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NONLINEAR BUCKLING ANALYSIS OF CYLINDRICAL SHELL WITH NORMAL NOZZLE SUBJECTED TO AXIAL LOADS

机译:轴向载荷作用下正喷嘴的圆柱壳非线性屈曲分析

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Design of Large-scale and light-weight pressure vessels is an inexorable trend of industrial development. These large thin-walled vessels are prone to buckling failure when subjected to compression loads and other destabilizing loads. Thus, buckling analysis is a primary and even the most important part of design for these pressure vessels. Local buckling failure will probably occur when cylindrical shells with nozzle subjected to axial loads. In this paper, a FE model of cylindrical shell with a normal nozzle is established in ANSYS Workbench. The bifurcation buckling analysis is performed by using an elastic-plastic stress analysis with the effect of nonlinear geometry, and a collapse analysis is performed with an initial imperfection. The axial buckling loads are obtained by these two types of method. Some issues about nonlinear buckling analysis are discussed through this study case.
机译:大型轻量化压力容器的设计是工业发展的必然趋势。这些大型薄壁容器在承受压缩载荷和其他不稳定载荷时容易发生屈曲破坏。因此,屈曲分析是这些压力容器设计的主要甚至最重要的部分。当带喷嘴的圆柱壳承受轴向载荷时,可能会发生局部屈曲失效。本文在ANSYS Workbench中建立了带有普通喷嘴的圆柱壳有限元模型。分岔屈曲分析是通过使用具有非线性几何效应的弹塑性应力分析进行的,而塌陷分析是在初始缺陷的情况下进行的。轴向屈曲载荷是通过这两种方法获得的。通过该研究案例讨论了有关非线性屈曲分析的一些问题。

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