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Effective properties evaluation for smart composite materials

机译:智能复合材料的有效性能评估

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The purpose of this article is to present a method which consists in the development of unit cell numerical models for smart composite materials with piezoelectric fibers made of PZT embedded in a non-piezoelectric matrix (epoxy resin). This method evaluates a globally homogeneous medium equivalent to the original composite, using a representative volume element (RVE). The suitable boundary conditions allow the simulation of all modes of the overall deformation arising from any arbitrary combination of mechanical and electrical loading. In the first instance, the unit cell is applied to predict the effective material coefficients of the transversely isotropic piezoelectric composite with circular cross section fibers. The numerical results are compared to other methods reported in the literature and also to results previously published, in order to evaluate the method proposal. In the second step, the method is applied to calculate the equivalent properties for smart composite materials with square cross section fibers. Results of comparison between different combinations of circular and square fiber geometries, observing the influence of the boundary conditions and arrangements are presented.
机译:本文的目的是提出一种方法,该方法包括开发用于智能复合材料的晶胞数值模型,该复合材料具有嵌入非压电基体(环氧树脂)中的由PZT制成的压电纤维。该方法使用代表性的体积元素(RVE)评估与原始复合材料等效的全局均匀介质。合适的边界条件允许模拟由机械和电气负载的任意组合引起的整体变形的所有模式。在第一种情况下,将晶胞应用于预测具有圆形横截面纤维的横向各向同性压电复合材料的有效材料系数。将数值结果与文献中报道的其他方法进行比较,并与先前发布的结果进行比较,以评估方法建议。第二步,将该方法应用于计算具有方形截面纤维的智能复合材料的等效性能。给出了圆形和方形纤维几何形状的不同组合之间的比较结果,观察了边界条件和排列的影响。

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