论文标题

铜在[111]倾斜晶界中银分离的原子分辨率观察

Atomic resolution observations of silver segregation in a [111] tilt grain boundary in copper

论文作者

Langenohl, Lena, Brink, Tobias, Richter, Gunther, Dehm, Gerhard, Liebscher, Christian H.

论文摘要

将材料合金并因此将溶质隔离到晶界是根据其应用的需求来量身定制材料的一种方法。必须直接观察溶质分离以了解如何改变界面特性。在这项研究中,我们研究了纯铜中高角度晶界的原子结构和通过像矫正的扫描透射电子显微镜和光谱法进行了银分离。我们将实验与原子模拟相关联,以量化局部溶质过量及其对晶界特性的影响。我们观察到,晶界结构在银分离上保持完整,并且在结构单位中最多可作为隔离位点保持五个不同的位置。通过将原子分辨率观测与原子建模相结合,我们能够量化局部银浓度并阐明潜在的隔离机制。

Alloying a material and hence segregating solutes to grain boundaries is one way to tailor a material to the demands of its application. Direct observation of solute segregation is necessary to understand how the interfacial properties are altered. In this study, we investigate the atomic structure of a high angle grain boundary both in pure copper and upon silver segregation by aberration-corrected scanning transmission electron microscopy and spectroscopy. We further correlate the experiments to atomistic simulations to quantify the local solute excess and its impact on grain boundary properties. We observe that the grain boundary structure remains intact upon silver segregation and up to five different positions within a structural unit serve as segregation sites. By combining the atomic resolution observation with atomistic modelling, we are able to quantify the local silver concentration and elucidate the underlying segregation mechanism.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源