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Unit Cell Analysis of the Superelastic Behavior of Open-Cell Tetrakaidecahedral Shape Memory Alloy Foam under Quasi-Static Loading

机译:准静态载荷下开孔四面体形状记忆合金泡沫超弹性行为的晶胞分析

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摘要

Cellular solid materials and, more specifically, foams are increasingly common in many industrial applications due to their attractive characteristics. The tetrakaidecahedral foam microstructure, which can be observed in many types of foams, is studied in the present work in association with shape memory alloys (SMA) material. SMA foams are of particular interest as they associate both the shape memory effect and the superelasticity with the characteristics of foam. A Unit Cell Finite Element Method approach is used, an approach that allows accurate predicting of the macroscale response of the foam with a highly reduced numerical effort. The tetrakaidecahedral foam's responses, both in the elastic and in the superelastic stages, are then extracted and compared with results from the literature. The tetrakaidecahedral geometry is found to be of particular interest when associated with SMA as it takes more advantage of the superelastic property of the material than foams with randomly distributed porosity.
机译:多孔固体材料,更具体地说,泡沫由于其吸引人的特性而在许多工业应用中变得越来越普遍。在目前的工作中,与形状记忆合金(SMA)材料一起研究了在许多类型的泡沫中都可以观察到的四面体泡沫微观结构。 SMA泡沫特别受关注,因为它们将形状记忆效果和超弹性与泡沫特性相关联。使用了单位单元有限元方法,该方法允许以高度减少的数值努力来准确预测泡沫的宏观响应。然后提取在弹性和超弹性阶段的四面体泡沫的响应,并与文献结果进行比较。当与SMA结合使用时,发现四面体的几何形状特别受关注,因为与具有随机分布孔隙的泡沫相比,它更能利用材料的超弹性。

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  • 来源
    《Smart Materials Research》 |2014年第2014期|870649.1-870649.11|共11页
  • 作者单位

    Department of Mechanical Engineering, Ecole de technologie superieure, Montreal QC, Canada H3C1K3,Laboratoire Rheologie et Procedes, 363 rue de la Chimie-Batiment B, Domaine Universitaire, BP 53, 38041 Grenoble Cedex 9, France;

    Department of Mechanical Engineering, Ecole de technologie superieure, Montreal QC, Canada H3C1K3;

    Department of Mechanical Engineering, Ecole de technologie superieure, Montreal QC, Canada H3C1K3;

    Department of Mechanical Engineering, Ecole de technologie superieure, Montreal QC, Canada H3C1K3;

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