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Stability of nanocrystalline metals:The role of grain-boundary chemistry and structure

机译:纳米晶金属的稳定性:晶界化学和结构的作用

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摘要

Nanocrystalline metals are transitioning from laboratory curiosities to engineering materials, in large part due to advances in improving their stability, making their exceptional properties more predictable and accessible. Nanoscale grains typically have a very strong innate tendency to coarsen, but the grain-boundary structure can be designed and tuned to lower its excess energy, reducing both the driving force for coarsening and the grain-boundary mobility. This article reviews two major strategies for achieving low-energy grain boundaries in nanocrystalline structures. First, grain-boundary alloying is discussed, including grain-boundary segregation and its energetic competition with the formation of second phases; with sufficient grain-boundary segregation tendency it is possible to stabilize nanostructures to high temperatures. Second, methods of achieving low-energy crystallographic grain-boundary structures are discussed, including the formation of nanotwinned structures and relaxing grain boundaries into low-energy structures through their interactions with partial dislocations. Both of these strategies have led to effective and implementable stable nanocrystalline materials, and point to many directions for future advancements.
机译:纳米金属从实验室的好奇心,以工程材料,在很大程度上是由于在提高其稳定性的进步转变,使他们的优异性能更具可预测性和可访问。纳米颗粒典型地具有非常强的先天倾向粗大化,但是晶界的结构可以被设计和调整,以降低其多余的能量,减少了粗大化两者的驱动力和晶界的移动性。本文回顾了两个主要策略在纳米结构的实现低能量晶界。首先,晶界的合金化进行了讨论,包括晶界偏析和其与的第二相的形成有活力的竞争;具有足够的晶界偏析倾向也能够稳定的纳米结构到高温。其次,讨论了实现低能量的结晶晶界结构的方法,包括nanotwinned结构的形成,并通过其与局部的位错的相互作用放松晶界成低能量结构。这两种策略都导致有效和可执行稳定的纳米晶材料,并指出对未来的进步许多方向。

著录项

  • 来源
    《MRS bulletin》 |2021年第3期|225-235|共11页
  • 作者

    Schuh Christopher A.; Lu Ke;

  • 作者单位

    MIT Dept Mat Sci & Engn Boston MA 02138 USA;

    Chinese Acad Sci Shenyang Natl Lab Mat Sci Inst Met Res Shenyang Peoples R China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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