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Experimental study of carbon/glass fiber-reinforced hybrid laminate composites with torsional loads by using acoustic emission and Micro-CT

机译:基于声发射和Micro-CT的碳/玻璃纤维增强混合层合复合材料扭转载荷试验研究

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摘要

In this work, a torsion experiment was carried out on composite specimens with different off-axis angles to study the damage-evolution behavior of carbon/glass fiber-reinforced hybrid composites. The results show that the off -axis angle can improve the toughness of the specimen during the torsion process and enhance anti-torsion performance in the early stage. After applying Micro-CT and scanning-electron-microscope (SEM) technology, the damage distribution for a composite specimen under torsion was determined. AE technology for monitoring the entire torsion process was also applied, and for damage characterization post-processing based on Fuzzy C-Means (FCM) cluster analysis was performed on collected AE signals. AE signals were clearly divided into three categories that correspond to three damage modes, and frequency characteristics of the AE signal for each damage mode were found. The results can offer guidance for structural health monitoring (SHM) for composites under torsion.
机译:本工作对不同离轴角的复合材料试样进行了扭转试验,研究了碳/玻璃纤维增强杂化复合材料的损伤-演化行为。结果表明,离轴角可以提高试样在扭转过程中的韧性,并在早期增强抗扭转性能。应用显微CT和扫描电子显微镜(SEM)技术,确定了复合材料试样在扭转作用下的损伤分布。此外,还应用了用于监测整个扭转过程的声发射技术,并对采集到的声发射信号进行了基于模糊C均值(FCM)聚类分析的损伤表征后处理。将声发射信号清晰地分为3类,分别对应3种损伤模式,并发现每种损伤模式的声发射信号的频率特征。研究结果可为复合材料扭转结构健康监测(SHM)提供指导。

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