On the Application of Energy Method for the Numerical Evaluation of the Effective Dissipative Properties of Composites

O. Derkach, A. Zinkovskii, Yevheniia Onyshchenko, V. Kobzar
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Abstract

This paper provides the model of the composite material using the energy method to determine its effective energy dissipation characteristics. There are employs finite element modelling of a representative volume element and setting equal its strain energy complex values to the equivalent homogeneous material volume one. The results of the calculations imply that a composites representative volume element can be used to analyze the energy dissipation characteristics in the viscoelastic composite components structures elements, which are made of them. Thus, the analysis of the ratio between the dissipated energy in the epoxy matrix material and dissipated energy in the layers of carbon/epoxy laminates for the different values of carbon volume fraction is performed using the model. The efficiency of the proposed model aimed at the dissipative properties of various types of composites is also shown.
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能量法在复合材料有效耗散性能数值计算中的应用
本文提出了用能量法确定复合材料有效耗能特性的模型。对具有代表性的体积单元进行了有限元建模,并将其应变能复数值设为等效均质材料体积1。计算结果表明,复合材料的代表性体积单元可以用来分析由其构成的粘弹性复合材料构件结构单元的能量耗散特性。因此,利用该模型分析了不同碳体积分数值下环氧基材料耗散能与碳/环氧层合板各层耗散能的比值。该模型针对不同类型复合材料的耗散特性的有效性也得到了证明。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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