Bending of an Elastically Restrained Elliptical Plate under the Combined Action of Lateral Load and In-Plane Force

Kenzo Sato
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引用次数: 4

Abstract

The study on the bending of an elliptical plate clamped rigidly against deflection and restrained elastically against rotation along its periphery, subjected to the uniform lateral load and in-plane force simultaneously, is performed by introducing the elliptical coordinates. The analytical solution satisfying perfectly the differential equation of deflection and the boundary conditions is exactly derived in the form of Mathieu function series. The expressions for the bending moments are also derived rigorously. The deflection and bending moments obtained here coincide with those for a simply supported elliptical plate and the perfectly clamped elliptical plate when the rotational spring stiffness is zero and infinity, respectively. A limiting case of a circular plate is discussed in detail. The effects of the in-plane force and the rotational spring stiffness on the deflection and the bending moments are calculated numerically and are presented in tables and figures.
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横向荷载和面内力共同作用下弹性约束椭圆板的弯曲
引入椭圆坐标,研究了椭圆板在均匀侧向载荷和面内力同时作用下,沿其外围刚性夹紧抗挠度和弹性约束抗旋转的弯曲问题。以Mathieu函数级数的形式精确地导出了完全满足挠度微分方程和边界条件的解析解。并对弯矩的表达式进行了严格推导。得到的挠度和弯矩分别与简支椭圆板和完全夹紧椭圆板在旋转弹簧刚度为零和无穷大时的挠度和弯矩一致。详细讨论了圆板的极限情况。用数值方法计算了面内力和旋转弹簧刚度对挠度和弯矩的影响,并给出了表格和图形。
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