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Investigation of copper segregation to the ∑5(310)/001 symmetric tilt grain boundary aluminum

机译:对称倾斜晶界铝的铜偏析研究

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The ∑5 (310)/[00l] symmetric tilt grain boundary (STGB) in the face centered cubic (FCC) metal aluminum with 1at% copper has been studied. The model grain boundary has been fabricated by ultra-high vacuum diffusion bonding of alloy single crystals. The segregation of the copper has been encouraged by annealing the sample after bonding at 200°C. TEM samples of this FCC-material were prepared with a new low voltage ion mill under very low angles. The atomic structure of the ∑S(310)/[00l] STGB for this system was modeled with electronic structure calculations. These theoretical calculations of the interface structure indicate that the Cu atoms segregate to distinct sites at the interface. High resolution electron microscopy (HRTEM) and analytical electron microscopy including electron energy spectroscopic imaging and X-ray energy dispersive spectrometry have been used to explore the segregation to the grain boundary. The HRTEM images and the analytical measurements were performed using different kinds of microscopes, including a Philips CM300 FEG equipped with an imaging energy filter. The amount of the segregated species at the interface was quantified in a preliminary way. To determine the atomic positions of the segregated atoms at the interface, HRTEM coupled with image simulation and a first attempt of a holographic reconstruction from a through-focal series have been used.
机译:与1AT%的铜已被研究了Σ5(310)/ [00升]对称倾斜晶粒在面部边界(STGB)心立方(FCC)的金属铝。该模型晶界已被合金单晶的超高真空扩散接合来制造。铜的偏析已通过在200℃下接合后的样品进行退火鼓励。此FCC材料的TEM样品用下非常低的角的新的低电压离子研磨制备。所述ΣS的原子结构(310)/ [00升] STGB该体系用电子结构计算建模。界面结构的这些理论计算表明,Cu原子偏析在界面处的不同位点。高分辨电子显微(HRTEM)和分析电子显微镜,包括电子能量光谱成像和X-射线能量色散光谱法已被用于探索偏析于晶界。的HRTEM图像和分析测量是使用不同种类的显微镜,包括配备有一个成像能量滤波器飞利浦CM300 FEG进行。接口处的隔离物种的数量在初步的方式进行量化。以确定在界面偏析原子的原子位置,HRTEM加上图像模拟和从通焦系列已被用于全息重建的第一次尝试。

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