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Tailoring viscoelastic response of carbon nanotubes cellular structure using electric field

机译:裁剪粘弹性反应的碳纳米管细胞结构使用电场

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摘要

Cellular structures of carbon nanotubes (CNT) are novel engineering materials, which are finding applications due to their remarkable structural and functional properties. Here, we report the effects of electric field, one of the most frequently used stimulants for harnessing the functional properties of CNT, on the viscoelastic response, an important design consideration for the structural applications of a cellular CNT sample. The application of an electric field results in electrostriction induced large actuation in freestanding CNT samples; however, if the CNT are prohibited to expand, an electric field dependent force is exerted by the sample on the constraining platens. In addition, the above force monotonically decreases with the pre-compressive strain imposed onto the sample. The viscoelastic recovery reveals a decrease in the stress relaxation with an increase in the pre-compressive strain in both the presence and absence of the electric field; however, the stress relaxation was significantly higher in the presence of the electric field. A model, based on a simple linear viscoelastic solid incorporating electric field, is developed to understand the experimental observations.
机译:细胞结构的碳纳米管(CNT)新型工程材料,发现应用程序由于其显著的结构和功能属性。电场的影响,大多数的国家之一利用常用的兴奋剂问的功能特性,在粘弹性反应,一个重要的设计考虑细胞的结构应用问样本。结果在电致伸缩引起的大在独立驱动问样品;如果问禁止扩大,电动施加的力是领域相关的样本约束压板。力单调减少的pre-compressive应变施加到样品。粘弹性恢复显示下降增加的应力松弛在存在和pre-compressive应变没有电场;应力松弛是更高的电场的存在。一个简单的线性粘弹性固体合并电场,是发达的理解实验观察。

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