形状记忆合金
热弹性阻尼
假弹性
本构方程
消散
材料科学
智能材料
无扩散变换
转化(遗传学)
机械工程
结构工程
马氏体
复合材料
工程类
热的
有限元法
热力学
物理
微观结构
化学
基因
生物化学
作者
Liang Chen,C. A. Rogers
标识
DOI:10.1177/1045389x9000100205
摘要
The use of the thermoelastic martensitic transformation and its reverse transformation has recently been proposed and demonstrated for several active control ap plications. However, the present constitutive models have lacked several important funda mental concepts that are essential for many of the proposed intelligent material system ap plications such as shape memory hybrid composites. A complete, unified, one-dimensional constitutive model of shape memory materials is developed and presented in this paper. The thermomechanical model formulation herein will investigate important material characteristics involved with the internal phase transformation of shape memory alloys. These characteristics include energy dissipation in the material that governs the damping behavior, stress-strain-temperature relations for pseudoelasticity, and the shape memory effect. Some numerical examples using the model are also presented.
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