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A global buckling analysis of a pressure vessel associated with connections between main cylinder and flat plate ends

机译:与主缸与平板之间的连接相关的压力容器的全球屈曲分析

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In order to evaluate the structural safety of the pressure vessel, it is necessary to consider the failure of the connection part, together with the cylindrical part in the middle and both ends, where the initial large deflection occurs. In this paper, local structural analysis for the pressure vessel considering the bolted part was carried out as well as global buckling analysis. That is, aluminium alloy and stainless steel pressure vessel models were designed for operating under high pressure equivalent to the water depth up to 2000 and 1000 m, respectively. Pressure vessel design procedure was performed by using empirical formulae and eigenvalue analysis by an FEM code. The results were verified and investigated by pressure tests in the hyperbaric chamber of KRISO. It was found that all the estimated results by the empirical formula and FEA are overestimated when the results are compared to the pressure test results in the pressure chamber.
机译:为了评估压力容器的结构安全性,有必要考虑连接部分的故障,以及中间和两端的圆柱形部分,其中发生初始大偏转。本文进行了考虑螺栓部分的压力容器的局部结构分析以及全球屈曲分析。也就是说,铝合金和不锈钢压力容器模型设计用于在高达2000和1000米的水深的高压下操作。通过使用FEM代码使用经验公式和特征值分析来执行压力容器设计程序。通过Kriso的高压室中的压力试验验证并研究了结果。结果发现,当结果与压力室中的压力测试结果进行比较时,通过经验公式和FEA的所有估计结果高估。

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