Abstract

Multivariate synergistic alloying is an effective means to improve the comprehensive mechanical properties of metallic materials. Eutectic high-entropy alloys achieve heterogeneous biphasic layered structures on the micro and nano scale resulting in very good properties, most of the current alloying studies of CoCrFeNi eutectic high-entropy alloys focus on unitary alloying. In this work, the design strategy of CoCrFeNi eutectic high-entropy alloys based on infinite solid solution synergistic alloying is proposed, and a series of eutectic high-entropy alloys consisting of face-centered cubic (FCC) and intermetallic compound (IM) with fine and regular microstructures are successfully designed, and some of the synergistic alloying eutectic high-entropy alloys have very excellent comprehensive mechanical properties.

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