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首页> 外文期刊>Computer Methods in Applied Mechanics and Engineering >Investigation Of Rotating Hollow Cylinders Of Strain-hardening Viscoplastic Materials By Sequential Limit Analysis
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Investigation Of Rotating Hollow Cylinders Of Strain-hardening Viscoplastic Materials By Sequential Limit Analysis

机译:序贯极限分析研究应变硬化粘塑性材料的旋转空心圆柱体

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摘要

The paper employs sequential limit analysis to investigate rotating hollow cylinders of nonlinear isotro-pic strain-hardening viscoplastic materials. A computational optimization procedure was developed to account for hardening material properties and weakening behavior corresponding to the strain-rate sensitivity and widening deformation. A sequence of limit analysis problems was then conducted to seek the corresponding plastic limit angular velocities sequentially by a general algorithm incorporated with an inner and outer iterative sequence. Particularly, analytical solutions of plastic limit angular velocities and the onset of instability were derived for rigorous comparisons. The corresponding stability condition was also obtained explicitly. Specifically, the implicit form of the onset of instability was solved by the fixed point iteration. It is found that the computed limit angular velocities are rigorous upper bounds and match well with analytical solutions.
机译:本文采用顺序极限分析来研究非线性等温应变硬化粘塑性材料的旋转空心圆柱体。开发了一种计算优化程序来考虑硬化材料的性能和对应于应变率敏感性和变宽变形的弱化行为。然后进行了一系列极限分析问题,以通过结合了内部和外部迭代序列的通用算法,依次寻找相应的塑性极限角速度。特别是,为了进行严格的比较,导出了塑性极限角速度和不稳定性开始的解析解。还明确获得了相应的稳定性条件。具体而言,通过定点迭代解决了不稳定性发作的隐式形式。发现计算出的极限角速度是严格的上限,并且与解析解很好地匹配。

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