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Free vibrations of laminated composite plates using a novel four variable refined plate theory

机译:使用新型四种可变精制板理论使用新型层压复合板的自由振动

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摘要

In this research, the free vibration response of laminated composite plates is investigated using a novel and simple higher order shear deformation plate theory. The model considers a non-linear distribution of the transverse shear strains, and verifies the zero traction boundary conditions on the surfaces of the plate without introducing shear correction coefficient. The developed kinematic uses undetermined integral terms with only four unknowns. Equations of motion are obtained from the Hamilton's principle and the Navier method is used to determine the closed-form solutions of antisymmetric cross-ply and angle-ply laminates. Numerical examples studied using the present formulation is compared with three-dimensional elasticity solutions and those calculated using the first-order and the other higher-order theories. It can be concluded that the present model is not only accurate but also efficient and simple in studying the free vibration response of laminated composite plates.
机译:在该研究中,使用一种新颖的更高阶剪切变形板理论研究了层压复合板的自由振动响应。 该模型考虑横向剪切株的非线性分布,并验证板的表面上的零牵引边界条件而不引入剪切校正系数。 开发的运动用来仅使用四个未知数的不可分割项。 运动方程是从汉密尔顿的原理获得的,并且采用Navier方法来确定反对二十且角层层压板的闭合溶液。 使用本制剂研究的数值示例与三维弹性解决方案进行比较,并使用一阶和其他高阶理论计算的那些。 可以得出结论,本模型不仅准确而且还高效,在研究层压复合板的自由振动响应方面是高效且简单。

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