Ning Xu , Dongpo Xuan , Han Guo , Yubo Huang , Xuming Liu , Shilei Li , Yan-dong Wang , Junsheng Wang
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引用次数: 0
Abstract
The body-centered tetragonal (BCT) metastable phases are usually observed during deformation and rarely after heat treatment. Here, we developed a novel dual-phase high-entropy alloy (HEA) featuring about 10 vol% blocky BCT and 90 vol% FCC phases by high temperature treatment. Our designed HEA exhibits a good strength–ductility balance, accompanied by a special fracture mode. This work not only advances the understanding of the intergranular cracking behaviors but also offers a strategy to develop new duplex HEAs with good work hardening.
期刊介绍:
This journal is a platform for publishing innovative research and overviews for advancing our understanding of the structure, property, and functionality of complex metallic alloys, including intermetallics, metallic glasses, and high entropy alloys.
The journal reports the science and engineering of metallic materials in the following aspects:
Theories and experiments which address the relationship between property and structure in all length scales.
Physical modeling and numerical simulations which provide a comprehensive understanding of experimental observations.
Stimulated methodologies to characterize the structure and chemistry of materials that correlate the properties.
Technological applications resulting from the understanding of property-structure relationship in materials.
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