Influence of rare-earth addition on the long-period stacking ordered phase in cast Mg–Y–Zn alloys

被引:2
|
作者
Gerardo Garcés
Guillermo Requena
Domonkos Tolnai
Pablo Pérez
Paloma Adeva
Andreas Stark
Norbert Schell
机构
[1] National Center for Metallurgical Research (CENIM-CSIC),Department of Physical Metallurgy
[2] Vienna University of Technology,Institute of Materials Science and Technology
[3] Helmholtz-ZentrumGeesthacht,Institute of Materials Research
[4] Helmholtz-ZentrumGeesthacht Outstation at DESY,Structural Research on New Materials
来源
关键词
Interdendritic Region; Magnesium Matrix; Yttrium Content; Long Period Stack Ordered; Synchrotron Diffraction;
D O I
暂无
中图分类号
学科分类号
摘要
The microstructure and thermal stability of the Mg97Y2Zn1 (at.%) alloy, modified with the addition of 0.5 at.% of gadolinium or neodymium, have been examined by synchrotron radiation diffraction during in situ differential scanning calorimetry. The microstructure of the three alloys consists of magnesium dendrites with the Long Period Stacking Ordered (LPSO) phase at interdendritic regions. Rare-earth atoms substitute yttrium atoms in the LPSO phase, promoting the formation of the 14H structure. Lattice parameters of the LPSO do not change significantly with the rare-earth addition. However, they reduce the melting point of the LPSO phase, especially in the case of neodymium addition.
引用
收藏
页码:2714 / 2722
页数:8
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