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首页> 外文期刊>Journal of Materials Science >Detection of microfracture processes in composite laminates by thermo-acoustic emission
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Detection of microfracture processes in composite laminates by thermo-acoustic emission

机译:通过热声发射检测复合材料层压板中的微裂纹过程

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摘要

The damage process in composite laminates subjected to cryogenic cooling was monitored employing a thermo-acoustic emission (AE) technique. The thermo-AE signals processed with a short-time Fourier transform could be classified into three different types which were correlated with individual microfracture processes. In the initial stage of cryogenic cooling, very strong AE signals with low and high frequency bands were dominantly detected showing that large cracks accompanying fiber breakages were developed mainly. With an increase in the cooling time, weak emissions with low frequency bands became prevalent indicating the propagation of microfractures in the matrix and/or fiber-matrix interface. Similar types of AE signals, however, having weak amplitudes, were also observed for the cryogenically-treated specimens during thermal heating and cooling load cycles. Thus, analysis of thermo-AE behavior through the thermal load cycle led to the nondestructive evaluation for the cryogenic damage of composites. (C) 2003 Kluwer Academic Publishers. [References: 8]
机译:使用热声发射(AE)技术监控经受低温冷却的复合层压板的损坏过程。用短时傅立叶变换处理的热声信号可以分为三种不同的类型,它们与单个微断裂过程相关。在低温冷却的初始阶段,主要检测到具有很强的低频和高频频段的声发射信号,这表明主要是伴随纤维断裂的大裂纹的发展。随着冷却时间的增加,低频带的弱发射变得普遍,这表明微裂缝在基质和/或纤维-基质界面中的传播。然而,在热加热和冷却负荷循环期间,对于经过深冷处理的样品,也观察到了类似类型的AE信号,但振幅很弱。因此,在整个热负荷循环中对热AE行为的分析导致了复合材料低温损伤的无损评估。 (C)2003 Kluwer学术出版社。 [参考:8]

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