原子探针
材料科学
透射电子显微镜
微观结构
扫描电子显微镜
扫描透射电子显微镜
变形(气象学)
能量过滤透射电子显微镜
复合材料
体积分数
严重塑性变形
原子单位
纳米技术
物理
量子力学
作者
Andrea Bachmaier,Hisham Aboulfadl,Marina Pfaff,Frank Mücklich,Christian Motz
标识
DOI:10.1016/j.matchar.2014.12.022
摘要
A Cu-Co composite material is chosen as a model system to study structural evolution and phase formations during severe plastic deformation. The evolving microstructures as a function of the applied strain were characterized at the micro-, nano-, and atomic scale-levels by combining scanning electron microscopy and transmission electron microscopy including energy-filtered transmission electron microscopy and electron energy-loss spectroscopy. The amount of intermixing between the two phases at different strains was examined at the atomic scale using atom probe tomography as complimentary method. It is shown that Co particles are dissolved in the Cu matrix during severe plastic deformation to a remarkable extent and their size, number, and volume fraction were quantitatively determined during the deformation process. From the results, it can be concluded that supersaturated solid solutions up to 26 at.% Co in a fcc Cu-26 at.% Co alloy are obtained during deformation. However, the distribution of Co was found to be inhomogeneous even at the highest degree of investigated strain.
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