Identyfikatory
Warianty tytułu
Języki publikacji
Abstrakty
Sintered duplex stainless steels (SDSSs) appear to be very interesting and promising materials that can be used in many industrial sectors. Ferrite improves material strength while austenite increases hardness and corrosion resistance. This study proposes a method to improve functional properties (e.g. hardness and wear resistance) by means of alloying the surface of the sintered duplex steel with Cr3C2 + 10% NiAl powder. The results of optical microscope metallography, SEM/EDX, XRD analysis and microhardness and wear resistance measurements are also presented. The surface alloying with Cr3C2 is a manufacturing method of surface layer hardening in sintered stainless steels and modification of surface layer properties such as hardness and coefficient of friction.
Słowa kluczowe
Wydawca
Czasopismo
Rocznik
Tom
Strony
281--287
Opis fizyczny
Bibliogr. 19 poz., rys., tab.
Twórcy
autor
- Czestochowa University of Technology, Faculty of Processing Engineering and Materials Technology, Institute for Material Engineering, 19 Armii Krajowej Av., 42-200 Częstochowa, Poland
autor
- Czestochowa University of Technology, Faculty of Processing Engineering and Materials Technology, Institute for Material Engineering, 19 Armii Krajowej Av., 42-200 Częstochowa, Poland
autor
- Czestochowa University of Technology, Faculty of Management, Department of Production Engineering, 19 Armii Krajowej Av., 42-200 Częstochowa, Poland
Bibliografia
- [1] E. Klar, P.K. Samal, Powder Metallurgy Stainless steels: Processing, Microstructures and Properties, 2007 ASM International, Materials Park, USA.
- [2] J.C. Lippold, D.J. Kotecki, Welding Metallurgy and Weldability of Stainless Steels, 2005 John Wiley & Sons.
- [3] L. Sheppard, The Powder Metallurgy Industry Worldwide 2007-2012, 2007 Materials technology Publications, UK.
- [4] M. M Asif, K.A. Shrikrishna, A. P. Sathiya, S. Goel, J. Manuf. Process. 18, 92-106 (2015). [5] L.A. Dobrzański, Z. Brytan, M. Actis Grande, M. Rosso, JAMME 19 (1), 38-45 (2006).
- [6] A. Dudek, A. Wrońska, L. Adamczyk, J. Solid State Electrochem. 18 (11), 2973-2981 (2014).
- [7] A. Wrońska, A. Dudek, Arch. Civ. Mech. Eng. 14, 425-432 (2014).
- [8] M. Campos, A. Bautista, D. Caceres, J. Abenojar, J.M. Torralba, J. Eur. Ceram. Soc. 23 (15), 2813-2819 (2003).
- [9] F. Martin, C. Garcia, Y. Blanco, M.L. Rodriguez-Mendez, Mat. Sci. Eng. A-Struct. 642, 360-365 (2015).
- [10] Z. Brytan, L.A. Dobrzański, M. Actis Grande, M. Rosso, JAMME 37 (2), 387-396 (2009).
- [11] A. R. Annamalai, A. Upadhyaya, D.K. Agrawal, Can. Metall. Quart. 54 (2), 142-148 (2015).
- [12] H. Jazi (Ed.), Advanced Plasma Spray Applications, 2012 InTech.
- [13] L. Singh, V. Chawla, J.S. Grewal, J. Miner. Mater. Charact. Eng. 11 (3), 243-265 (2012).
- [14] P. Peetsalu, S. Zimakov, J. Pirso, V. Mikli, R. Tarbe, P. Kulu, Proc. Estonian Acad. Sci. Eng. 12 (4), 435-444 (2006).
- [15] H. Sarjas, P. Kulu, K. Juhani, M. Viljus, V. Matikainen, P. Vuoristo, P. Est. Acad. Sci. 65 (2), 101-106 (2016).
- [16] G. C. Ji, C. J. Li, Y. Y. Wang, W.Y. Li, Surf. Coat. Tech. 200, 6749-6757 (2006).
- [17] F. Martin, C. Garcia, Y. Blanco, M.L. Aparicio, Tribol. Int. 57, 76-85 (2013).
- [18] Z. Brytan, M. Bonek, L. A. Dobrzański, JAMME 40 (1), 70-78 (2010).
- [19] V. Muthupandi, P. Bala, S. K Srinivasan, S. Seshadri, V. Sundaresan, Mat. Sci. Eng. A-Struct. 358, 9-16 (2003).
Uwagi
PL
Opracowanie ze środków MNiSW w ramach umowy 812/P-DUN/2016 na działalność upowszechniającą naukę (zadania 2017).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-0ccc43d7-3e19-480a-ab3a-a746aca67903