首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Effects of Sc or/and Ge addition on microstructure and mechanical properties of as-cast 6016 Al alloy
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Effects of Sc or/and Ge addition on microstructure and mechanical properties of as-cast 6016 Al alloy

机译:SC或/和Ge加法对铸造6016 Al合金微观结构和力学性能的影响

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摘要

The present work is conducted to study microstructure and mechanical properties of as-cast 6016 Al alloy modified with Sc or/and Ge. Thermodynamic calculation, composition analysis, microstructure examination and mechanical tests have been carried out to show significant effects from Ge and Sc additions. The addition of Ge, as mainly composed of alpha-Al, Mg2Si and Si particles, brings forth new formation of Mg2Ge, and induces eutectic structure forming at grain boundaries (GBs) and nanoscale Si particles in grain interiors (GIs), as a substitution for flaky Mg2Si phase. The addition of Sc introduces primary Al3Sc, which obviously refines coarse dendrites of 6016 Al alloy into euiaxed grains, and then stimulates formation of primary AlSc2Si2, thus refining Si and Mg2Si phases. Accordingly, yield stress (YS) of as-cast 6016 Al alloy is moderately increased by Ge addition while obviously enhanced comprehensive properties by Sc addition. An optimal combination of 218 MPa in tensile strength and 22% in elongation to failure (EL) is obtained for 6016 with addition of 0.5% Sc and 0.2% Ge. Different roles of Ge and Sc in adjusting the microstructure and mechanical properties have been discussed. (C) 2019 Elsevier B.V. All rights reserved.
机译:进行本研究以研究SC或/和GE改性的铸造6016 Al合金的微观结构和力学性能。热力学计算,组成分析,微观结构检查和机械测试已经进行,表现出Ge和SC添加的显着影响。主要由α-Al,Mg2SI和Si颗粒组成的Ge提出了Mg2Ge的新形成,并在晶界(GB)和纳米级Si颗粒中形成的共晶结构,以及晶粒内部(GIS),作为替代用于片状Mg2SI阶段。加入SC引入了原发性Al3SC,其显然将6016 al合金的粗树枝状物细化为Euiaxed晶粒,然后刺激原发性Alsc2Si2的形成,从而精炼Si和Mg2Si阶段。因此,通过GE添加,通过GE添加,通过GE添加,屈服应力(ys)中度增加,而SC加入明显增强了综合性质。在加入0.5%SC和0.2%GE的加入0.5%GE和0.2%GE的抗拉强度中的抗拉强度(EL)中的伸缩强度和22%的最佳组合和22%的伸长率(EL)。已经讨论了Ge和Sc在调节微观结构和机械性能时的不同作用。 (c)2019 Elsevier B.v.保留所有权利。

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