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Carbon Nanotube Networks as a Strain Indicator and Failure Predictor in Polymer Matrix Composites Subjecting to Static and Dynamic Loads

机译:碳纳米管网络作为承受静态和动态载荷的聚合物基复合材料的应变指标和破坏预测指标

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In this work, multiwall carbon nanotubes (MWCNTs) have been used to form a network of sensors to predict the failure region and to monitor the degradation of mechanical properties in laminated composites subjected to tensile and cyclic fatigue loadings. This is achieved by measuring the electrical resistivity change in the semi-conductive MWCNT-fiber glass-epoxy polymer matrix composites. By partitioning the tensile samples with electrically conductive probes, it has been shown that with increasing tensile load, different resistivity changes are detected in different regions and failure happens in the part in which higher resistivity change was detected. In cyclic loading, in which the maximum load is higher than the elastic limit of the laminate, a sharp increase in resistivity occurs within the first several cycles. There is also a change in resistivity during long term cyclic loading which gives this technique a good potential to monitor strength degradation during fatigue.
机译:在这项工作中,多壁碳纳米管(MWCNT)已用于形成传感器网络,以预测失效区域并监测承受拉伸和循环疲劳载荷的层压复合材料的机械性能的下降。这是通过测量半导电MWCNT-纤维玻璃-环氧聚合物基质复合材料的电阻率变化来实现的。通过用导电探针划分拉伸样品,已经表明,随着拉伸载荷的增加,在不同区域中检测到不同的电阻率变化,并且在检测到较高电阻率变化的部分中发生故障。在最大载荷高于层压板的弹性极限的循环载荷下,电阻率在前几个循环内急剧增加。长期循环负载期间电阻率也会发生变化,这使该技术具有很好的潜力来监测疲劳期间的强度下降。

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