材料科学
晶体孪晶
再分配(选举)
马氏体
层错能
奥氏体
无扩散变换
延展性(地球科学)
复合材料
凝聚态物理
位错
蠕动
微观结构
政治
法学
物理
政治学
作者
Yuan Wu,Dan Zhou,Wenli Song,Hui Wang,Z. Y. Zhang,Dong Ma,Xun‐Li Wang,Zhaoping Lü
标识
DOI:10.1103/physrevlett.109.245506
摘要
Martensitic transformation was successfully introduced to bulk metallic glasses as the reinforcement micromechanism. In this Letter, it was found that the twinning property of the reinforcing crystals can be dramatically improved by reducing the stacking fault energy through microalloying, which effectively alters the electron charge density redistribution on the slipping plane. The enhanced twinning propensity promotes the martensitic transformation of the reinforcing austenite and, consequently, improves plastic stability and the macroscopic tensile ductility. In addition, a general rule to identify effective microalloying elements based on their electronegativity and atomic size was proposed.
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