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首页> 外文期刊>Journal of Composite Materials >Application of ultrasonic spectroscopy for hydrolytic damage detection in GRFC: correlations with mechanical tests and microscopic observations
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Application of ultrasonic spectroscopy for hydrolytic damage detection in GRFC: correlations with mechanical tests and microscopic observations

机译:超声光谱在GRFC中水解损伤检测中的应用:与机械测试和微观观察的相关性

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摘要

This study concerns the ability of ultrasonic waves to detect the damage caused to polymer composites during water immersion. The acoustical parameters such as velocity and attenuation are linked to the viscoelasticity and microstructure of the propagation medium. For ultrasonic propagation. composite materials are dispersive. so their acoustical parameters are measured by means of pulsed ultrasonic spectroscopy. Model samples with certain properties are chosen in order to isolate the different damage mechanisms. In these conditions, the results of ultrasonic tests during hydrolytic aging allowed us to correlate the evolution of acoustical parameters to the damage level and nature. The ultrasonic results have been validated by complementary mechanical tests and microscopic observations carried out on the same samples. From these results, it is possible to implement a practical procedure allowing the damage quantitative evaluation from ultrasonic velocity and attenuation measurements. The damage mechanism is identified through a detailed analysis of the velocity and attenuation dispersion laws.
机译:这项研究涉及超声波检测浸入水中对聚合物复合材料造成的损害的能力。诸如速度和衰减之类的声学参数与传播介质的粘弹性和微观结构有关。用于超声波传播。复合材料是分散的。因此,它们的声学参数是通过脉冲超声光谱法测量的。选择具有某些特性的模型样本以隔离不同的损坏机制。在这些条件下,水解老化过程中的超声波测试结果使我们能够将声学参数的演变与损伤程度和性质联系起来。超声结果已经通过对相同样品进行的补充机械测试和显微镜观察得到验证。从这些结果可以实现一种实用的程序,该程序允许根据超声波速度和衰减测量结果对损伤进行定量评估。通过详细分析速度和衰减色散定律,可以确定损伤机理。

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