Researches for higher electrical conductivity copper‐based materials

Author:

Zhang Wen‐Jing123ORCID,Huang Lue1234,Mi Xu‐Jun4,Xie Hao‐Feng123,Feng Xue13,Ahn Jee Hyuk5

Affiliation:

1. State Key Laboratory of Nonferrous Metals and Processes GRINM Group Co., Ltd. Beijing China

2. GRIMAT Engineering Institute Co., Ltd. Beijing China

3. General Research Institute for Nonferrous Metals Beijing China

4. School of Materials Science and Engineering South China University of Technology Guangzhou China

5. Extreme Materials Institute Korea Institute of Materials and Science Changwon Korea

Abstract

AbstractCopper and copper‐based materials are widely used in power electronics, automobiles, mechanical manufacturing and high‐tech manufacturing fields such as aerospace, telecommunications and integrated circuits owing to their comprehensive advantages in mechanical, electrical conductivity and processing properties. With the rapid development of technology, many emerging technical fields have introduced more challenging requirements for the electrical conductivity of copper. This article reviews the research status of high‐conductivity copper‐based materials and introduces three methods to improve electrical conductivity, including purification, alloying and addition of nanocarbon materials. We summarise the advantages, disadvantages and future development trends of methods for improving copper conductivity. The key to producing high‐conductivity copper‐based materials is development of low‐cost, continuous and stable processes.

Publisher

Wiley

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