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Nanoscale Damping Characteristics of Boron Nitride Nanotubes and Carbon Nanotubes Reinforced Polymer Composites

机译:氮化硼纳米管和碳纳米管增强聚合物复合材料的纳米阻尼特性

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This study compares the damping behavior of boron nitride nanotubes (BNNTs) and carbon nanotubes (CNTs) as reinforcement in PLC, a biodegradable copolymer. The damping behavior of PLC composites reinforced with 2 wt % or 5 wt % nanotube filler is evaluated by nanodynamic mechanical analysis (NanoDMA). The addition of 2 wt % CNT leads to the greatest enhancement in damping (tan δ) behavior. This is attributed to pullout in CNTs because of lower interfacial shear strength with the polymer matrix and a more effective sword-in-sheath mechanism as opposed to BNNTs which have bamboo-like nodes. BNNTs however have a superior distribution in the PLC polymer matrix enabling higher contents of BNNT to further enhance the damping behavior. This is in contrast with CNTs which agglomerate at higher concentrations, thus preventing further improvement at higher concentrations. It is observed that for different compositions, tan δ values show no significant changes over varying dynamic loads or prolonged cycles. This shows the ability of nanotube mechanisms to function at varying strain rates and to survive long cycles.
机译:这项研究比较了生物可降解共聚物PLC中作为增强材料的氮化硼纳米管(BNNT)和碳纳米管(CNT)的阻尼行为。通过纳米力学力学分析(NanoDMA)评估了用2 wt%或5 wt%的纳米管填料增强的PLC复合材料的阻尼行为。添加2 wt%的CNT可以最大程度地提高阻尼(tanδ)行为。这归因于CNTs的拉拔,因为与具有竹节状的BNNT相比,其与聚合物基体的界面剪切强度较低,鞘剑鞘机制更有效。然而,BNNT在PLC聚合物基体中具有优异的分布,从而使BNNT的含量更高,从而进一步增强了阻尼性能。这与在较高浓度下附聚的CNT相反,因此阻止了在较高浓度下的进一步改善。可以看出,对于不同的成分,tanδ值在变化的动态载荷或延长的周期内均无明显变化。这显示出纳米管机制在变化的应变速率下起作用并经受较长循环的能力。

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