J-Integral Analysis of the Elastic Strain Fields of Ferrite Deformation Twins Using Electron Backscatter Diffraction

Abdalrhaman Koko, E. Elmukashfi, K. Dragnevski, A. Wilkinson, T. Marrow
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引用次数: 11

Abstract

Abstract The strain fields of deformation twins in the ferrite matrix of an age-hardened duplex stainless-steel (Zeron 100: 25%Cr, 7%Ni) have been studied in situ under load, and ex situ (unloaded), using high-resolution electron backscatter diffraction (HR-EBSD). The local two-dimensional (2D) elastic strain field acting on the twin tip was parameterised for the first time using the strain energy release rate (J-integral) and then decomposed into the mode I and mode II stress intensity factors (KI and KII). An improved method to select the strain reference was used, based on the relationship between the HR-EBSD cross-correlation peak height and mean angular error. The elastic field described by KI increased with twin thickness. The in-plane shear field, described by KII, relaxed when the load was removed. Some current limitations of the 2D analysis are discussed, which aims to provide an experimental methodology to quantify the fields that describe the local boundary conditions for twin thickening and propagation.
用电子背散射衍射分析铁氧体变形孪晶弹性应变场的j积分
摘要:采用高分辨率电子背散射衍射(HR-EBSD)研究了时效硬化双相不锈钢(Zeron 100: 25%Cr, 7%Ni)铁素体基体形变孪晶在原位加载和非原位(卸载)条件下的应变场。首先利用应变能释放率(j积分)参数化作用于双尖端的局部二维弹性应变场,然后将其分解为I型和II型应力强度因子(KI和KII)。基于HR-EBSD互相关峰高与平均角误差的关系,提出了一种选择应变基准的改进方法。KI描述的弹性场随孪晶厚度的增加而增大。用KII描述的面内剪切场在荷载解除时松弛。讨论了目前二维分析的一些局限性,其目的是提供一种实验方法来量化描述孪晶增厚和传播的局部边界条件的场。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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