Electrochemical behaviour of some commercial stainless steel alloys in simulated body fluid electrolytes

Author:

Bahrawy A.,El-Rabiei Mohamed,Elfiky Hesham,Elsayed Nady,Arafa Mohammed,Negem Mosaad

Abstract

Purpose The commercial stainless steels have been used extensively in the biomedicine application and their electrochemical behaviour in the simulated body fluid (SBF) are not uncovered obviously. In this research, the corrosion resistance of the commercial stainless steel of Fe–17Cr–xNi alloys (x = 4, 8, 10 and 14) has been studied. This study aims to evaluate the rate of corrosion and corrosion resistance of some Fe–Cr–Ni alloys in SBF at 37°C. Design/methodology/approach In this research, the corrosion resistance of the commercial stainless steel of Fe–17Cr–xNi alloys has been studied using open circuit potential, electrochemical impedance spectroscopy and potentiodynamic polarization in the SBF at 37°C and pH 7.4 for a week. Also, the surface morphology of the four alloys was investigated using scanning electron microscopy, elemental composition was obtained via energy dispersive spectroscopy and the crystal lattice structure of Fe–17Cr–xNi alloys was obtained using X-ray diffraction technique. The chemical structure of the protective oxide film has been examined by X-ray photoelectron spectroscopy (XPS) and metals ions released into the solution have been detected after different immersion time using atomic absorption spectroscopy. Findings The results revealed that the increase of the Ni content leads to the formation of the stable protective film on the alloys such as the Fe–17Cr–10Ni and Fe–17Cr–14Ni alloys which possess solid solution properties. The Fe–17Cr–14Ni alloy displayed highest resistance of corrosion, notable resistance for localized corrosion and the low corrosion rate in SBF because of the formation of a homogenously protective oxide film on the surface. The XPS analysis showed that the elemental Fe, Cr and Ni react with the electrolyte medium and the passive film is mainly composed of Cr2O3 with some amounts of Fe(II) hydroxide at pH 7.4. Originality/value This work includes important investigation to use commercial stainless steel alloys for biomedical application.

Publisher

Emerald

Subject

General Materials Science,General Chemical Engineering

Reference53 articles.

1. The effect of Ni in the electrochemical properties of oxide layers grown on stainless steels;Electrochimica Acta,2006

2. Multiple imaging techniques demonstrate the manipulation of surfaces to reduce bacterial contamination and corrosion;Journal of Microscopy,2004

3. Corrosion and surface modification on biocompatible metals: a review;Materials Science and Engineering: C,2017

4. Cathodic hydrogen evolution in acidic solutions using electrodeposited nano-crystalline Ni-Co cathodes;Int. J. Hydrogen Energy,2014

5. Corrosion behaviour of Al6061-Frit particulate metal matrix composites in sodium chloride solution;Corrosion Science,1999

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