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Modeling and Analysis of Interfacial Bonding and Load Transfer in SWNT-Reinforced Composites

机译:SWNT增强复合材料界面粘结和载荷传递的建模与分析

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A fundamental understanding of the mechanisms and magnitude of interfacial bonding and load transfer between carbon nanotubes and polymer matrices is critical for developing high performance nanotube-reinforced composites. Molecular dynamics (MD) simulation is an effective approach to investigate nanoscale interfacial phenomena. In this study, MD simulation models of the pullout of nanotubes were utilized to investigate the energy of material systems and to characterize interfacial shear strength in SWNT/polymer composites. The interfacial bonding and load transfer behaviors between the different SWNTs' configurations (open ends, capped ends, functionalized ends) were also examined. Additional theoretical calculations were performed to determine the effect of sidewall functionalization of the SWNTs on interfacial shear strength. The calculations revealed the effects of the different tube configurations on interfacial shear strength. The results indicated that the interfacial shear strengths are only 50~60MPa for the nanotubes with different end configurations there is no chemical bonding between tubes and resin matrix. The results of loading transfer analysis show that more than 600MPa interfacial shearing strength is needed to reach the full mechanical potential of (10,10) SWNTs with a length of 500nm and a tensile strength of lOOGPa. Approximate 15% of the carbon atoms on the nanotube sidewall must be functionalized. The results of the MD simulation were also compared with available experimental results and observations.
机译:对碳纳米管和聚合物基体之间的界面键合和负载转移的机理和强度的基本了解对于开发高性能纳米管增强的复合材料至关重要。分子动力学(MD)模拟是研究纳米级界面现象的有效方法。在这项研究中,利用纳米管拉出的MD模拟模型来研究材料系统的能量并表征SWNT /聚合物复合材料的界面剪切强度。还检查了不同单壁碳纳米管结构(开口端,封端,官能化端)之间的界面结合和载荷转移行为。进行了其他理论计算,以确定SWNT的侧壁功能化对界面剪切强度的影响。计算结果显示了不同管配置对界面剪切强度的影响。结果表明,不同端构型的纳米管的界面剪切强度仅为50〜60MPa,管与树脂基体之间无化学键结合。载荷传递分析的结果表明,要达到长度为500nm,拉伸强度为100GPa的(10,10)SWNT的全部机械势,需要超过600MPa的界面剪切强度。纳米管侧壁上大约15%的碳原子必须被官能化。 MD模拟的结果也与可用的实验结果和观察结果进行了比较。

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