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首页> 外文期刊>International Journal of Solids and Structures >Creep buckling of cylinders under uniform external pressure: Finite element simulation of buckling tests
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Creep buckling of cylinders under uniform external pressure: Finite element simulation of buckling tests

机译:在均匀的外压下蠕变弯曲:屈曲试验的有限元模拟

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摘要

This paper is dedicated to creep buckling predictions. Thin walled cylinders having an aspect ratio of one are subjected to an uniform external pressure. The material is a special type of nickel which "creeps" at ambient temperature. The material parameters for the creep law are identified from experimental results. The creep failure experiments are described and corresponding failure times are given. The paper then compares three alternatives of finite element modeling of the experiments (3D Shell with integration through the thickness with a periodic or non periodic initial imperfection are compared with COMU quasi axi-symmetric imperfect shell element). These 3 modeling show consistent predictions. The simulation time is a hundred times faster with the COMU model. It is shown that the prediction of failure time of these experiments is extremely sensitive to the initial imperfection amplitude. The effect of creep law modeling is also important. Finally a parametric analysis on different types of cylinders is given: some general trends are proposed for this type of delicate predictions. (C) 2017 Elsevier Ltd. All rights reserved.
机译:本文致力于串联屈曲预测。具有纵横比的薄壁圆柱体经受均匀的外压。该材料是一种特殊类型的镍,在环境温度下“蠕变”。从实验结果中鉴定了蠕变定律的材料参数。描述了蠕变失败实验,并给出了相应的失效时间。然后将该论文比较了实验的有限元建模的三种替代方法(3D壳通过通过周期性或非周期性的初始缺陷的厚度集成,与COMU准轴对称的漏洞壳元件进行比较)。这3个建模显示了一致的预测。使用COMU模型,模拟时间速度快百倍。结果表明,这些实验的失效时间的预测对初始缺陷幅度非常敏感。蠕变法建模的影响也很重要。最后给出了对不同类型汽缸的参数分析:为这种微妙的预测提出了一些普遍的趋势。 (c)2017 Elsevier Ltd.保留所有权利。

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