An overview of high-throughput synthesis for advanced high-entropy alloys

Tong Xie, Weidong Li, Gihan Velisa, Shuying Chen, Fanchao Meng, Peter K. Liaw, Yang Tong
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Abstract

High-entropy alloys (HEAs) have revolutionized alloy design by integrating multiple principal elements in equimolar or near-equimolar ratios to form solid solutions, vastly expanding the compositional space beyond traditional alloys based on a primary element. However, the immense compositional complexity presents significant challenges in designing alloys with targeted properties, as billions of new alloy systems emerge. High-throughput approaches, which allow the parallel execution of numerous experiments, are essential for accelerated HEA design to navigate this extensive compositional space and fully exploit their potential. Here, we reviewed how advancements in high-throughput synthesis tools have accelerated HEA database development. We also discussed the advantages and limitations of each high-throughput fabrication methodology, as understanding these is vital for achieving precise HEA design.

Abstract Image

先进高熵合金的高通量合成综述
高熵合金(HEAs)通过将多个主元素以等摩尔或近等摩尔的比例整合在一起形成固溶体,彻底改变了合金设计,大大扩展了基于主元素的传统合金的成分空间。然而,随着数十亿新合金系统的出现,巨大的成分复杂性给设计具有目标性能的合金带来了重大挑战。高通量方法允许并行执行大量实验,对于加速HEA设计导航这一广泛的组成空间并充分发挥其潜力至关重要。在这里,我们回顾了高通量合成工具的进步如何加速HEA数据库的开发。我们还讨论了每种高通量制造方法的优点和局限性,因为了解这些对于实现精确的HEA设计至关重要。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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