固体材料热机械耦合的实验分析和数值建模

André Chrysochoos, Robert Peyroux
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引用次数: 21

摘要

在第一部分中,简要回顾了用于呈现固体材料热力学行为的理论和实验框架。实验方法的主要特点依赖于热成像技术的使用,使我们能够从热数据中推断出在机械转变过程中产生的热源的分布。在均匀热力学试验的特殊情况下,可以进行能量平衡,并用于导出行为本构方程。当出现非均匀性时,红外图像有助于分析定位机制。第二部分,重申了均质化技术的基本方面。与热-机械耦合相关,均质化改善了对微观结构现象在宏观尺度上有重大影响的材料和结构行为的描述。对聚合物的热粘弹性、复合材料损伤耦合的热弹性和形状记忆合金固-固相变相关的伪弹性行为进行了有限元模拟。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Analyse expérimentale et modélisation numérique des couplages thermomécaniques dans les matériaux solides

In the first part, the theoretical and experimental framework used to present the thermomechanical behaviour of solid materials is briefly recalled. The main feature of the experimental approach relies on the use of thermographical techniques allowing us to deduce, from the thermal data, the distribution of heat sources arising during the mechanical transformation. In the particular case of homogeneous thermomechanical tests, an energy balance can be performed and used to derive the behavioural constitutive equations. When heterogeneities occur, the infrared images facilitate the analysis of localization mechanisms. In the second part, basic aspects of homogenization techniques are reiterated. Related to thermomechanical couplings, homogenization improves the description of the behaviour of materials and structures in which microstructural phenomena have a significant influence at the macroscopic scale. Several finite element simulations are shown concerning the thermoviscoelasticity of polymers, the thermoelasticity coupled with damage in composites, and the pseudoelastic behaviour related to the solid-solid phase change of shape memory alloys.

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