用RSP法研究金属大剪切变形和涡流对E110锆合金等轴超细晶组织形成的影响

N. Lutchenko, A. Arbuz, A. A. Kavalek, E. Panin, F. Popov, M. Magzhanov
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引用次数: 1

摘要

在这项工作中,任务是研究在大塑性变形作用下相对较大的体棒的微观结构变化过程。如此大的变形水平通常可以在高压扭转小平面圆盘时实现,但在大体积棒中很难实现。径向剪切轧制的方法可以实现与金属涡流相结合的超高变形程度(~ 45mm /mm)。在2台径向剪切轧机上对E110锆合金进行了极端条件下的连续轧制,总直径减小ε = 185%,最大累积应变= 46 mm/mm。为了评估变形水平及其在截面上的分布,在Deform - 3D中进行了有限元建模。通过电子显微镜(TEM/SEM)对所得结构进行了研究。以1mm的分辨率对EBSD结构进行了详细的横断面研究。发现了以等轴超细晶结构为主的梯度结构,与使用较小变形相比,这不是很明显。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Kazakhstan Study of the influence of large shear deformations and vortex flow of metal on the formation of an equiaxed ultrafine‑grained structure of the E110 zirconium alloy by the method of RSP
In this work, the task was to investigate the processes of microstructure change occurring in relatively large bulk bars under the action of large plastic deformations. Such large levels of deformation are usually achievable in high pressure twisting of small flat disks, but are difficult to achieve in large bulk bars. The method of radial shear rolling makes it possible to achieve comparable ultrahigh degrees of deformation (~45 mm/mm) in combination with the vortex flow of the metal. Sequential rolling of the E110 zirconium alloy was carried out under extreme conditions on 2 radial shear rolling mills with a total diameter reduction ε = 185 % and a maximum accumulated strain = 46 mm/mm. To assess the level of deformation and its distribution over the section, FEM modeling was carried out in Deform‑3D. The resulting structure was studied by electron microscopy (TEM/SEM). A detailed cross‑sectional study of the EBSD structure was performed with a resolution of 1 mm. A gradient structure with a predominance of an equiaxed ultrafine‑grained structure was found, which was not very pronounced compared to the use of smaller deformations.
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