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Stress-induced detwinning and martensite transformation in an austenite Ni–Mn–Ga alloy with martensite cluster under uniaxial loading

机译:单轴载荷下马氏体团簇奥氏体Ni-Mn-Ga合金的应力诱导孪晶和马氏体相变

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Stress-induced martensitic detwinning and martensitic transformation during step-wise compression in an austenite Ni–Mn–Ga matrix with a martensite cluster under uniaxial loading have been investigated by electron backscatter diffraction, focusing on the crystallographic features of microstructure evolution. The results indicate that detwinning occurs on twins with a high Schmid factor for both intra-plate and inter-plate twins in the hierarchical structure, resulting in a nonmodulated (NM) martensite composed only of favourable variants with [001]NM orientation away from the compression axis. Moreover, the stress-induced martensitic transformation occurs at higher stress levels, undergoing a three-stage transformation from austenite to a twin variant pair and finally to a single variant with increasing compressive stress, and theoretical calculation shows that the corresponding crystallographic configuration is accommodated to the compression stress. The present research not only provides a comprehensive understanding of martensitic variant detwinning and martensitic transformation under compression stress, but also offers important guidelines for the mechanical training process of martensite.
机译:通过电子反向散射衍射研究了在单轴载荷下具有马氏体簇的奥氏体Ni-Mn-Ga基体在逐步压缩过程中应力诱导的马氏体脱孪和马氏体相变,重点研究了组织演变的晶体学特征。结果表明,在层状结构中,板内和板间双胞胎都在具有高Schmid因子的双胞胎上发生解缠,从而导致非调制(NM)马氏体仅由具有[001] NM取向的有利变体组成。压缩轴。此外,应力诱发的马氏体相变发生在较高的应力水平上,经历了从奥氏体到孪生变体对的三阶段转变,最后随着压缩应力的增加而转变成单个变体,理论计算表明,相应的晶体结构可以适应压缩应力。本研究不仅提供了对压缩应力下马氏体变质脱晶和马氏体相变的全面理解,而且为马氏体的力学训练过程提供了重要的指导。

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