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Evaluation of the Fiberglass-Reinforced Plastics Interfacial Behavior by using Ultrasonic Wave Propagation Method

机译:超声波传播法评估玻璃纤维增​​强塑料的界面行为

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In this paper, ultrasonic wave propagation in three phases (3P) of composite materials was investigated. The simulation was conducted by PZFlex analysis code, a time domain finite element program. The reflection and transmission characteristics with different shapes of middle layer between glass fiber and epoxy resin are investigated in order to understand basic ultrasonic behavior of energy dispersion and transmission in the middle layer. The relationship between impedance in middle layer and ultrasonic propagation characteristics is discussed. As a practical approach to the practical composite materials, the SFC (single fiber composite) model is proposed with a middle layer between fiber and matrix. Moreover, the influence of the middle layer with different debonding failure regions and failure directions is taken into account. As a result, the influence of the fiber/matrix interface, the geometrical size of middle layer and its physical property on wave propagation was clarified. When the debonding failure existed in the middle layer between fiber and matrix, its influence on ultrasonic motion pattern and the characteristics of energy propagation were understood. The complicated propagation behavior resulted from reflection, transmission, multi-reflection and dispersion due to the existence of debonding failure at the fiber/matrix interface was visualized. With these results, it is indicated that an approach based on ultrasonic technology is possible for the evaluation of interfacial behavior in 3P composite materials with a middle layer existed between fiber and matrix. With these results, it is indicated that an approach to the evaluation of interfacial behavior in 3P composite materials is possible.
机译:本文研究了复合材料在三相(3P)中的超声波传播。通过时域有限元程序PZFlex分析代码进行了仿真。研究了玻璃纤维和环氧树脂在中间层不同形状下的反射和透射特性,以了解中间层能量分散和透射的基本超声行为。讨论了中间层阻抗与超声传播特性之间的关系。作为实用复合材料的一种实用方法,提出了在纤维和基质之间具有中间层的SFC(单纤维复合材料)模型。而且,考虑了具有不同的剥离失效区域和失效方向的中间层的影响。结果,阐明了纤维/基质界面,中间层的几何尺寸及其物理性质对波传播的影响。当纤维与基体之间的中间层存在剥离失效时,可以理解其对超声运动模式的影响以及能量传播的特性。可视化了由于在纤维/基质界面处存在脱胶失败而导致的反射,透射,多次反射和色散导致的复杂传播行为。结果表明,基于超声技术的3P复合材料的界面行为评估方法是可行的,该复合材料的中间层位于纤维和基体之间。根据这些结果,表明在3P复合材料中评估界面行为的方法是可行的。

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