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In-situ characterization of transformation plasticity during an isothermal austenite-to-bainite phase transformation

机译:奥氏体-贝氏体等温相变过程中相变塑性的原位表征

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This paper elucidates the stress-induced variant selection process during the isothermal austenite-to-bainite phase transformation in a tool steel. Specifically, a thorough set of experiments combining electron backscatter diffraction and in-situ digital image correlation (DIG) was carried out to establish the role of superimposed stress level on the evolution of transformation plasticity (TP) strains. The important finding is that TP increases concomitant with the superimposed stress level, and strain localization accompanies phase transformation at all stress levels considered. Furthermore, TP strain distribution within the whole material becomes more homogeneous with increasing stress, such that fewer bainitic variants are selected to grow under higher stresses, yielding a more homogeneous strain distribution. In particular, the bainitic variants oriented along [101] and [201] directions are favored to grow parallel to the loading axis and are associated with large TP strains. Overall, this very first in-situ DIC investigation of the austenite-to-bainite phase transformation in steels evidences the clear relationship between the superimposed stress level, variant selection, and evolution of TP strains.
机译:本文阐明了工具钢在等温奥氏体到贝氏体相变过程中应力诱发的变量选择过程。具体而言,进行了一系列将电子反向散射衍射与原位数字图像相关性(DIG)结合起来的实验,以建立叠加应力水平对转变塑性(TP)应变演变的作用。重要的发现是TP随着叠加应力水平的增加而增加,并且应变本地化在所有考虑的应力水平下都伴随有相变。此外,随着应力的增加,整个材料中的TP应变分布变得更加均匀,从而在较高的应力下选择更少的贝氏体变体生长,从而产生更均匀的应变分布。特别地,沿[101]和[201]方向定向的贝氏体变体倾向于平行于加载轴生长并与大的TP菌株相关。总的来说,对钢中奥氏体到贝氏体相变的第一个现场DIC研究证明,叠加应力水平,变体选择和TP应变的演变之间存在明显的关系。

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