Corrosion resistance of iron‐containing experimental titanium alloys exposed to simulated body fluids

腐蚀 材料科学 模拟体液 冶金 合金 极化(电化学) 钛合金 扫描电子显微镜 层状结构 复合材料 化学 物理化学
作者
Mogomotsi Leshetla,Desmond Klenam,Josias W. van der Merwe,J.H. Potgieter,David Whitefield,Michael Oluwatosin Bodunrin
出处
期刊:Materials and Corrosion-werkstoffe Und Korrosion [Wiley]
卷期号:73 (8): 1298-1307 被引量:11
标识
DOI:10.1002/maco.202213076
摘要

Abstract In this study, experimental Ti–6Al–1V–3Fe, Ti–4.5Al–1V–3Fe, and Ti–3Fe alloys, as well as commercial Ti–6Al–4V alloy that were scaled up utilizing vacuum induction melting technology, were assessed for corrosion performance in simulated body fluids. The selected simulated body fluids were 0.9 wt% NaCl solution and Hanks balanced salt solution (HBSS). Open circuit potential and linear polarization scans were performed to understand the corrosion performance of the alloys. The surface of the alloys was examined before and after exposure to corrosive solutions using scanning electron microscopy. The results show that all the alloys exhibit good corrosion performance in simulated body fluids. The corrosion rates were less than 0.5 mm/year. Owing to higher corrosion potential and lower corrosion rate, Ti–6Al–1V–3Fe and Ti–4.5Al–1V–3Fe had the best resistance to corrosion in 0.9 wt% NaCl and HBSS, respectively. All the alloys consist of a fully lamellar structure with α and β phases. There was no evidence of severe deterioration on the exposed surface of alloys in the simulated body fluids.
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