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EFFECT OF PROPERTY OF INTERPHASE LAYER ON DAMPING PROPERTIES OF POLYMER COMPOSITES USING SENSITIVITY ANALYSIS

机译:界面层性质对聚合物复合材料阻尼特性的影响

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This work studies the damping property of Nanocomposites through simulating wave propagation using the Finite Element Method (FEM). For this purpose Representative Volume Element (RVE) of the composite material is created using Random Sequential Absorption (RSA) algorithm. Damping property is represented using the wave attenuation coefficient. The matrix material is assumed to be isotropic visco-elastic in nature with randomly dispersed stiff elastic spherical fillers. In order to model mechanical imperfections at the boundary of fillers and matrix, the interphase layer is modeled surrounding the spherical fillers. Determining the thickness and stiffness of this interphase region is a challenging task. Therefore this study aims at investigating the effect of variation in thickness and stiffness values of the interphase region on damping property of whole composite using sensitivity analysis. Two specific cases with a volume fraction of 5 % and 8.6 % are selected for sensitivity analysis. It has been found that both the thickness and stiffness of the interphase region plays an important role in deciding the damping properties of the polymer composite. Value of attenuation coefficient is more sensitive to the thickness of interphase than stiffness and hence it is important to choose the value of thickness correctly for accurate predictions.
机译:这项工作通过使用有限元方法(FEM)模拟波传播来研究纳米复合材料的阻尼特性。为此,使用随机顺序吸收(RSA)算法创建复合材料的代表性体积元素(RVE)。阻尼特性用波衰减系数表示。假定基质材料本质上是各向同性的粘弹性,具有随机分散的硬质弹性球形填料。为了对填充物和基体的边界处的机械缺陷进行建模,对围绕球形填充物的相间层进行了建模。确定该相间区域的厚度和刚度是一项艰巨的任务。因此,本研究旨在利用敏感性分析研究相间区域厚度和刚度值变化对整个复合材料阻尼性能的影响。选择两种体积百分比分别为5%和8.6%的特定情况进行敏感性分析。已经发现,相间区域的厚度和刚度在决定聚合物复合材料的阻尼性能中都起着重要的作用。衰减系数的值对中间相的厚度比刚度更敏感,因此正确选择厚度值对于准确的预测很重要。

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