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A FINITE ELEMENT APPROACH FOR STUDY OF WAVE ATTENUATION CHARACTERISTICS OF EPOXY POLYMER COMPOSITE

机译:研究环氧聚合物复合材料波衰减特性的有限元方法

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The properties of the inclusions, viz. size, shape, and distribution significantly affect macroscopic properties of a polymer composite. Finite element (FE) modeling provides a viable approach for investigating the effects of the inclusions on the macroscopic properties of the polymer composite. In this paper, finite element method is used to investigate ultrasonic wave propagation in polymer matrix composite with a dispersed phase of inclusions. The finite element models are made up of three phases; viz. the polymer matrix, inclusions (micro constituent), and interphase zones between the inclusions and the polymer matrix. The analysis is performed on a three dimensional finite element model and the attenuation characteristics of ultrasonic longitudinal waves in the matrix are evaluated. The attenuation in polymer composite is investigated by changing the size, volume fraction of inclusions, and addition of interphase layer. The effect of loading frequency of the wave on the attenuation characteristics is also studied by varying the frequency in the range of I -4 MHz. Results of the test revealed that higher volume fraction of inclusions gave higher attenuation in the polymer composite as compared to the lower volume fraction model. Smaller size of inclusions are preferred over larger size as they give higher wave attenuation. It was found that the attenuation characteristics of the polymer composite are better at higher frequencies as compared to lower frequencies. It is also concluded that the interphase later plays a significant role in the attenuation characteristics of the composite.
机译:夹杂物的性质,即。尺寸,形状和分布会显着影响聚合物复合材料的宏观性能。有限元(FE)建模为研究夹杂物对聚合物复合材料宏观性能的影响提供了一种可行的方法。本文采用有限元方法研究了夹杂物分散相在聚合物基复合材料中的超声波传播。有限元模型由三个阶段组成。即聚合物基体,内含物(微成分)以及内含物和聚合物基体之间的相间区域。在三维有限元模型上进行分析,并评估超声纵波在矩阵中的衰减特性。通过改变夹杂物的大小,体积分数和添加相间层来研究聚合物复合材料的衰减。还通过在I -4 MHz范围内改变频率来研究电波的加载频率对衰减特性的影响。测试结果表明,与较低体积分数的模型相比,较高体积分数的夹杂物在聚合物复合材料中具有较高的衰减。与较大的夹杂物相比,较小的夹杂物是优选的,因为它们会产生较高的波衰减。已经发现,与低频相比,聚合物复合材料在高频下的衰减特性更好。还得出结论,相间后期在复合材料的衰减特性中起着重要作用。

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