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The Reliable Fine Copper Wire Drawing Machine With Annealing System integrates precision drawing dies, stable transmission systems,automatic line traversal compensation system, and advanced annealing technology to provide an efficient solution for fine copper wire production.During the drawing process, copper wire passes through multiple drawing dies to gradually reduce the diameter while maintaining accurate dimensions and surface quality. The integrated annealing system uses IGBT DC power supply technology to provide stable heating performance, helping release internal stress generated during drawing and improving wire flexibility and mechanical properties.
Available in multiple configurations, the machine supports different wire diameter ranges, transmission structures, lubrication methods, and take-up solutions, making it suitable for manufacturers requiring high-quality copper wires and continuous production efficiency.
The machine adopts a multi-draft drawing structure with precision dies, enabling gradual wire diameter reduction while maintaining accurate dimensional control and stable wire quality during production.
The entire system is equipped with an automatic line traversal compensation system independently developed by the company, ensuring accurate wire arrangement during winding and improving take-up quality.
High-quality imported transmission belts are used to achieve low-noise operation and smooth transmission performance. A high-precision displacement sensor provides synchronous feedback control to maintain stable wire tension and ensure reliable operation during continuous production.
The machine adopts an IGBT DC power supply for annealing, providing efficient energy conversion and stable heating performance. The annealing curve can be preset according to production requirements, ensuring consistent tensile strength and elongation performance during acceleration, deceleration, and constant-speed operation.
The machine supports different models with various inlet diameters, finished wire diameters, transmission structures, lubrication methods, and optional take-up systems to meet different copper wire production requirements.
Model | XL204-24D5/TH200-300 | ZXL268-14D3/TH200-500 | ZXL250-16D5/TH200-600 |
Material | Cu | ||
Max. inlet dia. | Ф1.2 | Ф1.6 | Ф1.8 |
Numbers of dies | 22/24 | 14 | 16 |
Fnished dia. | Ф0.08-Ф0.40 | φ0.25—φ0.50 | φ0.20—φ0.65 |
Max. production speed | 2000m/min | 1000m/min | 1200m/min |
Type of transmission | Flat belt | Flat belt | Synchronous belt |
Lubrication type | Spray type | Spray type | Fully submerged |
Annealing power | 18kW | 30kW | 36kW |
Protective gas | Steam/Nitrogen | ||
Bobbin size | Ф300 or Ф400 ,Double-bobbin spooler or automatic take-up machine optionally. | ||
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Used for manufacturing fine copper wires applied in power cables, electrical wires, and connection cables. The integrated annealing system helps improve wire flexibility, reduce internal stress, and maintain stable electrical and mechanical performance during continuous production.
Suitable for producing fine copper wires used in electronic components, connectors, and precision electrical devices. The machine provides accurate diameter control, smooth surface quality, and consistent wire performance for electronic wire applications.
Applied in manufacturing copper wires for communication cables, signal transmission systems, and data cables. The machine helps maintain consistent wire dimensions and reliable mechanical properties required for high-quality communication wire production.
Suitable for manufacturing fine copper wires requiring strict diameter tolerance, smooth surface finish, and stable mechanical properties. The machine provides reliable drawing and annealing performance for precision wire production.
This machine is mainly designed for copper wire drawing and is suitable for producing fine copper wires requiring high dimensional accuracy and stable mechanical properties.
The annealing system helps reduce internal stress generated during wire drawing, improving wire flexibility, elongation performance, and processing stability.
The maximum production speed depends on the selected model. According to different configurations, the machine can achieve production speeds of up to 2000 m/min.