Insights into the design of oxidation-resistant Mg alloy by alloying with rare-earth elements

IF 8 2区 材料科学 Q1 MATERIALS SCIENCE, MULTIDISCIPLINARY Materials Today Advances Pub Date : 2023-11-14 DOI:10.1016/j.mtadv.2023.100446
Zhipeng Wang, Zhao Shen, Yahuan Zhao, Yang Liu, Bo Hu, Xiaoqing Shang, Jingya Wang, Yangxin Li, Dejiang Li, Jianqiang Zhang, Sergio Lozano-Perez, Frank Czerwinski, Xiaoqin Zeng
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Abstract

The strategy of rare-earth elements addition into Mg alloys has been successfully developed and applied to enhance the mechanical performance and corrosion resistance of Mg alloys. Although this strategy has also been applied to enhance their high-temperature oxidation resistance, the mechanistic understanding of the beneficial effects remains elusive. Here, the oxidation of Mg–4Nd and Mg-4Nd–1Y alloys in Ar–20%O2 at 500 °C was studied and compared. It was found that even though a continuous layer of Nd2O3 did not form, the Nd addition could still enhance the oxidation tolerance of Mg–4Nd alloy by facilitating the generation of a more continuous and intact oxide scale and working as oxygen sinks to delay the violent oxidation of Mg. The formation of a continuous Y2O3 layer on Mg-4Nd–1Y alloy suggests that Y was more capable of facilitating the external oxidation due to its much faster diffusion rate in Mg matrix than that of Nd. However, the Nd addition could decrease the critical content of Y necessary for the oxidation transition from internal to external because of the synergistic effect of the Nd and Y addition. The dissolution of the thermal unstable Mg12Nd precipitates resulted in a localized increase of Nd content, accelerating the oxidation by increasing the preferential oxidation of Nd. Hence, in the design of oxidation-resistant Mg alloys, the addition of RE elements with faster diffusion rate and the addition of multiple alloy elements are preferred. In addition, the number of thermal unstable precipitates needs to be strictly controlled.

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稀土元素合金化设计抗氧化镁合金的新见解
成功开发了在镁合金中添加稀土元素的策略,并将其应用于提高镁合金的力学性能和耐蚀性。虽然这一策略也被应用于增强其高温抗氧化性,但其有益效果的机制理解仍然难以捉摸。本文研究并比较了Mg-4Nd和Mg-4Nd - 1y合金在500℃Ar-20%O2中的氧化行为。结果表明,在未形成连续的Nd2O3层的情况下,Nd的加入仍能增强Mg - 4nd合金的抗氧化能力,有利于形成更连续完整的氧化层,并起到氧汇的作用,延缓Mg的剧烈氧化。在Mg- 4nd - 1y合金表面形成连续的Y2O3层,表明Y在Mg基体中的扩散速度比Nd快得多,更有利于外部氧化。Nd的加入降低了由内氧化向外氧化过渡所需的临界Y含量,这是由于Nd和Y的协同作用。热不稳定Mg12Nd析出物的溶解导致Nd含量的局部增加,通过增加Nd的优先氧化来加速氧化。因此,在抗氧化镁合金的设计中,首选添加扩散速率更快的RE元素和添加多种合金元素。此外,需要严格控制热不稳定析出物的数量。
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来源期刊
Materials Today Advances
Materials Today Advances MATERIALS SCIENCE, MULTIDISCIPLINARY-
CiteScore
14.30
自引率
2.00%
发文量
116
审稿时长
32 days
期刊介绍: Materials Today Advances is a multi-disciplinary, open access journal that aims to connect different communities within materials science. It covers all aspects of materials science and related disciplines, including fundamental and applied research. The focus is on studies with broad impact that can cross traditional subject boundaries. The journal welcomes the submissions of articles at the forefront of materials science, advancing the field. It is part of the Materials Today family and offers authors rigorous peer review, rapid decisions, and high visibility.
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