The Effect of Zr and Li on the Microstructure of AlMg5Si2Mn-Type Casting Alloys

IF 2.6 3区 材料科学 Q2 METALLURGY & METALLURGICAL ENGINEERING
Viktoriya Boyko, Kostiantyn Mykhalenkov, Armin Springer, Olaf Kessler
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Abstract

In the article, the authors present results of microstructural studies of Al-Mg-Si-Mn casting alloys with Zr, Li, and TiB2 additions on a broad scale. Zirconium content was set on two levels: 0.34 and 1.58 wt%, and Li was set 1.2 and 2.0 wt%. It was found that the addition of Zr shifts the eutectic melting temperature to a higher level, up to 611.3 °C at 1.6 wt% Zr. At the same time, Li addition leads to the depression of eutectic melting temperature: down to 587.2 °C at 2.0 wt% Li, what is a common effect of eutectic modification which was confirmed by means of structural examinations. The complex addition of Li and AlTi5B1 resulted in a eutectic melting temperature close to the equilibrium eutectic temperature for the Al-Mg-Si system (596.2 °C). The grain refinement effect of Zr is due to the nucleation of α-Al on the Zr(Al1−x, Six)3 phase. Crystals of this phase were detected in the grain centers of Zr-containing alloys. The Li addition does not affect α-Al grain size but changes the morphology of eutectic colonies from petal-like to fibrous. Observation of TiB2 particles inside the primary Mg2Si crystals gives direct experimental confirmation of nucleation of the primary phase on the surface of TiB2 in the alloy after adding Li and AlTi5B1. Natural aging of the alloys resulted in the formation of fine precipitates detected close to dislocations. The most apparent supposition is that the mechanism responsible for their formation is heterogeneous nucleation in the stress field of dislocations. Hardness tests showed adding 2.0 wt% of Li is very effective, increasing hardness up to 113 HV0.2 in naturally aged condition, which is nearly double that of commercial Al-Mg-Si die-casting alloy. Several effects were proposed which may synergistically contribute to the rise of hardness in Li-containing alloys, such as solid solution strengthening, formation of primary LiAlSi phase and natural aging.

Abstract Image

锆和锂对 AlMg5Si2Mn 型铸造合金微观结构的影响
在这篇文章中,作者介绍了广泛添加锆、锂和 TiB2 的铝镁硅锰铸造合金的微观结构研究结果。锆含量设定为两个水平:0.34 和 1.58 wt%,锂含量设定为 1.2 和 2.0 wt%。研究发现,锆的加入会使共晶熔化温度升高,当锆含量为 1.6 wt% 时,共晶熔化温度可达 611.3 ℃。同时,锂的添加导致共晶熔化温度降低:锂含量为 2.0 wt% 时,共晶熔化温度降至 587.2 °C,这是共晶改性的常见效果,并通过结构检查得到了证实。锂和 AlTi5B1 的复合添加导致共晶熔化温度接近 Al-Mg-Si 系统的平衡共晶温度(596.2 °C)。Zr 的晶粒细化效应是由于 α-Al 在 Zr(Al1-x, Six)3 相上成核。在含 Zr 合金的晶粒中心检测到了该相的晶体。锂的加入不会影响 α-Al 晶粒大小,但会使共晶菌落的形态从花瓣状变为纤维状。通过观察原生 Mg2Si 晶体内部的 TiB2 颗粒,实验直接证实了添加 Li 和 AlTi5B1 后合金中 TiB2 表面的原生相成核。合金的自然老化导致了在位错附近检测到细小析出物的形成。最明显的假设是,析出物的形成机制是位错应力场中的异质成核。硬度测试表明,添加 2.0 wt% 的锂非常有效,在自然老化条件下可将硬度提高到 113 HV0.2,几乎是商用铝镁硅压铸合金的两倍。有几种效应可能协同促进了含锂合金硬度的提高,如固溶强化、形成初级 LiAlSi 相和自然老化。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
International Journal of Metalcasting
International Journal of Metalcasting 工程技术-冶金工程
CiteScore
4.20
自引率
42.30%
发文量
174
审稿时长
>12 weeks
期刊介绍: The International Journal of Metalcasting is dedicated to leading the transfer of research and technology for the global metalcasting industry. The quarterly publication keeps the latest developments in metalcasting research and technology in front of the scientific leaders in our global industry throughout the year. All papers published in the the journal are approved after a rigorous peer review process. The editorial peer review board represents three international metalcasting groups: academia (metalcasting professors), science and research (personnel from national labs, research and scientific institutions), and industry (leading technical personnel from metalcasting facilities).
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