Improved simulation based HR-EBSD procedure using image gradient based DIC techniques
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Improved simulation based HR-EBSD procedure using image gradient based DIC techniques

机译:基于图像梯度的DIC技术改进了基于仿真的HR-EBSD过程

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Highlights?This paper presents an improved algorithm based on gradient-based correlation techniques that makes simulation-based HR-EBSD possible.?Based on this new algorithm, a new pattern center calibration procedure is proposed and validated.?A new hybrid procedure that combines simulation-based HR-EBSD with conventional HR-EBSD is presented that enables an absolute determination of both orientations and stresses with improved accuracy.AbstractConventional HR-EBSD is attracting much interest due to its ability of measuring relative crystal misorientations and microstresses with great accuracy. However, this technique needs the use of simulated patterns in order to get absolute values of crystal orientation and stresses and thus expand its use to intergranular analyses. Simulation-based approaches have shown many limitations due to the poor correlation with the real patterns specially when Bragg simulations are considered. This paper presents an improved algorithm based on gradient-based correlation techniques that makes simulation-based HR-EBSD possible. Based on this new algorithm, a new pattern center calibration procedure is proposed and validated. Also, a new hybrid procedure that combines simulation-based HR-EBSD with conventional HR-EBSD is presented that enables an absolute determination of both orientations and stresses with improved accuracy. The hybrid HR-EBSD is used to analyze the martensitic transformation induced by plastic deformation in an as-quenched Ti-12wt.%Mo alloy.]]>
机译:highlights本文提出了一种基于梯度相关技术的改进算法,使基于模拟的HR-EBSD成为可能。基于这种新算法,提出并验证了一种新的模式中心校准程序。提出了一种新的混合程序,它将基于模拟的HR-EBSD与传统的HR-EBSD相结合,能够以更高的精度绝对确定两种方向和应力。摘要“>传统HR-EBSD因其能够以极高的精度测量相对晶体取向和微应力而备受关注。然而,该技术需要使用模拟图形,以获得晶体取向和应力的绝对值,从而将其应用扩展到晶间分析。基于模拟的方法由于特别是当考虑布拉格模拟时,与真实图案的相关性较差。本文提出了一种基于梯度相关技术的改进算法,使基于仿真的HR-EBSD成为可能。基于这种新算法,提出并验证了一种新的模式中心校准方法。此外,还提出了一种新的混合程序,该程序将基于仿真的HR-EBSD与传统的HR-EBSD相结合,能够以更高的精度绝对确定方向和应力。混合HR-EBSD用于分析淬火态Ti-12wt中塑性变形引起的马氏体相变钼合金]>

著录项

  • 来源
    《Ultramicroscopy》 |2017年第2017期|共11页
  • 作者单位

    CEIT and TECNUN (University of Navarra);

    Université catholique de Louvain Institute of Mechanics Materials and Civil Engineering IMAP;

    Université catholique de Louvain Institute of Mechanics Materials and Civil Engineering IMAP;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 光学仪器;
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