首页> 外文会议>ASME international mechanical engineering congress and exposition >VISCOELASTIC BEHAVIOR OF CARBON NANOTUBE YARNS AND TWISTED COILS
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VISCOELASTIC BEHAVIOR OF CARBON NANOTUBE YARNS AND TWISTED COILS

机译:碳纳米管纱和加捻线圈的粘弹性行为

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Coiled structures made from polymer and Carbon Nanotube (CNT) yarns are used as artificial muscles, stretchable conductors, and energy harvesters. The purpose of this work is to present our latest understanding of the mechanical behavior of these CNT-based structures. CNT yarns are fabricated by inserting twists in sheets spun from CNT forests. Over twisting the CNT yarns results in coiled CNT yarns, similar to a spring where the spring radius is comparable to the diameter of the CNT yarn. In this study, we explain the development and validation of a viscoelastic model, to capture damping and hysteresis in CNT yarns under quasi-static and dynamic loads. Confirmation of linear viscoelastic behavior of CNT yarns can lead us to the development of a model for coiled CNT yarns. Coiled CNT yarns, on the other hand, show a complex nonlinear viscoelastic behavior. Possible mechanisms responsible for this non-linear behavior are discussed.
机译:由聚合物和碳纳米管(CNT)纱线制成的卷曲结构被用作人造肌肉,可伸展的导体和能量收集器。这项工作的目的是介绍我们对这些基于CNT的结构的机械行为的最新理解。 CNT纱线是通过将捻度插入由CNT林纺成的片材中制成的。过度扭曲CNT纱线会导致缠绕CNT纱线,类似于弹簧,其弹簧半径与CNT纱线的直径相当。在这项研究中,我们解释了粘弹性模型的开发和验证,该模型可以捕获CNT纱线在准静态和动态载荷下的阻尼和滞后。确认CNT纱线的线性粘弹性行为可以引导我们开发卷取CNT纱线的模型。另一方面,卷曲的CNT纱线显示出复杂的非线性粘弹性行为。讨论了造成这种非线性行为的可能机制。

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