Copper Alloy Design for Preventing Sulfur-Induced Embrittlement in Copper

Author:

Ahn Minkyu1ORCID,Park Jinwoo1ORCID,Yu Gyeongsik1,Kim Sangeun1,Cho Dong-Keun2,Jin Hyung-Ha2,Shin Chansun1ORCID

Affiliation:

1. Department of Materials Science and Engineering, Myongji University, 116 Myongji-ro, Cheoin-gu, Yongin 17058, Republic of Korea

2. Korea Atomic Energy Research Institute, 111, Daedeok-daero 989, Yuseong-gu, Daejeon 34057, Republic of Korea

Abstract

This study presents an experimental approach to address sulfur-induced embrittlement in copper alloys. Building on recent theoretical insights, we identified specific solute elements, such as silicon and silver, known for their strong binding affinity with vacancies. Through experimental validation, we demonstrated the effectiveness of Si and Ag in preventing sulfur-induced embrittlement in copper, even though they are not typical sulfide formers such as zirconium. Additionally, our findings highlight the advantages of these elements over traditional solutes, such as their high solubility and propensity to accumulate along grain boundaries. This approach may have the potential to be applied to other metals prone to sulfur-induced embrittlement, including nickel, iron, and cobalt, offering broader implications for materials engineering strategies and alloy development.

Funder

National Research Foundation of Korea

Publisher

MDPI AG

Subject

General Materials Science

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