Winding device for copper alloy wire production

Through the design of connecting components and operating components, the problem of existing devices adapting to the winding of wires of different diameters and materials is solved, and flexible clamping and improved winding effect are achieved.

CN223457923UActive Publication Date: 2025-10-21WUXI BLUE GREEN METAL MATERIAL TECH CO LTD
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Patent Information

Application Number
CN202422658384.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-01
Publication Date
2025-10-21
Estimated Expiration
2034-11-01

AI Technical Summary

Technical Problem

Existing copper alloy wire winding devices are difficult to adapt to the needs of wires of different diameters and materials, resulting in poor winding effects.

Method used

A winding device including a connecting component and an operating component is designed. The connecting component realizes the flexible connection between the second clamping disc and the main frame. The operating component enhances the clamping effect through the friction block and adjusts the clamping disc distance to adapt to winding rollers of different sizes.

Benefits of technology

It realizes flexible clamping of winding rollers of different sizes, improves the application range and clamping effect of the winding device, and meets various application requirements.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of copper alloy wire production equipment, and discloses a winding device for copper alloy wire production, which comprises a main body frame, a driving motor arranged on the main body frame, a guide pulley rotationally arranged on the main body frame, and a first chuck and a second chuck which are used for clamping a copper alloy wire winding roller, the main body frame is further provided with a connecting assembly and an operation assembly. According to the winding device for copper alloy wire production, the second chuck is connected to the main body frame through the connecting assembly, flexible connection between the second chuck and the main body frame is achieved through the connecting assembly, and therefore the distance between the second chuck and the first chuck can be flexibly changed, and the clamping and fixing requirements of winding rollers of different sizes are met; and therefore, the driving motor can drive the winding roller to rotate to wind the copper alloy wire, the application range of the whole winding device is further expanded, and different actual application requirements are met.
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Description

TECHNICAL FIELD

[0001] The utility model relates to copper alloy wire rod production equipment technical field, specifically is a kind of winding device for copper alloy wire rod production. BACKGROUND

[0002] Copper alloy wire rod winding device is widely used in the production, processing and recycling of copper alloy wire rod and other fields, especially in the wire and cable, metal processing, machinery manufacturing and other industries, copper alloy wire rod winding device is indispensable important equipment.

[0003] Different diameter, different material copper alloy wire rod needs tension, winding radius when winding etc. will be different, so different size winding roller needs to be used to adapt to these changes, in order to adapt to the winding needs of different size winding roller, we propose a kind of winding device for copper alloy wire rod production. UTILITY MODEL CONTENT

[0004] In view of the deficiencies of prior art, the utility model provides a kind of winding device for copper alloy wire rod production, solve the problem mentioned in the above background.

[0005] The utility model provides the following technical scheme: a kind of winding device for copper alloy wire rod production, it include: main body frame, setting on the drive motor of main body frame, rotation setting on the guide pulley of main body frame, and the first chuck and second chuck for clamping copper alloy wire rod winding roller, the main body frame is also provided with connecting assembly and operating assembly;The connecting assembly includes rotation setting on the auxiliary shaft of main body frame, fixedly installed on the square tube of the adjacent side surface of second chuck and auxiliary shaft, setting in the connecting cylinder of square tube internal cavity, the connecting bearing that realizes the rotary connection between connecting cylinder and second chuck, fixedly installed in the auxiliary nut of connecting cylinder inner cavity side wall, and rotation setting on the screw rod of main body frame and with auxiliary nut screw connection;The operating assembly includes fixedly installed on the rotary disc of screw rod through the end of main body frame, the slider of sliding setting on the rotary disc, the slide button of fixedly installed on the one side of slider, the auxiliary ball head block of fixedly installed on the other side of slider, the ball head rod of sliding setting in the screw rod, the connecting rod of being fixedly connected with ball head rod, the friction block of being fixedly connected with connecting rod, the first spring of both ends being fixedly connected with connecting rod and screw rod, and the second spring of both ends being fixedly connected with slider and rotary disc.

[0006] Preferably, the first chuck is fixedly connected with the output shaft of the drive motor, and the second chuck is slidably connected with the auxiliary shaft through the square tube.

[0007] Preferably, a limiting block is fixedly installed on the end face of the square tube away from the second chuck, and a through hole for passing through the connecting cylinder is formed in the limiting block.

[0008] Preferably, the auxiliary ball head block is located at the inner cavity of the rotary disc, and the auxiliary ball head block can be in contact with the ball head end of the ball head rod.

[0009] Preferably, a sliding groove is arranged on the screw rod for passing through both ends of the connecting rod.

[0010] Preferably, the friction block is designed in a ring structure, and a friction pattern for enhancing the friction between the friction block and the main frame is arranged on the side surface of the friction block.

[0011] Preferably, the connecting bearing can include an inner ring layer, a center ball layer, and an outer ring layer, the inner ring layer is configured to be fixedly connected with the connecting cylinder, and the outer ring layer is configured to be fixedly connected with the second chuck.

[0012] Preferably, the center ball layer is arranged between the inner ring layer and the outer ring layer.

[0013] Compared with the prior art, the utility model has the following beneficial effects:

[0014] 1、The winding device for copper alloy wire production, through set up connecting assembly, connect second chuck on main frame, through connecting assembly, realize flexible connection between second chuck and main frame, therefore, can change distance between second chuck and first chuck flexibly, thus satisfy clamping and fixing demand of different size winding roller, so as to facilitate driving motor to drive winding roller to rotate and carry out copper alloy wire winding, further expand the application range of the whole winding device, satisfy actual different application demand.

[0015] 2、The winding device for copper alloy wire production, still set up operating assembly, adjust the position of second chuck through connecting assembly, make that the position adjusting step of second chuck is more convenient, fits actual operation scene, and after adjusting, still can lock the position of second chuck through the friction block in operating assembly in the mode of enhancing friction, and then lock the position of second chuck, enhance the clamping effect of second chuck and first chuck to winding roller, ensure that the whole device is directed to the winding demand of copper alloy wire winding. BRIEF DESCRIPTION OF DRAWINGS

[0016] Figure 1 It is the overall structure schematic diagram of the utility model;

[0017] Figure 2 It is the local structure cutaway schematic diagram of the utility model;

[0018] Figure 3 It is the connecting assembly structure explosion drawing of the utility model;

[0019] Figure 4 It is the main frame structure cutaway schematic diagram of the utility model;

[0020] Figure 5The first spring structure explosion view of the utility model.

[0021] In the figure: 1, main body frame; 2, driving motor; 3, guide pulley; 4, first chuck; 5, second chuck; 6, connecting assembly; 61, auxiliary shaft; 62, square cylinder; 63, connecting bearing; 64, connecting cylinder; 65, screw rod; 66, auxiliary nut; 67, limiting block; 7, operating assembly; 71, turntable; 72, slide button; 73, sliding block; 74, auxiliary ball head block; 75, ball head rod; 76, first spring; 77, connecting rod; 78, friction block; 79, second spring. DETAILED DESCRIPTION

[0022] The technical solutions in the embodiments of the utility model will be described clearly and completely below with reference to the drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, rather than all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without creative labor fall within the protection scope of the utility model.

[0023] Please refer to Figures 1-5 A winding device for copper alloy wire production, comprising: a main body frame 1, a driving motor 2 arranged on the main body frame 1, a guide pulley 3 rotatably arranged on the main body frame 1, and a first chuck 4 and a second chuck 5 for clamping a copper alloy wire winding roller, and a connecting assembly 6 and an operating assembly 7 are further arranged on the main body frame 1; wherein the first chuck 4 and the second chuck 5 can be additionally provided with a key matched with the copper alloy wire winding roller, so that when the copper alloy wire is subsequently wound, the copper alloy wire winding roller can rotate with the driving motor 2 starting to rotate, and the winding work is completed.

[0024] The connecting assembly 6 comprises an auxiliary shaft 61 rotatably arranged on the main frame 1, a square cylinder 62 fixedly arranged on the side surface adjacent to the auxiliary shaft 61 of the second chuck 5, a connecting cylinder 64 arranged in the internal cavity of the square cylinder 62, a connecting bearing 63 for realizing the rotational connection between the connecting cylinder 64 and the second chuck 5, an auxiliary nut 66 fixedly arranged on the inner cavity side wall of the connecting cylinder 64, a screw rod 65 rotatably arranged on the main frame 1 and threadedly connected with the auxiliary nut 66, and a limiting block 67 fixedly arranged on the end surface of the square cylinder 62 away from the second chuck 5, wherein a through hole is formed in the limiting block 67 for passing through the connecting cylinder 64. The limiting block 67 is designed to avoid the second chuck 5 from being separated from the auxiliary shaft 61, thereby ensuring the stable sliding connection between the second chuck 5, the square cylinder 62 and the auxiliary shaft 61. The connecting bearing 63 comprises an inner ring layer, a center ball layer and an outer ring layer. The inner ring layer is fixedly connected with the connecting cylinder 64, the outer ring layer is fixedly connected with the second chuck 5, and the center ball layer is arranged between the inner ring layer and the outer ring layer, so that the connecting bearing 63 has a convex structure design, thereby ensuring the sliding connection effect of the connecting bearing 63.

[0025] The operating assembly 7 comprises a rotating disc 71 fixedly arranged on the end of the screw rod 65 passing through the main frame 1, a sliding block 73 slidingly arranged on the rotating disc 71, a sliding knob 72 fixedly arranged on one side of the sliding block 73, an auxiliary ball head block 74 fixedly arranged on the other side of the sliding block 73, a ball head rod 75 slidingly arranged in the screw rod 65, a connecting rod 77 fixedly connected with the ball head rod 75, a friction block 78 fixedly connected with the connecting rod 77, a first spring 76 having two ends fixedly connected with the connecting rod 77 and the screw rod 65, respectively, and a second spring 79 having two ends fixedly connected with the sliding block 73 and the rotating disc 71, respectively. The auxiliary ball head block 74 is arranged in the internal cavity of the rotating disc 71 and can be in contact with the ball head end of the ball head rod 75. A sliding groove is formed in the screw rod 65 for passing through the two ends of the connecting rod 77. The friction block 78 has a ring structure design and a friction pattern is arranged on the side surface of the friction block 78 for enhancing the friction between the friction block 78 and the main frame 1.

[0026] The working principle is that when the copper alloy wire is wound, the winding roller is placed between the first chuck 4 and the second chuck 5, so that the winding roller is clamped and fixed by the first chuck 4 and the second chuck 5, the end of the copper alloy wire is fixed on the winding roller by passing through the guide pulley 3, then the driving motor 2 is started, the first chuck 4 fixedly connected with the output shaft of the driving motor 2 can rotate, synchronously driving the winding roller and the second chuck 5 to rotate, so that the copper alloy wire can be wound on the winding roller; when the distance between the first chuck 4 and the second chuck 5 is adjusted according to winding rollers of different sizes, the slide button 72 is pushed to slide, the sliding block 73 fixedly connected with the slide button 72 synchronously slides in the rotating disc 71, so that the auxiliary ball head block 74 fixed on the sliding block 73 is staggered with the ball head end of the ball head rod 75, because the connecting rod 77 fixed on the ball head rod 75 is not only fixedly connected with the friction block 78, but also further connected with the screw rod 65 by the first spring 76, the ball head rod 75, the connecting rod 77 and the friction block 78 can slide under the action of the first spring 76, so that the gap between the friction block 78 and the main frame 1 is generated, and then the rotating disc 71 is driven to rotate by the slide button 72, the screw rod 65 fixedly connected with the rotating disc 71 synchronously rotates in the main frame 1, wherein because the screw rod 65 is threadedly connected with the auxiliary nut 66 fixed in the inner cavity of the connecting cylinder 64, the connecting bearing 63 in the inner cavity of the square cylinder 62 is connected with the second chuck 5 in a rotating mode, and the square cylinder 62 fixed on the second chuck 5 is in a sliding connection with the auxiliary shaft 61 rotatingly arranged on the main frame 1, therefore, when the screw rod 65 rotates, the connecting cylinder 64 is rotated out, thereby pushing the second chuck 5 and the square cylinder 62 to slide, so as to change the distance between the second chuck 5 and the first chuck 4, thereby meeting the clamping requirement of winding rollers of different sizes, finally, the slide button 72 is loosened, the sliding block 73, the slide button 72 and the auxiliary ball head block 74 are pushed to slide under the action of the second spring 79 fixedly connected with the sliding block 73 and the rotating disc 71 at both ends, at this time, the auxiliary ball head block 74 is in contact with the ball head end of the ball head rod 75 again, and the ball head rod 75 is squeezed, so that the ball head rod 75, the connecting rod 77 and the friction block 78 slide, the gap between the friction block 78 and the main frame 1 is eliminated, so that the friction block 78 is in close contact with the main frame 1, at this time, the friction lines on the friction block 78 cooperate with the main frame 1 to form a certain friction force, under the limitation of the friction force, the rotation of the friction block 78 is limited, thereby the rotation of the screw rod 65 is limited, so as to lock the position of the second chuck 5, and ensure the clamping effect of the second chuck 5 and the first chuck 4 on the copper alloy wire winding roller.

[0027] Although the embodiments of the present application have been shown and described, it should be understood by those skilled in the art that various changes, modifications, replacements and variations can be made to the embodiments without departing from the principles and spirits of the present application, and the scope of the present application is defined by the appended claims and their equivalents.

Claims

1. A winding device for copper alloy wire production, characterized in that: The utility model relates to a copper alloy wire rod winding device, including: The main body frame (1) is provided with the driving motor (2) on the main body frame (1), the guide pulley (3) is rotatably arranged on the main body frame (1), and the first chuck (4) and the second chuck (5) for clamping the copper alloy wire rod winding roller are arranged on the main body frame (1), and the main body frame (1) is further provided with a connecting assembly (6) and an operating assembly (7); The connecting assembly (6) includes an auxiliary shaft (61) rotatably arranged on the main body frame (1), a square cylinder (62) fixedly installed on the side surface adjacent to the auxiliary shaft (61) of the second chuck (5), a connecting cylinder (64) arranged in the internal cavity of the square cylinder (62), a connecting bearing (63) for realizing the rotational connection between the connecting cylinder (64) and the second chuck (5), an auxiliary nut (66) fixedly installed on the side wall of the internal cavity of the connecting cylinder (64), and a screw rod (65) rotatably arranged on the main body frame (1) and threadedly connected with the auxiliary nut (66); The operating assembly (7) includes a rotating disc (71) fixedly installed on the end of the screw rod (65) penetrating through the main body frame (1), a sliding block (73) slidingly arranged on the rotating disc (71), a sliding knob (72) fixedly installed on one side of the sliding block (73), an auxiliary ball head block (74) fixedly installed on the other side of the sliding block (73), a ball head rod (75) slidingly arranged in the internal cavity of the screw rod (65), a connecting rod (77) fixedly connected with the ball head rod (75), a friction block (78) fixedly connected with the connecting rod (77), a first spring (76) with two ends fixedly connected with the connecting rod (77) and the screw rod (65), and a second spring (79) with two ends fixedly connected with the sliding block (73) and the rotating disc (71).

2. The take-up device for producing a copper alloy wire according to claim 1, characterized by The first chuck (4) is fixedly connected with the output shaft of the driving motor (2), and the second chuck (5) is slidingly connected with the auxiliary shaft (61) through the square cylinder (62).

3. The winding device for producing a copper alloy wire according to claim 1, characterized by A limiting block (67) is fixedly installed on the end face of the square cylinder (62) away from the second chuck (5), and a through hole for penetrating through the connecting cylinder (64) is formed in the limiting block (67).

4. The winding device for producing a copper alloy wire according to claim 1, characterized by The auxiliary ball head block (74) is located in the internal cavity of the rotating disc (71), and the auxiliary ball head block (74) can contact the ball head end of the ball head rod (75).

5. The take-up device for producing a copper alloy wire according to claim 1, characterized by A sliding groove for penetrating through the two ends of the connecting rod (77) is formed in the screw rod (65).

6. The take-up device for producing a copper alloy wire according to claim 1, characterized by The friction block (78) is designed in an annular structure, and a friction pattern for enhancing the friction between the friction block (78) and the main body frame (1) is arranged on the side face of the friction block (78).

7. The take-up device for producing a copper alloy wire according to claim 1, characterized by The connecting bearing (63) can include an inner ring layer, a center ball layer and an outer ring layer, the inner ring layer is configured to be fixedly connected with the connecting cylinder (64), and the outer ring layer is configured to be fixedly connected with the second chuck (5).

8. The take-up device for producing a copper alloy wire according to claim 7, characterized by The center ball layer is arranged between the inner ring layer and the outer ring layer.