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首页> 外文期刊>Journal of Mechanical Science and Technology >Investigating elastic stability of cylindrical shell with an elastic core under axial compression by energy method
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Investigating elastic stability of cylindrical shell with an elastic core under axial compression by energy method

机译:能量法研究轴心受压弹性圆柱壳的弹性稳定性

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摘要

In this paper, the elastic axisymmetric buckling of a thin, isotropic and simply supported cylindrical shell with an elastic core under axial compression has been analyzed using energy method. The nonlinear strain-displacement relations in general cylindrical coordinates are simplified using Sanders kinematic relations (Sanders, 1963) for axial compression. Equilibrium equations are obtained by using minimum potential energy together with Euler equations applied for potential energy function in cylindrical shell. To acquire stability equation of cylindrical shell with an elastic core, minimum potential energy theory and Trefftz criteria are implemented. Stability and compatibility equations for an imperfect cylindrical shell with an elastic core are also obtained by the energy method, and the buckling analysis of shell is carried out using Galerkin method. Critical load curves versus the aspect ratio are obtained and analyzed for a cylindrical shell with an elastic core. It is concluded that the application of an elastic core increases elastic stability and significantly reduces the weight of cylindrical shells.
机译:本文利用能量方法分析了薄薄的各向同性且简单支撑的带有弹性芯的圆柱壳在轴向压缩下的弹性轴对称屈曲。使用Sanders运动关系(Sanders,1963)简化了轴向压缩中一般圆柱坐标系中的非线性应变-位移关系。通过使用最小势能以及应用于圆柱壳中势能函数的欧拉方程来获得平衡方程。为了获得具有弹性芯的圆柱壳的稳定性方程,采用最小势能理论和Trefftz准则。还通过能量方法获得了具有弹性芯的不完善圆柱壳的稳定性和相容性方程,并使用Galerkin方法进行了壳的屈曲分析。对于具有弹性芯的圆柱壳,获得并分析了临界载荷曲线与纵横比的关系。结论是,弹性芯的应用增加了弹性稳定性并显着降低了圆柱壳的重量。

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