Real-Time News

  • January

    20

    Optimizing Busbar Performance: The Impact of Copper Annealing

    cnrhi 2025-01-20 15:07:33 Post Seen

    The copper annealing process is crucial in busbar manufacturing, as it improves ductility, resistance to deformation and fatigue, and conductivity, directly impacting performance and longevity. Precisely controlling annealing enhances product quality, reduces failure rates, and boosts production efficiency. Fine-tuning the process is key to developing high-performance busbars and new materials.

    Learn More
  • January

    07

    Copper Busbar Twisting Process: Enhancing Electrical and Vibration Resistance

    cnrhi 2025-01-07 10:56:35 Post Seen

    The copper busbar twisting process enhances vibration resistance, adaptability, and electrical performance. Despite challenges like precise control and equipment needs, its benefits in high-vibration, temperature-variable, and complex environments make it essential. Proper annealing, equipment precision, and surface treatments ensure successful implementation for diverse applications.

    Learn More
  • December

    11

    Copper Busbar Bending Radius and Thickness

    cnrhi 2024-12-11 16:36:29 Post Seen

    The bending radius-to-thickness ratio is crucial in copper busbar design, ensuring optimal electrical performance, mechanical strength, and reliability. Precise design and accurate bending are essential for long-term performance in power systems, EVs, and industrial applications.

    Learn More
  • November

    15

    RHI Showcases Innovative Busbar Solutions at The Smarter E Europe 2024

    cnrhi 2024-11-15 09:17:53 Post Seen

    RHI was proud to participate in The Smarter E Europe 2024 at Messe München, Munich, from June 19–21. At Booth B2.175, we connected with industry professionals, including new and long-standing partners, expanding our global reach and boosting brand recognition in the new energy sector. The event reinforced our commitment to advancing innovative solutions for sustainable energy growth worldwide.

    Learn More
Previous page1234Next page Go to No.