Localized deformation at initial stages of plastic flow in high-manganese steel

S. Barannikova
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Abstract

The work is devoted to the study of macroscopic localization of plastic deformation during uniaxial tension of single crystals of the Hadfield steel (Fe – 13 % Mn – 1.03 % C). In the course of studies at the stage of easy sliding, significant differences were found in the nature of macrolocalization of plastic deformation in the single-crystal samples under study. All patterns of deformation localization observed in these cases can be divided into two types. The first type of strain localization corresponds to the initiation at the upper yield point and further propagation of the strain front, which gradually transfers the sample material from undeformed state to deformed one. This manifested itself most clearly in single crystals oriented along the tension axis [377] and [355], where the strain localization pattern appears as a single zone of localized deformation on the yield plateau. Such a deformation front passes through the sample volume only once as a Chernov-Luders band. In this case, the flow of the material is carried out without hardening until all its elements are transferred to the deformed state. Single zones of strain localization were also observed at the stages of easy sliding and yield plateau in the Hadfield steel single crystals oriented along the tension axis [123] and [012]. In the second type of localization, at the stage of easy sliding, synchronous movement along the pattern of several deformation centers occurs. Their movement can be unidirectional and counter, and the speeds are both the same and different from each other. Further deformation of the Hadfield steel single crystals oriented along the tension axis [355] or [012], led to the movement of two deformation localization centers at the stages of easy sliding. In single crystals oriented along [111], the strain localization pattern is respectively represented as four localized strain sites. Consequently, the synchronous movement of deformation fronts occurs along an already deformed, albeit to a small extent, material. As a reason for the difference between the two types of macrostrain localization at stage I (the easy sliding stage and the yield plateau), the number of active sliding systems or tensile twinning in the studied single crystals can be discussed based on crystallographic analysis and metallographic studies.
高锰钢塑性流动初始阶段的局部变形
本文致力于研究哈德菲尔德钢(Fe - 13% Mn - 1.03% C)单晶在单轴拉伸过程中塑性变形的宏观局部化。在易滑动阶段的研究过程中,发现在所研究的单晶样品中塑性变形的宏观局部化性质存在显著差异。在这些情况下观察到的所有变形局部化模式可分为两种类型。第一种类型的应变局部化对应于上屈服点的起始和应变锋的进一步扩展,使样品材料逐渐从未变形状态转变为变形状态。这在沿拉伸轴取向的单晶中表现得最为明显[377]和[355],其中应变局部化模式表现为屈服平台上的局部变形的单一区域。这种变形锋只以切尔诺夫-吕德带的形式通过样品体积一次。在这种情况下,材料的流动在没有硬化的情况下进行,直到它的所有元素都转移到变形状态。沿拉伸轴取向的Hadfield钢单晶[123]和[012]在易滑动和屈服平台阶段也观察到应变局部化的单一区域。在第二类局部化中,在易滑动阶段,发生沿多个变形中心模式的同步运动。它们的运动可以是单向的,也可以是反向的,速度既相同又不同。沿拉伸轴[355]或[012]取向的Hadfield钢单晶进一步变形,导致两个变形局部化中心在易滑动阶段移动。在沿[111]取向的单晶中,应变局域化模式分别表示为四个局域化应变位点。因此,变形锋面的同步运动发生在已经变形的材料上,尽管程度很小。作为第一阶段(易滑动阶段和屈服平台阶段)两种大应变局部化不同的原因,可以根据晶体学分析和金相研究来讨论所研究的单晶中主动滑动系统或拉伸孪晶的数量。
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