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Height independent compressive modulus of vertically aligned carbon nanotube arrays

机译:垂直排列的碳纳米管阵列的高度无关的压缩模量

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The compressive modulus of dense vertically aligned multiwalled carbon nanotube (CNT) arrays synthesized by chemical vapor deposition was investigated using an optically probed precision-loading platform. For CNT arrays with heights ranging from 15 to 500 mu m, the moduli were measured to be about 0.25 MPa and were found to be independent of array height. A continuum mechanics model based on multimode buckling guided by the wavy features of CNT arrays is derived and explains well the measured compressive properties. The measured compressive modulus of the CNT arrays also satisfies the "Dahlquist tack criterion" for pressure sensitive adhesives, which was previously observed for these vertically aligned CNT arrays (Zhao, Y., et al. J. Vac. Sci. Technol., B 2006, 24, 331-335).
机译:使用光学探测的精密加载平台研究了化学气相沉积合成的致密垂直排列的多壁碳纳米管(CNT)阵列的压缩模量。对于高度范围为15至500μm的CNT阵列,测得的模量为约0.25MPa,并且发现其与阵列高度无关。导出了基于多模式屈曲的连续力学模型,该模型由CNT阵列的波浪形特征引导,并很好地解释了测量的压缩特性。 CNT阵列的测量压缩模量也满足压敏胶粘剂的“达尔奎斯特粘性标准”,以前对于这些垂直排列的CNT阵列已经观察到(Zhao,Y.等人,J。Vac。Sci。Technol。,B 2006,24,331-335)。

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