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Equivalent transformation strain and its relation with martensite volume fraction for isotropic and anisotropic shape memory alloys

机译:各向同性和各向异性形状记忆合金的等效转变应变及其与马氏体体积分数的关系

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The present paper deals with the superelastic behavior of both isotropic and anisotropic shape memory alloys (SMA). Recently, a macroscopic model, which permits to simulate the superelasticity of SMA under complex multi-axial loading, has been proposed by Bouvet et al. [Bouvet, C, Calloch, S., Lexcellent, C, 2004. A phenomenological model for pseudo-elasticity of shape memory alloys under multi-axial proportional and non-proportional loadings. Eur. J. Mech. A Solids 23, 37-61]. In this model, a conjecture concerning the proportionality of the equivalent transformation strain with the martensite volume fraction has been adopted. The main goal of this study is to show the validity of this conjecture when the stress state is multi-axial. In a first part, the case of isotropic SMA is considered. An equivalent stress and an equivalent transformation strain are introduced. In the second section, the case of anisotropic SMA is considered. The previous equivalent stress and equivalent transformation strain are generalized to take into account the anisotropy of the material. The relation between the equivalent transformation strain and the martensite volume fraction is discussed by using, on one hand, experimental results under proportional tension-torsion loadings and, on the other hand, a polycrystalline model.
机译:本文研究了各向同性和各向异性形状记忆合金(SMA)的超弹性行为。最近,Bouvet等人提出了一种宏观模型,该模型可以模拟复杂的多轴载荷下的SMA超弹性。 [Bouvet,C,Calloch,S.,Lexcellent,C,2004。一种在多轴比例和非比例载荷下形状记忆合金拟弹性的现象学模型。欧元。 J.机甲固体23,37-61]。在该模型中,采用了关于等效转变应变与马氏体体积分数的比例关系的猜想。这项研究的主要目的是证明当应力状态为多轴时该猜想的有效性。在第一部分中,考虑了各向同性SMA的情况。引入了等效应力和等效变形应变。在第二部分中,考虑了各向异性SMA的情况。概括了先前的等效应力和等效转换应变,以考虑到材料的各向异性。一方面通过使用在成比例的拉伸扭转载荷下的实验结果,另一方面使用多晶模型来讨论当量相变应变与马氏体体积分数之间的关系。

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