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首页> 外文期刊>Journal of Reinforced Plastics and Composites >Finite Element Buckling Analyses of Transversely Stiffened Orthotropic Rectangular Thin Plates under Shear Loads
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Finite Element Buckling Analyses of Transversely Stiffened Orthotropic Rectangular Thin Plates under Shear Loads

机译:剪切载荷作用下正交各向异性矩形正交薄板的有限元屈曲分析

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摘要

In this study, finite element buckling analyses of transversely stiffened isotropic and orthotropic rectangular thin plates under shear loads are presented. Eigenvalue buckling analysis is used to predict critical buckling loads of mild steel and Boron-Aluminium MMC composite stiffened plates with different fiber orientations by using ANSYS. A simply supported boundary condition is applied through the edges of the plates and uniformly distributed shear loads are given to edge nodes. It is demonstrated that by adding more transverse rectangular stiffeners which are made of the same material with the plate, critical buckling stress of the plates increases linearly. The failure tests of unstiffened Boron-Aluminium plates were performed according to Tsai-Hill failure criteria.
机译:在这项研究中,在剪切载荷作用下,对横向加筋的各向同性和正交异性矩形薄板进行了有限元屈曲分析。本征值屈曲分析用于通过使用ANSYS预测具有不同纤维取向的软钢和硼铝MMC复合加劲板的临界屈曲载荷。通过板的边缘施加简单支撑的边界条件,并将均匀分布的剪力施加到边缘节点。可以证明,通过在板上增加更多由相同材料制成的横向矩形加劲肋,板的临界屈曲应力会线性增加。根据Tsai-Hill失效标准进行了未加硬的硼铝板的失效测试。

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