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Meshfree implementation of the double director shell model for FGM shell structures analysis

机译:用于FGM壳体结构分析的双向导向器壳体模型的Meshfree实现

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A meshfree analysis of arbitrary 3D-model based on a double directors shell model is first investigated in this paper. The high order shear deformation theory is implemented in the present work in order to remove the shear correction coefficient. The radial point interpolation method is used in the construction of shape functions based on arbitrarily distributed nodes of general spatial shell geometry. Discrete system of equations is obtained by incorporating these interpolations into the weak form. The formulation is tested on several benchmark problems considering isotropic and functionally graded spatial shell structures. Numerical tests show that the method is reliable, robust and produces accurate results compared to closed-form solutions and finite element results. The effect of the material distribution on the deflections and stresses is analyzed.
机译:本文首先研究了基于双导向壳模型的任意3D模型的无网格分析。为了消除剪切校正系数,目前的工作中采用了高阶剪切变形理论。基于一般空间壳几何的任意分布节点,径向点插值方法用于构造形状函数。通过将这些插值合并为弱形式,可以获得离散的方程组。考虑到各向同性和功能梯度的空间壳结构,对该配方进行了几个基准测试。数值测试表明,与闭式解和有限元结果相比,该方法可靠,鲁棒并且产生准确的结果。分析了材料分布对挠度和应力的影响。

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