A winding machine suitable for different diameter body lines
By using an adjustment device and an anti-breakage clamping device, the clamping problem when changing the diameter of copper wire in the winding machine is solved, achieving stable winding and efficient winding of copper wires of different diameters, and reducing maintenance costs.
Patent Information
- Application Number
- CN202311848911.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-12-29
- Publication Date
- 2026-01-20
- Estimated Expiration
- 2043-12-29
AI Technical Summary
When changing the diameter of copper wire in existing winding machines, it is easy to forget to adjust the top rod, which makes it difficult to effectively clamp copper wires of different sizes and affects the winding process.
The device employs an adjustment mechanism, including components such as a motor, a fixed plate, a drive shaft, a winding tube, a reciprocating lead screw, a guide wheel, and a driven wheel. It effectively clamps copper wires of different diameters through an arc surface and an elastic telescopic rod, and is equipped with an anti-breakage device and a clamping device to reduce the tension of the copper wire and prevent breakage and loosening.
It improves the stability and efficiency of copper wire winding, reduces maintenance costs, avoids copper wire breakage and loosening, and ensures the continuity of the winding process.
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Figure CN117645200B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of electronic component production equipment, in particular to a winding machine suitable for different diameter wire bodies. BACKGROUND
[0002] For winding copper wires of different diameters, winding machines usually need to have some specific designs and functions to ensure that they can adapt to different specifications. When selecting a winding machine suitable for copper wires of different diameters, the key is to select according to the specific winding requirements, wire diameter range, production capacity, and requirements for precision and automation level.
[0003] The patent with patent number CN210824860U relates to a winding machine capable of changing diameter, which includes a winding machine, a support is arranged on the winding machine, a platform is arranged on the support, a motor box is arranged on one side of the platform, an opening switch and a closing switch are arranged on the motor box, a transmission shaft is connected to the motor box to connect a turntable, an adjustable fixing frame is arranged on the turntable, a guide rail is arranged on the other side of the platform, a movable frame is arranged on the guide rail, the movable frame can move on the guide rail, a transmission shaft is connected to the movable frame to connect a turntable, an adjustable fixing frame is arranged on the turntable corresponding to one side of the motor box, a clamp is arranged on the movable frame and connected to the guide rail, a support rod is arranged on the platform, and a wire holder is arranged on the support rod. The adjustable fixing frame can be adjusted by changing the protruding length of the top rod to adapt to winding rings of different diameters, and the movable frame can be moved to adapt to winding rings of different lengths to realize a winding machine with high adaptability.
[0004] In the above-mentioned patent, the protruding length of the top rod is changed to adapt to winding rings of different diameters, and the movable frame is moved to adapt to winding rings of different lengths to realize a winding machine with high adaptability. However, in the actual adjustment of the winding process, when the diameter of the wound copper wire is changed, the worker may forget to adjust the top rod, which makes it difficult to effectively clamp and convey copper wires of different sizes, thereby affecting the winding process. Therefore, a winding machine suitable for different diameter wire bodies with self-adaptive adjustment function is designed. SUMMARY
[0005] In view of the deficiencies of the prior art, the present application provides a winding machine suitable for different diameter wire bodies, which solves the problems raised in the background art.
[0006] To achieve the above object, the application is implemented by the following technical solutions: A winding machine suitable for different diameter wire bodies, comprising a workbench, further comprising an adjusting device; wherein the adjusting device comprises a motor, a fixed plate, a transmission shaft, a winding pipe, a reciprocating wire rod, a fixed rod, a sleeve, a wire guide wheel, a sliding frame, a sliding block, a driven shaft and a driven wheel, the driven wheel moves upward to drive the driven shaft to move upward, the driven shaft moves upward to drive the sliding block to move upward, the motor is fixedly installed above the workbench, the fixed plate is fixedly installed above the workbench, the transmission shaft is fixedly installed at the output end of the motor, the winding pipe is fixedly installed on the surface of the transmission shaft, the reciprocating wire rod penetrates through the left and right walls of the fixed plate, the fixed rod penetrates through the left and right walls of the fixed plate, the sleeve is slidingly installed on the surface of the reciprocating wire rod, the wire guide wheel is rotatably installed on the surface of the sleeve, the sliding frame is slidingly installed on the surface of the fixed rod, the surface of the sliding frame is provided with a sliding groove one, the sliding block is slidingly installed in the sliding groove one, the driven shaft penetrates through the left and right walls of the sliding block, the driven wheel is rotatably installed on the surface of the driven shaft, and the sliding frame is fixedly connected with the sleeve, which can effectively clamp different diameter copper wires and improve the stability of the copper wire during the winding operation.
[0007] According to the above technical solutions, the surface of the wire guide wheel is provided with an arc surface one, and the surface of the driven wheel is provided with an arc surface two, so that the arc surface one of the wire guide wheel and the arc surface two of the driven wheel can effectively clamp different diameter copper wires under the action of the elastic expansion rod one, thereby improving the stability of the copper wire during the winding operation.
[0008] According to the above technical solutions, the sliding groove one is fixedly installed with an elastic expansion rod one, the free end of the elastic expansion rod one is fixedly connected with the sliding block, the transmission shaft is drivingly connected with the reciprocating wire rod through a transmission belt, the sleeve moves to drive the sliding frame to move, the sliding frame moves to drive the wire guide wheel and the driven wheel to reciprocate, so that the copper wire can be uniformly wound on the surface of the winding pipe, thereby improving the efficiency of the winding work.
[0009] According to the above technical solutions, further comprising a breakage prevention device and a clamping device, the breakage prevention device comprises a moving rod, a receiving rod, a sleeve rod, a rotating rod, a pressing block, a limiting frame and a limiting block, when the tension of the copper wire during the winding process is too large, the copper wire will be tightened to drive the driven wheel to move upward, the driven wheel moves upward to drive the driven shaft to move upward, the moving rod is fixedly installed on the surface of the sliding block, the receiving rod is fixedly installed on the surface of the sliding frame, the sleeve rod is rotatably installed on the surface of the receiving rod, the rotating rod is fixedly installed on the surface of the sleeve rod, the pressing block is fixedly installed on the surface of the sleeve rod, the limiting frame is fixedly installed on the surface of the sliding frame, and the limiting block is slidingly installed in the limiting frame, so that the pressure of the sliding block on the copper wire is reduced to reduce the tension of the copper wire, thereby avoiding the copper wire from being broken due to excessive tension and reducing the subsequent maintenance cost.
[0010] According to the above technical scheme, the end of the pressing block away from the sleeve rod is provided with an arc surface three, a clock spring one is arranged between the sleeve rod and the bearing rod, the clock spring one can drive the sleeve rod to reset, the limiting block and the limiting frame are fixedly connected through the elastic expansion rod two, and the elastic expansion rod two can drive the limiting block to reset.
[0011] According to the above technical scheme, the side of the limiting block close to the pressing block is provided with an inclined surface one, the side of the limiting block away from the pressing block is provided with an inclined surface two, and the inclination angle of the inclined surface two is greater than that of the inclined surface one, so that the resetting speed of the sliding block is relatively slow due to the inclination angle of the inclined surface two being greater than that of the inclined surface one.
[0012] According to the above technical scheme, the clamping device comprises a supporting rod, a lifting plate and a clamping plate, the driven wheel moves downward to drive the moving rod to move downward, the moving rod moves downward to contact and drive the lifting plate to move downward, the supporting rod is fixedly installed on the surface of the sliding frame, the lifting plate is slidingly installed on the surface of the sliding frame, the clamping plate is fixedly installed below the lifting plate, the lower side of the clamping plate is provided with a wave shape, clock spring two is arranged between the lifting plate and the sliding frame, the upper side of the supporting rod is provided with an arc surface four, the clamping plate moves downward to clamp the copper wire through the wave shape and the arc surface four of the surface of the supporting rod, so that the copper wire is prevented from being directly separated from the wire guide wheel and the driven wheel to cause rebound under the action of the copper wire itself, and then loosen and scatter to affect the winding effect.
[0013] According to the above technical scheme, the surface of the sliding frame is slidingly installed with a push rod, the surface of the sliding frame is fixedly installed with a bearing table, the surface of the bearing table is provided with a button, the button is electrically connected with the motor, the button is pressed to disconnect the circuit and turn off the motor, so that the motor is prevented from working all the time to pull the copper wire to separate from the clamping of the clamping plate, thereby affecting the winding effect and reducing the subsequent maintenance cost.
[0014] The application provides a winding machine suitable for different diameter wire bodies.
[0015] (1) The winding machine suitable for different diameter wire bodies passes the copper wire through the wire guide wheel and the driven wheel and fixes the copper wire on the surface of the winding pipe, and effectively clamps different diameter copper wires under the action of the arc surface one, the arc surface two and the elastic expansion rod one, improves the stability of the copper wire in the process of winding operation, and simultaneously moves the sliding frame through the wire guide wheel and the driven wheel to reciprocate to uniformly wind the copper wire on the surface of the winding pipe, thereby improving the efficiency of the winding work.
[0016] (2) The winding machine suitable for different diameter wire bodies, when the tension of the copper wire is too large during the winding process, the copper wire will drive the sliding block and the moving rod to move upwards through the driven wheel and the driven shaft, and the limit block will move upwards through the rotating rod and the pressing rod, the slow resetting of the sliding block is realized through the inclined surface one and the inclined surface two on the surface of the elastic expansion rod one and the limit block, thereby reducing the pressure of the sliding block on the copper wire and realizing the effect of reducing the tension of the copper wire, avoiding the breakage of the copper wire caused by the excessive tension of the copper wire, and reducing the subsequent maintenance cost.
[0017] (3) The winding machine suitable for different diameter wire bodies, when the last end copper wire passes through the driven wheel, the driven wheel moves downwards under the action of the elastic expansion rod one and drives the lifting plate and the clamping plate to move downwards through the sliding block and the moving rod, and clamps the copper wire under the action of the supporting rod, avoiding the copper wire directly separating from the wire guide wheel and the driven wheel, causing the copper wire to rebound under its own action, thereby causing loosening and scattering and affecting the winding effect, at the same time, the downward movement of the lifting plate drives the push rod to press the button and closes the motor, avoiding the motor working all the time to pull the copper wire to separate from the clamping of the clamping plate, thereby affecting the winding effect and reducing the subsequent maintenance cost. BRIEF DESCRIPTION OF DRAWINGS
[0018] Figure 1 It is a schematic diagram of the overall structure of the present application;
[0019] Figure 2 It is a schematic diagram of the position structure of the sliding frame and the reciprocating wire rod of the present application;
[0020] Figure 3 It is a schematic diagram of the cross-sectional structure of the sliding frame of the present application;
[0021] Figure 4 It is a schematic diagram of the position structure of the wire guide wheel and the driven wheel of the present application;
[0022] Figure 5 It is a schematic diagram of the position structure of the sliding frame and the sliding block of the present application;
[0023] Figure 6 It is a schematic diagram of the position structure of the sliding frame and the sliding block of the present application; Figure 5
[0024] Figure 7 It is a schematic diagram of the position structure of the limit frame and the limit block of the present application;
[0025] Figure 8 It is a schematic diagram of the position structure of the lifting plate and the supporting plate of the present application.
[0026] In the figure: 1, workbench; 21, motor; 22, fixed plate; 23, transmission shaft; 24, wire winding tube; 25, reciprocating wire rod; 26, fixed rod; 27, sleeve; 28, wire guide wheel; 281, arc surface one; 29, sliding frame; 291, sliding groove one; 210, sliding block; 211, driven shaft; 212, driven wheel; 213, arc surface two; 214, elastic telescopic rod one; 215, transmission belt; 31, moving rod; 32, receiving rod; 33, sleeve rod; 34, rotating rod; 35, pressing block; 351, arc surface three; 36, limiting frame; 37, limiting block; 371, oblique cutting surface one; 372, oblique cutting surface two; 38, elastic telescopic rod two; 41, supporting rod; 411, arc surface four; 42, lifting plate; 43, clamping plate; 431, wavy shape; 44, push rod; 45, receiving table; 46, button. DETAILED DESCRIPTION
[0027] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative work fall within the scope of protection of the present application.
[0028] Please refer to Figures 1-5 An embodiment of the present application is a wire winding machine suitable for different diameter wire bodies, which comprises a workbench 1 and further comprises an adjusting device. The adjusting device comprises a motor 21, a fixed plate 22, a transmission shaft 23, a wire winding tube 24, a reciprocating wire rod 25, a fixed rod 26, a sleeve 27, a wire guide wheel 28, a sliding frame 29, a sliding block 210, a driven shaft 211 and a driven wheel 212. The driven wheel 212 moves upward to drive the driven shaft 211 to move upward, and the driven shaft 211 moves upward to drive the sliding block 210 to move upward. The motor 21 is fixedly installed above the workbench 1, the fixed plate 22 is fixedly installed above the workbench 1, the transmission shaft 23 is fixedly installed at the output end of the motor 21, the wire winding tube 24 is fixedly installed on the surface of the transmission shaft 23, the reciprocating wire rod 25 is rotatably penetrated through the left and right walls of the fixed plate 22, the fixed rod 26 is fixedly penetrated through the left and right walls of the fixed plate 22, the sleeve 27 is slidingly installed on the surface of the reciprocating wire rod 25, the wire guide wheel 28 is rotatably installed on the surface of the sleeve 27, the sliding frame 29 is slidingly installed on the surface of the fixed rod 26, the surface of the sliding frame 29 is provided with a sliding groove one 291, the sliding block 210 is slidingly installed in the sliding groove one 291, the driven shaft 211 is fixedly penetrated through the left and right walls of the sliding block 210, the driven wheel 212 is rotatably installed on the surface of the driven shaft 211, and the sliding frame 29 is fixedly connected with the sleeve 27. The wire winding machine can effectively clamp different diameter copper wires and improve the stability of the copper wire during the wire feeding process in the wire winding operation.
[0029] The surface of the wire wheel 28 is provided with an arc surface one 281, and the surface of the driven wheel 212 is provided with an arc surface two 213. The arc surface one 281 of the wire wheel 28 and the arc surface two 213 of the driven wheel 212 are used to effectively clamp copper wires of different diameters under the action of the elastic telescopic rod one 214, thereby improving the stability of the copper wire during the winding operation.
[0030] The elastic telescopic rod one 214 is fixedly installed in the inner part of the sliding groove one 291, and the free end of the elastic telescopic rod one 214 is fixedly connected with the sliding block 210. The transmission shaft 23 is in transmission connection with the reciprocating screw rod 25 through the transmission belt 215. The sleeve 27 moves to drive the sliding frame 29 to move. The sliding frame 29 moves to drive the wire wheel 28 and the driven wheel 212 to reciprocate, so that the copper wire can be uniformly wound on the surface of the winding pipe 24, thereby improving the efficiency of the winding work.
[0031] During the working of the embodiment, the copper wire is passed through the wire wheel 28 and the driven wheel 212 and is fixed on the surface of the winding pipe 24. The driven wheel 212 moves upward to drive the driven shaft 211 to move upward, and the driven shaft 211 moves upward to drive the sliding block 210 to move upward. The arc surface one 281 of the wire wheel 28 and the arc surface two 213 of the driven wheel 212 are used to effectively clamp copper wires of different diameters under the action of the elastic telescopic rod one 214, thereby improving the stability of the copper wire during the winding operation. Then, the motor 21 is started. The output end of the motor 21 rotates to drive the transmission shaft 23 to rotate. The transmission shaft 23 rotates to drive the winding pipe 24 to rotate to perform the winding operation on the copper wire. At the same time, the transmission shaft 23 rotates to drive the reciprocating screw rod 25 to rotate through the transmission belt 215. The reciprocating screw rod 25 rotates to drive the sleeve 27 to reciprocate on the surface thereof. The sleeve 27 moves to drive the sliding frame 29 to move. The sliding frame 29 moves to drive the wire wheel 28 and the driven wheel 212 to reciprocate, so that the copper wire can be uniformly wound on the surface of the winding pipe 24, thereby improving the efficiency of the winding work.
[0032] Please refer to Figures 1-8On the basis of the above-mentioned embodiment, in another embodiment of the present application, the anti-breaking device and the clamping device are further included, the anti-breaking device includes a moving rod 31, a receiving rod 32, a sleeve rod 33, a rotating rod 34, a pressing block 35, a limiting frame 36 and a limiting block 37, when the tension of the copper wire is too large during the winding process, the copper wire will be tightened and drive the driven wheel 212 to move upwards, the driven wheel 212 drives the driven shaft 211 to move upwards, the moving rod 31 is fixedly installed on the surface of the sliding block 210, the receiving rod 32 is fixedly installed on the surface of the sliding frame 29, the sleeve rod 33 is rotatably installed on the surface of the receiving rod 32, the rotating rod 34 is fixedly installed on the surface of the sleeve rod 33, the pressing block 35 is fixedly installed on the surface of the sleeve rod 33, the limiting frame 36 is fixedly installed on the surface of the sliding frame 29, and the limiting block 37 is slidably installed in the limiting frame 36, the pressure of the sliding block 210 on the copper wire is reduced, the effect of reducing the tension of the copper wire is achieved, the copper wire is prevented from being broken due to the excessive tension, and the subsequent maintenance cost is reduced.
[0033] The end, away from the sleeve rod 33, of the pressing block 35 is provided with an arc surface three 351, a clock spring one is arranged between the sleeve rod 33 and the receiving rod 32, the clock spring one can drive the sleeve rod 33 to reset, the limiting block 37 and the limiting frame 36 are fixedly connected through an elastic expansion rod two 38, and the elastic expansion rod two 38 can drive the limiting block 37 to reset.
[0034] The side, close to the pressing block 35, of the limiting block 37 is provided with an inclined surface one 371, the side, away from the pressing block 35, of the limiting block 37 is provided with an inclined surface two 372, and the inclination angle of the inclined surface two 372 is greater than the inclination angle of the inclined surface one 371. Since the inclination angle of the inclined surface two 372 is greater than the inclination angle of the inclined surface one 371, the resetting speed of the sliding block 210 is relatively slow.
[0035] The clamping device includes a supporting rod 41, a lifting plate 42 and a clamping plate 43, the driven wheel 212 moves downwards to drive the moving rod 31 to move downwards, the moving rod 31 moves downwards to contact and drive the lifting plate 42 to move downwards, the supporting rod 41 is fixedly installed on the surface of the sliding frame 29, the lifting plate 42 is slidably installed on the surface of the sliding frame 29, the clamping plate 43 is fixedly installed below the lifting plate 42, the lower side of the clamping plate 43 is provided with a wave shape 431, a clock spring two is arranged between the lifting plate 42 and the sliding frame 29, the upper side of the supporting rod 41 is provided with an arc surface four 411, the clamping plate 43 moves downwards to clamp the copper wire through the wave shape 431 and the arc surface four 411 on the surface of the supporting rod 41, the copper wire is prevented from being directly separated from the wire guide wheel 28 and the driven wheel 212 to cause the copper wire to rebound under its own action, and then the winding effect is affected.
[0036] The surface of the sliding frame 29 is slidingly installed with a push rod 44, and the surface of the sliding frame 29 is fixedly installed with a receiving table 45, and the surface of the receiving table 45 is provided with a button 46, which is electrically connected with the motor 21, and the button 46 is pressed to disconnect the circuit and turn off the motor 21, so as to avoid the motor 21 from working all the time to pull the copper wire to make it separate from the clamping of the clamping plate 43, thereby affecting the winding effect and reducing the subsequent maintenance cost.
[0037] When the tension of the copper wire is too large during the winding process, the copper wire will be tightened and drive the driven wheel 212 to move upwards, the driven wheel 212 drives the driven shaft 211 to move upwards, the driven shaft 211 drives the sliding block 210 to move upwards, the sliding block 210 drives the moving rod 31 to move upwards, the moving rod 31 drives the rotating rod 34 to rotate by contacting, the rotating rod 34 drives the sleeve rod 33 to rotate, the sleeve rod 33 drives the pressing block 35 to rotate, the pressing block 35 rotates to contact and press the bevel surface one 371 and make the limiting block 37 move to the direction close to the limiting frame 36, the limiting block 37 is reset under the action of the elastic expansion rod two 38 after moving, the moving rod 31 will contact and drive the rotating rod 34 to reverse during the resetting process after moving upwards, and the resetting speed of the sliding block 210 is slower due to the inclination angle of the bevel surface two 372 being larger than that of the bevel surface one 371, thereby reducing the pressure of the sliding block 210 on the copper wire and achieving the effect of reducing the tension of the copper wire, avoiding the copper wire from being broken due to the tension being too large, and reducing the subsequent maintenance cost.
[0038] When the last end of the copper wire passes through the driven wheel 212, the driven wheel 212 moves downwards under the action of the elastic expansion rod one 214 to drive the moving rod 31 to move downwards, the moving rod 31 drives the lifting plate 42 to move downwards by contacting, the lifting plate 42 drives the clamping plate 43 to move downwards, the clamping plate 43 moves downwards to realize clamping of the copper wire through the wave shape 431 and the arc surface four 411 of the supporting rod 41, avoiding the copper wire from directly separating from the wire guide wheel 28 and the driven wheel 212 to cause rebound under its own action, thereby causing loosening and scattering and affecting the winding effect, the lifting plate 42 drives the push rod 44 to move downwards, the push rod 44 contacts and presses the button 46 to move downwards, the button 46 is pressed to disconnect the circuit and turn off the motor 21, so as to avoid the motor 21 from working all the time to pull the copper wire to make it separate from the clamping of the clamping plate 43, thereby affecting the winding effect and reducing the subsequent maintenance cost.
[0039] Although the embodiments of the present application have been shown and described, it is to be understood that various changes, modifications, substitutions and variations can be made to these embodiments without departing from the principles and spirit of the present application, and the scope of the present application is defined by the appended claims and their equivalents.
Claims
1. A winding machine suitable for different diameter wires, comprising a workbench (1), characterized in that: It also includes an adjustment device, an anti-breakage device, and a clamping device; The adjusting device includes a motor (21), a fixed plate (22), a transmission shaft (23), a winding tube (24), a reciprocating screw (25), a fixed rod (26), a sleeve (27), a guide wheel (28), a sliding frame (29), a slider (210), a driven shaft (211), and a driven wheel (212). The motor (21) is fixedly installed above the workbench (1), the fixed plate (22) is fixedly installed above the workbench (1), the transmission shaft (23) is fixedly installed at the output end of the motor (21), the winding tube (24) is fixedly installed on the surface of the transmission shaft (23), and the reciprocating screw (25) rotates through the fixed plate (22). The left and right walls of the fixed plate (22) are fixedly penetrated by the fixed rod (26). The sleeve (27) is slidably installed on the surface of the reciprocating screw (25). The guide wheel (28) is rotatably installed on the surface of the sleeve (27). The sliding frame (29) is slidably installed on the surface of the fixed rod (26). The surface of the sliding frame (29) is provided with a sliding groove (291). The slider (210) is slidably installed inside the sliding groove (291). The driven shaft (211) is fixedly penetrated through the left and right walls of the slider (210). The driven wheel (212) is rotatably installed on the surface of the driven shaft (211). The sliding frame (29) is fixedly connected to the sleeve (27). An elastic telescopic rod (214) is fixedly installed inside the slide groove (291). The free end of the elastic telescopic rod (214) is fixedly connected to the slider (210). The transmission shaft (23) and the reciprocating screw (25) are connected by a transmission belt (215). The anti-breakage device includes a moving rod (31), a receiving rod (32), a sleeve rod (33), a rotating rod (34), a pressure block (35), a limiting frame (36), and a limiting block (37). The moving rod (31) is fixedly installed on the surface of the slider (210), the receiving rod (32) is fixedly installed on the surface of the sliding frame (29), the sleeve rod (33) is rotatably installed on the surface of the receiving rod (32), the rotating rod (34) is fixedly installed on the surface of the sleeve rod (33), the pressure block (35) is fixedly installed on the surface of the sleeve rod (33), the limiting frame (36) is fixedly installed on the surface of the sliding frame (29), and the limiting block (37) is slidably installed inside the limiting frame (36). The end of the pressure block (35) away from the sleeve rod (33) is opened into an arc surface three (351). A spring spring one is provided between the sleeve rod (33) and the receiving rod (32). The limiting block (37) and the limiting frame (36) are fixedly connected by an elastic telescopic rod two (38). The limiting block (37) has a beveled surface one (371) on the side near the pressure block (35), and a beveled surface two (372) on the side away from the pressure block (35). The inclination angle of the beveled surface two (372) is greater than that of the beveled surface one (371).
2. A winding machine applicable to different diameter wires according to claim 1, characterized in that: The surface of the guide wheel (28) is formed as arc surface one (281), and the surface of the driven wheel (212) is formed as arc surface two (213).
3. A winding machine applicable to different diameter wires according to claim 2, characterized in that: The clamping device includes a support rod (41), a lifting plate (42), and a clamping plate (43). The support rod (41) is fixedly installed on the surface of the sliding frame (29). The lifting plate (42) is slidably installed on the surface of the sliding frame (29). The clamping plate (43) is fixedly installed below the lifting plate (42). The lower part of the clamping plate (43) is wavy (431). A spring is provided between the lifting plate (42) and the sliding frame (29). The upper part of the support rod (41) is arc-shaped (411).
4. A winding machine suitable for different diameter wires according to claim 3, characterized in that: A push rod (44) is slidably mounted on the surface of the sliding frame (29), and a receiving platform (45) is fixedly mounted on the surface of the sliding frame (29). A button (46) is provided on the surface of the receiving platform (45), and the button (46) is electrically connected to the motor (21).
Citation Information
Patent Citations
Winding machine with replaceable diameter
CN210824860U
Cable automatic cable coiling machine
CN207511569U