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A general higher-order shear deformation theory for buckling and free vibration analysis of laminated thin-walled composite I-beams

机译:层压薄壁复合工字钢屈曲和自由振动分析的一般高阶剪切变形理论

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摘要

A general higher-order shear deformation theory for buckling and free vibration analysis of laminated thin-walled composite I-beams is proposed in this paper. It is based on a unified nonlinear variation of shear strains in the wall thickness and then theoretical formulation is derived in the general form which can recover the previous conventional theories such as classical and first-order thin-walled beam theory. Series-type solutions with hybrid shape functions are developed for different boundary conditions. Numerical examples are performed on laminated thin-walled composite I-beams with arbitrary lay-ups. Effects of transverse shear strains, fiber angles and slenderness ratio on the critical buckling loads and natural frequencies of the beams are reported.
机译:本文提出了一种用于层压薄壁复合工字钢屈曲和自由振动分析的一般高阶剪切变形理论。它基于壁厚剪切应变的统一非线性变化,然后以一般形式推导了理论公式,可以恢复以往的经典和一阶薄壁梁理论等常规理论。针对不同的边界条件开发了具有混合形状函数的串联型解决方案。在具有任意铺层的层压薄壁复合工字钢上进行了数值示例。报道了横向剪切应变、纤维角度和长细比对梁临界屈曲荷载和固有频率的影响。

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