首页> 外文期刊>Journal of intelligent material systems and structures >Coupled rate-dependent superelastic behavior of shape memory alloy bars induced by combined axial-torsional loading: a semi-analytic modeling
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Coupled rate-dependent superelastic behavior of shape memory alloy bars induced by combined axial-torsional loading: a semi-analytic modeling

机译:轴向扭转载荷作用下形状记忆合金棒的耦合速率相关的超弹性行为:半解析模型

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摘要

In this article, the coupled thermomechanical response of superelastic shape memory alloy bars and tubes in combined tension and torsion is studied both analytically and experimentally. Using the Gibbs free energy as the thermodynamic potential and choosing appropriate internal state variables, a three-dimensional phenomenological macroscopic constitutive model for shape memory alloys is derived. Taking into account the effect of latent heat during the forward and reverse martensitic phase transformation, the appropriate form of the energy balance relation is obtained. The three-dimensional coupled relations for the energy balance in the presence of the internal heat flux and the constitutive equations are reduced to a two-dimensional form for the tension-torsion case. An explicit finite difference approach is utilized to discretize the governing boundary conditions of bars. An empirical expression for the free heat convection from the surface of a shape memory alloy bar was proposed and experimentally validated. Several sets of experiments were then carried out to evaluate the mechanical and thermal responses of the model for a shape memory alloy tube subjected to uniaxial, pure torsion and non-proportional tension and torsion loading-unloading conditions. The approach could be used in the design of shape memory alloy devices undergoing combined loads with high strain rates or in the fatigue design of shape memory alloy devices subjected to cyclic loading.
机译:在本文中,通过分析和实验研究了超弹性形状记忆合金棒材和管材在组合拉伸和扭转作用下的耦合热机械响应。利用吉布斯自由能作为热力学势并选择适当的内部状态变量,得出了形状记忆合金的三维现象学宏观本构模型。考虑到马氏体正向和反向相变过程中潜热的影响,获得了能量平衡关系的适当形式。在存在内部热通量和本构方程的情况下,能量平衡的三维耦合关系被简化为二维形式。利用显式的有限差分方法离散化钢筋的控制边界条件。提出了形状记忆合金棒表面自由热对流的经验表达式,并进行了实验验证。然后进行了几组实验,以评估形状记忆合金管在单轴,纯扭力和非比例拉力和扭力加载-卸载条件下的机械和热响应。该方法可以用于承受高应变速率的组合载荷的形状记忆合金器件的设计,或用于承受循环载荷的形状记忆合金器件的疲劳设计。

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