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Towards high-entropy alloys with high-temperature corrosion resistance and structural stability
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作者 Meifeng Li hani henein +1 位作者 Chungen Zhou Jing Liu 《Journal of Materials Science & Technology》 SCIE EI CAS CSCD 2024年第7期133-144,共12页
Complex component alloys(CCAs)consisting of multiple principal elements potentially encompass su-perior mechanical properties and good corrosion resistance.Eutectic high-entropy alloys(EHEAs)stand out from CCAs as the... Complex component alloys(CCAs)consisting of multiple principal elements potentially encompass su-perior mechanical properties and good corrosion resistance.Eutectic high-entropy alloys(EHEAs)stand out from CCAs as the desired candidates for high-temperature(HT)applications due to the combined advantages of HEA alloys and unique equilibrium eutectic structure.This work first explores the ther-modynamic calculation route toward HEAs with eutectic structure.Series of pseudo-binary diagrams of transition metal(TM)CCAs were calculated with the Calphad approach to locate the potential eutectic points.The representatives of a CrFeCoNi_(2.2)Al alloy with eutectic structure and a non-eutectic CrFeCoNiCu alloy were cast,and their HT performance was further evaluated by hot corrosion with Na_(2)SO_(4)+25 wt%NaCl molten salts at 700,800 and 900℃,respectively.The HT degradation mechanism was explicitly revealed from a comprehensive thermodynamic perspective.Relationships between the HT performance and the inherent physicochemical properties of the constituent phases and the alloying components were addressed for the first time.It was found that the mixing enthalpy(△H_(mix))and valance electron concen-tration(VEC)played more decisive roles in the hot corrosion resistance than the mixing entropy(△S_(mix))of CCAs.A strategy for tailoring and developing HEAs for HT application by modulating alloy chemistry and microstructural features was proposed. 展开更多
关键词 CCAs HEAs EHEAs Hot corrosion Phase stability CALPHAD
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