Motor coil binding device
By designing a motor coil wire binding device, the clamping and rotation of the jam and rotating components are used to drive the wire core to move and wind, solving the problem of fixing and rotating the wire core and achieving an efficient wire binding process.
Patent Information
- Application Number
- CN202422190163.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-06
- Publication Date
- 2025-06-27
- Estimated Expiration
- 2034-09-06
AI Technical Summary
During the motor coil wiring tying process, the wire core needs to be fixed and rotated, but the prior art is difficult to effectively clamp the loop core of different sizes, and it is inconvenient to rotate the wire tying.
A motor coil wire binding device is designed. By setting up a clamping and rotating assembly, the wire core is driven to move and wind the wire by clamping and rotating the fixed card holder and moving card block, and at the same time, the wire core is fully wound by using the transmission pulley and the motor.
The device can effectively clamp wire cores of different sizes and drive the wire cores to wind them by rotating, solving the problem of fixing and rotating the wire cores and improving the efficiency and convenience of binding wires.
Smart Images

Figure CN223039848U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of motor coils, and particularly relates to a wire tying device for motor coils. Background Technique
[0002] A coil generally refers to a wire winding in a ring shape. The most common coil applications include motors, inductors, transformers, and loop antennas, etc. A coil in a circuit refers to an inductor, which means that wires are wound one by one, and the wires are insulated from each other. The insulating tube can be hollow or can contain an iron core or a magnetic powder core, which is simply called an inductor. An inductor can be further divided into a fixed inductor and a variable inductor. A fixed inductor coil is simply called an inductor or a coil.
[0003] When processing a motor coil, it is necessary to tie wires to the wire core. When tying wires to the wire core, it is necessary to fix it. Some wire cores are set in a ring shape. Therefore, when tying wires to the wire core, it is not convenient to clamp wire cores of different sizes. At the same time, when tying wires to the wire core, it needs to rotate, so it is not convenient to rotate and tie the ring-shaped coil. Therefore, we propose a wire tying device for motor coils. Content of the Utility Model
[0004] (1) Technical Problems to be Solved
[0005] In view of the deficiencies of the prior art, the utility model provides a wire tying device for motor coils, which has the advantages of facilitating the clamping of the wire core under the action of a fixed clamping seat and a movable clamping block by setting a clamping component, and being able to drive the fixed clamping seat and the movable clamping block to rotate when the rotating rod rotates, and driving the wire core to move through the rotation of the fixed clamping seat and the movable clamping block. It solves the problems that when tying wires to the wire core, it is necessary to fix it. Some wire cores are set in a ring shape. Therefore, when tying wires to the wire core, it is not convenient to clamp wire cores of different sizes. At the same time, when tying wires to the wire core, it needs to rotate, so it is not convenient to rotate and tie the ring-shaped coil. Therefore, we propose a wire tying device for motor coils.
[0006] (2) Technical Solutions
[0007] To achieve the purpose of facilitating the clamping of the wire core under the action of a fixed clamping seat and a movable clamping block by setting a clamping component, and being able to drive the fixed clamping seat and the movable clamping block to rotate when the rotating rod rotates, and driving the wire core to move through the rotation of the fixed clamping seat and the movable clamping block, the utility model provides the following technical solutions: A wire tying device for motor coils includes a clamping table. A bracket is fixedly connected to the front side of the upper surface of the clamping table. An electric cylinder is fixedly connected to the rear of the bracket. The output end of the electric cylinder is fixedly connected to a wire tying device. A wire core is arranged above the clamping table. The upper part of the clamping table includes:
[0008] Jamming component, the jamming component includes a rotating rod, a fixed clamping seat is fixedly connected to the rod wall of the rotating rod, and a movable clamping block is arranged on the fixed clamping seat;
[0009] Rotating component, the rotating component includes a plurality of driving belt pulleys, the surfaces of the plurality of driving belt pulleys are jointly rotationally connected by a belt to a tensioning belt pulley, a transmission shaft is fixedly connected to the inner wall of the tensioning belt pulley, and a first motor is fixedly connected to the lower end of the transmission shaft. By setting the jamming component, under the action of the fixed clamping seat and the movable clamping block, it is convenient to clamp the wire core. When the rotating rod rotates, it can drive the fixed clamping seat and the movable clamping block to rotate. Through the rotation of the fixed clamping seat and the movable clamping block, the wire core can be driven to move, so as to wind the wire core comprehensively. After the first motor drives the tensioning belt pulley to rotate through the transmission shaft, the tensioning belt pulley drives the driving belt pulleys to rotate through the belt, and the driving belt pulleys can drive the rotating rod to rotate.
[0010] As a preferred technical solution of the present invention, an adjusting component is arranged inside the rotating rod, the adjusting component includes a threaded rod, a driving block is threadedly connected to the rod wall of the threaded rod, and a turning knob is fixedly connected to the upper end of the threaded rod. By setting the adjusting component, it is convenient to drive the movable clamping block to move.
[0011] As a preferred technical solution of the present invention, the lower side of the rod wall of the rotating rod is fixedly connected to the inner wall of the driving belt pulley, the left and right sides of the driving block are respectively fixedly connected to the left and right sides of the inner wall of the movable clamping block, and the upper and lower ends of the threaded rod are respectively rotationally connected to the upper sides of the inner wall of the rotating rod. Under the action of the threaded rod and the driving block, it is convenient to drive the movable clamping block to move, so that the movable clamping block and the fixed clamping seat can clamp the wire core.
[0012] As a preferred technical solution of the present invention, a plurality of grooves are formed on the upper surface of the clamping table, and a moving component is arranged inside each of the plurality of grooves. The moving component includes a screw rod, a moving block is threadedly connected to the rod wall of the screw rod, and a bevel gear is fixedly connected to one end of the screw rod. By setting the moving component, it is convenient to drive all the driving belt pulleys and the jamming component to move.
[0013] As a preferred technical solution of the present invention, the other end of the screw rod is rotationally connected to one side of the inner wall of the groove, the upper surface of the moving block is rotationally connected to the lower surface of the rotating rod, the opposite surfaces of the plurality of bevel gears are meshed with each other, and the rear end of the rear screw rod is fixedly connected to a second motor, and the front surface of the second motor is fixedly connected to the rear surface of the clamping table. Under the action of the second motor, it is convenient to drive the rear screw rod to rotate. Through the meshing transmission of the bevel gears, all the screw rods can rotate simultaneously.
[0014] As a preferred technical solution of the present utility model, an opening is provided on the front side of the clamping table, a sliding block is arranged inside the opening, a tension spring is fixedly connected to the front of the sliding block and the front side of the inner wall of the sliding port together, the inner wall of the sliding block is rotationally connected to the rod wall of the transmission shaft, and the lower surface of the sliding block is fixedly connected to the upper surface of the first motor. By providing the sliding block and the tension spring, under the elastic action of the tension spring, the tension spring can drive the sliding block to reset, so that the tension pulley on the transmission shaft in the sliding block can always tighten the belt, enabling the belt to drive all the driving belt pulleys to rotate.
[0015] (III) Beneficial effects
[0016] Compared with the prior art, the present utility model provides a wire tying device for motor coils, which has the following beneficial effects:
[0017] 1. For this wire tying device, by providing the clamping assembly, under the action of the fixed clamping seat and the movable clamping block, it is convenient to clamp the wire core. When the rotating rod rotates, it can drive the fixed clamping seat and the movable clamping block to rotate. Through the rotation of the fixed clamping seat and the movable clamping block, the wire core can be driven to move, thereby winding the wire core comprehensively. After the first motor drives the tension pulley to rotate through the transmission shaft, the tension pulley drives the driving belt pulley to rotate through the belt, and the driving belt pulley can drive the rotating rod to rotate.
[0018] 2. For this wire tying device, by providing the sliding block and the tension spring, under the elastic action of the tension spring, the tension spring can drive the sliding block to reset, so that the tension pulley on the transmission shaft in the sliding block can always tighten the belt, enabling the belt to drive all the driving belt pulleys to rotate. Description of the drawings
[0019] Figure 1 It is a schematic three-dimensional structure diagram of the whole of the present utility model.
[0020] Figure 2 It is a schematic three-dimensional structure diagram of the clamping assembly of the present utility model.
[0021] Figure 3 For the present utility model Figure 2 Schematic enlarged structure diagram of part A.
[0022] Figure 4 It is a schematic exploded structure diagram of the clamping assembly of the present utility model.
[0023] In the figure: 1. Clamping table; 11. Bracket; 12. Electric cylinder; 13. Wire tying device; 14. Wire core; 2. Clamping component; 21. Rotating rod; 22. Fixed clamping seat; 23. Moving clamping block; 24. Adjusting component; 241. Threaded rod; 242. Driving block; 243. Knob; 25. Moving component; 251. Screw; 252. Moving block; 253. Bevel gear; 254. Second motor; 3. Rotating component; 31. Driving pulley; 32. Tightening pulley; 33. Transmission shaft; 34. First motor; 36. Sliding block; 37. Tightening spring. Detailed implementation mode
[0024] To make the above objects, features and advantages of the present utility model more obvious and understandable, the following detailed description of the specific implementation mode of the present utility model will be given in conjunction with the drawings in the specification.
[0025] Embodiment 1
[0026] Refer to Figures 1-4 , which is the first embodiment of the present utility model, provides a wire tying device for a motor coil, including a clamping table 1. A bracket 11 is fixedly connected to the front side of the upper surface of the clamping table 1. An electric cylinder 12 is fixedly connected to the rear of the bracket 11. The output end of the electric cylinder 12 is fixedly connected to a wire tying device 13. A wire core 14 is arranged above the clamping table 1. The wire core 14 is arranged behind the wire tying device 13. Above the clamping table 1 includes:
[0027] A clamping component 2. There are multiple groups of clamping components 2, and multiple groups of clamping components 2 are evenly arranged on the surface of the wire tying device 13. The clamping component 2 includes a rotating rod 21. A fixed clamping seat 22 is fixedly connected to the rod wall of the rotating rod 21. A moving clamping block 23 is arranged on the fixed clamping seat 22. The moving clamping block 23 is sleeved on the upper side of the surface of the rotating rod 21;
[0028] A rotating component 3. The rotating component 3 includes a plurality of driving pulleys 31. The plurality of driving pulleys 31 are all arranged below the clamping component 2. The surfaces of the plurality of driving pulleys 31 are jointly rotationally connected by a belt to a tightening pulley 32. A transmission shaft 33 is fixedly connected to the inner wall of the tightening pulley 32. The lower end of the transmission shaft 33 is fixedly connected to a first motor 34. The first motor 34 is arranged below the clamping table 1.
[0029] An adjusting component 24 is arranged inside the rotating rod 21. The adjusting component 24 includes a threaded rod 241. A driving block 242 is threadedly connected to the rod wall of the threaded rod 241. The upper end of the threaded rod 241 is fixedly connected to a knob 243. The knob 243 is arranged on the upper surface of the rotating rod 21. The upper end of the threaded rod 241 penetrates through the upper side of the inner wall of the rotating rod 21 to its upper surface.
[0030] The lower side of the rod wall of the rotating rod 21 is fixedly connected to the inner wall of the transmission pulley 31. The left and right sides of the driving block 242 are respectively fixedly connected to the left and right sides of the inner wall of the moving block 23. The upper and lower ends of the threaded rod 241 are respectively rotatably connected to the upper sides of the two sides of the inner wall of the rotating rod 21.
[0031] A plurality of grooves are formed on the upper surface of the clamping table 1. A moving assembly 25 is arranged inside each of the plurality of grooves. The moving assembly 25 includes a screw rod 251. A moving block 252 is threadedly connected to the rod wall of the screw rod 251. The surface of the moving block 252 is slidably connected to the inside of the groove. One end of the screw rod 251 is fixedly connected to a bevel gear 253.
[0032] The other end of the screw rod 251 is rotatably connected to one side of the inner wall of the groove. The upper surface of the moving block 252 is rotatably connected to the lower surface of the rotating rod 21. The opposite surfaces of the plurality of bevel gears 253 are meshed with each other. The rear end of the rear screw rod 251 is fixedly connected to a second motor 254. The second motor 254 is arranged behind the clamping table 1. The output end of the second motor 254 penetrates through the rear surface of the clamping table 1 to the inside of the groove. The front surface of the second motor 254 is fixedly connected to the rear surface of the clamping table 1.
[0033] During the use process, place the wire core 14 between the fixed clamping seat 22 and the moving block 23 on the rotating rod 21. By starting the second motor 254, drive the rear screw rod 251 to rotate. The rear screw rod 251 drives all the screw rods 251 to rotate simultaneously through the meshing transmission between the plurality of bevel gears 253. The screw rod 251 drives the moving block 252 to move. The moving block 252 drives the rotating rod 21 to move, and move the distance between all the rotating rods 21 to a position where the wire core 14 can be clamped.
[0034] Place the wire core 14 on the fixed clamping seat 22. Rotate the knob 243 to drive the threaded rod 241 to rotate. After the threaded rod 241 rotates, drive the driving block 242 to move. The driving block 242 drives the moving block 23 to move, so that the moving block 23 and the fixed clamping seat 22 can clamp the wire core 14.
[0035] Drive the winding device 13 on the bracket 11 to move to a position close to the wire core 14 through the electric cylinder 12 on the bracket 11, and wind the surface of the wire core 14. While the wire core 14 is being wound, start the first motor 34 to drive the transmission shaft 33 to rotate. Drive the tensioning pulley 32 to rotate through the transmission shaft 33. The tensioning pulley 32 drives the transmission pulleys 31 on all the rotating rods 21 to rotate through the belt, so that the rotating rod 21 rotates. The rotating rod 21 drives the fixed clamping seat 22 and the moving block 23 to rotate. Under the rotation of the fixed clamping seat 22 and the moving block 23, the wire core 14 rotates between the fixed clamping seat 22 and the moving block 23, so that the surface of the wire core 14 can be fully wound.
[0036] Embodiment 2
[0037] Refer to Figures 1-4 , which is the second embodiment of the present utility model. An opening is provided at the front side of the clamping table 1. A sliding block 36 is arranged inside the opening. Chute grooves are provided on the left and right sides of the inner wall of the opening. The inner walls of the two chute grooves are respectively slidably connected to the left and right sides of the sliding block 36 through sliding openings. A tension spring 37 is fixedly connected to the front side of the front surface of the sliding block 36 and the inner wall of the sliding opening. The inner wall of the sliding block 36 is rotatably connected to the rod wall of the transmission shaft 33. The lower surface of the sliding block 36 is fixedly connected to the upper surface of the first motor 34.
[0038] During the use process, when the transmission pulley 31 moves in the opposite direction, affected by the belt, the belt pulls the transmission shaft 33. At this time, the transmission shaft 33 on the transmission shaft 33 drives the sliding block 36 to move in the opening, and the tension spring 37 is stretched. When the transmission pulley 31 moves in the relative direction, under the elastic action of the tension spring 37 resetting, the tension spring 37 drives the sliding block 36 to move, so that the transmission shaft 33 on the sliding block 36 can always tighten the belt.
[0039] The remaining structures are the same as those in Embodiment 1.
[0040] It should be noted that the above embodiments are only used to illustrate the technical solutions of the present utility model and are not limitations. Although the present utility model has been described in detail with reference to the preferred embodiments, those of ordinary skill in the art should understand that the technical solutions of the present utility model can be modified or equivalently replaced without departing from the spirit and scope of the technical solutions of the present utility model, and they should all be covered within the scope of the claims of the present utility model.
Claims
1. A motor coil wire binding device, comprising a clamping platform (1), a bracket (11) is fixedly connected to the front side of the clamping platform (1), an electric cylinder (12) is fixedly connected to the rear of the bracket (11), a wire binding device (13) is fixedly connected to the output end of the electric cylinder (12), a wire core (14) is arranged above the clamping platform (1), and is characterized in that: The upper part of the clamping platform (1) comprises: A clamping assembly (2), the clamping assembly (2) comprising a rotating rod (21), a rod wall of the rotating rod (21) being fixedly connected to a fixed clamping seat (22), and the fixed clamping seat (22) being provided with a movable clamping block (23); A rotating assembly (3), the rotating assembly (3) comprising a plurality of transmission pulleys (31), the surfaces of the plurality of transmission pulleys (31) being rotatably connected to a tensioning pulley (32) via a belt, the inner wall of the tensioning pulley (32) being fixedly connected to a transmission shaft (33), the lower end of the transmission shaft (33) being fixedly connected to a first motor (34).
2. A motor coil wire binding device according to claim 1, characterized in that: An adjusting assembly (24) is arranged inside the rotating rod (21), and the adjusting assembly (24) comprises a threaded rod (241), a rod wall of the threaded rod (241) is threadedly connected to a driving block (242), and an upper end of the threaded rod (241) is fixedly connected to a rotating knob (243).
3. A motor coil wire binding device according to claim 2, characterized in that: The lower side of the rod wall of the rotating rod (21) is fixedly connected to the inner wall of the driving pulley (31), the left and right sides of the driving block (242) are respectively fixedly connected to the left and right sides of the inner wall of the moving block (23), and the upper and lower ends of the threaded rod (241) are respectively rotatably connected to the upper sides of the inner wall of the rotating rod (21).
4. A motor coil wire binding device according to claim 3, characterized in that: The clamping platform (1) is provided with a plurality of grooves on its upper surface, and a moving assembly (25) is arranged inside each of the plurality of grooves. The moving assembly (25) comprises a screw rod (251), a moving block (252) is threadedly connected to the rod wall of the screw rod (251), and a bevel gear (253) is fixedly connected to one end of the screw rod (251).
5. A motor coil wire binding device according to claim 4, characterized in that: The other end of the screw rod (251) is rotatably connected to one side of the inner wall of the groove, the top of the moving block (252) is rotatably connected to the bottom of the rotating rod (21), the opposite sides of the plurality of bevel gears (253) are meshed and connected with each other, the rear end of the screw rod (251) on the rear side is fixedly connected to a second motor (254), and the front of the second motor (254) is fixedly connected to the rear of the clamping platform (1).
6. A motor coil wire binding device according to claim 5, characterized in that: An opening is provided on the front side of the clamping platform (1), a sliding block (36) is arranged inside the opening, a tension spring (37) is fixedly connected to the front of the sliding block (36) and the front side of the inner wall of the sliding opening, the inner wall of the sliding block (36) is rotatably connected to the rod wall of the transmission shaft (33), and the bottom of the sliding block (36) is fixedly connected to the top of the first motor (34).