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首页> 外文期刊>International Journal of Solids and Structures >A multi-scale self-consistent model describing the lattice deformation in austenitic stainless steels
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A multi-scale self-consistent model describing the lattice deformation in austenitic stainless steels

机译:描述奥氏体不锈钢晶格变形的多尺度自洽模型

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摘要

Differently oriented grains within a polycrystalline material exhibit different micro-mechanical lattice responses for a given macroscopic stress due to the local elastic and plastic anisotropy. A physical understanding of the lattice deformation mechanism during plastic flow is still lacking. In this study, a three-dimensional multi-scale self-consistent model is developed to examine the micro-mechanical deformation behaviour of F.C.C. polycrystalline austenitic stainless steels under uniaxial tensile loading at ambient temperature. The model is formulated in a crystal based plasticity framework and takes into account the detailed kinematics of dislocation slip and its influence on the evolution of the dislocation distribution on different crystallographic planes of individual grains within a polycrystalline material. The effect of athermal solute strengthening is also incorporated. Predictions of the microscopic lattice response developed within individual grains are compared with various available experimental results obtained using neutron diffraction (ND). There are significant differences in the way in which the lattice strain evolves with macroscopic strain obtained by different groups. This is explained in terms of the variation in initial residual stress state in the samples tested by these different groups. (C) 2015 Elsevier Ltd. All rights reserved.
机译:对于给定的宏观应力,由于局部弹性和塑性各向异性,多晶材料中取向不同的晶粒表现出不同的微机械晶格响应。仍然缺乏对塑性流动过程中晶格变形机理的物理理解。在这项研究中,建立了一个多维多尺度自洽模型,以检验F.C.C.的微机械变形行为。多晶奥氏体不锈钢在室温下的单轴拉伸载荷下。该模型在基于晶体的可塑性框架中制定,并考虑了位错滑移的详细运动学及其对多晶材料内单个晶粒的不同晶体学平面上的位错分布演变的影响。还结合了非热溶质强化作用。将单个晶粒内形成的微观晶格响应的预测与使用中子衍射(ND)获得的各种可用实验结果进行比较。晶格应变与由不同组获得的宏观应变的演化方式存在显着差异。用这些不同组测试的样品中初始残余应力状态的变化来解释这一点。 (C)2015 Elsevier Ltd.保留所有权利。

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