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Influence of plastic deformation on electrochemical properties of X5CrNi18-10 steel

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Języki publikacji
EN
Abstrakty
EN
The purpose of this study was to determine the effect of plastic deformation on the electrochemical properties of X5CrNi18-10 steel. The tested material belongs to the group of stainless steels with low carbon content, and it is used in many industries due to its high corrosion resistance. In most applications of the tested material, it is formed into complicated shapes and exposed to aggressive environments. Examples include the applications in medicine (implants) as well as in civil engineering and nuclear power plants. Different effects of deformation on anti-corrosion properties have been described in the literature. Samples with 5 different deformations were obtained in the present experiment. Electrochemical direct electrical current and alternating electrical current tests were performed for the obtained materials. The tests were carried out in a 1 molar sodium chloride solution. The study revealed an increase in the corrosion resistance of samples with increasing strain in the tested strain ranges.
Rocznik
Tom
Strony
253--262
Opis fizyczny
Bibliogr. 18 poz., rys., wykr.
Twórcy
  • Katedra Technologii Materiałów i Maszyn, Wydział Nauk Technicznych, Uniwersytet Warmińsko-Mazurski, ul. Oczapowskiego 11,10-719 Olsztyn
Bibliografia
  • Alvarez K., Sato K., Hyun S.K., Nakajima H. 2008. Fabrication and properties of Lotus-type porous nickel-free stainless steel for biomedical applications. Materials Science and Engineering C, 28: 44-50.
  • Bassioni G., Korin A., El-Din Salama A. 2015. Stainless Steel as a Source of Potential Hazard due to Metal Leaching into Beverages. International Journal of Electrochemical Science, 10: 3792–3802.
  • Bernstein I.M. 1977. Handbook of stainless steels. McGraw-Hill, New York.
  • EN 10088-1:2014. Stale odporne na korozję. Część 1. Wykaz stali odpornych na korozję.
  • Freirea L., Carmezima M.J., Ferreiraa M.G.S., Montemor M.F. 2011. The electrochemical behavior of stainless steel AISI 304 in alkaline solutions with different pH in the presence of chloride. Electrochimica Acta, 56: 5280–5289.
  • Kułakowski M., Rokosz K. 2017. Stopowe stale austenityczne, ferrytyczne i duplex używane w transporcie. Autobusy, 7-8: 357–362.
  • Marijan D., Gojic M. 2002. Electrochemical study of the chromium electrode behaviour in borate buffer solution. Journal of Applied Electrochemistry, 32: 1341–1346.
  • Nazarov A., Vivier V., Vucko F., Thierry D. 2019. Effect of Tensile Stress on the Passivity Breakdown and Repassivation of AISI 304 Stainless Steel: A Scanning Kelvin Probe and Scanning Electrochemical Microscopy Study. Journal of The Electrochemical Society, 166: C3207-C3219.
  • PN-EN ISO 6892-1. Metale. Próba rozciągania. Część 1. Metoda badania w temperaturze pokojowej.
  • Rutkowska-Gorczyca M., Podrez-Radziszewska M., Kajtoch J. 2009. Corrosion resistance and microstructure of steel AISI 316L. Metallurgy and Foundry Engineering, 35: 35–43.
  • Ryan G., Pandit A., Apatsidis D.P. 2006. Fabrication methods of porous metals for use in orthopaedic applications. Biomaterials, 27: 2651-2670.
  • Rybalka K.V., Beketaeva L.A., Davydov A.D. 2006. Electrochemical behavior of stainless steel in aerated NaCl solutions by electrochemical impedance and rotating disk electrode methods. Russian Journal of Electrochemistry, 42: 370–374.
  • Santonen T., Stockmann-Juvala H., Zitting A. 2010. Review on toxicity of stainless steel. Finnish Institute of Occupational Health, Helsinki.
  • Stress Corrosion Cracking in Light Water Reactors: Good Practices and Lessons Learned. 2011. International Atomic Energy Agency, Vienna.
  • Tiamiyu A.A., Eduok U., Szpunar J.A., Odeshi A.G. 2019. Corrosion behavior of metastable AISI 321 austenitic stainless steel: Investigating the effect of grain size and prior plastic deformation on its degradation pattern in saline media. Scientific Reports, 9: 1–18.
  • Venkatraman M., Pavitra K., Jana V., Kachwala T. 2013. Manufacturing and critical applications of stainless steel – An Overview. Advanced Materials Research, 794: 163–173.
  • Wciślik W., Kossakowski P., Sokołowski P. 2017. Stainless steel in building structures – advantages and examples of application. Structure and Enviroment, 3: 191–198.
  • Zheng M., Shuai M., Yu J. 2018. Influence of deformation on electrochemical properties of Q235 steel. Koroze a ochrana materiálu, 62(3): 108–114.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-80eb0f46-5933-42e8-9e48-bd05fd4930ed
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