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首页> 外文期刊>International Journal of Solids and Structures >Effective longitudinal shear moduli of periodic fibre-reinforced composites with functionally-graded fibre coatings
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Effective longitudinal shear moduli of periodic fibre-reinforced composites with functionally-graded fibre coatings

机译:具有功能梯度纤维涂层的周期性纤维增强复合材料的有效纵向剪切模量

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摘要

This paper presents a homogenization method for unidirectional periodic composite materials reinforced by circular fibres with functionally graded coating layers. The asymptotic homogenization method is adopted, and the relevant cell problem is addressed. Periodicity is enforced by resorting to the theory of Weierstrass elliptic functions. The equilibrium equation in the coating domain is solved in closed form by applying the theory of hypergeometric functions, for different choices of grading profiles. The effectiveness of the present analytical procedure is proved by convergence analysis and comparison with finite element solutions. The influence of microgeometry and grading parameters on the shear stress concentration at the coating/matrix interface is addressed, aimed at the composite optimization in regards to fatigue and debonding phenomena.
机译:本文提出了一种具有功能梯度涂层的圆形纤维增强的单向周期性复合材料的均质化方法。采用渐近均匀化方法,解决了相关的细胞问题。通过使用Weierstrass椭圆函数理论来强制执行周期性。对于梯度剖面的不同选择,通过应用超几何函数理论,可以封闭形式求解涂层区域中的平衡方程。通过收敛性分析和与有限元解的比较证明了本分析方法的有效性。解决了微观几何形状和分级参数对涂层/基体界面处的剪切应力集中的影响,旨在针对疲劳和脱粘现象进行复合优化。

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