| Literature DB >> 34821275 |
Min Deng1, Linqian Wang, Daniel Höche, Sviatlana V Lamaka, Cheng Wang, Darya Snihirova, Yiming Jin, Yuhui Zhang, Mikhail L Zheludkevich.
Abstract
Severe corrosion of Mg and Mg alloys is a major issue hindering their wider application in transportation industry, medical implants and aqueous batteries. Previously, no Mg-based material has been found with a significantly lower corrosion rate than that of ultra-high-purity Mg, i.e. 0.25 mm y-1 in concentrated NaCl solution. In this work for the first time, highly corrosion-resistant Mg is found to be accomplishable by Ca micro-alloying, bringing "stainless Mg" closer. The designed Mg-Ca lean alloys possess incredibly low corrosion rates, less than 0.1 mm y-1 in 3.5 wt% NaCl solution, which are significantly lower than that of ultra-high-purity Mg and all Mg alloys reported thus far. The outstanding corrosion resistance is attributed to inhibition of cathodic water reduction kinetics, impurities stabilizing and a protective surface film induced by Ca micro-alloying. Combined with the environmental benignity and economic viability, Ca micro-alloying renders huge feasibility on developing advanced Mg-based materials for diverse applications.Entities:
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Year: 2020 PMID: 34821275 DOI: 10.1039/d0mh01380c
Source DB: PubMed Journal: Mater Horiz ISSN: 2051-6347 Impact factor: 13.266