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Nonlinear dynamics of earthquake- resistant structures using shape memory alloy composites

机译:使用形状记忆合金复合材料的抗震结构的非线性动力学

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摘要

Earthquake-resistant structures have been widely investigated in order to produce safe buildings designed to resist seismic activities. The remarkable properties of shape memory alloys, especially pseudoelastic effect, can be exploited in order to promote the essential energy dissipation necessary for earthquake-resistant structures. In this regard, shape memory alloy composite is an idea that can make this application feasible, using shape memory alloy fibers embedded in a matrix. This article investigates the use of shape memory alloy composites in a one-story frame structure subjected to earthquakes. Different kinds of composites are analyzed, comparing the influence of matrix type. Both linear elastic matrix and elastoplastic matrix with isotropic and kinematic hardening are investigated. Results indicate the great energy dissipation capability of shape memory alloy composites. A parametric analysis allows one to conclude that the maximum shape memory alloy volume fraction is not the optimum design condition for none of the cases studied, highlighting the necessity of a proper composite design. Despite the elastoplastic behavior of matrix also dissipates a considerable amount of energy, the associated residual strains are not desirable, showing the advantage of the use of shape memory alloys.
机译:为了生产设计用于抵抗地震活动的安全建筑物,已经对抗震结构进行了广泛研究。可以利用形状记忆合金的显着特性,尤其是拟弹性效应,以促进抗震结构所需的基本能量耗散。在这方面,形状记忆合金复合材料是一种想法,可以使用嵌入基质中的形状记忆合金纤维使该应用可行。本文研究了形状记忆合金复合材料在遭受地震的一层框架结构中的使用。分析了不同种类的复合材料,比较了基质类型的影响。研究了具有各向同性和运动学硬化的线性弹性矩阵和弹塑性矩阵。结果表明,形状记忆合金复合材料具有很高的耗能能力。通过参数分析,可以得出结论:对于任何一种研究案例,最大形状记忆合金体积分数都不是最佳设计条件,这突出说明了适当的复合设计的必要性。尽管基体的弹塑性行为也耗散了大量能量,但是相关的残余应变并不是所希望的,这显示出使用形状记忆合金的优点。

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