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Buckling of plates on rotationally and warping restrained supports

机译:旋转和翘曲的抑制支持的板块屈曲

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The paper deals with elastic buckling of plates having warping and elastically restrained against torsion supports, under uniaxial compression. The minimum energy principle is applied, regarding the isolated plate as part of an infinitely wide stiffened panel, reinforced by longitudinal stiffeners and transverse beams, despite of classical solutions, where two coupled transcendental equations are solved. The displacement field is developed into double sine trigonometric series and the solution convergence, in terms of buckling coefficients, is investigated. Simple design buckling formulas for isolated plate panels, as function of supporting members' torque and warping rigidity ratios, are derived by curve fitting. Finally, several stiffened panels are analyzed and the proposed formulas are compared with the relevant results obtained by some FE eigenvalue buckling analyses, carried out by ANSYS.
机译:本文涉及在单轴压缩下造成翘曲和弹性抑制扭转支撑的板的弹性屈曲。应用最小能量原理,关于隔离板作为无限宽的硬化板的一部分,通过纵向加强件和横梁增强,尽管存在经典的解决方案,其中解决了两个耦合的超轮廓。研究了位移场,调用了双正弦三角序列和溶液收敛,在屈曲系数方面是在屈曲系数方面。单独的设计弯曲公式作为支撑构件扭矩和翘曲刚度比的功能,通过曲线配件来源。最后,分析了几个加强的面板,将所提出的公式与由某些Fe Egenvalue屈曲分析获得的相关结果进行比较,由ANSYS进行。

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