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Quantitative analysis of the influence of voids and delaminations on acoustic attenuation in CFRP composites by the laser-ultrasonic spectroscopy method

机译:激光-超声光谱定量分析CFRP复合材料中空隙和分层对声衰减的影响

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摘要

The aim of the present work is to develop the ultrasonic spectroscopy method using laser thermoelastic generation and piezoelectric detection of broadband acoustic pulses for quantitative evaluation of the influence on the ultrasonic attenuation coefficient of microscopic dispersed voids and interply delaminations in CFRP laminates. The specimens under study have different entire porosity values up to 10% determined by the X-ray computer tomography. The ultrasonic attenuation resonance is observed in all specimens governed by their periodic layered structure. The absolute maximum and the frequency bandwidth of the resonance peak depend on the total porosity level formed by the predominant type of imperfections, either of only microscopic spheroidal voids entrapped in the epoxy layers or of additional extended interply delaminations. The derived empirical relations between these parameters and the total porosity level can be used for rapid nondestructive evaluation of the structure of CFRP composite laminates subject to different manufacturing conditions.
机译:本工作的目的是开发一种使用激光热弹性生成和宽带声脉冲的压电检测的超声光谱方法,用于定量评估CFRP层压板中微观分散空隙和层间分层对超声衰减系数的影响。通过X射线计算机断层扫描测定,所研究的样品具有高达10%的不同总孔隙率值。在所有受其周期性分层结构控制的样品中均观察到了超声波衰减共振。共振峰的绝对最大值和频率带宽取决于主要缺陷类型所形成的总孔隙度,这些缺陷仅是在环氧树脂层中截留的微观球形空隙,或者是其他扩展的层间分层。这些参数与总孔隙率水平之间得出的经验关系可用于在不同制造条件下对CFRP复合层压板的结构进行快速无损评估。

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