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A New Approach for Quantitative Evaluation of Ultrasonic Wave Attenuation in Composites

机译:复合材料中超声波衰减定量评价的一种新方法

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摘要

When ultrasonic waves propagate in composite materials, the propagation behaviors result from the combination effects of various factors, such as material anisotropy and viscoelastic property, internal microstructure and defects, incident wave characteristics and interface condition between composite components. It is essential to make it clear how these factors affect the ultrasonic wave propagation and attenuation characteristics, and how they mutually interact on each other. In the present paper, based on a newly developed time-domain finite element analysis code, PZflex, a unique approach for clarifying the detailed influence mechanism of aforementioned factors is proposed, in which each attenuation component can be extracted from the overall attenuation and analyzed respectively. By taking into consideration the interrelation between each individual attenuation component, the variation behaviors of each component and internal dynamic stress distribution against material anisotropy and matrix viscosity are separately and quantitatively evaluated. From the detailed analysis results of each attenuation component, the energy dissipation at interface is a major component in ultrasonic wave attenuation characteristics, which can provide a maximum contribution rate of 68.2 % to the overall attenuation, and each attenuation component is closely related to the material anisotropy and viscoelasticity. The results clarify the correlation between ultrasonic wave propagation characteristics and material viscoelastic properties, which will be useful in the further development of ultrasonic technology in defect detection.
机译:当超声波在复合材料中传播时,传播行为是由各种因素的组合效应,例如材料各向异性和粘弹性,内部微观结构和缺陷,入射波特性和复合部件之间的界面状况。必须清楚这些因素如何影响超声波传播和衰减特征,以及它们如何相互交互。在本文的基础上,基于新开发的时域有限元分析码,提出了一种独特的方法,用于阐明上述因子的详细影响机理,其中每个衰减组分可以分别从总衰减中提取并分析。通过考虑每个单独的衰减部件之间的相互关系,分别和定量地评估每个组分和对材料各向异性和基质粘度的内部动态应力分布的变化行为。从每个衰减部件的详细分析结果来看,接口的能量耗散是超声波衰减特性中的主要成分,其可以为整体衰减提供68.2%的最大贡献率,并且每个衰减部件与材料密切相关各向异性和粘弹性。结果阐明了超声波传播特性和材料粘弹性性能之间的相关性,这将在缺陷检测中进一步发展超声波技术的进一步发展中。

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