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Review of Pressurized Vessel Structural Design – An Assessment of Total Life

机译:加压船舶结构设计综述 - 评估总体生活

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The paper discusses life prediction of pressurized cylindrical container because of its dangerous failure during usage. The fatigue of material and crack propagation were obvious from the fracture surface. Crack initiation was located in the notch root of the thread. Our goal was to review the vessel structural design based on its technical documentation. Two approaches for estimating the crack initiation period were used. As input parameters, stress-strain relations in the notch were obtained from FEM analysis, done in ANSYS Workbench. The first approach makes use of Neuber's rule based on elastic-plastic shakedown and cyclic stress-strain curve. The second concept (which is described in CSN EN 13445-3 or AD 2000 Mekblatt S2 respectively) uses elastic shakedown. Included stress-life curves leads to the number of cycles to crack initiation. Finally the subcritical crack growth period and final fracture were estimated = the total life was evaluated.
机译:本文讨论了加压圆柱形容器的寿命预测,因为它在使用过程中的危险失败。 从裂缝表面显而易见的材料和裂纹繁殖的疲劳。 裂缝启动位于螺纹的缺口根中。 我们的目标是根据其技术文件审查船舶结构设计。 使用用于估计裂纹启动期的两种方法。 作为输入参数,从FEM分析中获得凹口中的应力 - 应变关系,在ANSYS工作台中完成。 第一种方法利用基于弹性塑料展示和循环应力 - 应变曲线的新生规则。 第二个概念(分别在CSN EN 13445-3或AD 2000 Mekblatt S2中描述)使用弹性振动。 包括应力 - 寿命曲线导致循环次数以破裂启动。 最后估计亚临界裂纹生长期和最终裂缝=评估总寿命。

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