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Strengthening and failure mechanisms of individual carbon nanotube fibers under dynamic tensile loading

机译:动态拉伸载荷作用下单个碳纳米管纤维的增强和破坏机理

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Rate-dependent mechanical properties of individual carbon nanotube (CNT) fibers are essential for developing advanced anti-collision composites. In this work, a free-falling Hopkinson tension bar was designed to measure the dynamic tensile strength of CNT fiber. The strength of pure CNT fiber is found to be more sensitive to strain rate than that of composite CNT fiber. The dynamic failure morphologies of pure and composite CNT fiber were compared with their quasi-static responses. It was observed that the pure CNT fiber tends to break off at the weakest point, leading to unraveling of fiber along the twisted direction. On the other hand, the infiltrated polymer tends to change the failure mode and rate sensitivity of CNT fibers. Furthermore, high speed deformation analysis under dynamic loading revealed that pure CNT fiber tends to fail at the weakest point while the composite CNT fiber breaks into several fragments. (C) 2016 Elsevier Ltd. All rights reserved.
机译:碳纳米管(CNT)纤维的速率依赖性机械性能对于开发先进的防撞复合材料至关重要。在这项工作中,设计了自由下落的霍普金森张力棒来测量CNT纤维的动态拉伸强度。发现纯CNT纤维的强度比复合CNT纤维对应变率更敏感。比较了纯碳纤维和复合碳纳米管纤维的动态破坏形态及其准静态响应。观察到纯CNT纤维倾向于在最弱点断裂,从而导致纤维沿扭曲方向散开。另一方面,渗透的聚合物倾向于改变CNT纤维的破坏模式和速率敏感性。此外,在动态载荷下的高速形变分析表明,纯CNT纤维在最弱的位置往往会破裂,而复合CNT纤维会破碎成几个碎片。 (C)2016 Elsevier Ltd.保留所有权利。

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