首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Analysis on micro-structure and mechanical properties of Mg-Gd-Y-Nd-Zr alloy and its reinforcement mechanism
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Analysis on micro-structure and mechanical properties of Mg-Gd-Y-Nd-Zr alloy and its reinforcement mechanism

机译:Mg-Gd-Y-Nd-Zr合金的微观组织和力学性能分析及其增强机理

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Gd in Mg-RE liquid alloy has a high solid solubility, which can rapidly decreases with the drop of temperature. Thus the solid solution and aging reinforcement of liquid Mg alloy can be achieved. The micro-structure and mechanical properties of Mg-Gd-Y-Nd-Zr alloy under as-cast and aging state were studies by composition analysis, micro-structure observation and mechanical properties test, and the reinforcement mechanism of mechanical properties was analyzed. Results show that the micro-structure of as-cast alloy is mainly composed of alpha-Mg matrix and eutectic phase. The dendritic eutectic phase exhibits a discontinuous mesh distribution along the grain boundary. And the average grain size of alloy is about 46 mu m. After aging treatment, the average grain size is 52 mu m and the eutectic phase can dissolve into alpha-Mg matrix completely. The massive particle phase distribute in grain boundary and their number increased significantly, which can strengthen the alloy effectively. The tensile strength and yield strength of alloy are improved significantly from as-cast to aging state. But the elongation shows a decreasing trend. The Gd after dissolved into alpha-Mg matrix can lead to serious lattice distortion, improve the anti phase domain boundary and further improve the alloy yield strength. (C) 2016 Elsevier B.V. All rights reserved.
机译:Mg-RE液态合金中的Gd具有较高的固溶度,可随着温度的下降而迅速降低。因此,可以实现液态镁合金的固溶和时效增强。通过组成分析,显微组织观察和力学性能测试研究了Mg-Gd-Y-Nd-Zr合金在铸态和时效状态下的组织和力学性能,分析了力学性能的增强机理。结果表明,铸态合金的显微组织主要由α-Mg基体和共晶相组成。树枝状共晶相沿晶界表现出不连续的网格分布。并且合金的平均晶粒尺寸为约46μm。经过时效处理后,平均晶粒尺寸为52μm,共晶相可以完全溶解在α-Mg基质中。大量的颗粒相分布在晶界,其数量显着增加,可以有效地强化合金。从铸态到时效状态,合金的抗拉强度和屈服强度都有明显提高。但是伸长率显示出下降的趋势。溶解在α-Mg基体中的Gd会导致严重的晶格畸变,改善反相畴界并进一步提高合金的屈服强度。 (C)2016 Elsevier B.V.保留所有权利。

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