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Nonlinear stability of a shallow unsymmetrical heated orthotropic sandwich shell of double curvature with orthotropic core

机译:正交各向异性双曲率浅非对称加热正交各向异性夹层薄壳的非线性稳定性

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摘要

Equations which govern the behavior of an elastic unsymmetrical, orthotropic sandwich shell of double curvature with orthotropic core having different elastic characteristics under uniform heating are derived. The face sheet may be of unequal thickness of different materials. However, a restriction that the radii of curvature of the shell elements be large compared with the overall thickness of the sandwich shell is imposed. The variational procedure has been used to obtain the five equations which govern the behavior of the heated orthotropic sandwich shell for the stability. In case of symmetry the equations resemble with those of Grigolyuk. Finally, the numerical results of a square or a rectangular simply supported curved plate section of a cylindrical shell under thermal loading have been computed and compared with other known results. The graphs have been drawn to show the effects of different sandwich material for immovable and movable edge conditions. (c) 2007 Elsevier Ltd. All rights reserved.
机译:推导了在均匀加热下控制具有正交各向异性芯的正交异性双曲率弹性非对称正交各向异性夹层壳的行为的方程式。面板的不同材料厚度可能不相等。但是,限制了壳体元件的曲率半径比夹心壳体的总厚度大。变分程序已用于获得五个方程,这些方程控制着加热的正交异性夹层壳的稳定性。在对称的情况下,这些方程式与Grigolyuk的方程式相似。最后,已经计算出在热载荷下圆柱壳的正方形或矩形简单支撑的弯曲板部分的数值结果,并将其与其他已知结果进行了比较。绘制这些图以显示不同的夹层材料对不可移动边缘和可移动边缘条件的影响。 (c)2007 Elsevier Ltd.保留所有权利。

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