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首页> 外文期刊>International Journal of Mechanical Sciences >Effect of residual interface stress on thermo-elastic properties of unidirectional fiber-reinforced nanocomposites
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Effect of residual interface stress on thermo-elastic properties of unidirectional fiber-reinforced nanocomposites

机译:残余界面应力对单向纤维增强纳米复合材料热弹性能的影响

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Surface/interface effect plays a significant role in the study of the mechanical properties of nano composites. Most previous papers in the literature only considered the surface/interface elasticity, whereas some papers only considered the residual surface/interface stress (surface/interface tension). In this paper, an energy-based surface/interface theory is applied to systematically study the effective thermo-elastic properties of unidirectional fiber-reinforced nanocomposites, in which both the surface/interface elasticity and the residual surface/interface stress are included. The emphasis is particularly placed on the influence of the residual interface stress on the effective thermo-elastic properties of such nanocomposites, since this influence was ignored by many previous authors. Analytical expressions of five effective transversely isotropic elastic constants are derived, in which a modified generalized self consistent method is suggested to obtain an explicit expression of the size-dependent effective transverse shear modulus. Furthermore, with an introduced concept of 'equivalent fiber' (i.e., a fiber together with its interface), the effective thermal expansion coefficients and the effective specific heat at constant strain of the fiber-reinforced nanocomposite are obtained. Finally, numerical examples are illustrated, and the effect of residual interface stress on the effective thermo-elastic properties of the fibrous nanocomposite is discussed. It is shown that the residual interface stress has a significant effect on the overall thermo-elastic properties of the nanocomposites. (C) 2016 Elsevier Ltd. All rights reserved.
机译:表面/界面效应在纳米复合材料力学性能的研究中起着重要作用。文献中大多数先前的论文仅考虑了表面/界面弹性,而一些论文仅考虑了残留的表面/界面应力(表面/界面张力)。本文应用基于能量的表面/界面理论系统研究了单向纤维增强纳米复合材料的有效热弹性,其中包括表面/界面弹性和残余表面/界面应力。重点特别放在残余界面应力对此类纳米复合材料有效热弹性性质的影响上,因为这种影响被许多先前的作者所忽略。推导了五个有效的横向各向同性弹性常数的解析表达式,其中提出了一种改进的广义自洽方法,以获得尺寸相关的有效横向剪切模量的明确表达式。此外,通过引入“等效纤维”(即,纤维及其界面)的概念,获得了纤维增强的纳米复合材料在恒定应变下的有效热膨胀系数和有效比热。最后,举例说明了数值示例,并讨论了残余界面应力对纤维纳米复合材料有效热弹性性质的影响。结果表明,残余界面应力对纳米复合材料的整体热弹性性能具有重要影响。 (C)2016 Elsevier Ltd.保留所有权利。

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