论文标题
建造分层马氏体
Building hierarchical martensite
论文作者
论文摘要
马氏体材料显示出一个复杂的,分层的微结构,其中包含由各种各样的双边界隔开的结构结构域。存在几个概念来描述每个长度尺度上的微观结构,但是,没有全面的方法将整个范围从纳米到宏观尺度架起。在这里,我们描述了基于NI-MN的Heusler合金如何用一个关键参数从头开始构建此分层微观结构:原子级别基本构建块的四方变形。基于这个初始块,我们介绍了连续的五个嵌套构建块。在每个级别上,通过对前面的构建块形成一个较大的构建块,以最大程度地减少当地相关的能量贡献。这自然解释了不同类型的双边界的发生。我们将嵌套构件的这种规模桥接方法与在真实和相互空间中的实验进行比较。我们嵌套构件的方法用途广泛,因为它可以应用于表现出无扩散转换的广泛功能材料。
Martensitic materials show a complex, hierarchical microstructure containing structural domains separated by various types of twin boundaries. Several concepts exist to describe this microstructure on each length scale, however, there is no comprehensive approach bridging the whole range from the nano- up to the macroscopic scale. Here, we describe for a Ni-Mn-based Heusler alloy how this hierarchical microstructure is built from scratch with just one key parameter: the tetragonal distortion of the basic building block at the atomic level. Based on this initial block, we introduce five successive levels of nested building blocks. At each level, a larger building block is formed by twinning the preceding one to minimise the relevant energy contributions locally. This naturally explains the occurrence of different types of twin boundaries. We compare this scale-bridging approach of nested building blocks with experiments in real and reciprocal space. Our approach of nested building blocks is versatile as it can be applied to the broad class of functional materials exhibiting diffusionless transformations.