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3D elastic-plastic finite element simulation of cold pilgering of zircaloy tubes

机译:锆石瓦尔大管冷桩的弹塑性有限元模拟

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In cold pilgering of tubes, a material element undergoes a series of small incremental deformations (≈100 strokes), alternatively under tensile and compressive stresses. This complex history sometimes results in surface damage, seemingly by low-cycle fatigue. Prior to studying the resistance of diverse potential materials to this kind of complex, non-proportional multi-axial, and non-periodic cycling, a thorough mechanical analysis of the stress states is necessary: the finite element method (FEM) software Forge3~(~R) has been used, with updated Lagrangian formulation due to the transient character of strains and stresses. The process is periodical, except for the ends of a given preform, which are cut off afterwards. One stroke only should thus be sufficient to analyse the whole process, provided the correct initialisations are done in terms of shape, strains and stresses, but these are parts of the unknown of the problem. This point will be particularly addressed in the following, where it is shown that in the non-work hardening case at least, simulating three strokes leads to an invariant geometry and state of stress, starting from a reasonable estimate of the geometry. Strains and stresses thus obtained will be discussed in detail, together with their probable consequences on the damage and fatigue of the material, to be later correlated with defects.
机译:在管的冷堆合中,材料元件经历一系列小的增量变形(≈100冲程),或者在拉伸和压缩应力下。这种复杂的历史有时会导致表面损坏,似乎是低循环疲劳。在研究多样化潜在材料的电阻之前,这种复杂的,非比例多轴和非周期性循环,所以必须彻底的力学分析,是必要的:有限元方法(FEM)软件锻造3〜(由于菌株和应力的瞬态特征,已使用〜r)使用更新的拉格朗日配方。除了给定的预制件的末端之外,该过程是期刊,之后,之后切断。因此,只应当足以分析整个过程,只要在形状,菌株和应力方面完成正确的初始化,但这些是问题所知的部分。这一点在下面将特别寻求,其中示出了至少在非工作硬化盒中,模拟三个笔划导致不变的几何形状和应力状态,从几何形状的合理估计开始。将详细讨论如此获得的由此获得的菌株和应力,以及对材料的损伤和疲劳的可能后果,后来与缺陷相关。

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