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A refined hyperbolic shear deformation theory for nonlinear bending and vibration isogeometric analysis of laminated composite plates

机译:用于层压复合板非线性弯曲和振动等几何分析的精细双曲剪切变形理论

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摘要

In this paper, a refined hyperbolic tangent higher order shear deformation theory is developed. Assuming that the shear function is parameter dependent, the parameters are determined by the inverse method. The refined theory is assessed by using the NURBS based isogeometric analysis for the geometric linear and nonlinear bending and free vibration problems of laminated composite plates. The nonlinearity of the plates is based on the von-Karman strain assumptions. Numerical examples show that the refined hyperbolic tangent shear deformation theory combined with IGA has high accuracy in both linear and geometric nonlinear analysis of laminated composite plates. The effects of plate length-thickness ratio, modulus ratio and stacking sequence on the static bending and free vibration behaviors of laminated plate are also discussed.
机译:本文发展了一种精细的双曲切线高阶剪切变形理论。假设剪切函数与参数相关,则参数由逆法确定。采用基于NURBS的等几何分析方法,对层压复合板的几何线性、非线性弯曲和自由振动问题进行了精细化理论的评估。板的非线性基于冯-卡门应变假设。数值算例表明,精细的双曲切切剪切变形理论结合IGA在叠合复合板的线性和几何非线性分析中均具有较高的精度。讨论了板材长厚比、模量比和叠层顺序对叠合板静弯和自由振动行为的影响。

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