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Clustering effect on damage mechanisms in open-hole laminated carbon/epoxy composite under constant tensile loading rate, using acoustic emission

机译:声发射在恒定拉伸载荷下对开孔碳/环氧树脂复合材料损伤机理的聚集效应

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摘要

In the present research, damage mechanisms in the open-hole laminated carbon/epoxy composite have been investigated using the acoustic emission method. For such objective, standard specimens, made of the pure resin, the pure fiber and composites, were tested under tensile conditions, at a constant loading rate. Then, the clustering effect was studied in order to know which damages (debonding, fiber pull-out, delamination, matrix cracking and fiber breakage defects) occurred in the material. For the analysis of acoustic emission signals, wavelet packet transform and fuzzy C-means methods were applied to data. Obtained results indicated that the frequency range for matrix cracking, the fiber breakage, the fiber pull-out, debonding of fibers from the matrix and the delamination was obtained as 100-250 kHz, 420-500 kHz, 250-320 kHz, 320-380 kHz and 380-420 kHz, respectively. Scanning electron microscopy images showed that the dominant damage was qualitatively related to debonding, the fiber pull-out and the delamination, which had a proper agreement with obtained results from the analysis of acoustic emission signals.
机译:在本研究中,已经使用声发射方法研究了开孔层压的碳/环氧树脂复合材料中的损伤机理。为了达到这个目的,由纯树脂,纯纤维和复合材料制成的标准样品在拉伸条件下以恒定的加载速率进行了测试。然后,研究了聚集效应,以了解在材料中发生了哪些损坏(脱粘,纤维拉出,分层,基体开裂和纤维断裂缺陷)。为了分析声发射信号,将小波包变换和模糊C均值方法应用于数据。获得的结果表明,获得的基体开裂,纤维断裂,纤维拉出,纤维从基体脱粘和分层的频率范围为100-250 kHz,420-500 kHz,250-320 kHz,320-分别为380 kHz和380-420 kHz。扫描电子显微镜图像显示,主要损伤与脱粘,纤维拉出和分层在质量上相关,与声发射信号分析获得的结果具有适当的一致性。

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