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MECHANICAL PROPERTIES 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力学性能

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It is frequently reported that carbon nanotubes can efficiently be used to reinforce composite materials and considerably improve their structural mechanical properties. Therefore, it is essential to investigate the effective properties of such nanocomposites. In this work, an analytical approach is employed to derive the analytical exact solutions for the effective Young's modulus and major Poisson's ratio of a three-phase composite cylinder model representing a matrix filled single-walled carbon nanotube (SWCNT) embedded in another host material. In this study, all three constituents are considered generally cylindrical orthotropic. For validation, results from finite element analysis of an identical 3-D model are compared to those obtained analytically. It is shown that both techniques are in excellent agreement and therefore analytical exact solutions for the prediction of effective axial Young's modulus and major Poisson's ratio of the filled SWCNT embedded in another host material and all having orthotropic properties are verified.
机译:经常报道,碳纳米管可以有效地用于加强复合材料,并显着改善其结构力学性能。因此,必须研究这种纳米复合材料的有效性质。在这项工作中,采用分析方法来衍生出有效杨氏模量和三相复合圆筒模型的主要泊松比的分析精确解决方案,其三相复合圆筒模型代表嵌入另一个主体材料中的基质填充的单壁碳纳米管(SWCNT)。在该研究中,所有三个成分都被认为是圆柱形的正向熵。为了验证,将相同的3-D模型的有限元分析的结果与分析获得的有限元分析。结果表明,两种技术都是很好的一致性,因此验证了嵌入另一个主体材料中填充的SWCNT的有效轴向杨氏模量和主要泊松比的分析精确解决方案。

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