Nano-Y2o3 Effects on the Electrical Contact Properties of Al2o3-Cu/35cr3tib2 Composites

25 Pages Posted: 13 Sep 2023

See all articles by Zipeng Ma

Zipeng Ma

Henan University of Science and Technology

Meng Zhou

Henan University of Science and Technology - School of Materials Science and Engineering

Baohong Tian

Henan University of Science and Technology

Yi Zhang

Henan University of Science and Technology - School of Materials Science and Engineering

Heng Li

Henan University of Science and Technology

Xu Li

National Institute of Metrology

Jin Zou

Jiangxi Academy of Sciences

Haoyan Hu

Henan University of Science and Technology

Ke Jing

Henan University of Science and Technology

Yong Liu

Henan University of Science and Technology

Alex Volinsky

University of South Florida - Department of Mechanical Engineering

Abstract

Al2O3-Cu/35Cr3TiB2 and 0.5Y2O3/Al2O3-Cu/35Cr3TiB2 electrical contact composites were prepared by vacuum hot pressing sintering endo-oxidation method. Both composites were over 98% dense with tensile and compressive strengths of 395 MPa, 413 MPa, and 839 MPa, 898 MPa, respectively. The TEM results showed that Cr and TiB2 particles along with Al2O3 nanoparticles generated by internal oxidation were uniformly distributed in the Cu matrix. The addition of Y2O3 had almost no negative effects on the electrical conductivity and hardness of the composites. The electrical contact parameters such as arc energy, arc duration, and weld force between pairs of contacts were analyzed. The material transfer direction of both composite contacts was from cathode to anode. The average welding force of the contacts decreased by 24.6% after the addition of Y2O3, and the material transfer and loss decreased by 28.6% and 42% at 35 A current, respectively. The addition of Y2O3 reduced the arc energy and duration by 43.7% and 55.9% at 25 A and 35 A, respectively, and improved the stability of the contacts during disconnect and closure.

Keywords: Copper-based composites, electrical contact, material transfer, arc energy, welding force

Suggested Citation

Ma, Zipeng and Zhou, Meng and Tian, Baohong and Zhang, Yi and Li, Heng and Li, Xu and Zou, Jin and Hu, Haoyan and Jing, Ke and Liu, Yong and Volinsky, Alex, Nano-Y2o3 Effects on the Electrical Contact Properties of Al2o3-Cu/35cr3tib2 Composites. Available at SSRN: https://ssrn.com/abstract=4571247 or http://dx.doi.org/10.2139/ssrn.4571247

Zipeng Ma

Henan University of Science and Technology ( email )

263 Kaiyuan Ave, Luolong Qu
Luoyang Shi
China

Meng Zhou

Henan University of Science and Technology - School of Materials Science and Engineering ( email )

Luoyang
China

Baohong Tian

Henan University of Science and Technology ( email )

263 Kaiyuan Ave, Luolong Qu
Luoyang Shi
China

Yi Zhang (Contact Author)

Henan University of Science and Technology - School of Materials Science and Engineering ( email )

Luoyang
China

Heng Li

Henan University of Science and Technology ( email )

263 Kaiyuan Ave, Luolong Qu
Luoyang Shi
China

Xu Li

National Institute of Metrology ( email )

No.18, Bei San Huan Dong Lu, Chaoyang District
Beijing
China

Jin Zou

Jiangxi Academy of Sciences ( email )

Nanchang
China

Haoyan Hu

Henan University of Science and Technology ( email )

263 Kaiyuan Ave, Luolong Qu
Luoyang Shi
China

Ke Jing

Henan University of Science and Technology ( email )

263 Kaiyuan Ave, Luolong Qu
Luoyang Shi
China

Yong Liu

Henan University of Science and Technology ( email )

263 Kaiyuan Ave, Luolong Qu
Luoyang Shi
China

Alex Volinsky

University of South Florida - Department of Mechanical Engineering ( email )

Tampa, FL
United States

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