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Reconstruction and Quantitative Characterization of Multiphase, Multiscale Three-Dimensional Microstructure of a Cast Al-Si Base Alloy

机译:铸造Al-Si基合金多相,多尺度三维组织的重建和定量表征

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摘要

The serial sectioning technique is well known for the reconstruction of three-dimensional (3D) microstructures of opaque materials. In recent years, techniques also have been developed for the reconstruction of high-fidelity, large-volume segments of 3D microstructures that use montage serial sections and robot-assisted automated acquisitions of montage serial sections. This article reports the reconstruction of the multiphase, multiscale 3D microstructure of a permanent mold cast unmodified Al-12 wt pct Si-1 wt pct Ni base alloy that contains eutectic Si platelets, coarse primary polyhedral Si particles, Fe-rich script intermetallic particles, and pores. These constituents are segmented, reconstructed, rendered, and characterized in three dimensions. The estimated 3D microstrucutral attributes include the distribution of eutectic platelet thickness; the mean volume, mean surface area, and mean thickness of the eutectic Si platelets; the mean volume and the mean surface area of the polyhedral primary Si particles; and the mean number of faces, edges, and corners on the polyhedral primary Si particles.
机译:串行切片技术对于不透明材料的三维(3D)微观结构的重建是众所周知的。近年来,还开发了用于重建3D微结构的高保真,大体积片段的技术,这些片段使用蒙太奇序列部分和机器人辅助自动获取蒙太奇序列部分。本文报道了一种永久铸模未改性的Al-12 wt pct Si-1 wt pct Ni基合金的多相,多尺度3D显微组织的重建过程,该合金包含共晶Si薄片,粗糙的初级多面体Si颗粒,富铁脚本金属间化合物颗粒,和毛孔。这些成分在三个维度上被分割,重建,渲染和表征。估计的3D微结构属性包括共晶血小板厚度的分布;共晶硅片的平均体积,平均表面积和平均厚度;多面体初生Si颗粒的平均体积和平均表面积;多面体初生Si颗粒的平均面数,边缘数和角数。

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  • 来源
    《Metallurgical and Materials Transactions B》 |2009年第6期|859-870|共12页
  • 作者单位

    School of Materials Science and Engineering Georgia Institute of Technology Atlanta GA 30332-0245 USA;

    School of Materials Science and Engineering Georgia Institute of Technology Atlanta GA 30332-0245 USA;

    School of Materials Science and Engineering Georgia Institute of Technology Atlanta GA 30332-0245 USA;

    India Science Laboratory General Motors Bangalore India;

    Research ampamp Development General Motors 30500 Mound Road Warren MI 48090 USA;

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