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PIPING ELBOW CYCLIC ANALYSES FOR SHAKEDOWN VERIFICATION

机译:弯管循环分析,以进行检定验证

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摘要

Six Cyclic elasto-plastic Finite Element Analyses are being performed in this paper. The Finite Element Model considered here is a Piping Elbow with a straight section of pipe on each side. This Model consists of shell elements. In each cyclic analysis, the internal pressure is kept constant, and is in fact the same for all six analyses. The various Finite Element Analyses are performed using different types of boundary conditions and different types of cyclic loading (thermal expansion in the elbow and applied rotation at the free end of the model). The main purpose of this paper is to address both the global shakedown and the through-thickness shakedown. The global shakedown is defined as the stabilization of the elbow, as far as the global in-plane displacements are concerned. The through-thickness shakedown is defined as the stabilization of the radial displacements on the side of the elbow. The main results from these cyclic analyses are the displacements. The decisions whether shakedown occurs, or not, are based on the displacements and are shown on the x-y Diagram, also called the "shakedown vs. ratcheting" Diagram. An evaluation of this Diagram leads to the justification of the revised elbow C_2 stress index, at least for the global in-plane displacements of the piping elbow. The variations of the mid-thickness strain values and of the maximum strain values, as a function of the cycles, have not been evaluated at this time. This should be done at a later date.
机译:本文进行了六次循环弹塑性有限元分析。这里考虑的有限元模型是一个管道弯头,在管道的每一侧都有一个笔直的部分。该模型由外壳元素组成。在每个循环分析中,内部压力均保持恒定,并且实际上对所有六个分析而言都是相同的。各种有限元分析是使用不同类型的边界条件和不同类型的循环载荷(弯头中的热膨胀以及模型的自由端施加的旋转)执行的。本文的主要目的是解决全球范围内的减产和全厚度减产。就整体平面内位移而言,整体减震定义为肘部的稳定。整个厚度的减薄定义为肘部侧面的径向位移的稳定。这些循环分析的主要结果是位移。是否发生震动的决定基于位移,并显示在x-y图上,也称为“震动与棘轮”图。对该图的评估至少在管道弯头的整体平面内位移方面,可以得出修正后的弯头C_2应力指数的合理性。目前尚未评估中厚应变值和最大应变值随循环的变化。这应该在以后进行。

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