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Energetics in martensites

机译:Martensites中的能量学

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Martensitic transformations are shape-deforming phase transitions which can be induced in certain alloys as a result of changes in the imposed strains, stresses or temperatures. The interest in these alloys, which undergo a shape-deforming phase transition from a high temperature phase (austenite) to a low temperature phase (martensite), stems in part from their applicability as elements in cative structures. In this paper we focus on the energy transfets that accompany the martensitic phase change. We discuss, in three concrete examples, the ways in which temperature, together with the elastic and dissipated energies, determine the equilibria as well as the quasi-static dynamics in martensites. Thus, in para.1 we consider the pseudoelastic hysteresis in shape-memory wires; our treatment draws from (Leo et al., 1993; Bruno et al., 1995). In para.2, on the other hand, we follow (Bruno et al., 1996) and discuss equilibrium configurations in polycrystaline martensitic polycrystals. In para.3, finally, we present some new theoretical computations for certain typical microstructural lengthscales, the twoin widths, observed in single-crystalline martensite twinning.
机译:马氏体转化是形状变形相转变,其可以在某些合金中诱导,由于施加的菌株,应力或温度的变化。这些合金的兴趣是从高温相(奥氏体)到低温相(马氏体)的形状变形相转变,部分地源于它们作为元素结构中的元素的适用性。在本文中,我们专注于伴随着马氏体相变的能量转发。我们讨论了三个具体示例中,温度与弹性和耗散能量一起确定均衡以及马氏体中的准静态动力学。因此,在比赛中,我们考虑形状记忆线中的假弹性滞后;我们的待遇从(Leo等,1993; Bruno等,1995)中汲取。另一方面,在Para.2中,我们遵循(Bruno等,1996)并讨论多晶马氏体多晶的平衡配置。在Para.3最后,我们在单晶马氏体孪晶中展示了某些典型的微观结构长度,双晶宽度的一些新的理论计算。

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