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Determination of the elastic properties of randomly oriented shape memory alloy (SMA) discontinuous wires reinforced epoxy resin

机译:随机取向形状记忆合金(SMA)间断钢丝增强环氧树脂的弹性性能测定

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摘要

A micromechanics modeling based on the equivalent fiber properties for SMA wires is developed for characterizing the elastic properties of randomly oriented SMA reinforced polymer composites using Mori-Tanaka method. The interface effect between the SMA wires and the matrix can be considered using the obtained transversely isotropic equivalent fibers. Representative volume elements (RVEs) with different shapes and sizes are employed in order to predict the elastic modulus of randomly oriented discontinuous SMA reinforced polymer composites. Experimental fiber pull-out and composite specimen tensile tests are performed in order to obtain the interfacial shear strength and validate the micromechanics results, respectively. The effect of some important parameters including aspect ratios of the wires, temperature and the pre-strain levels in the wires are investigated. The results showed that for higher aspect ratios of the wires (l/d = 35) there is 20% improvement in elastic modulus of the composite in comparison with the composites reinforced by wires with lower aspect ratio (l/d = 5). Moreover, pre-straining the SMA wires in martensite phase by 4%, caused 12% enhancement in the elastic modulus of the composite. (C) 2017 Elsevier Ltd. All rights reserved.
机译:建立了基于SMA线等效纤维特性的微力学模型,以使用Mori-Tanaka方法表征随机取向的SMA增强聚合物复合材料的弹性。使用获得的横向各向同性等效纤维可以考虑SMA线和基体之间的界面效应。为了预测随机取向的不连续SMA增强聚合物复合材料的弹性模量,采用了具有不同形状和大小的代表性体积元素(RVE)。为了获得界面剪切强度并验证微力学结果,分别进行了试验性的纤维拔出和复合材料试样拉伸试验。研究了一些重要参数的影响,包括电线的纵横比,温度和电线中的预应变水平。结果表明,与较高纵横比(l / d = 5)的线材增强的复合材料相比,较高纵横比(l / d = 35)的复合材料的弹性模量提高了20%。此外,将马氏体相中的SMA线预应变4%,会使复合材料的弹性模量提高12%。 (C)2017 Elsevier Ltd.保留所有权利。

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