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MECHANICAL PERFORMANCE OF MATRIX FILLED SINGLE-WALLED CARBON NANOTUBE REINFORCED NANOCOMPOSITES

机译:基质填充单壁碳纳米管增强纳米复合材料的机械性能

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摘要

Carbon nanotubes have been used as an additional reinforcement to enhance mechanical, thermal, and electrical properties of the structural composites. Thus, it is very important to investigate the mechanical behaviour of such nanocomposites when they undergo external load. In this paper, first, analytical exact solution for effective longitudinal Young's modulus of a generally orthotropic 3-phase nanocomposite cylinder, representing the 3-dimentional model of a filled single-walled carbon nanotube embedded in another host material is formulated and then used to obtain the analytical exact solutions for displacements, strains, and stress distributions throughout the entire tubular structure corresponding to an axially applied load. The materials of all three cylinders constructing the 3-phase nanocomposite cylinder are considered to be cylindrically generally orthotropic. Next, analytical solutions are examined for a particular cylindrical geometry and material properties. Results are obtained through the thickness of the tubes, i.e., through the radius, and then discussed. To verify the analytical exact solutions, a 3-dimentional finite element analysis of an identical 3-phase nanocomposite structure is performed and some of the results are compared to those obtained analytically. Excellent agreement is achieved validating our analytical solutions.
机译:已用作额外的增强件,以增强结构复合材料的机械,热和电性能。因此,在进行外部负荷时,研究这种纳米复合材料的机械性能非常重要。在本文中,首先,配制嵌入另一个主体材料中的填充单壁碳纳米管的3维模型的有效纵向杨氏模量的分析精确解决方案被配制,然后用于获得对应于轴向施加的载荷的整个管状结构的位移,菌株和应力分布的分析精确解。构造3相纳米复合材料圆筒的所有三个气缸的材料被认为是圆柱形的正常性。接下来,针对特定的圆柱形几何形状和材料特性检查分析溶液。结果是通过管的厚度获得的,即通过半径,然后讨论。为了验证分析精确溶液,进行相同的3相纳米复合结构的三维有限元分析,并将一些结果与分析获得的那些进行比较。验证我们的分析解决方案验证了良好的协议。

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