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Mixed least-squares finite element models for static and free vibration analysis of laminated composite plates

机译:混合最小二乘有限元模型,用于层压复合板的静,自由振动分析

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New mixed least-squares finite element models are developed for static and free vibration analysis of laminated composite plates. Both models consider the first-order shear deformation theory with generalized displacements and stress resultants as independent variables, using equal and high-order C~0 basis functions. The mixed least-squares formulation is a useful alternative to mixed weak form models, as it develops into an unconstrained minimization variational problem and thereby allows the finite element approximating spaces to be chosen independently. Ultimately, the model for static analysis yields a symmetric positive-definite system of linear equations, and the latest innovative model for free vibration analysis yields a symmetric quadratic eigenvalue problem. The predictive capabilities of the proposed models are assessed by comparison with analytical solutions, considering selected examples of both static and free vibration analysis of rectangular laminated composite plates, with different boundary conditions and a range of side-to-thickness ratios (from 10 to 500). In particular, these mixed least-squares models using high-order basis functions are shown to be insensitive to shear-locking.
机译:开发了新的混合最小二乘有限元模型,用于层压复合板的静态和自由振动分析。这两个模型都使用等位移和高阶C〜0基函数,将一阶剪切变形理论与广义位移和应力结果作为自变量进行了讨论。混合最小二乘公式是混合弱形式模型的有用替代方法,因为它发展成无约束的最小化变分问题,从而允许独立选择近似有限元空间。最终,用于静态分析的模型产生一个对称的正定线性方程组,而最新的创新模型用于自由振动分析,产生一个对称的二次特征值问题。通过与分析解决方案进行比较来评估所提议模型的预测能力,其中考虑了矩形层压复合板的静态和自由振动分析的选定示例,这些示例具有不同的边界条件和一系列的厚度比(从10到500) )。特别是,这些使用高阶基函数的混合最小二乘模型显示对剪切锁定不敏感。

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