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Mode I Interlaminar Fracture of Glass/Epoxy Unidirectional Laminates. Part I: Experimental Studies

机译:模式I玻璃/环氧单向层压层的InterlaMAR骨折。第一部分:实验研究

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摘要

The paper presents experimental tests of unidirectional double cantilever beams made of a glass fiber reinforced (GFRP) laminate. The critical value of the strain energy release rate (c-SERR or GIC), i.e., the mode I fracture toughness of the considered material was determined with three different methods: the compliance calibration method (CC), the modified compliance calibration method (MCC), and the corrected beam theory (CBT). Due to the common difficulties in precise definition of delamination initiation force, the Acoustic Emission (AE) technique was applied as an auxiliary source of data. The failure process was monitored, as well, in order to detect and identify different damage phenomena. This was achieved through a detailed analysis of the raw AE signal subjected to fast Fourier transformation (FFT). The frequency spectra revealed three dominating frequency bands with the basic one described by the average value of 63.1 kHz, revealing intensive delamination processes. This way, not only precise values of the critical SERR, but also the information on damage evolution during propagation of delamination, was obtained.
机译:本文介绍了由玻璃纤维增​​强(GFRP)层压板制成的单向双悬臂梁的实验测试。用三种不同的方法测定应变能释放速率(C-SERR或GIC)的临界值(C-SERR或GIC),即所考虑的材料的模式I断裂韧性:顺应校准方法(CC),改进的合规校准方法(MCC) )和校正光束理论(CBT)。由于分层引发力的精确定义的常见困难,声发射(AE)技术被应用为辅助数据源。监测故障过程,也是为了检测和识别不同的损伤现象。这是通过对经受快速傅里叶变换(FFT)的原始AE信号进行详细分析来实现的。频谱揭示了三个主导频带,其基本一个由平均值为63.1kHz,揭示了强化分层过程。通过这种方式,不仅获得了临界SERR的精确值,还获得了分层传播期间有关损伤演化的信息。

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