板条
材料科学
马氏体
可塑性
微观结构
奥氏体
透射电子显微镜
位错
变形(气象学)
形状记忆合金
结晶学
复合材料
冶金
纳米技术
化学
作者
Lutz Morsdorf,Olivier Jeannin,David Barbier,Masatoshi Mitsuhara,Dierk Raabe,Cemal Cem Taşan
标识
DOI:10.1016/j.actamat.2016.09.006
摘要
The multi-scale complexity of lath martensitic microstructures requires scale-bridging analyses to better understand the deformation mechanisms activated therein. In this study, plasticity in lath martensite is investigated by multi-field mapping of deformation-induced microstructure, topography, and strain evolution at different spatial resolution vs. field-of-view combinations. These investigations reveal site-specific initiation of dislocation activity within laths, as well as significant plastic accommodation in the vicinity of high angle block and packet boundaries. The observation of interface plasticity raises several questions regarding the role of thin inter-lath austenite films. Thus, accompanying transmission electron microscopy and synchrotron x-ray diffraction experiments are carried out to investigate the stability of these films to mechanical loading, and to discuss alternative boundary sliding mechanisms to explain the observed interface strain localization.
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