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Enhanced Mechanical and Electrical Performance of Ag-4wt.%Zrb2 Contact Materials Prepared with Different-Sized Ag Powder

31 Pages Posted: 24 Jul 2023 Publication Status: Published

See all articles by Yuan Fei

Yuan Fei

affiliation not provided to SSRN

Xianhui Wang

Xi'an University of Technology

Nana Zhao

affiliation not provided to SSRN

Hangyu Li

Northwest Institute for Non-ferrous Metal Research

Yanru Qiu

Xi'an University of Technology

Zhen Li

Xi'an University of Technology

Abstract

To clarify the effect of silver particle size on the microstructure, properties and arc erosion behavior of silver-based contact materials, the Ag-4wt.%ZrB2 contact materials were prepared with coarse and fine Ag powder utilizing wet mixing and spark plasma sintering. The microstructures and eroded morphologies of the Ag-4wt.%ZrB2 contact materials were characterized, the arc duration/energy, welding force and mass loss were investigated, and the effect of silver particle size on arc erosion behavior was discussed as well. The results show that the fine Ag powder is beneficial for the uniform dispersion of the ZrB2 in the Ag matrix, and enhancement of the hardness and electrical conductivity. As compared to the Ag-4wt.%ZrB2 contact material prepared with the coarse Ag powder, the hardness and electrical conductivity are increased by 66.26% and 32.92%, respectively. Furthermore, the contact material prepared with fine Ag powder has shorter break-arc duration and lower break-arc energy, as well as a smaller welding force and less mass loss, thereby exhibiting superior arc erosion and welding resistance.

Keywords: contact materials, wet mixing, Ag particle size, arc erosion, arc energy

Suggested Citation

Fei, Yuan and Wang, Xianhui and Zhao, Nana and Li, Hangyu and Qiu, Yanru and Li, Zhen, Enhanced Mechanical and Electrical Performance of Ag-4wt.%Zrb2 Contact Materials Prepared with Different-Sized Ag Powder. Available at SSRN: https://ssrn.com/abstract=4519394 or http://dx.doi.org/10.2139/ssrn.4519394

Yuan Fei

affiliation not provided to SSRN ( email )

No Address Available

Xianhui Wang (Contact Author)

Xi'an University of Technology ( email )

Nana Zhao

affiliation not provided to SSRN ( email )

No Address Available

Hangyu Li

Northwest Institute for Non-ferrous Metal Research ( email )

Xi'an, 710016
China

Yanru Qiu

Xi'an University of Technology ( email )

Zhen Li

Xi'an University of Technology ( email )

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