Corrosion performance of cold deformed austenitic stainless steels for biomedical applications

Author:

Talha Mohd12,Ma Yucong2,Lin Yuanhua12,Pan Yong2,Kong Xiangwei3,Sinha O.P.4,Behera C.K.4

Affiliation:

1. State Key Laboratory of Oil and Gas Reservoir Geology and Exploitation, Southwest Petroleum University, Chengdu, 610500 Sichuan, P.R. China

2. School of Materials Science and Engineering, Southwest Petroleum University, Chengdu, 610500 Sichuan, P.R. China

3. School of Petroleum Engineering, Yangtze University, Wuhan, 434023 Hubei, P.R. China

4. Department of Metallurgical Engineering, Indian Institute of Technology (Banaras Hindu University), Varanasi-221005, UP, India

Abstract

AbstractAustenitic stainless steels possess an excellent balance of strength and ductility along with the high ability to further raise their strength during cold deformation (CD). Corrosion resistance of austenitic stainless steels (SSs) is affected by cold deformation because passive films on the surface of steels are expected to be modified. A low level of CD enhances the surface diffusion, which results in the formation of a stable passive film leading to an increase in the corrosion resistance in neutral chloride solutions. The chromium content in the passive film on a deformed steel surface is usually richer, with a higher Cr/Fe ratio than that formed on annealed steels. A higher chromium content makes surface films more stable, which improves the corrosion resistance. However, severe CD results in the formation of strain-induced martensite phase and deformation twins, which decreases the localized corrosion resistance by increasing the number of active anodic sites on the surface. The corrosion resistance, especially the pitting resistance, in SSs is diminished with increasing volume fraction of the martensite. In this review, we highlighted the failure modes of corrosion of stainless steel implants, factors affecting corrosion, and effect of CD on mechanical properties and emphatically on the corrosion resistance of SSs for biomedical applications.

Publisher

Walter de Gruyter GmbH

Subject

General Materials Science,General Chemical Engineering,General Chemistry

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