Brewer L N, Othon M A, Young L M, Angeliu T M
General Electric Global Research Center, One Research Circle, Niskayuna, NY 12309, USA.
Microsc Microanal. 2006 Feb;12(1):85-91. doi: 10.1017/S1431927606060120.
The ability to map plastic deformation around high strain gradient microstructural features is central in studying phenomena such as fatigue and stress corrosion cracking. A method for the visualization of plastic deformation in electron back-scattered diffraction (EBSD) data has been developed and is described in this article. This technique is based on mapping the intragrain misorientation in polycrystalline metals. The algorithm maps the scalar misorientation between a local minimum misorientation reference pixel and every other pixel within an individual grain. A map around the corner of a Vickers indentation in 304 stainless steel was used as a test case. Several algorithms for EBSD mapping were then applied to the deformation distributions around air fatigue and stress corrosion cracks in 304 stainless steel. Using this technique, clear visualization of a deformation zone around high strain gradient microstructural features (crack tips, indentations, etc.) is possible with standard EBSD data.
绘制高应变梯度微观结构特征周围塑性变形的能力是研究疲劳和应力腐蚀开裂等现象的核心。本文开发并描述了一种用于在电子背散射衍射(EBSD)数据中可视化塑性变形的方法。该技术基于绘制多晶金属中的晶粒内取向差。该算法绘制了局部最小取向差参考像素与单个晶粒内的其他每个像素之间的标量取向差。以304不锈钢维氏压痕拐角处的映射图作为测试案例。然后将几种EBSD映射算法应用于304不锈钢空气疲劳和应力腐蚀裂纹周围的变形分布。使用该技术,利用标准EBSD数据可以清晰地可视化高应变梯度微观结构特征(裂纹尖端、压痕等)周围的变形区。