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The effects of surface elasticity and surface tension on the transverse overall elastic behavior of unidirectional nano-composites

机译:表面弹性和表面张力对单向纳米复合材料横向整体弹性行为的影响

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摘要

The effects of surface elasticity and surface tension on the transverse overall behavior of unidirectional nano-scale fiber-reinforced composites are studied. The interfaces between the nano-fibers and the matrix are regarded as material surfaces described by the Gurtin and Murdoch model. The analysis is based on the equivalent inhomogeneity technique. In this technique, the effective elastic properties of the material are deduced from the analysis of a small cluster of fibers embedded into an infinite plane. All interactions between the inhomogeneities in the cluster are precisely accounted for. The results related to the effects of surface elasticity are compared with those provided by the modified generalized self-consistent method, which only indirectly accounts for the interactions between the inhomogeneities. New results related to the effects of surface tension are presented. Although the approach employed is applicable to all transversely isotropic composites, in this paper we consider only a hexagonal arrangement of circular cylindrical fibers.
机译:研究了表面弹性和表面张力对单向纳米级纤维增强复合材料横向整体性能的影响。纳米纤维和基质之间的界面被视为由Gurtin和Murdoch模型描述的材料表面。该分析基于等效的不均匀性技术。在这种技术中,通过对嵌入无限平面中的一小束纤维的分析得出了材料的有效弹性性能。集群中不均匀性之间的所有相互作用都得到了精确的解释。将与表面弹性影响有关的结果与修改后的广义自洽方法提供的结果进行比较,后者仅间接说明了不均匀性之间的相互作用。提出了有关表面张力影响的新结果。尽管所采用的方法适用于所有横向各向同性的复合材料,但在本文中,我们仅考虑了圆柱形纤维的六边形排列。

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