首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Al-Nd intermetallic phase stability and its effects on mechanical properties and corrosion resistance of HPDC Mg-4Al-4Nd-0.2Mn alloy
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Al-Nd intermetallic phase stability and its effects on mechanical properties and corrosion resistance of HPDC Mg-4Al-4Nd-0.2Mn alloy

机译:Al-ND金属间相位稳定性及其对HPDC MG-4-4ND-0.2MN合金机械性能和耐腐蚀性的影响

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摘要

Microstructural stability is a crucial but controversial issue for Mg-Al-RE alloys. It is important to study the thermal stability of Al-RE intermetallic phase with individual RE element. In this work, Mg-4Al-4Nd-0.2Mn (AlNd44, wt%) alloy with individual RE element Nd was prepared by high-pressure die-casting (HPDC). The microstructure, microstructural stability and its effects on tensile properties and corrosion behavior were investigated. The results show that the HPDC AlNd44 alloy has two intermetallic phases, i.e., acicular Al11Nd3 and particulate Al2Nd, which are distributed at grain/dendritic boundary regions and form reticular structure. According to the quantitative X-ray diffraction phase analysis, the content of Al11Nd3 and Al2Nd phases is 2.5 wt% and 1.8 wt%, respectively. Both the two phases appear to be thermally stable at 473 K. While the acicular Al11Nd3 phase has a tendency to decompose at temperature up to 573 K, and would decompose to particulate Al2Nd phase thoroughly at 673 K. Moreover, Al2Nd phase would also partly decompose at temperature above 573 K. The alloy in as-cast state, with an intermetallic skeleton at grain/dendritic boundary regions, exhibits relatively high tensile properties and corrosion resistance. In contrast, the alloy after annealing at 673 K has the worst tensile properties and corrosion resistance due to the obvious phase transition and microstructure change. (C) 2016 Elsevier B.V. All rights reserved.
机译:微观结构稳定性是Mg-Al-Re合金的至关重要但有争议的问题。研究Al-Re金属间相对于个体RE元件的热稳定性非常重要。在这项工作中,通过高压压铸(HPDC)制备具有单个RE元件Nd的Mg-4AL-4ND-0.2Mn(AlND44,WT%)合金。研究了微观结构,微观结构稳定性及其对拉伸性能和腐蚀行为的影响。结果表明,HPDC ALND44合金具有两个金属间相,即针状Al11ND3和颗粒状Al2ND,其分布在晶粒/树突边界区域并形成网状结构。根据定量X射线衍射相分析,Al11ND3和Al2ND相的含量分别为2.5wt%和1.8wt%。两相似乎在473k下热稳定。而针状Al11ND3相的趋势在温度下倾向于573k,并且会在673k中彻底分解为颗粒化Al2ND相。此外,Al2ND阶段也将部分分解在高于573k的温度下,在晶粒/树突边界区的金属间骨架中的浇铸状态的合金具有相对高的拉伸性能和耐腐蚀性。相反,在673K下退火后的合金具有最差的拉伸性能和由于显而易见的相转变和微观结构变化而具有耐腐蚀性。 (c)2016 Elsevier B.v.保留所有权利。

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