Simultaneously improving mechanical properties and oxidation resistance of Ti-bearing high-entropy superalloys at intermediate temperature via silicon addition

JOURNAL OF MATERIALS SCIENCE & TECHNOLOGY(2023)

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摘要
Ti-bearing high-entropy superalloys (HESAs) often suffer from severe intergranular embrittlement and terrible oxidation degradation at intermediate temperatures. Here we showcase that minor Si addition can effectively mitigate the intergranular embrittlement and improve the oxidation resistance of the a (Ni2Co2FeCr)92Ti4Al4 HESA at 700 degrees C simultaneously. Experimental analysis revealed that the intergranu-lar G phase induced by 2 at% Si addition can effectively suppress the inward diffusion of oxygen along grain boundaries at 700 degrees C, thus enhancing the tensile ductility of the alloy from-8.3% to-13.4%. Be -sides, the 2 at% Si addition facilitated the formation of a continuous Al2O3 layer during oxidation, con-tributing to a remarkable reduction in the growth rate of the oxide scale to a quarter of the Si-free HESA. Our results demonstrate that Si can be a favorable alloying element to design advanced HESAs with syn-ergistically improved thermal-mechanical performance.(c) 2023 Published by Elsevier Ltd on behalf of The editorial office of Journal of Materials Science & Technology.
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关键词
High-entropy superalloy,Mechanical property,Oxidation behavior,Intermediate temperature,Silicon addition
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