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Role of discrete intragranular slip on lattice rotations in polycrystalline Ni: Experimental and micromechanical studies

机译:离散晶内滑移对多晶Ni晶格旋转的作用:实验和微观力学研究

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摘要

In this paper, a new micromechanical approach accounting for the discreteness of intragranular slip is used to derive the local mis-orientations in the case of plastically deformed polycrystalline nickel in uniaxial tension. This intragranular microstructure is characterized in particular single slip grains by atomic force microscopy measurements in the early stage of plastic deformation. The micromechanical modelling accounts for the individual grain size, the spatial distances between active slip bands and the magnitude of slip in bands. The slip bands are modelled using discrete distributions of circular super glide dislocation loops constrained at grain boundaries for a spherical grain boundary embedded in an infinite matrix. In contrast with classic mean field approaches based on Eshel-by's plastic inclusion concept, the present model is able to capture different intragranular behaviours between near grain boundary regions and grain interiors. These theoretical results are quantitatively confirmed by local electron backscatter diffraction measurements regarding intragranular misorientation mapping with respect to a reference point in the centre of the grain.
机译:本文采用一种新的微观力学方法,考虑了晶内滑移的离散性,推导了塑性变形多晶镍在单轴拉伸下的局部取向误取。这种晶内微观结构在塑性变形的早期阶段通过原子力显微镜测量,特别是单滑晶。微观力学建模考虑了单个晶粒尺寸、活动滑移带之间的空间距离以及带中滑移的大小。滑移带使用圆形超级滑行位错环的离散分布进行建模,这些环形位错环在晶界处受到约束,用于嵌入无限矩阵中的球形晶界。与基于Eshel-by塑性夹杂物概念的经典平均场方法相比,该模型能够捕获近晶界区域和晶粒内部之间的不同晶内行为。这些理论结果通过局部电子背散射衍射测量定量证实,这些衍射测量涉及晶粒中心参考点的晶内取向错位映射。

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