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The influence of porosity on ultrasound attenuation in carbon fiber reinforced plastic composites using the laser-ultrasound spectroscopy

机译:孔隙率对碳纤维增强塑料复合材料超声衰减的影响

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Wideband acoustic spectroscopy with a laser ultrasound source for quantitative analysis of the effect of porosity on the attenuation coefficient of longitudinal acoustic waves in carbon fiber reinforced plastic (CFRP) composite materials was experimentally implemented. The samples under study had different bulk-porosity levels (up to 10%), which were determined using X-ray computer tomography. A resonance ultrasound attenuation peak associated with the one-dimensional periodicity of the layered composite structure was observed for all samples. The absolute value of the resonance-peak maximum and its width depend on the local concentration of microscopic isolated pores and extended delaminations in the sample structure. The obtained empirical relationships between these parameters of the frequency dependence of the ultrasound attenuation coefficient and the type of inhomogeneities and their volume concentration can be used for rapid evaluation of the structural quality of CFRP composites.
机译:实验实现了使用激光超声源的宽带声谱技术,用于定量分析孔隙率对碳纤维增强塑料(CFRP)复合材料中纵向声波衰减系数的影响。使用X射线计算机断层扫描法测定的被研究样品具有不同的体孔率(最高10%)。对于所有样品,均观察到与层状复合结构的一维周期性相关的共振超声衰减峰。共振峰最大值的绝对值及其宽度取决于样品结构中微观隔离孔的局部浓度和扩展的分层。超声衰减系数的频率依赖性与不均匀性的类型及其体积浓度之间的这些参数之间的经验关系可用于快速评估CFRP复合材料的结构质量。

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