution disk body, the two ends of the connecting rod are fixedly mounted on the inner surface of the distribution disk body, and the outer surface is slidably mounted on the inner surface of the connecting block 2.
[0010] Among them, the wiring assembly includes a fixed tube, a placement mechanism, a connecting strip, and a wire ring. The side of the fixed tube is fixedly installed on the top of the pillar one. The number of the placement mechanisms is six, and the six placement mechanisms are equidistantly arranged on the surface of the fixed tube. The number of the connecting strips is two, and one end of the two connecting strips is fixedly installed on the surface of the fixed tube, and the other end is fixedly installed on the outer surface of the wire ring.
[0011] Wherein, the placement mechanism includes a frame plate, a motor, a bidirectional screw, a movable plate, and a bolt. The outer surface of the frame plate is fixedly installed with the inner surface of the fixed cylinder. The motor is arranged at the side end of the frame plate, and the outer surface is fixedly installed with the inner surface of the fixed cylinder. The bidirectional screw is arranged in the middle of the frame plate, and the side end is fixedly installed with the output end of the motor. The number of the movable plates is two, and the inner surfaces of the two movable plates are threadedly connected with the outer surfaces of the bidirectional screws, and the outer surfaces are slidably installed with the inner surface of the frame plate. The outer surface of the bolt is threadedly connected with the inner surface of the side end of the movable plate.
[0012] Compared with the prior art, the beneficial effects of the utility model are:
[0013] In the above scheme, by setting up a wire distribution component, the staff passes the wire body through the middle part of the wire transmission roller one and the wire transmission roller two, and then, according to the actual diameter of the wire body, controls the electric push rod to retract, driving the connected connecting block one to move downward along the inner wall of the wire distribution disk body, and the wire transmission roller two rotatably installed with the inner wall of the side of the connecting block one moves toward the direction close to the wire transmission roller one, and the connecting block two connected to the other end of the wire transmission roller two moves downward along the outer surface of the connecting rod and the inner surface of the wire distribution disk body, so that the wire transmission roller one and the wire transmission roller two are close to each other and provide a certain clamping force to the wire body therein, so that the wire distribution disk structure of the cable twisting machine can be suitable for wire distribution processing of wire bodies of different specifications, thereby improving the practicality of the device.
[0014] In the above scheme, by setting up the wire loading assembly, the staff first controls the motor to start, and the bidirectional screw connected to the output end of the motor rotates inside the frame plate, driving the two movable plates connected by the external thread to move away from each other along the inner wall of the frame plate, and then, the wire-reeling roller that has wound up the metal wire or optical fiber is placed in the middle of the two movable plates, and the motor is controlled to start again, so that the two movable plates are moved closer to each other along the inner wall of the frame plate, so that the two ends of the wire-reeling roller pass through the holes and grooves opened in the two movable plates respectively and are fixed in the middle thereof, and then, the staff passes one end of the wire body on the wire-reeling roller through the inside of the wire ring, and passes it to the wire-dividing assembly for wire-dividing processing, and through the control operation of the wire loading assembly, the wire-reeling roller that has wound up the metal wire or optical fiber can be easily installed and disassembled, thereby improving the efficiency of cable twisting processing. BRIEF DESCRIPTION OF THE DRAWINGS
[0015] Figure 1 It is a schematic diagram of the overall structure of the utility model;
[0016] Figure 2 This is a schematic diagram of the wiring assembly structure of the utility model;
[0017] Figure 3 This is a schematic diagram of the placement mechanism structure of the utility model;
[0018] Figure 4 It is a schematic diagram of the structure of the branch line assembly of the utility model.
[0019] [reference numerals]
[0020] 1. Bottom plate; 2. Pillar 1; 3. Wire loading assembly; 4. Connecting column; 5. Branching assembly; 6. Pillar 2; 7. Twisting equipment body; 30. Fixing cylinder; 31. Placing mechanism; 32. Connecting strip; 33. Wire ring; 310. Frame plate; 311. Motor; 312. Bidirectional screw; 313. Movable plate; 314. Bolt; 50. Branching plate body; 51. Wire pressing and transmission mechanism; 510. Wire conveying roller 1; 511. Electric push rod; 512. Connecting block 1; 513. Wire conveying roller 2; 514. Connecting block 2; 515. Connecting rod. DETAILED DESCRIPTION
[0021] In order to make the technical problems to be solved, technical solutions and advantages of the present invention more clear, a detailed description will be given below in conjunction with the accompanying drawings and specific embodiments.
[0022] As attached Figure 1 To Attachment Figure 4 The embodiment of the utility model provides a wire splitting device for a cable twisting machine, comprising:
[0023] A bottom plate 1, a twisting device body 7 is fixedly mounted on the top of the bottom plate 1, and is used to weave or twist the wire body passing through the middle of the twisting device body 7;
[0024] The second support 6, the bottom of the second support 6 is fixedly mounted to the top of the bottom plate 1;
[0025] The branching assembly 5, the side of the middle part of the branching assembly 5 is fixedly installed with the top of the pillar 2 6, the branching assembly 5 includes a branching disk body 50 and a wire pressing transmission mechanism 51, the branching disk body 50 is arranged parallel to the twisting equipment body 7, and the middle part is fixedly installed with the top of the pillar 2 6 through a flange, the number of the wire pressing transmission mechanism 51 is six, and the six wire pressing transmission mechanisms 51 are equidistantly arranged around the inside of the branching disk body 50.
[0026] It also includes a pillar 2, a wiring assembly 3, and a connecting column 4. The bottom of the pillar 2 is fixedly installed on the top of the base plate 1, one side of the wiring assembly 3 is fixedly installed on the top of the pillar 2 through a flange, and the other side is fixedly installed on the side of the connecting column 4. The connecting column 4 is fixedly installed away from the side of the wiring assembly 3 and the branching assembly 5, which is different from the middle of the installation pillar 2 6.
[0027] Wherein, the wire pressing transmission mechanism 51 comprises a wire conveying roller 510, an electric push rod 511, a connecting block 512, a wire conveying roller 513, a connecting block 514, and a connecting rod 515. The two ends of the middle part of the wire conveying roller 510 are rotatably mounted on the inner surface of the distribution plate body 50. The electric push rod 511 is arranged inside the distribution plate body 50. The outer surface of the connecting block 512 is slidably mounted on the inner surface of the distribution plate body 50, and the bottom is fixedly mounted on the top of the electric push rod 511. One end of the middle part of the wire conveying roller 513 is rotatably mounted on the inner surface of the side of the connecting block 512, and the other end is rotatably mounted on the inner surface of the side of the connecting block 514. The outer surface of the connecting block 514 is slidably mounted on the inner surface of the distribution plate body 50. The two ends of the connecting rod 515 are fixedly mounted on the inner surface of the distribution plate body 50, and the outer surface is slidably mounted on the inner surface of the connecting block 514.
[0028] By setting the wire conveying roller 510, the side baffles of the wire conveying roller 510 and the wire conveying roller 2 513 can cross each other, so that the wire with a smaller diameter can also be tightened to a certain extent by the proximity of the wire conveying roller 510 and the wire conveying roller 2 513, avoiding easy movement during weaving or twisting, improving stability, and conveying the wire by the reverse rotation of the wire conveying roller 510 and the wire conveying roller 2 513.
[0029] Among them, the wiring assembly 3 includes a fixed tube 30, a placement mechanism 31, a connecting bar 32, and a wire ring 33. The side of the fixed tube 30 is fixedly installed on the top of the pillar 2. The number of the placement mechanisms 31 is six, and the six placement mechanisms 31 are equidistantly arranged around the surface of the fixed tube 30. The number of the connecting bars 32 is two, and one end of the two connecting bars 32 is fixedly installed on the surface of the fixed tube 30, and the other end is fixedly installed on the outer surface of the wire ring 33.
[0030] The placement mechanism 31 includes a frame plate 310, a motor 311, a bidirectional screw 312, a movable plate 313, and a bolt 314. The outer surface of the frame plate 310 is fixedly mounted on the inner surface of the fixed cylinder 30. The motor 311 is arranged at the side end of the frame plate 310, and the outer surface is fixedly mounted on the inner surface of the fixed cylinder 30. The bidirectional screw 312 is arranged in the middle of the frame plate 310, and the side end is fixedly mounted on the output end of the motor 311. There are two movable plates 313. The inner surfaces of the two movable plates 313 are threadedly connected to the outer surfaces of the bidirectional screw 312, and the outer surfaces are slidably mounted on the inner surface of the frame plate 310. The outer surface of the bolt 314 is threadedly connected to the inner surface of the side end of the movable plate 313.
[0031] By setting the bolt 314, when the device is in an idle state, the staff can rotate the bolt 314 toward the inside of the movable plate 313, so that the end of the bolt 314 abuts against the outer surface of the take-up roller placed inside the two movable plates 313, thereby tightening the take-up roller to prevent the wire body thereon from falling due to the rotation of the take-up roller.
[0032] The working process of the utility model is as follows:
[0033] The staff first controls the motor 311 to start, and the bidirectional screw 312 connected to the output end of the motor 311 rotates inside the frame plate 310, driving the two movable plates 313 connected with the external threads to move away from each other along the inner wall of the frame plate 310, and then, the take-up roller with the wound metal wire or optical fiber is placed in the middle of the two movable plates 313, and the motor 311 is controlled to start again, so that the two movable plates 313 are moved closer to each other along the inner wall of the frame plate 310, so that the two ends of the take-up roller pass through the holes and grooves opened in the two movable plates 313 respectively and are fixed in the middle thereof, and then, the staff passes one end of the wire body on the take-up roller through the inside of the wire ring 33, and passes it to the branching assembly 5 for branching processing, and through the control operation of the wire assembly 3, the take-up roller with the wound metal wire or optical fiber can be easily installed and disassembled, thereby improving the efficiency of cable twisting processing;
[0034] When the wire reaches the branching assembly 5, the staff passes the wire through the middle of the wire feeding roller 1 510 and the wire feeding roller 2 513, and then controls the electric push rod 511 to contract according to the actual diameter of the wire, driving the connected connecting block 1 512 to move downward along the inner wall of the branching disk body 50, and the wire feeding roller 2 513 rotatably installed on the inner wall of the side of the connecting block 1 512 moves toward the direction close to the wire feeding roller 1 510, and the connecting block 2 514 connected to the other end of the wire feeding roller 2 513 moves downward along the outer surface of the connecting rod 515 and the inner surface of the branching disk body 50, so that the wire feeding roller 1 510 and the wire feeding roller 2 513 are close to each other and provide a certain clamping force to the wire therein, so that the branching disk structure of the cable twisting machine can be suitable for branching wires of different specifications, thereby improving the practicality of the device. Finally, the multiple strands of metal wires or optical fibers branched by the branching assembly 5 are inserted into the interior of the twisting device body 7 and woven or twisted in a specific way to become cables.
[0035] Finally, a few points should be explained: First, in the description of this application, it should be noted that, unless otherwise specified and limited, the terms "installed", "connected", and "connected" should be understood in a broad sense, which may refer to mechanical connection or electrical connection, or internal communication between two components, or direct connection. "upper", "lower", "left", "right", etc. are only used to indicate relative positional relationships. When the absolute position of the object being described changes, the relative positional relationship may change;
[0036] Secondly: In the drawings of the embodiments disclosed in the present utility model, only the structures related to the embodiments disclosed in the present utility model are involved, and other structures can refer to the general design. In the absence of conflict, the same embodiment and different embodiments of the present utility model can be combined with each other;
[0037] Finally: The above description is only a preferred embodiment of the present utility model and is not intended to limit the present utility model. Any modifications, equivalent substitutions, improvements, etc. made within the spirit and principles of the present utility model should be included in the protection scope of the present utility model.
Claims
1. A wire splitting device for a cable twisting machine, characterized in that: include A bottom plate (1), a twisting device body (7) being fixedly mounted on the top of the bottom plate (1) and used for weaving or twisting a wire body passing through the middle of the twisting device body (7); A second support column (6), the bottom of the second support column (6) being fixedly mounted to the top of the base plate (1); A branching assembly (5), wherein the side surface of the middle portion of the branching assembly (5) is fixedly mounted on the top of the second pillar (6), the branching assembly (5) comprises a branching disk body (50) and a wire pressing transmission mechanism (51), the branching disk body (50) is arranged in parallel with the twisting device body (7), and the middle portion is fixedly mounted on the top of the second pillar (6) via a flange, and the number of the wire pressing transmission mechanisms (51) is six, and the six wire pressing transmission mechanisms (51) are equidistantly arranged around the inside of the branching disk body (50).
2. A wire splitting device for a cable twisting machine according to claim 1, characterized in that: It also includes a pillar (2), a wiring assembly (3), and a connecting column (4); the bottom of the pillar (2) is fixedly mounted on the top of the base plate (1); one side of the wiring assembly (3) is fixedly mounted on the top of the pillar (2) via a flange, and the other side is fixedly mounted on the side of the connecting column (4); the connecting column (4) is fixedly mounted away from the side where the wiring assembly (3) is mounted and the branching assembly (5) is different from the middle where the pillar (6) is mounted.
3. A wire splitting device for a cable twisting machine according to claim 1, characterized in that: The wire pressing transmission mechanism (51) comprises a wire conveying roller (510), an electric push rod (511), a connecting block (512), a wire conveying roller (513), a connecting block (514), and a connecting rod (515); the two ends of the middle portion of the wire conveying roller (510) are rotatably mounted on the inner surface of the wire distribution disk body (50); the electric push rod (511) is arranged inside the wire distribution disk body (50); the outer surface of the connecting block (512) is slidably mounted on the inner surface of the wire distribution disk body (50); and The bottom is fixedly mounted on the top of the electric push rod (511); one end of the middle part of the wire conveying roller 2 (513) is rotatably mounted on the inner surface of the side of the connecting block 1 (512), and the other end is rotatably mounted on the inner surface of the side of the connecting block 2 (514); the outer surface of the connecting block 2 (514) is slidably mounted on the inner surface of the distribution disk body (50); the two ends of the connecting rod (515) are fixedly mounted on the inner surface of the distribution disk body (50), and the outer surface is slidably mounted on the inner surface of the connecting block 2 (514).
4. A wire splitting device for a cable twisting machine according to claim 2, characterized in that: The wire assembly (3) comprises a fixed cylinder (30), a placement mechanism (31), a connecting strip (32), and a wire ring (33). The side surface of the fixed cylinder (30) is fixedly mounted on the top of the pillar (2). The number of the placing mechanisms (31) is six, and the six placing mechanisms (31) are equidistantly arranged around the surface of the fixed cylinder (30). The number of the connecting strips (32) is two, and one end of the two connecting strips (32) is fixedly mounted on the surface of the fixed cylinder (30), and the other end is fixedly mounted on the outer surface of the wire ring (33).
5. A wire splitting device for a cable twisting machine according to claim 4, characterized in that: The placement mechanism (31) comprises a frame plate (310), a motor (311), a bidirectional screw (312), a movable plate (313), and a bolt (314); the outer surface of the frame plate (310) is fixedly mounted to the inner surface of the fixed cylinder (30); the motor (311) is arranged at the side end of the frame plate (310), and the outer surface is fixedly mounted to the inner surface of the fixed cylinder (30); the bidirectional screw (312) is arranged in the middle of the frame plate (310), and the side end is fixedly mounted to the output end of the motor (311); there are two movable plates (313); the inner surfaces of the two movable plates (313) are threadedly connected to the outer surfaces of the bidirectional screw (312), and the outer surfaces are slidably mounted to the inner surface of the frame plate (310); the outer surface of the bolt (314) is threadedly connected to the inner surface of the side end of the movable plate (313).