Okuda Hiroshi, Yamasaki Michiaki, Kawamura Yoshihito, Tabuchi Masao, Kimizuka Hajime
Department of Materials Science and Engineering, Kyoto University, Sakyo-ku Kyoto 606-8501 Japan.
Magnesium Research Center, Kumamoto University, Kurokami Kumamoto 860-8555 Japan.
Sci Rep. 2015 Sep 21;5:14186. doi: 10.1038/srep14186.
The Mg-Y-Zn ternary alloy system contains a series of novel structures known as long-period stacking ordered (LPSO) structures. The formation process and its key concept from a viewpoint of phase transition are not yet clear. The current study reveals that the phase transformation process is not a traditional spinodal decomposition or structural transformation but, rather a novel hierarchical phase transformation. In this transformation, clustering occurs first, and the spatial rearrangement of the clusters induce a secondary phase transformation that eventually lead to two-dimensional ordering of the clusters. The formation process was examined using in situ synchrotron radiation small-angle X-ray scattering (SAXS). Rapid quenching from liquid alloy into thin ribbons yielded strongly supersaturated amorphous samples. The samples were heated at a constant rate of 10 K/min. and the scattering patterns were acquired. The SAXS analysis indicated that small clusters grew to sizes of 0.2 nm after they crystallized. The clusters distributed randomly in space grew and eventually transformed into a microstructure with two well-defined cluster-cluster distances, one for the segregation periodicity of LPSO and the other for the in-plane ordering in segregated layer. This transformation into the LPSO structure concomitantly introduces the periodical stacking fault required for the 18R structures.
Mg-Y-Zn三元合金体系包含一系列被称为长周期堆垛有序(LPSO)结构的新型结构。从相变的角度来看,其形成过程及其关键概念尚不清楚。当前研究表明,相变过程并非传统的旋节线分解或结构转变,而是一种新型的分级相变。在这种转变中,首先会发生聚集,聚集物的空间重排会引发二次相变,最终导致聚集物的二维有序排列。使用原位同步辐射小角X射线散射(SAXS)研究了形成过程。将液态合金快速淬火成薄带,得到高度过饱和的非晶样品。以10 K/min的恒定速率加热样品,并获取散射图案。SAXS分析表明,小聚集物结晶后生长到0.2 nm大小。在空间中随机分布的聚集物不断生长,最终转变为一种具有两个明确的聚集物-聚集物间距的微观结构,一个用于LPSO的偏析周期,另一个用于偏析层中的面内有序排列。向LPSO结构的这种转变同时引入了18R结构所需的周期性堆垛层错。