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In situ neutron diffraction studies of martensitic transformations in NiTi polycrystals under tension and compression stress

机译:拉伸和压缩应力作用下NiTi多晶马氏体相变的原位中子衍射研究

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Transformation processes in polycrystalline NiTi alloys were studied using two different in situ neutron diffraction techniques. The B2 reversible B19′ martensitic transformation was investigated in: (ⅰ) pseudoelastic test, (ⅱ) cooling under constant compressive stress, and (ⅲ) recovery stress test. Experimental evidence on the martensite variant selection under stress and partitioning of the load and phase fractions among polycrystal grains during the transformation process is discussed and interpreted in terms of the mechanics of the transforming SMA polycrystal with the help of a micromechanical model presented in a companion paper (V. Novak, P. Sittner, in this volume).
机译:使用两种不同的原位中子衍射技术研究了多晶NiTi合金中的转变过程。 B2可逆B19'马氏体相变的研究如下:(ⅰ)拟弹性试验,(ⅱ)恒定压缩应力下的冷却和(ⅲ)恢复应力试验。借助随同论文提供的微力学模型,讨论并解释了在变形过程中应力下的马氏体变体选择以及多晶晶粒间的载荷和相分数分配的实验证据,并根据变形的SMA多晶的力学进行了解释。 (V. Novak,P。Sittner,在此书中)。

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