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Interactive geometric interpretation and static analysis of thin-walled bidirectional functionally graded beams

机译:薄壁双向功能梯度梁的交互式几何解释和静力分析

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The paper aims to present an analysis of static behaviors and interactive geometric interpretation for modeling of thin-walled bi-directional functionally graded beams regarding monosymmetric I-and channel-sections. Several material distributions based on a typical power law are provided. The model of thin-walled bi-directional FG beams was originally developed from Vlasov's theory in which warping has been taken into account. Since the variation of constituent phases such as metal or ceramic in both longitudinal and through-the-thickness directions, properties of the thin-walled beam have considerably changed. It is shown that in each cross section, center of gravity and shear center are highly sensitive to geometries, materials and thus need to be reconsidered. For that reason the external load cannot be randomly applied. Effects of gradient parameters on the static behavior of a thin-walled bi-directional FG beam under various loadings and boundary conditions have also been parametrically studied.
机译:本文旨在提供静态行为分析和交互式几何解释,以对薄壁双向功能梯度梁的单对称I型截面和通道截面建模。提供了基于典型功率定律的几种材料分布。薄壁双向FG梁模型最初是根据弗拉索夫(Vlasov)的理论开发的,其中考虑了翘曲。由于诸如金属或陶瓷的组成相在纵向和厚度方向上的变化,因此薄壁梁的性能已发生了很大变化。结果表明,在每个横截面中,重心和剪切中心对几何形状,材料高度敏感,因此需要重新考虑。因此,不能随机施加外部负载。还已经参数化研究了梯度参数对薄壁双向FG梁在各种载荷和边界条件下的静态性能的影响。

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