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Dynamic Behavior of Periodic Structures Consisting of Vertically Aligned Carbon Nanotubes and Rigid Interlayers

机译:由垂直对齐的碳纳米管和刚性中间层组成的周期结构的动态行为

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We assembled novel periodic structures by alternating aligned carbon nanotube (CNT) discs and polycarbonate cylindrical particles for stress damping applications. CNTs are known to present a nonlinear, hysteretic mechanical behavior in compression with the ability to recover from large strains. Furthermore, CNTs are generally more lightweight and thermally stable than currently existing viscoelastic polymers. We test the dynamic response of these CNT/polycarbonate multilayer systems excited by an impact. The response of these systems is found to be highly nonlinear and tunable by variation of the static precompression applied. We studied the wave propagation properties and dissipation in these systems and found that the presence of CNTs improves the energy damping properties of the system when compared with the one observed in polycarbonate particles alone. Such improvement was higher with smaller precompression loads. More detailed studies are required to understand the origin of the observed dynamic behavior.
机译:我们通过交替定向碳纳米管(CNT)的光盘和聚碳酸酯圆柱状颗粒为应力阻尼应用组装新颖的周期结构。碳纳米管是已知的以呈现非线性,迟滞力学行为在压缩与从大应变恢复的能力。此外,CNT通常更加轻便比目前存在的粘弹性的聚合物热稳定的。我们测试通过冲击激发这些CNT /聚碳酸酯多层系统的动态响应。这些系统的响应被发现是高度非线性的并且施加静态预压的变化由可调。我们研究了这些系统中的波传播特性和耗散,发现当与单独的聚碳酸酯颗粒中观察到的一个比较的CNT的存在改善了能量阻尼系统的性能。这样的改进是用较小的预压缩负荷较高。更详细的研究,需要了解所观察到的动态行为的起源。

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