Bare copper wire drawing and powder removing mechanism
By designing a bare copper wire drawing and powder removal mechanism, and using an automated slide block and foam cotton layer to clamp the copper wire, the problem of copper powder on the surface of the copper wire affecting the processing quality is solved, and efficient and stable copper wire cleaning and winding are achieved.
Patent Information
- Application Number
- CN202422561551.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-22
- Publication Date
- 2025-12-23
- Estimated Expiration
- 2034-10-22
AI Technical Summary
Copper powder is generated on the surface of existing copper wires during the conveying and stretching process, which leads to a decrease in processing quality and low efficiency of manual wiping and winding.
Design a bare copper wire extraction and de-dust removal mechanism, including a transverse frame, a wire inlet frame, a de-dust removal device, and an output frame. Utilize an automated slide block and belt drive system, combined with a lower foam layer and an upper foam layer to clamp the copper wire, to achieve automated copper powder removal.
It improves the efficiency and stability of copper wire drawing and dust removal, reduces manual intervention, ensures the quality and cleanliness of copper wire, and reduces operation time and labor consumption.
Smart Images

Figure CN223698597U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to a kind of bare copper wire extraction line powder removing mechanism. BACKGROUND
[0002] Copper is a kind of material with excellent electrical conductivity and thermal conductivity, and is often used to manufacture wire inner core. During the conveying and stretching process of existing copper wire, a large amount of copper powder will be generated on the surface of the copper wire. If the copper wire is processed with these copper powders, the processing quality of the copper wire will be affected. Therefore, it is usually necessary to wipe the surface of the copper wire.
[0003] When people wipe the copper powder on the copper wire today, they usually manually hold a wiping cloth to wipe the copper wire. After wiping is completed, the copper wire is manually wound and rolled up. This copper wire wiping and rolling method needs to consume a large amount of time and labor, resulting in low work efficiency. UTILITY MODEL CONTENTS
[0004] In view of the deficiencies in the prior art, the purpose of the utility model is to provide a kind of bare copper wire extraction line powder removing mechanism.
[0005] The technical solution adopted by the utility model to solve its technical problems is:
[0006] A kind of bare copper wire extraction line powder removing mechanism, including horizontal moving frame, the wire entry frame assembled on horizontal moving frame, the powder removing device assembled on horizontal moving frame at the wire outlet end of wire entry frame, and the copper wire output frame assembled on horizontal moving frame at the wire outlet end of powder removing device, the horizontal moving frame includes main plate, side plate welded at both ends of main plate, auxiliary column welded with side plate distributed at both ends, two guide columns parallelly arranged and welded with side plate distributed at both ends, sliding seat assembled on two guide columns, driving motor fixedly installed on one side of main plate, driving pulley installed on the output end of driving motor, driven pulley fixedly installed on the other side of main plate, belt connected with driving pulley and driven pulley and fixedly installed with sliding seat, wire entry frame, powder removing device and copper wire output frame are fixedly installed on sliding seat.
[0007] Preferably, the sliding seat includes a sliding seat body, guide column holes are formed on both sides of the lower end of the sliding seat body for sleeving the guide columns, and a belt pressing block with a screw is arranged at the central position of the lower side of the sliding seat body.
[0008] Preferably, the wire entry frame includes a mounting seat, a triangular support fixedly assembled with the mounting seat, a large wire wheel mounted on the triangular support, an L-shaped support post inserted on one side of the back of the triangular support, and a wire entry guide wheel assembled on the upper end of the L-shaped support post on the same side as the large wire wheel.
[0009] Further, a threading stud with a wire guide hole is provided on the mounting seat;
[0010] Furthermore, the triangular support has a bent assembly end with a through hole at one end facing the mounting base, and a nut sleeve aligned with the through hole is welded to one side of the assembly end.
[0011] Furthermore, a large guide wheel mounting hole is provided at the upper part of the triangular support near the assembly end.
[0012] Furthermore, the back of the triangular support is bent with a side wing plate with through holes.
[0013] Furthermore, the upper part of the L-shaped support is welded with a triangular reinforcing rib plate with assembly holes.
[0014] Preferably, the dust removal device includes a base plate, a lower foam cotton layer placed on the base plate, fixing studs distributed at the four opposite corners of the base plate and penetrating the base plate, an upper foam cotton layer stacked on the lower foam cotton layer, and a pressure plate placed on top of the upper foam cotton layer and penetrated by the fixing studs at its four corners.
[0015] Preferably, the copper wire output frame includes an L-shaped support arm fixedly mounted to the slide by screws, a first wire guide wheel mounted on one side of the L-shaped support arm, an extension post inserted into the other side of the L-shaped support arm, and a second wire guide wheel mounted on the end of the extension post and on the same side as the first wire guide wheel.
[0016] Furthermore, the L-shaped support arm is fitted with a plug-in block with a through hole at the location corresponding to the plug-in extension column.
[0017] The beneficial effects of this utility model are as follows: This utility model includes a transverse frame, an infeed frame, a de-dust removal device, and an output frame. Through an automated slide block and belt drive system, it can efficiently perform copper wire drawing and cleaning operations, reducing manual intervention and operation time. In addition, the guide wheel system of the infeed frame and the output frame can accurately guide the copper wire to remain stable during the drawing process, reducing the risk of copper wire knotting and tangling, and ensuring smooth copper wire transport. At the same time, the de-dust removal device can effectively remove copper powder adhering to the surface of the copper wire by clamping the copper wire with a lower foam cotton layer and an upper foam cotton layer. This is crucial for maintaining the quality and cleanliness of the copper wire. Therefore, this mechanism improves the efficiency, stability, and safety of copper wire drawing and de-dust removal through precise structural design and automated control, and has high application value. Attached Figure Description
[0018] Figure 1 This is a structural diagram of a bare copper wire drawing and powder removal mechanism according to the present invention;
[0019] Figure 2 for Figure 1 Exploded view;
[0020] Figure 3 for Figure 2 Structural diagram of the transverse shift frame;
[0021] Figure 4 for Figure 3 Exploded view of the middle slide;
[0022] Figure 5 for Figure 2 Exploded view of the central incoming line frame;
[0023] Figure 6 for Figure 2 Structural diagram of the dust removal device;
[0024] Figure 7 for Figure 2 Structural diagram of the copper wire output frame. Detailed Implementation
[0025] The present invention will be further described below with reference to the accompanying drawings and specific embodiments, so that those skilled in the art can better understand the present invention and implement it. However, the embodiments are not intended to limit the present invention.
[0026] Example
[0027] A bare copper wire drawing and powder removal mechanism, such as Figures 1-7 As shown, it includes a transverse frame 1, an inlet frame 2 mounted on the transverse frame 1, a dust removal device 3 mounted on the transverse frame 1 and located at the outlet end of the inlet frame 2, and a copper wire output frame 4 mounted on the transverse frame 1 and located at the outlet end of the dust removal device 3.
[0028] The transverse frame 1 includes a main board 11, side plates 12 welded to both ends of the main board 11, auxiliary columns 13 welded to the side plates at both ends, two guide columns 14 welded to the side plates at both ends and arranged in parallel, a slide block 15 mounted on the two guide columns 14, a drive motor 16 fixedly mounted on one side of the main board 11, a drive pulley 17 mounted on the output end of the drive motor 16, a driven pulley 17 fixedly mounted on the other side of the main board 11, a belt 19 connecting the drive pulley 17 and the driven pulley 17 and fixedly mounted to the slide block 15, and a wire feed frame 2, a de-dust removal device 3 and a copper wire output frame 4 simultaneously fixedly mounted on the slide block 15. Specifically, this allows the copper wire to be regularly discharged with the swing of the transverse frame 1 during the wire drawing process, while the de-dust removal device 3 cleans the copper powder attached to the copper wire.
[0029] The sliding seat 15 comprises a sliding seat body 151, guide column holes 152 for sleeving the guide columns 14 opened at both sides of the lower end of the sliding seat body 151, a belt pressing block 153 provided at the middle position of the lower side of the sliding seat body 151 and provided with a screw, specifically, the belt 19 contacts the bottom of the sliding seat body 151 and is fixedly installed through the belt pressing block 153, so that when the motor 16 drives the driving belt pulley 17, the sliding seat 15 is controlled to move back and forth through the belt 19, thereby facilitating the copper wire to be regularly led out during the wire drawing process along with the swinging of the traversing frame 1.
[0030] The wire inlet frame 2 comprises a mounting seat 21, a triangular support 22 fixedly assembled with the mounting seat 21, a large wire wheel 23 mounted on the triangular support 22, an L-shaped support column 24 inserted at the back side of the triangular support 22, and a wire inlet guide wheel 25 assembled on the upper end of the L-shaped support column 24 and located at the same side of the large wire wheel 23.
[0031] The mounting seat 21 is provided with a threading screw column 211 with a wire hole penetratingly arranged; one end of the triangular support 22 towards the mounting seat 21 is bent to have an assembly end 221 with a through hole, and a nut sleeve 222 with an aligned through hole is welded on one side of the assembly end 221, specifically, the threading screw column 211 is screw-connected and fixed with the nut sleeve 222 after penetrating through the mounting seat 21 and the assembly end 221, so that the triangular support 22 and the mounting seat 21 can be fixedly installed, and the copper wire can be conveniently conveyed through the threading screw column 211;
[0032] The triangular support 22 is provided with a large wire wheel mounting hole 223 at the upper end position close to the assembly end 221.
[0033] The back of the triangular support 22 is bent to have a side wing plate 224 with a through hole, the L-shaped support column 24 is inserted through the through hole of the side wing plate 224, and the L-shaped support column 24 is extruded and fixed by using the screw screwed into the side wing plate 224. The upper end position of the L-shaped support column 24 is welded with a triangular reinforcing rib plate 241 with an assembly hole, specifically, the wire inlet guide wheel 25 is installed on the triangular reinforcing rib plate 241.
[0034] The powder removing device 3 comprises a bottom plate 31, a lower foam layer 32 placed on the bottom plate 31, fixed studs 33 distributed at four corners of the bottom plate 31 and penetrating through the bottom plate 31, an upper foam layer 34 stacked on the lower foam layer 32, and a pressing plate 35 placed above the upper foam layer 34 and penetrated by the fixed studs 33 at four corners. Specifically, the fixed studs 33 are screwed into the slide body 151 after penetrating through the bottom plate 31, so that the bottom plate 31 is fixed with the slide body 151, and then the fixed studs 33 are screwed into nuts at one end penetrating through the pressing plate 35, so that the pressing plate 35 presses the lower foam layer 32 and the upper foam layer 34. In operation, the copper wire passes through the contact surface of the lower foam layer 32 and the upper foam layer 34, and the copper powder on the surface of the copper wire is removed by the lower foam layer 32 and the upper foam layer 34 clamped with each other.
[0035] The copper wire output frame 4 comprises an L-shaped supporting arm 41 fixedly installed with the slide 15 through screws, a first wire outlet guide wheel 42 installed on one side of the L-shaped supporting arm 41, an extension column 43 inserted on the other side of the L-shaped supporting arm 41, and a second wire outlet guide wheel 44 installed on the end of the extension column 43 and on the same side of the first wire outlet guide wheel 42. The L-shaped supporting arm 41 is welded with an insertion block 411 with a through hole at the position corresponding to the insertion of the extension column 43. Specifically, the extension column 43 is inserted into the insertion block 411, and then the extension column 43 is fixed by being squeezed by screws screwed into the insertion block 411.
[0036] The above embodiments of the present application are not a limitation on the protection scope of the present application, and the implementation manner of the present application is not limited to the above. According to the above content of the present application, according to the ordinary technical knowledge and common practice in the art, other various forms of modifications, replacements or changes to the above structure of the present application without departing from the above basic technical idea of the present application should be within the protection scope of the present application.
Claims
1. A bare copper wire drawing and powder removing mechanism, characterized by, The utility model provides a copper wire production line, which comprises a transverse moving frame, a wire inlet frame assembled on the transverse moving frame, a powder removing device assembled on the transverse moving frame and located at the wire outlet end of the wire inlet frame, and a copper wire output frame assembled on the transverse moving frame and located at the wire outlet end of the powder removing device.
2. The bare copper wire puller dust removal mechanism according to claim 1, wherein, The sliding seat comprises a sliding seat body, guide column holes for sleeving the guide columns and arranged at both sides of the lower end of the sliding seat body, and a screw belt pressing block arranged at the middle position of the lower side of the sliding seat body.
3. The bare copper wire puller dust removal mechanism according to claim 1, wherein, The wire inlet frame comprises a mounting seat, a triangular support fixedly assembled with the mounting seat, a large wire wheel mounted on the triangular support, an L-shaped support post inserted into the back side of the triangular support, and a wire inlet guide wheel assembled on the upper end of the L-shaped support post and located on the same side of the large wire wheel.
4. The bare copper wire desmear mechanism of claim 3, wherein, The mounting seat is provided with a wire insertion screw column with a wire hole penetrating through the mounting seat; The triangular support is bent at one end facing the mounting seat to form an assembly end with a through hole, and a nut sleeve aligned with the through hole is welded on one side of the assembly end; A large wire wheel mounting hole is formed in the upper end position of the triangular support close to the assembly end.
5. The bare copper wire puller dust removal mechanism according to claim 3, wherein, The back of the triangular support is bent to form a wing plate with a through hole.
6. The bare copper wire puller dust removal mechanism according to claim 3, wherein, A triangular reinforcing rib plate with an assembly hole is welded on the upper end position of the L-shaped support post.
7. The bare copper wire puller dust removal mechanism according to claim 1, wherein, The powder removing device comprises a bottom plate, a lower foam cotton layer placed on the bottom plate, fixing screw columns penetrating through the bottom plate and arranged at four diagonal positions of the bottom plate, an upper foam cotton layer stacked on the lower foam cotton layer, and a pressing plate placed above the upper foam cotton layer and penetrated by the fixing screw columns at four corners.
8. The bare copper wire puller dust removal mechanism according to claim 1, wherein, The copper wire output frame comprises an L-shaped supporting arm fixedly installed with the sliding seat through a screw, a first wire outlet guide wheel installed on one side of the L-shaped supporting arm, an extension column inserted into the other side of the L-shaped supporting arm, and a second wire outlet guide wheel installed on the end of the extension column and located on the same side of the first wire outlet guide wheel.
9. The bare copper wire puller dust removal mechanism according to claim 8, wherein, An insertion block with a through hole is welded on the position of the L-shaped supporting arm corresponding to the extension column.