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首页> 外文期刊>Composites >Real-time damage mechanisms assessment in CFRP samples via acoustic emission Lamb wave modal analysis
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Real-time damage mechanisms assessment in CFRP samples via acoustic emission Lamb wave modal analysis

机译:通过声发射兰姆波模态分析评估CFRP样品中的实时损伤机制

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摘要

This paper proposes a very promising acquisition-analysis procedure to evaluate real-time damage in carbon fiber-reinforced polymer (CFRP) composite plates by means of the acoustic emission (AE) method. It shows how, by using appropriate acquisition frequency filters and very narrow time windows, it is possible to avoid reflection at boundaries and successfully split the A0 and S0 Lamb modes of the AE signals. After that, an appropriate algorithm -based on the comparison of strength of both modes in time and frequency domains- allows one to associate each AE event to a particular damage mechanism (delam-ination, fiber breaking and matrix micro-cracking). Experimental results from three point bending tests carried out on 22-layer CFRP samples, with delamination artificially induced by a Teflon film, clearly demonstrate the real-time evaluation of the induced delamination and the beginning and growth of new ones.
机译:本文提出了一种非常有前途的采集分析程序,可通过声发射(AE)方法评估碳纤维增强聚合物(CFRP)复合板的实时损伤。它显示了如何通过使用适当的采集频率滤波器和非常窄的时间窗口来避​​免边界反射并成功地分割AE信号的A0和S0 Lamb模式。此后,一种适当的算法-基于时域和频域两种模式强度的比较-允许将每个AE事件与特定的损坏机制(分层,纤维断裂和基质微裂纹)相关联。在22层CFRP样品上进行的三点弯曲试验的实验结果,以及由Teflon膜人工诱发的分层,清楚地证明了对诱导分层的实时评估以及新涂层的开始和生长。

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