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Highly mobile interfaces in shape memory alloys

机译:形状记忆合金中的高度可移动界面

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Macro-twin interfaces in single crystals of 10 M modulated Ni-Mn-Ga martensite have recently attracted a lot of attention due to the extraordinarily low twinning stress required to set them into motion; depending on the particular twinning mode, this stress can range between 0.05 and 1 MPa, and can be either strongly temperature dependent, or nearly temperature independent. The understanding to these effects is still not satisfactory, mainly due to the high complexity of these interfaces at the micro-scale (higher-order lamination) as well as at the atomistic scale (modulations of martensite). This paper brings a brief review of the recent experimental and theoretical achievements related to these highly mobile interfaces. The uniqueness of the behavior of 10 M martensite is shown by its comparison with other shape memory alloys with relatively low twinning stresses; then, this behavior is discussed in terms of its temperature dependence, strain rate dependence and the effect of the micromorphology of the interfaces.
机译:最近,由于10 M调制的Ni-Mn-Ga马氏体单晶中的宏观孪晶界面使它们开始运动所需的孪晶应力极低,因此引起了很多关注。根据特定的孪生模式,该应力的范围可以在0.05到1 MPa之间,并且可以与温度密切相关,也可以与温度几乎无关。对这些作用的理解仍然不能令人满意,这主要是由于这些界面在微观尺度(高阶层压)和原子尺度(马氏体的调制)的高度复杂性。本文简要回顾了与这些高度移动的界面有关的最新实验和理论成就。 10 M马氏体与其他孪晶应力较低的形状记忆合金相比,表现出独特的性能。然后,根据其温度依赖性,应变率依赖性以及界面微观形态的影响来讨论这种行为。

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