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On the Calculation of Volume Fraction of Texture Components in AA5754 Sheet Materials

机译:AA5754板材中织构成分的体积分数计算

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摘要

There is currently no general agreement on how to extract the volume fraction of texture components for aluminum alloy sheets based on X-ray diffraction (XRD) and electron backscatter diffraction (EBSD) techniques. In order to clarify this problem, grain orientation data of AA5754 sheet material in the O-temper were acquired using XRD and EBSD. The volume fractions of 10 selected texture components were calculated using the MTM FHM software package for XRD and EDAX-TSL OIM Analysis for EBSD. The measured grain orientation data from EBSD were then processed again using MTM FHM. The results show that there are no significant differences in the constructed pole figures using different measuring techniques when the same analysis system is used. Thus, the differences in volume fractions of texture components are mainly related to the deviation angle used in the two different software packages. The differences in the deviation angle used lead to potential overlaps between the selected texture components. A suitable deviation angle for the volume fraction calculation can be selected using the concept of misorientation.
机译:关于如何基于X射线衍射(XRD)和电子背散射衍射(EBSD)技术提取铝合金薄板的纹理成分的体积分数,目前尚未达成共识。为了澄清该问题,使用XRD和EBSD获得了O型回火中AA5754片材的晶粒取向数据。使用用于XRD的MTM FHM软件包和用于EBSD的EDAX-TSL OIM Analysis计算10个选定的纹理成分的体积分数。然后使用MTM FHM对来自EBSD的测得的晶粒取向数据进行再次处理。结果表明,当使用相同的分析系统时,使用不同的测量技术所构造的极坐标图没有显着差异。因此,纹理成分的体积分数的差异主要与两个不同软件包中使用的偏差角有关。所使用的偏离角度的差异会导致所选纹理成分之间可能出现重叠。可以使用取向错误的概念来选择适合的体积分数计算角度。

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  • 来源
    《Metallurgical and Materials Transactions A》 |2008年第8期|2007-2013|共7页
  • 作者单位

    Department of Materials Science and Engineering McMaster University L8S 4L7 Hamilton ON Canada;

    Department of Materials Science and Engineering McMaster University L8S 4L7 Hamilton ON Canada;

    EDAX-TSL Draper UT 84020 USA;

    Department of Mechanical Engineering McMaster University L8S 4L7 Hamilton ON Canada;

    Department of Materials Science and Engineering McMaster University L8S 4L7 Hamilton ON Canada;

    General Motors Research ampamp Development Center Warren MI 48090-9055 USA;

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  • 正文语种 eng
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