首页> 外文期刊>Journal of intelligent material systems and structures >Thermomeohanically Coupled Micromechanical Analysisof Shape Memory Alloy Composites Undergoing transformation Induced Plasticity
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Thermomeohanically Coupled Micromechanical Analysisof Shape Memory Alloy Composites Undergoing transformation Induced Plasticity

机译:形状记忆合金复合材料相变诱导塑性的热力学耦合微力学分析

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摘要

In this investigation, fully thermomechanically coupled constitutive and energy equations for shape memory alloys (SMAs) that include the effect of transformation induced plasticity are presented. This is followed by a micromechanical analysis for the establishment of the fully coupled thermomcchanical constitutive equations that model the overall behavior of SMA composites undergoing transformation induced plasticity. The effects of the thermomechanical coupling and permanent inelasticity which arise by the phase transformation were examined. It was found that the response of the monolithic SMA depends upon the thermomechanical coupling. The permanent inelasticity and the resulting induced temperature become significant especially in the case of several repeating cycles. In addition, the induced average temperature caused by the thermomechanical coupling as well as the stress-strain behavior of SMA/epoxy and SMA/aluminum composite materials were determined. A significant thermomcchanical coupling, which corresponds to an appreciable temperature increase, was observed for the SMA/aluminum metal matrix composite material. For the case of SMA/epoxy polymeric matrix composite material the thermomechanical coupling was found to be negligible. This results from the absence of inelastic strains in the polymeric matrix in spite of the existence of rate of dilatation effect in the epoxy phase.
机译:在这项研究中,提出了形状记忆合金(SMA)的完全热机械耦合的本构方程和能量方程,其中包括相变诱导塑性的影响。接下来是微机械分析,用于建立完全耦合的热机械本构方程,该方程对SMA复合材料经历相变诱导塑性的整体行为进行建模。研究了由相变引起的热机械耦合和永久性非弹性的影响。已经发现,整体式SMA的响应取决于热机械耦合。永久的无弹性和由此产生的感应温度变得非常重要,特别是在几个重复循环的情况下。另外,测定了由热机械耦合引起的感应平均温度以及SMA /环氧树脂和SMA /铝复合材料的应力-应变行为。对于SMA /铝金属基复合材料,观察到明显的热力机械耦合,这对应于明显的温度升高。对于SMA /环氧聚合物基复合材料,发现热机械耦合可以忽略。这是由于尽管在环氧相中存在扩张速率的影响,但聚合物基体中没有非弹性应变。

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