Manganese-copper wire calender

By designing an adjustable drive wheel assembly and driven wheel assembly for the manganese copper wire calender, the problem of inflexibility in the existing manganese copper wire calendering technology has been solved, enabling targeted calendering at different positions and improving calendering efficiency and precision.

CN223902610UActive Publication Date: 2026-02-13ZHEJIANG MINGHUICHENGHE MICROELECTRONICS CO LTD
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Patent Information

Application Number
CN202520455598.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-14
Publication Date
2026-02-13
Estimated Expiration
2035-03-14

AI Technical Summary

Technical Problem

Existing technologies have failed to effectively address the specific location issues in the targeted rolling of manganese-copper wire.

Method used

A manganese copper wire calender was designed, including a stand, a drive wheel assembly, and a driven wheel assembly. The drive wheel can be directly opposite, offset from, or away from the driven wheel. By adjusting the structure of the stand, targeted calendering of different positions of the manganese copper wire can be achieved.

Benefits of technology

It enables flexible rolling of manganese-copper wire at different locations, improving rolling efficiency and precision.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223902610U_ABST
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Abstract

The utility model discloses a manganese-copper wire calender which comprises a vertical frame, a driving wheel assembly and a driven wheel assembly. The vertical frame comprises a horizontal rod, a first vertical plate, a first vertical plate extending plate and a second vertical plate, the horizontal rod is sleeved with the first vertical plate and the second vertical plate, and the first vertical plate and the first vertical plate extending plate are fixedly connected and located on the side close to the driving wheel at the same time; the driving wheel assembly comprises a driving wheel and a driving motor, the driving motor is provided with a motor output shaft, the driving motor is located on the side away from the driving wheel, and the motor output shaft is fixedly connected with the driving wheel; the driven wheel assembly comprises two driven wheels, and gaps are formed between the driving wheels and the driven wheels. The manganese-copper wire calender disclosed by the utility model has the beneficial effects that the driving wheel can be over against the driven wheel, the driving wheel can also be arranged on the driven wheel in an offset manner, and the driving wheel can also be far away from the driven wheel, so that different positions of a manganese-copper wire can be calendered in a targeted manner.
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Description

TECHNICAL FIELD

[0001] The utility model belongs to the field of manganese copper wire rod manufacturing, specifically relates to a manganese copper wire rod calender. BACKGROUND

[0002] The utility model discloses a new copper alloy wire rod extrusion mechanism with the publication number CN205763018U, the subject name is a new copper alloy wire rod extrusion mechanism, the IPC classification number is B21C23 / 08, and its technical scheme discloses "a new copper alloy wire rod extrusion mechanism including extrusion wheel, extrusion shoe, plug, discharge port, extrusion die, slot sealing block, compression wheel and blank, the compression wheel is provided with the compression wheel above, the extrusion wheel and the compression wheel are provided with extrusion feed cavity between, the blank is provided in the extrusion feed cavity, the extrusion shoe is provided below the extrusion wheel, the extrusion wheel and the extrusion shoe are provided with extrusion wheel groove, the extrusion shoe is provided with the extrusion die, the extrusion die is connected and is provided with the slot sealing block above, the extrusion shoe is provided with the plug on the bottom position of the extrusion die, and the extrusion die is provided with the discharge port".

[0003] It can be seen from the above utility model patent that one of the technical schemes of the copper alloy wire rod extrusion mechanism has been disclosed. However, the technical scheme disclosed in the above utility model patent focuses on high speed and high efficiency and does not further solve the problems of different positions of the calendered manganese copper wire rod, and needs to be further improved. UTILITY MODEL CONTENT

[0004] The utility model provides a manganese copper wire rod calender for overcoming the above defects in the prior art.

[0005] The utility model adopts the following technical scheme, and the manganese copper wire rod calender comprises a stand, a driving wheel assembly and a driven wheel assembly, wherein:

[0006] The stand comprises a horizontal rod, a first vertical plate, a first vertical plate extension plate and a second vertical plate, the first vertical plate and the second vertical plate are respectively sleeved on the horizontal rod, the first vertical plate is fixedly connected with the first vertical plate extension plate and is located on the side close to the driving wheel at the same time;

[0007] The driving wheel assembly comprises a driving wheel and a driving motor, the driving motor is provided with a motor output shaft, the driving motor is located on the side away from the driving wheel, and the motor output shaft is fixedly connected with the driving wheel;

[0008] The driven wheel assembly comprises two driven wheels, and the driving wheel and the driven wheels have a gap therebetween.

[0009] As a preferred technical scheme of the above technical scheme, the stand further comprises a first rod sleeve and a second rod sleeve sleeved on the horizontal rod, the first rod sleeve is fixedly connected with the first vertical plate, and the second rod sleeve is fixedly connected with the second vertical plate.

[0010] As the preferred technical scheme of the above technical scheme, the stand further comprises a second stand plate extension plate provided with an extension plate protruding part, the second stand plate extension plate is fixedly connected with the second stand plate, the motor output shaft is tangent to the extension plate protruding part, and the extension plate protruding part is fixedly connected with the driving motor.

[0011] As the preferred technical scheme of the above technical scheme, the driving wheel comprises an inner ring and an outer ring, a plurality of connecting pieces are arranged between the inner ring and the outer ring, a sector-shaped piece is arranged between two adjacent connecting pieces, and the inner ring, the outer ring, the connecting pieces and the sector-shaped piece are integrally formed.

[0012] As the preferred technical scheme of the above technical scheme, the driven wheel comprises a rotating shaft and two driven wheel bodies coaxially distributed with the rotating shaft, the two driven wheel bodies are in contact with each other and integrally formed.

[0013] The manganese copper wire rod calender disclosed by the utility model has the beneficial effects that the driving wheel can be opposite to the driven wheel, the driving wheel can be offset from the driven wheel, and the driving wheel can be far away from the driven wheel, so that different positions of the manganese copper wire rod can be calendered in a targeted manner. BRIEF DESCRIPTION OF DRAWINGS

[0014] Figure 1 It is a perspective view of one angle of the application.

[0015] Figure 2 It is a perspective view of another angle of the application.

[0016] Figure 3 It is a front view of the application.

[0017] Figure 4 It is a rear view of the application.

[0018] Figure 5 It is Figure 1 A local enlarged view of the A area of

[0019] Figure 6 It is Figure 2 A local enlarged view of the B area of

[0020] Figure 7 It is Figure 3 A local enlarged view of the C area of

[0021] Figure 8 It is Figure 4 A local enlarged view of the D area of

[0022] The reference signs include: 100 - stand; 110 - horizontal rod; 111 - first rod sleeve; 112 - second rod sleeve; 120 - first vertical plate; 130 - first vertical plate extension plate; 140 - second vertical plate; 150 - second vertical plate extension plate; 151 - extension plate protrusion; 160 - cross rod; 200 - driving wheel assembly; 201 - gap; 210 - driving wheel; 211 - inner ring; 212 - outer ring; 213 - connecting piece; 214 - sector; 220 - driving motor; 221 - motor output shaft; 300 - driven wheel assembly; 310 - driven wheel; 311 - driven wheel wheel body; 312 - rotating shaft; 320 - positioning plate; 330 - base plate. DETAILED DESCRIPTION

[0023] The utility model discloses a kind of manganese copper wire rod calenders, below Preferred Embodiment (Example 1), referring to the Figures 1 to 8 , the specific embodiment of the utility model is further described.

[0024] Referring to the Figures 1 to 8 , Figures 1 to 4 Different views of manganese copper wire rod calender are respectively shown, Figures 5 to 8 Part of the structure of manganese copper wire rod calender is respectively shown.

[0025] Example 1.

[0026] Preferably, manganese copper wire rod calender, including stand 100, driving wheel assembly 200 and driven wheel assembly 300, wherein:

[0027] Stand 100 includes horizontal rod 110, first vertical plate 120, first vertical plate extension plate 130 and second vertical plate 140, first vertical plate 120 and second vertical plate 140 are respectively sleeved in horizontal rod 110, first vertical plate 120 is fixedly connected with first vertical plate extension plate 130 and simultaneously located on the side close to driving wheel 210;So that by translating the horizontal position of first vertical plate 120 or second vertical plate 140 relative to horizontal rod 110, the relative position of driving wheel 210 relative to driven wheel 310 can be changed;Driving wheel 210 can be directly opposite driven wheel 310, driving wheel 210 can be offset to driven wheel 310, and driving wheel 210 can be away from driven wheel 310, so as to calender different positions of manganese copper wire rod pertinently;

[0028] Driving wheel assembly 200 includes driving wheel 210 and driving motor 220, and driving motor 220 is provided with motor output shaft 221, driving motor 220 is located on the side away from driving wheel 210, and motor output shaft 221 is fixedly connected with driving wheel 210;

[0029] The driven wheel assembly 300 includes two driven wheels 310, and the driving wheel 210 has a gap 201 with the driven wheels 310 (when the driving wheel 210 is just above the driven wheels 310, that is, the driving wheel 210 is just above the driven wheels 310) so as to put the manganin wire (not shown in the figure) to be calendered in the gap 201.

[0030] The stand 100 further comprises a first rod sleeve 111 and a second rod sleeve 112 sleeved with the horizontal rod 110, the first rod sleeve 111 is fixedly connected with the first vertical plate 120, and the second rod sleeve 112 is fixedly connected with the second vertical plate 140, so as to increase the contact area of the first vertical plate 120, the second vertical plate 140 and the horizontal rod 110, and facilitate translation.

[0031] The stand 100 further comprises a second vertical plate extension plate 150 provided with an extension plate protruding portion 151, the second vertical plate extension plate 150 is fixedly connected with the second vertical plate 140, the motor output shaft 221 is inscribed in the extension plate protruding portion 151, and the extension plate protruding portion 151 is fixedly connected with the driving motor 220, so as to stabilize the relative position relationship of the driving motor 220, the motor output shaft 221 and the driving wheel 210.

[0032] The driving wheel 210 comprises an inner ring 211 and an outer ring 212, a plurality of connecting plates 213 are arranged between the inner ring 211 and the outer ring 212, a sector plate 214 is arranged between adjacent two connecting plates 213, and the inner ring 211, the outer ring 212, the connecting plates 213 and the sector plate 214 are integrally formed.

[0033] The stand 100 further comprises a cross rod 160, and the driven wheel assembly 300 further comprises a base plate 330 and two positioning plates 320, the two positioning plates 320 are arranged on the two sides of the driven wheel 310, the base plate 330 is fixedly connected with the positioning plates 320, and the base plate 330 is fixedly connected with the cross rod 160, so that the relative position of the driven wheel 310 relative to the stand 100 remains unchanged.

[0034] The driven wheel 310 comprises a rotating shaft 312 and two driven wheel bodies 311 coaxially distributed with the rotating shaft 312, and the two driven wheel bodies 311 are in contact with each other and integrally formed.

[0035] It is worth mentioning that the specific structure and the like technical features of the driving motor 220 involved in the utility model patent application should be regarded as prior art, the specific structure, working principle and possible control mode and spatial arrangement mode involved in the technical features can be selected according to the prior art, and should not be regarded as the invention point of the utility model patent, and the utility model patent will not be further expanded and described in detail.

[0036] Any modification, equivalent replacement, improvement, etc. made within the spirit and principle of the present application should be included in the protection scope of the present application.

Claims

1. A manganese-copper wire rolling mill, characterized in that, Includes a frame, drive wheel assembly, and driven wheel assembly, wherein: The frame includes a horizontal bar, a first vertical plate, a first vertical plate extension plate, and a second vertical plate. The first vertical plate and the second vertical plate are respectively sleeved on the horizontal bar. The first vertical plate and the first vertical plate extension plate are fixedly connected and are located on the side closer to the drive wheel. The drive wheel assembly includes a drive wheel and a drive motor. The drive motor has a motor output shaft and is located on the side away from the drive wheel. The motor output shaft is fixedly connected to the drive wheel. The driven wheel assembly includes two driven wheels with a gap between the driving wheel and the driven wheels.

2. The manganese-copper wire rolling mill according to claim 1, characterized in that, The uprights also include a first sleeve and a second sleeve that are fitted onto the horizontal bar. The first sleeve is fixedly connected to the first upright plate, and the second sleeve is fixedly connected to the second upright plate.

3. The manganese-copper wire rolling mill according to claim 1, characterized in that, The frame also includes a second upright plate extension plate, which has an extension plate protrusion. The second upright plate extension plate is fixedly connected to the second upright plate, and the motor output shaft is internally connected to the extension plate protrusion. The extension plate protrusion is fixedly connected to the drive motor.

4. The manganese-copper wire rolling mill according to claim 1, characterized in that, The drive wheel includes an inner ring and an outer ring, with several connecting pieces between the inner and outer rings, and a fan-shaped piece between two adjacent connecting pieces. The inner ring, outer ring, connecting pieces, and fan-shaped pieces are integrally formed.

5. The manganese-copper wire rolling mill according to claim 1, characterized in that, The driven wheel includes a rotating shaft and two driven wheel bodies distributed coaxially with the rotating shaft. The two driven wheel bodies are in contact with each other and are integrally formed.

Citation Information

Patent Citations

  • Novel copper alloy wire pushes mechanism

    CN205763018U