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首页> 外文期刊>Journal of the Brazilian Society of Mechanical Sciences and Engineering >Geometrically nonlinear static and dynamic analysis of composite laminates shells with a triangular finite element
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Geometrically nonlinear static and dynamic analysis of composite laminates shells with a triangular finite element

机译:具有三角形有限元的复合材料叠层壳体的几何非线性静动力分析

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Geometrically nonlinear static and dynamic behaviour of laminate composite shells are analyzed in this work using the Finite Element Method (FEM). Triangular elements with three nodes and six degrees of freedom per node (three displacement and three rotation components) are used. For static analysis the nonlinear equilibrium equations are solved using the Generalized Displacement Control Method (GDCM) while the dynamic solution is performed using the classical Newmark Method with an Updated Lagrangean Formulation (ULF). The system of equations is solved using the Gradient Cojugate Method (GCM) and in nonlinear cases with finite rotations and displacements an iterative-incremental scheme is employed. Numerical examples are presented and compared with results obtained by other authors with different kind of elements and different schemes.
机译:在这项工作中,使用有限元方法(FEM)分析了层压复合材料壳的几何非线性静态和动态行为。使用具有三个节点和每个节点六个自由度的三角形元素(三个位移和三个旋转分量)。对于静态分析,使用广义位移控制方法(GDCM)求解非线性平衡方程,而使用具有更新的拉格朗日公式(ULF)的经典Newmark方法执行动态求解。方程组使用梯度共轭方法(GCM)求解,并且在具有有限旋转和位移的非线性情况下,采用迭代增量方案。给出了数值示例,并将其与其他作者使用不同种类的元素和不同方案的结果进行了比较。

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