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Flexure of cross-ply laminated plates using equivalent single layer trigonometric shear deformation theory

机译:使用等效单层三角剪切变形理论的交叉层压板弯曲

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摘要

An equivalent single layer trigonometric shear deformation theory taking into account transverse shear deformation effect as well as transverse normal strain effect is presented for static flexure of cross-ply laminated composite and sandwich plates. The inplane displacement field uses sinusoidal function in terms of thickness coordinate to include the transverse shear deformation effect. The cosine function in thickness coordinate is used in transverse displacement to include the effect of transverse normal strain. The kinematics of the present theory is much richer than those of the other higher order shear deformation theories, because if the trigonometric term (involving thickness coordinate z) is expanded in power series, the kinematics of higher order theories (which are usually obtained by power series in thickness coordinate z) are implicitly taken into account to good deal of extent. Governing equations and boundary conditions of the theory are obtained using the principle of virtual work. The closed-form solutions of simply supported cross-ply laminated composite and sandwich plates have been obtained. The results of present theory are compared with those of the classical plate theory (CPT), first order shear deformation theory (FSDT), higher order shear deformation theory (HSDT) of Reddy and exact three dimensional elasticity theory wherever applicable. The results predicted by present theory are in good agreement with those of higher order shear deformation theory and the elasticity theory.
机译:提出了考虑横向剪切变形效应和横向法向应变效应的等效单层三角剪切变形理论。平面内位移场在厚度坐标方面使用正弦函数来包含横向剪切变形效应。厚度坐标中的余弦函数用于横向位移,以包括横向法向应变的影响。本理论的运动学比其他高阶剪切变形理论的运动学要丰富得多,因为如果三角项(涉及厚度坐标z)以幂级数展开,则高阶理论的运动学(通常是通过幂获得)在一定程度上隐含了厚度坐标z)中的序列。使用虚拟功原理获得理论的控制方程和边界条件。已经获得了简单支撑的交叉层压复合材料和夹心板的封闭形式的解决方案。在适用的情况下,将本理论的结果与经典板理论(CPT),一阶剪切变形理论(FSDT),Reddy的高阶剪切变形理论(HSDT)和精确三维弹性理论的结果进行比较。本理论预测的结果与高阶剪切变形理论和弹性理论相吻合。

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