材料科学
铜
腐蚀
镍
合金
冶金
融合
镍合金
语言学
哲学
作者
Zhuangzhuang Liu,Qianwen Zhang,Bowei Zhang,Yixuan Wang,Pengcheng Zuo,Zequn Zhang,Junsheng Wu,Xiongbo Yan,Yizhong Huang,Xiaogang Li
标识
DOI:10.1016/j.corsci.2024.112040
摘要
70/30 copper-nickel alloy was manufactured by laser powder bed fusion (LPBF), followed by the comprehensive investigation on the relationship between its microstructures and mechanical properties as well as corrosion behavior. The results show that dislocation tangles at cellular boundaries can greatly contribute to its superior tensile properties than the commercial counterpart. In addition, the combination of dislocation tangles and nanoscale copper enrichment/nickel depletion directly leads to the heterogeneous film formation process during immersion in corrosive media. Moreover, experimental and computational results both suggest that exposed facets are another important role to determine the corrosion behavior of LPBF 70/30 copper-nickel alloy.
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