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A novel 2-D random void model and its application in ultrasonically determined void content for composite materials

机译:新型二维随机空隙模型及其在复合材料超声测定空隙率中的应用

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摘要

A two-dimensional (2-D) Random Void Model (RVM) is innovatively developed to describe random voids and to quantitatively correlate ultrasonic attenuation coefficient with void content of composite materials. The spatial autocorrelation function and statistical parameters are used to describe the large-scale heterogeneity from the composite matrix and the small-scale heterogeneities of elastic fluctuations from random voids. The RVMs of Carbon Fiber Reinforced Polymer (CFRP) composite specimens over a void content range of 0.03-4.62% are presented. Outstanding improvements of geometric simulations of voids morphology and quantitative correlation of porosity and ultrasonic attenuation coefficient at 5 MHz are observed. It is concluded that this method is suitable to identify random voids and to predict void content of composite materials nondestructively.
机译:创新地开发了二维(2-D)随机空隙模型(RVM),以描述随机空隙并将超声衰减系数与复合材料的空隙含量定量相关。空间自相关函数和统计参数用于描述复合矩阵的大规模异质性和随机孔隙的弹性波动的小尺度异质性。提出了碳纤维增强聚合物(CFRP)复合材料试样的空隙率在0.03-4.62%范围内的RVM。观察到了在5 MHz时空洞形态的几何模拟的显着改进以及孔隙率和超声衰减系数的定量相关性。得出的结论是,该方法适用于无规识别空隙和无损预测复合材料的空隙率。

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