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Electro-bending behavior of curved natural fiber laminated composites

机译:弯曲天然纤维层压复合材料的电弯曲行为

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摘要

Experiments are performed to understand the electro-bending behavior of conductive jute/epoxy curved composites for monitoring of damage under four-point bending. A well-connected electrical network in the laminated curved composite is obtained by wet flocking micro carbon fibers between laminates and dispersing carbon nanotubes (CNTs) within the matrix. By embedding only 0.1 wt% of CNTs into the composites, the effects of carbon fiber length and density on electro-bending behavior is studied. The normalized curved beam strength (curved beam strength/thickness) of composites marginally increased for a case of carbon fiber length of 350 mu m and fiber density of 500 fibers/mm(2) compared to composites with no carbon fibers, however for all other cases, it showed slight decrease. The electro-bending behavior of composites of carbon fiber length of 150 mu m showed higher percentage resistance change both at crack initiation point as well as at failure of specimen compared to those of carbon fiber length of 350 mu m. The longer fiber (350 mu m) composites provided rich conductive network and formed new connections to compensate the increase in resistance due to damage growth.
机译:进行实验以了解导电黄麻/环氧弯曲复合材料的电弯曲行为,用于监测四点弯曲下的损伤。通过层压弯曲复合材料中的连接良好的电气网络通过层压板和分散在基质内的碳纳米管(CNT)之间的湿式微碳纤维获得。通过仅将0.1wt%的CNT嵌入复合材料中,研究了碳纤维长度和密度对电弯曲行为的影响。复合材料的归一化曲线光束强度(弯曲光束强度/厚度)对于碳纤维长度为350μm和500纤维/ mm(2)的碳纤维长度的情况略有增加,与没有碳纤维的复合材料相比,但是对于所有其他病例,它显示出轻微的减少。碳纤维长度的复合材料的电弯曲行为为150μm,在与350μm的碳纤维长度的碳纤维长度相比,裂纹引发点以及试样的失效时,均有更高的百分比电阻变化。较长的纤维(350μm)复合材料提供了丰富的导电网络,形成了新的连接,以补偿由于损伤增长导致的抗性增加。

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