A stranded wire winding device and a stranded wire winding process
By designing a twisted wire wrapping device including a limiting mechanism, a winding mechanism and a moving mechanism, the high learning cost and maintenance cost problems caused by the complex structure of the existing equipment are solved, and more efficient wire wrapping effect and lower usage cost are achieved.
Patent Information
- Application Number
- CN202510279299.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-11
- Publication Date
- 2025-06-03
- Estimated Expiration
- 2045-03-11
AI Technical Summary
The existing twisted wire wrapping equipment has a complex structure, which leads to high learning costs for workers, low wire wrapping efficiency, and high maintenance costs, which affects the use cost.
A stranded wire wrapping device including a limiting mechanism, a winding mechanism and a moving mechanism is designed. The limiting mechanism realizes the positioning and stability of materials through electric push rods and induction modules; the winding mechanism uses motors and transmission belts to drive the twisted wire to rotate and wind; the moving mechanism realizes the movement and winding of materials through cylinders and contact plates.
It improves the stability and thread wrapping effect of materials when wound, reduces worker work intensity and maintenance costs, and simplifies the use and maintenance of equipment.
Smart Images

Figure CN119774389B_ABST
Abstract
Description
Technical Field
[0001] This application relates to the technical field of electronic components, and in particular to a stranded wire winding device and a stranded wire winding process. Background Art
[0002] Electronic components are components of electronic elements and small electrical machines and instruments. They are usually composed of several parts and can be used interchangeably in similar products. They include resistors, capacitors, inductors, transistors, diodes, light-emitting diodes, optoelectronic devices, sensors, power supplies, switches, relays, printed circuit boards, and integrated circuits, etc.
[0003] In view of the above related technologies, at present, the wire ends of some products or intermediate products with windings are prone to dispersion, and it is necessary to use stranded wires to wind them into bundles. Currently, mechanical winding and bundling are mostly used.
[0004] However, the structures of some winding devices are relatively complex and cumbersome, which increases the learning cost for workers to use, is not conducive to workers' quick mastery, affects the winding efficiency, and due to their complex structures, the daily maintenance of some winding devices is cumbersome and the maintenance cost is high, which may increase the use cost. Summary of the Invention
[0005] The purpose of this application is to provide a stranded wire winding device and a stranded wire winding process to solve the problems raised in the above background art.
[0006] A stranded wire winding device provided by this application adopts the following technical solutions: It includes a device main body. A control panel is provided at the front top end of the device main body. A group of pedals are connected to the left end of the device main body through a circuit. A group of support blocks are connected to the four ends of the bottom surface of the device main body. It also includes a limiting mechanism provided at the left front end of the device main body, a winding mechanism corresponding to the limiting mechanism is provided at the left end inside the device main body, and a moving mechanism is connected to the right end inside.
[0007] The limiting mechanism includes a connecting bottom plate, connecting side plates, a front plate, a first placement groove, and a positioning mechanism. A group of connecting bottom plates are provided at the middle bottom end of the device main body. A group of connecting side plates are connected to the left front end of the connecting bottom plate. The front end of the connecting side plate is connected to the rear end of the front plate. A group of first placement grooves are provided at the top end of the front plate. A positioning mechanism is provided at the top inner end of the front plate corresponding to the outer end of the first placement groove.
[0008] Preferably, the positioning mechanism includes a movable cavity, an electric push rod, an induction module, positioning rods, positioning members, crank arms, and sliding grooves. At the position corresponding to the outer end of the first placement groove at the inner top end of the front plate, there is a movable cavity. At the bottom end inside the movable cavity, there is a set of electric push rods. The top end of the output end of the electric push rod penetrates and extends to the bottom end inside the first placement groove and is connected to a set of induction modules. At the positions near the top end of the front and rear ends of the output end of the electric push rod, there is a set of positioning rods. On the left and right ends inside the movable cavity, there is a set of positioning members. The bottom ends of the positioning members are all connected to a set of crank arms. The other ends of the left and right two sets of crank arms are respectively connected to the front and rear two sets of positioning rods. At the ends of the left and right two sets of crank arms away from the positioning members, there are sliding grooves corresponding to the positioning rods.
[0009] By adopting the above technical solution, the electric push rod can drive the two sets of positioning members and the crank arms to rotate by outputting or retracting the output end, so as to clamp and position the materials placed in the first placement groove, and can improve the stability and winding effect of the materials.
[0010] Preferably, the winding mechanism includes a placement cavity, a communication cylinder, a motor, a transmission belt, a rotating cylinder, and a first connecting arm. At the left rear end inside the equipment main body, there is a set of placement cavities. At the front end of the placement cavity, there is a set of communication cylinders. At the right end of the communication cylinder, there is a set of motors. The outer end of the driving shaft of the motor is connected to the middle outer end of the communication cylinder through a transmission belt. The front end of the communication cylinder penetrates and extends to the front end of the equipment main body and is connected to a set of rotating cylinders. A set of first connecting arms are connected to the outside of the rotating cylinder.
[0011] By adopting the above technical solution, the motor can drive the communication cylinder, the rotating cylinder, and the first connecting arm to rotate through the transmission belt, and wind the stranded wire around the outer side of the object to be wound.
[0012] Preferably, a set of turning plates are connected to the rear end inside the placement cavity, and a set of vertical arms are provided at the front end of the inner top. A set of placement rods are connected to the bottom rear end of the vertical arms.
[0013] By adopting the above technical solution, the stranded wire coil can be placed through the placement rod, which is convenient for winding the materials.
[0014] Preferably, a set of middle cylinders are connected to the middle bottom end of the first connecting arm. A set of fixing blocks are provided at the front end of the middle cylinder. A set of wire cylinders are connected inside the fixing blocks.
[0015] By adopting the above technical solution, the stranded wire can be wound around the outer side of the object through the middle cylinder and the wire cylinder in sequence, avoiding the stranded wire from being wound and knotted, and improving the smoothness during winding.
[0016] Preferably, the moving mechanism includes a cylinder, a second connecting arm, a connecting rod, a contact plate and a second placement groove. A set of cylinders is provided at the right end inside the equipment main body. The front end of the output end of the cylinder penetrates and extends to the front right end of the equipment main body and is connected to a set of second connecting arms. A set of connecting rods is provided at the front left end of the second connecting arm. A set of contact plates is provided at the front end of the connecting rod. A set of second placement grooves is provided at the top of the contact plate.
[0017] By adopting the above technical solution, the cylinder can push the contact plate and the second placement groove to move, thereby driving the material to be wound to move, so that the stranded wire can be wound and covered on the outside of the material.
[0018] Preferably, the second connecting arm is inclined, and the rear end of the contact plate can contact the front end of the front plate.
[0019] Preferably, the first placement groove and the second placement groove are the same in size and flush in height.
[0020] By adopting the above technical solution, the horizontality of the material to be wound during placement and movement can be maintained, and the tightness of winding the material can be improved.
[0021] Preferably, the rear end opening of the communicating cylinder and the front end opening of the rotating cylinder are both in a flared shape.
[0022] By adopting the above technical solution, it is beneficial for the stranded wire to enter and exit, reduces the friction on the outside of the stranded wire, avoids abrasion on the outside of the stranded wire, and affects the winding effect.
[0023] Preferably, the vertical arm is rotatably connected to the placement rod.
[0024] By adopting the above technical solution, it is beneficial for the rotation of the stranded wire coil placed thereon, and improves the smoothness of extracting the stranded wire.
[0025] This application provides a stranded wire winding process for a stranded wire winding device, including the following steps:
[0026] S1: Place the material to be wound with the pre-wound stranded wire in the first placement groove and the second placement groove, and step on the pedal;
[0027] S2: The induction module senses that the material is placed in the first placement groove, and feeds back to drive the electric push rod to retract its output end, driving the two sets of curved arms and the positioning member to rotate, covering the top end inside the first placement groove, and limiting the material to be wound;
[0028] S3: The motor drives the shaft to rotate, drives the communicating cylinder, the rotating cylinder and the first connecting arm to rotate through the transmission belt, and winds the stranded wire on the outside of the material to be wound;
[0029] S4: The cylinder pushes the contact plate forward, driving the material to be wound to move forward, so that the stranded wire is wound on the remaining positions outside the material to be wound;
[0030] S5: Release the pedal, the motor stops rotating, the cylinder resets, the twisted wire is cut, the material is pulled out, and the two sets of positioning parts reset, completing the winding operation of the material to be wound.
[0031] In summary, the present application includes at least one of the following beneficial technical effects:
[0032] 1. The present application adopts a limiting mechanism arranged at the front end of the device body, the limiting mechanism includes a connecting bottom plate, a connecting side plate, a front plate and a placing slot 1, a placing slot 1 is arranged at the top of the front plate, the placing slot 1 can be used to position the material to be wound, and as the material moves forward, the placing slot 1 can gather the unwound part at the rear end of the material to improve the winding effect of the material;
[0033] 2. The present application provides a positioning mechanism at the outer end of the placement slot 1, and the positioning mechanism includes components such as a movable cavity, an electric push rod, a sensing module, a positioning rod, a positioning piece and a crank arm. The sensing module can sense whether there is material placed in the placement slot 1, and the positioning piece and the crank arm can be driven by the electric push rod to rotate to position the material, which can effectively improve the stability of the material during winding and further improve the winding effect of the material;
[0034] 3. The present application adopts a winding mechanism arranged at the left end of the main body of the equipment, and the winding mechanism includes a placement chamber, a connecting cylinder, a motor, a transmission belt, a rotating cylinder and a connecting arm. The motor can drive the connecting cylinder, the rotating cylinder and the connecting arm to rotate through the transmission belt, thereby driving the twisted wire to rotate and be wound around the outside of the material, thereby improving the winding efficiency, reducing the winding time, and reducing the work intensity of the workers;
[0035] 4. The present application can guide the rotating twisted wire to avoid entanglement and knotting by connecting the middle tube and the wire tube at the bottom end of the connecting arm;
[0036] 5. The present application adopts a moving mechanism disposed at the right end of the main body of the equipment. The moving mechanism includes a cylinder, two connecting arms, a connecting rod, a contact plate and two placement slots. The contact plate can contact the front end surface of the front plate, and the cylinder can push it forward and drive the material to move, so as to wrap the remaining positions of the material, expand the winding range and area, and adapt to materials of different sizes. BRIEF DESCRIPTION OF THE DRAWINGS
[0037] Figure 1 It is a schematic diagram of the overall structure of this application;
[0038] Figure 2 yes Figure 1 A partial enlarged schematic diagram of the middle limit mechanism;
[0039] Figure 3 It is a schematic diagram of the internal structure of the positioning mechanism of the present application;
[0040] Figure 4 It is a schematic internal side sectional view structure of the winding mechanism of this application;
[0041] Figure 5 It is a schematic front view structure of the connection between the connecting cylinder and the motor of this application;
[0042] Figure 6 It is a schematic internal top view structure of the moving mechanism of this application;
[0043] Explanation of reference numerals: 1, equipment main body; 2, control panel; 3, support block; 4, limiting mechanism; 5, winding mechanism; 6, moving mechanism; 21, pedal; 41, connecting bottom plate; 42, connecting side plate; 43, front plate; 44, first placement groove; 45, positioning mechanism; 451, activity cavity; 452, electric push rod; 453, induction module; 454, positioning rod; 455, positioning part; 456, crank arm; 457, chute; 51, placement cavity; 52, connecting cylinder; 53, motor; 54, drive belt; 55, rotating cylinder; 56, first connecting arm; 511, flap; 512, vertical arm; 513, placement rod; 561, middle cylinder; 562, fixed block; 563, bobbin; 61, cylinder; 62, second connecting arm; 63, connecting rod; 64, contact plate; 65, second placement groove. Detailed implementation manners
[0044] The following Figure 1 - Figure 6 is a further detailed description of this application in conjunction with the attached drawings.
[0045] Refer to Figure 1 A stranded wire winding device includes an equipment main body 1. A control panel 2 for controlling working parameters is provided at the front top end of the equipment main body 1. A group of pedals 21 are connected to the left end of the equipment main body 1 through circuits. By stepping on the pedals 21, the motor 53 and the cylinder 61 can be driven to work. A group of support blocks 3 for supporting and lifting are connected to the four ends of the bottom surface of the equipment main body 1. A limiting mechanism 4 is further provided at the left front end of the equipment main body 1. A winding mechanism 5 corresponding to the limiting mechanism 4 is provided at the left end inside the equipment main body 1, and a moving mechanism 6 is connected to the right end inside.
[0046] Refer to Figures 1 - 3, the limiting mechanism 4 includes a connecting base plate 41, connecting side plates 42, a front plate 43, a first placement groove 44 and a positioning mechanism 45. A set of connecting base plates 41 are provided at the middle bottom end of the equipment main body 1. A set of connecting side plates 42 are connected to the left front end of the connecting base plate 41. The front end of the connecting side plate 42 is connected to the rear end of the front plate 43. A set of first placement grooves 44 are provided at the top of the front plate 43. The position of the first placement groove 44 is opposite to the center of the winding mechanism 5 and can be used to place the material to be wound. At the position corresponding to the outer end of the first placement groove 44 at the inner top end of the front plate 43, a positioning mechanism 45 is provided, and the material to be wound can be positioned and restricted through the positioning mechanism 45.
[0047] Refer to Figures 2 - 3 , the positioning mechanism 45 includes a movable cavity 451, an electric push rod 452, an induction module 453, positioning rods 454, positioning parts 455, crank arms 456 and a sliding groove 457. A movable cavity 451 is opened at the position corresponding to the outer end of the first placement groove 44 at the inner top end of the front plate 43. The movable cavity 451 is in a "U" shape corresponding to the first placement groove 44, and the inner top end of the movable cavity 451 is connected to the outside, which is beneficial to the movement of the positioning part 455. A set of electric push rods 452 are installed at the bottom end of the movable cavity 451. The top end of the output end of the electric push rod 452 penetrates and extends to the bottom end inside the first placement groove 44 and is connected to a set of induction modules 453, which can sense the material. When the material to be wound is placed in the first placement groove 44, it contacts and presses the induction module 453, and the induction module 453 can feedback and drive the electric push rod 452. At the positions near the top end of the front and rear ends of the output end of the electric push rod 452, a set of positioning rods 454 are provided. A set of positioning parts 455 are provided at the left and right ends inside the movable cavity 451. The two sets of positioning parts 455 are arranged in a mirror image, in a shape similar to a "7", and can cover the inner top end of the first placement groove 44 after relative rotation. And the inner corners of the two sets of positioning parts 455 are all set as rounded corners, which can reduce the friction damage to the stranded wire and effectively extend its service life. The bottom ends of the positioning parts 455 are all connected to a set of crank arms 456. The other ends of the left and right crank arms 456 are respectively connected to the front and rear positioning rods 454. And at the ends of the left and right crank arms 456 far from the positioning parts 455, sliding grooves 457 corresponding to the positioning rods 454 are provided. The positioning rods 454 can slide in the sliding grooves 457. Among them, the positioning part 455 is connected to the crank arm 456 and can rotate around the connection point. When the electric push rod 452 outputs or retracts the output end, through the cooperation of the positioning rod 454 and the sliding groove 457, the two sets of positioning parts 455 and the crank arms 456 can be driven to flip, realizing the opening and closing of the first placement groove 44 and improving the winding effect on the material to be wound.
[0048] Refer to Figures 1 - 5, the winding mechanism 5 includes a placement cavity 51, a connecting cylinder 52, a motor 53, a transmission belt 54, a rotating cylinder 55, and a first connecting arm 56. A set of placement cavities 51 are provided at the left rear end inside the equipment main body 1, which can be used to place stranded wire coils. A set of connecting cylinders 52 are provided at the front end of the placement cavity 51. A set of motors 53 are provided at the right end of the connecting cylinder 52. The outer end of the driving shaft of the motor 53 is connected to the middle outer end of the connecting cylinder 52 through the transmission belt 54. When the driving shaft of the motor 53 rotates, the connecting cylinder 52 can be driven to rotate through the transmission belt 54. The front end of the connecting cylinder 52 penetrates and extends to the front end of the equipment main body 1 and is connected with a set of rotating cylinders 55. A set of first connecting arms 56 are connected to the outside of the rotating cylinder 55. When the connecting cylinder 52 rotates, the rotating cylinder 55 and the first connecting arm 56 can be driven to rotate. Among them, the openings at the rear end of the connecting cylinder 52 and the front end of the rotating cylinder 55 are both trumpet-shaped, which is beneficial to the entry and exit of the stranded wire, reduces the friction on the stranded wire, and can ensure the service performance and service life of the stranded wire.
[0049] Referring to Figure 4 , a set of flap plates 511 are connected to the rear end inside the placement cavity 51. The flap plates 511 can control the opening and closing of the placement cavity 51 to prevent impurities from entering. A set of vertical arms 512 are provided at the front end of the top inside the placement cavity 51. A set of placement rods 513 are connected to the rear bottom end of the vertical arms 512. The vertical arms 512 and the placement rods 513 are rotatably connected. The stranded wire coils can be placed on the placement rods 513. When the stranded wire is rotated and wound, the stranded wire can be extracted from the coil. The rotatable placement rods 513 can reduce the wear when the stranded wire coils move;
[0050] Among them, a set of middle cylinders 561 are connected to the middle bottom end of the first connecting arm 56. A set of fixing blocks 562 are provided at the front end of the middle cylinder 561. A set of wire cylinders 563 are connected inside the fixing blocks 562. The stranded wire can be wound around the outside of the material through the middle cylinder 561 and the wire cylinder 563 in sequence, and can be stretched through the middle cylinder 561 and the wire cylinder 563, which is not only convenient for winding, but also can prevent the stranded wire from being wound and knotted by itself, and can effectively improve the winding effect.
[0051] Referring to Figure 1 , Figure 2 And Figure 6 , the moving mechanism 6 includes a cylinder 61, a second connecting arm 62, a connecting rod 63, a contact plate 64, and a second placement groove 65. A set of cylinders 61 are provided at the right end inside the equipment main body 1. The front end of the output end of the cylinder 61 penetrates and extends to the front right end of the equipment main body 1 and is connected with a set of second connecting arms 62. The second connecting arms 62 are inclined, and its left end is close to the front plate 43. A set of connecting rods 63 are provided at the front left end of the second connecting arm 62. A set of contact plates 64 are provided at the front end of the connecting rods 63. A set of second placement grooves 65 are provided at the top end of the contact plate 64. Among them, the rear end of the contact plate 64 can contact the front end of the front plate 43. The first placement groove 44 and the second placement groove 65 have the same size and are flush in height, which is beneficial to maintaining the horizontal position of the material and improving the stability during winding.
[0052] A stranding process for a stranding wire winding device includes the following steps:
[0053] S1: Place the material to be wound with the pre-wound stranded wire in the first placement groove 44 and the second placement groove 65, and step on the pedal 21;
[0054] S2: The induction module 453 senses that the material is placed in the first placement groove 44, and feeds back to drive the electric push rod 452 to retract its output end, driving the two sets of crank arms 456 and the positioning member 455 to rotate, covering the top end inside the first placement groove 44 to limit the material to be wound;
[0055] S3: The motor 53 drives the shaft to rotate, driving the communicating cylinder 52, the rotating cylinder 55 and the first connecting arm 56 to rotate through the transmission belt 54, and winding the stranded wire outside the material to be wound;
[0056] S4: The air cylinder 61 pushes the contact plate 64 forward, driving the material to be wound forward, so that the stranded wire is wound around the remaining positions outside the material to be wound;
[0057] S5: Release the pedal 21, the motor 53 stops rotating, the air cylinder 61 resets, cuts the stranded wire, extracts the material, and the two sets of positioning members 455 reset to complete the winding operation of the material to be wound.
[0058] The specific implementation principle is as follows:
[0059] During use, the material to be wound with the pre-wound stranded wire can be placed in the first placement groove 44 and the second placement groove 65. Clamp the front end of the stranded wire and the front end of the winding area with fingers and press against the front end of the contact plate 64. At this time, the induction module 453 can sense the presence of the material in the first placement groove 44 and feed back to drive the electric push rod 452. The electric push rod 452 retracts its output end. Through the downward movement of the two sets of positioning rods 454, the two sets of crank arms 456 are driven to rotate, and then the two sets of positioning members 455 are driven to rotate relatively to position the material in the first placement groove 44;
[0060] Then step on the pedal 21, the motor 53 drives the shaft to rotate, driving the communicating cylinder 52, the rotating cylinder 55 and the first connecting arm 56 to rotate through the transmission belt 54, winding the stranded wire outside the material to be wound. At the same time, the air cylinder 61 pushes the contact plate 64 forward, driving the material to be wound forward, so that the stranded wire is wound around the remaining positions outside the material to be wound. After the winding is completed, release the pedal 21, the motor 53 stops rotating, and the air cylinder 61 drives the contact plate 64 to reset. At this time, the stranded wire can be cut to complete the winding operation of the material to be wound.
[0061] The present application provides a twisted wire winding device and a twisted wire winding process, through a limiting mechanism 4 arranged at the front end of the device body 1, the limiting mechanism 4 includes a connecting bottom plate 41, a connecting side plate 42, a front plate 43 and a placement slot 44, a placement slot 44 is arranged at the top of the front plate 43, the placement slot 44 can be used to position the material to be wound, and as the material moves forward, the placement slot 44 can gather the unwound part of the rear end of the material to improve the winding effect of the material; through a positioning mechanism 45 arranged at the outer end of the placement slot 44, the positioning mechanism 45 includes a movable cavity 451, an electric push rod 452, a sensing module 453, a positioning rod 454, a positioning member 455 and a curved arm 456 and other components, the sensing module 453 can sense whether there is material placed in the placement slot 44, and the positioning member 455 and the curved arm 456 can be driven by the electric push rod 452 to rotate to position the material, which can effectively improve the stability of the material during winding, and can further improve the winding effect of the material. The winding mechanism 5 is arranged at the left end of the main body 1 of the equipment, and the winding mechanism 5 includes a placement chamber 51, a connecting cylinder 52, a motor 53, a transmission belt 54, a rotating cylinder 55 and a connecting arm 56. The motor 53 can drive the connecting cylinder 52, the rotating cylinder 55 and the connecting arm 56 to rotate through the transmission belt 54, thereby driving the twisted wire to rotate and be wound around the outside of the material, thereby improving the winding efficiency, reducing the winding working hours, and reducing the working intensity of the workers; through the middle cylinder 561 and the wire cylinder 563 connected to the bottom end of the connecting arm 56, the rotating twisted wire can be guided to avoid it from being entangled and knotted; through the moving mechanism 6 arranged at the right end of the main body 1 of the equipment, the moving mechanism 6 includes a cylinder 61, a connecting arm 62, a connecting rod 63, a contact plate 64 and a placement slot 65, the contact plate 64 can contact the front end surface of the front plate 43, and the cylinder 61 can push it to move forward and drive the material to move, so as to wind the remaining positions of the material, expand the winding range and area, and adapt to materials of different sizes.
[0062] The embodiments of this specific implementation are all preferred embodiments of the present application, and are not intended to limit the protection scope of the present application. The same components are represented by the same figure marks. Therefore, any equivalent changes made based on the structure, shape, and principle of the present application should be included in the protection scope of the present application.
Claims
1. A twisted wire winding device, comprising a device body (1), a control panel (2) being provided at the front top of the device body (1), a set of pedals (21) being connected to the left end of the device body (1) through a line, and a set of support blocks (3) being connected to the four ends of the bottom surface of the device body (1); It is characterized in that It also includes a limiting mechanism (4) arranged at the left front end of the device body (1); a winding mechanism (5) corresponding to the limiting mechanism (4) is arranged at the inner left end of the device body (1); and a moving mechanism (6) is connected to the inner right end; The limiting mechanism (4) comprises a connecting bottom plate (41), a connecting side plate (42), a front plate (43), a placement groove (44) and a positioning mechanism (45); a group of connecting bottom plates (41) are provided at the bottom middle end of the device body (1); a group of connecting side plates (42) are connected to the left front end of the connecting bottom plate (41); the front end of the connecting side plate (42) is connected to the rear end of the front plate (43); a group of placement grooves (44) are provided at the top end of the front plate (43); and a positioning mechanism (45) is provided at a position at the inner top end of the front plate (43) corresponding to the outer end of the placement groove (44); The positioning mechanism (45) comprises an active cavity (451), an electric push rod (452), a sensing module (453), a positioning rod (454), a positioning member (455), a curved arm (456) and a slide groove (457). The active cavity (451) is provided at a position at the top end of the front plate (43) corresponding to the outer end of the placement groove (44). A group of electric push rods (452) are provided at the bottom end of the active cavity (451). The top end of the output end of the electric push rod (452) extends through and extends to the bottom end of the placement groove (44) and is connected to a group of sensing modules. (453), a group of positioning rods (454) are provided at the front and rear ends of the output end of the electric push rod (452) near the top, a group of positioning members (455) are provided at the left and right ends of the movable cavity (451), and the bottom ends of the positioning members (455) are connected to a group of curved arms (456), and the other ends of the left and right groups of curved arms (456) are respectively connected to the front and rear groups of the positioning rods (454), and the ends of the left and right groups of curved arms (456) away from the positioning members (455) are provided with sliding grooves (457) corresponding to the positioning rods (454); The winding mechanism (5) comprises a placement chamber (51), a connecting tube (52), a motor (53), a transmission belt (54), a rotating tube (55) and a connecting arm (56). A group of placement chambers (51) is provided at the left rear end of the device body (1), a group of connecting tubes (52) is provided at the front end of the placement chamber (51), a group of motors (53) is provided at the right end of the connecting tube (52), the outer end of the driving shaft of the motor (53) is connected to the outer middle end of the connecting tube (52) through the transmission belt (54), the front end of the connecting tube (52) extends through and extends to the front end of the device body (1) and is connected to a group of rotating tubes (55), and the outer side of the rotating tube (55) is connected to a group of connecting arms (56).
2. A twisted wire winding device according to claim 1, characterized in that: A group of flaps (511) are connected to the rear end of the placement cavity (51), a group of vertical arms (512) are provided at the front end of the inner top, and a group of placement rods (513) are connected to the rear bottom ends of the vertical arms (512).
3. A twisted wire winding device according to claim 1, characterized in that: A group of middle tubes (561) are connected to the middle end of the bottom of the connecting arm (56), a group of fixing blocks (562) are provided at the front end of the middle tubes (561), and a group of wire tubes (563) are connected inside the fixing blocks (562).
4. A twisted wire winding device according to claim 1, characterized in that: The moving mechanism (6) comprises a cylinder (61), a second connecting arm (62), a connecting rod (63), a contact plate (64) and a second placement slot (65). A group of cylinders (61) is provided at the right end of the device body (1). The front end of the output end of the cylinder (61) extends through and extends to the front right end of the device body (1) and is connected to a group of second connecting arms (62). A group of connecting rods (63) is provided at the front left end of the second connecting arm (62). A group of contact plates (64) are provided at the front end of the connecting rods (63). A group of placement slots (65) are provided at the top end of the contact plates (64).
5. A twisted wire winding device according to claim 4, characterized in that: The second connecting arm (62) is arranged to be inclined, and the rear end of the contact plate (64) can contact the front end of the front plate (43).
6. The twisted wire winding device according to claim 1, characterized in that: The rear end opening of the connecting cylinder (52) and the front end opening of the rotating cylinder (55) are both designed in a trumpet shape.
7. The twisted wire winding device according to claim 2, characterized in that: The vertical arm (512) is rotatably connected to the placement rod (513).
8. A twisted wire winding process of a twisted wire winding device, according to any one of claims 1 to 7, characterized in that: The steps include: S1: placing the pre-wound stranded wire material to be wound into the first placement slot (44) and the second placement slot (65), and stepping on the pedal (21); S2: The sensing module (453) senses that the material is placed in the placement slot 1 (44), and feedback drives the electric push rod (452) to recover the output end, driving the two sets of crank arms (456) and the positioning member (455) to rotate, covering the top of the placement slot 1 (44) to limit the position of the wire-wound material; S3: The motor (53) drives the shaft to rotate, and drives the connecting cylinder (52), the rotating cylinder (55) and the connecting arm (56) to rotate through the transmission belt (54), so that the twisted wire is wound around the outside of the material to be wound; S4: the cylinder (61) pushes the contact plate (64) forward, driving the material to be wound forward, so that the twisted wire is wound around the remaining position outside the material to be wound; S5: The pedal (21) is released, the motor (53) stops rotating, the cylinder (61) is reset, the twisted wire is cut, the material is extracted, and the two sets of positioning members (455) are reset, thus completing the winding operation of the material to be wound.
Citation Information
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