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Characterizing the damage mechanisms in mode II delamination in glass/epoxy composite using acoustic emission

机译:使用声发射表征玻璃/环氧树脂复合材料中模式II分层的破坏机理

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Mode II delamination propagation is an important damage mode in laminated composites and this paper aims to investigate the behavior of this damage in laminated composite materials using acoustic emission (AE) technique. Three different lay-ups of glass/epoxy composites were subjected to mode II delamination propagation and generated AE signals were recorded. In order to investigate the propagation of delamination behavior of these specimens, AE signals were analyzed using Wavelet Packet Transforms (WPT) and Fast Fourier Transform (FFT). In addition, conventional AE analyses were used to enhance understanding of the propagation of delamination damage. The results indicate that different fracture mechanisms were the main cause of the AE signals. The dominant mechanisms in all the specimens were matrix cracking, fiber/matrix debonding and fiber breakage, with varying percentage of the damage mechanisms for each lay-up. Scanning Electron Microscopy (SEM) observations were in accordance to the AE results.
机译:模式II分层传播是层压复合材料中一种重要的损伤模式,本文旨在使用声发射(AE)技术研究层压复合材料中这种损伤的行为。对玻璃/环氧树脂复合材料的三种不同叠层进行II型分层传播,并记录产生的AE信号。为了研究这些样品的分层行为的传播,使用小波包变换(WPT)和快速傅里叶变换(FFT)分析了AE信号。此外,常规的AE分析用于增强对分层损伤传播的理解。结果表明,不同的断裂机制是声发射信号的主要原因。在所有样品中,主要的机理是基体开裂,纤维/基体的脱粘和纤维断裂,每种叠层的损伤机理的百分率不同。扫描电子显微镜(SEM)的观察结果与AE结果一致。

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