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双相高熵合金研究综述

Review of research on dual-phase high entropy alloys

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【作者】 张慧敏魏昊高占杰陈泽瑾张维娜刘振宇

【Author】 ZHANG Huimin;WEI Hao;GAO Zhanjie;CHEN Zejin;ZHANG Weina;LIU Zhenyu;State Key Laboratory of Rolling and Automation, Northeastern University;

【通讯作者】 张维娜;

【机构】 东北大学轧制技术及连轧自动化国家重点实验室

【摘要】 双相高熵合金融合了两种单相高熵合金的优点,能够实现出色的强度和韧性的结合,即使在高温、低温等极端环境下也表现出良好的应用潜力。双相高熵合金的设计通常是基于具有优良韧性的单一FCC相合金,通过调整合金成分和引入第二相结构来提高性能,这在实现合金强度和延展性的平衡方面具有明显的优势,这预示着它们具有更广泛的应用潜力。通过对合金的成分进行精心设计,我们能够更有效地制备出综合性能卓越的双相高熵合金。在确保合金的强度与延展性达到平衡的过程中,它们展现出了明显的优越性,这也意味着它们拥有更为广大的应用前景。遵循高熵合金相形成的标准,通过对合金成分的精心设计,我们能够更有效地制备出综合性能卓越的双相高熵合金。

【Abstract】 Dual phase high-entropy alloys combine the advantages of both single-phase high-entropy alloys, enabling an excellent balance of strength and ductility, even exhibiting promising application potential in extreme environments such as high and low temperatures. Their design typically begins with a single FCC phase alloy with superior toughness, followed by adjustments to the alloy composition and introduction of secondary phase structures to enhance performance. This approach offers a clear advantage in achieving a balance between strength and elongation, suggesting broader applicability. By meticulously tailoring the alloy composition, we can more effectively prepare biphasic high-entropy alloys with superior overall properties. Their superiority in maintaining the balance between strength and ductility indicates greater potential for widespread applications. Following the standard for high-entropy alloy phase formation, careful composition design enables the efficient preparation of biphasic high-entropy alloys with exceptional combined performance.

【基金】 2022年青年骨干教师公派出国研修项目(202206085007)
  • 【文献出处】 四川冶金 ,Sichuan Metallurgy , 编辑部邮箱 ,2024年05期
  • 【分类号】TG139
  • 【下载频次】14
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