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Stiffness of smart composites with shape memory alloy fibers in the presence of matrix cracks

机译:智能复合材料的刚度,具有形状记忆合金纤维在基质裂缝存在下

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The paper presents a methodology for evaluating the effective stiffness of unidirectional composite materials with shape memory alloy (SMA) fibers in the presence of matrix cracks. The solution is obtained for the case where SMA fibers in the intact composite are in the austenitic phase. However, elevated stresses in the sections of SMA fibers adjacent to the crack planes cause the martensitic transformation affecting the stiffness of the material. The solution has to account for thermal residual stresses in SMA and 'ordinary' fibers and in the matrix. The order of magnitude of these stresses is calculated in the paper for two representative composite systems. As follows from the numerical examples, thermal residual stresses in the SMA fibers increase proportionally to their volume fraction but remain relatively small. However, thermal stresses in the matrix may reach rather high values reducing the strength of the matrix by a significant factor.
机译:本文提出了一种在基质裂缝存在下评估单向复合材料的有效复合材料的有效刚度的方法。为完整复合材料中的SMA纤维处于奥氏体相中的情况下获得溶液。然而,与裂纹平面相邻的SMA纤维的部分中的升高应力导致马氏体变换影响材料刚度。该解决方案必须考虑SMA和“普通”纤维和基质中的热残余应力。在两个代表性复合系统的纸上计算这些应力的大小阶数。如下来自数值实例的下面,SMA纤维中的热残余应力与其体积分数比例地增加,但保持相对较小。然而,基质中的热应力可以达到相当高的值,通过显着因素降低基质的强度。

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