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Magnetic Fields for Electropolishing Improvement: Materials and Systems

Treść / Zawartość
Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
The paper aims to present the main objectives for using magnetic fields to improve process of electropolishing (EP), firstly by focusing on materials and electrochemical systems. The general introduction has been concerned on the sample surface treated under pseudopassivity conditions, in the process generally known as magnetoelectropolishing (MEP). Long-term up-to-date experiments have shown profound changes observed on metals and alloys. The advantageous effects gained by applying MEP to metals and alloys cover: improvement of corrosion resistance, bio- and haemocompatibility, roughness by modification of their surfaces. The improvements are also referred to the mechanical properties of metals and alloys treated by MEP namely: removal of hydrogen, fatigue resistance enhancement, etc. Further developments and the effects of magnetic fields on electropolishing of metals and alloys are to be presented in the next publications.
Rocznik
Tom
Strony
98--108
Opis fizyczny
Bibliogr. 54 poz., ryc.
Twórcy
  • Surface Electrochemistry Division, Koszalin University of Technology, Raclawicka 15-17, 75-620 Koszalin, Poland
  • Surface Electrochemistry Division, Koszalin University of Technology, Raclawicka 15-17, 75-620 Koszalin, Poland
  • Electrobright, 142 W. Main St., Macungie, PA 18062, USA
Bibliografia
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  • [14] Tadeusz Hryniewicz, Ryszard Rokicki, Krzysztof Rokosz, Transactions of the Institute of Metal Finishing 85(6) (2007) 325-332.
  • [15] Ryszard Rokicki, Tadeusz Hryniewicz, Transactions of the Institute of Metal Finishing 86(5) (2008) 280-285.
  • [16] Tadeusz Hryniewicz, Ryszard Rokicki, Krzysztof Rokosz, Materials Letters 62 (2008) 3073-3076.
  • [17] Tadeusz Hryniewicz, Ryszard Rokicki, Krzysztof Rokosz, Surface & Coatings Technology 202(9) (2008) 1668-1673.
  • [18] Tadeusz Hryniewicz, Ryszard Rokicki, Krzysztof Rokosz, CORROSION (The Journal of Science and Engineering), Corrosion Science Section 64(8) (2008) 660-665.
  • [19] Tadeusz Hryniewicz, Krzysztof Rokosz, Ryszard Rokicki, Corrosion Science 50(9) (2008) 2676-2681.
  • [20] Tadeusz Hryniewicz, Krzysztof Rokosz, PAK (Measurement Automation and Monitoring) 55(4) (2009) 247-250.
  • [21] Tadeusz Hryniewicz, Ryszard Rokicki, Krzysztof Rokosz, Surface & Coatings Technology 203(10-11) (2009) 1508-1515.
  • [22] Tadeusz Hryniewicz, Krzysztof Rokosz, Surface & Coatings Technology 204 (16-17) (2010) 2583-2592.
  • [23] Tadeusz Hryniewicz, Krzysztof Rokosz, Materials Chemistry and Physics 122 (2010) 169-174.
  • [24] Krzysztof Rokosz, Tadeusz Hryniewicz, CORROSION – The Journal of Science and Engineering 66(3) (2010) 035004-1…11 (11 pages).
  • [25] Tadeusz Hryniewicz, Krzysztof Rokosz, Materials Chemistry and Physics 123 (2010) 47-55.
  • [26] Tadeusz Hryniewicz, Ryszard Rokicki, Krzysztof Rokosz, Chapter 11. Magnetoelectropolished Titanium Biomaterial, in Biomaterial / Book 2, ISBN 978-953-308-118-2, InTech, 227-248 (Edited by Rosario Pignatello), 2011, 227-248; website: http://www.intechweb.org/ , http://www.intechopen.com/articles/show/title/magnetoelectropolished-titanium-biomaterial
  • [27] Krzysztof Rokosz, PAK (Measurement Automation and Monitoring) 57(5) (2011) 563-567
  • [28] Tadeusz Hryniewicz, Piotr Konarski, Krzysztof Rokosz, Ryszard Rokicki, Surface & Coatings Technology 205 (2011) 4228-4236.
  • [29] Tadeusz Hryniewicz, Krzysztof Rokosz, Victor Micheli, PAK (Measurement Automation and Monitoring) 57(6) (2011) 609-61.4
  • [30] Krzysztof Rokosz, Tadeusz Hryniewicz, Ochrona przed Korozją 54(7) (2011) 487-491.
  • [31] Tadeusz Hryniewicz, Krzysztof Rokosz, Jan Valíček, Ryszard Rokicki, Materials Letters 83 (2012) 69-72.
  • [32] Krzysztof Rokosz, Tadeusz Hryniewicz, Steinar Raaen, Steel Research International 83 (2012) 1-9.
  • [33] Tadeusz Hryniewicz, Piotr Konarski, Ryszard Rokicki, Jan Valíček, Surface & Coatings Technology 206 (2012) 4027-4031.
  • [34] Ryszard Rokicki, Waseem Haider, Tadeusz Hryniewicz, Journal of Materials Science: Materials in Medicine 23 (2012) 2127-2139.
  • [35] Ryszard Rokicki, Tadeusz Hryniewicz, Transactions of the Institute of Metal Finishing 90(4) (2012) 188-196.
  • [36] Tadeusz Hryniewicz, Krzysztof Rokosz, Hugo Ricardo Zschommler Sandim, Applied Surface Science 263 (2012) 357-361.
  • [37] Krzysztof Rokosz, Tadeusz Hryniewicz, Steiner Raaen, PAK (Measurement Automation and Monitoring) 58(1) (2012) 126-129.
  • [38] Krzysztof Rokosz, Tadeusz Hryniewicz, Steinar Raaen, PAK (Measurement Automation and Monitoring) 58(6) (2012) 545-548.
  • [39] Krzysztof Rokosz, Tadeusz Hryniewicz, Jan Valíček, Marta Harničárová, Michel Vyležík, PAK (Measurement Automation and Monitoring) 58(5) (2012) 460-463.
  • [40] Krzysztof Rokosz, Tadeusz Hryniewicz, Advances in Materials Science 34(4) (2012) 13-22.
  • [41] Tadeusz Hryniewicz, Jan Valíček, Ryszard Rokicki, Krzysztof Rokosz, Hardness and Nanohardness Measurements of Titatnium Biomaterial after Magnetoelectropolishing, Proc. 20th Intern. Confer. on Composite/Nanoengineering prep. for ICCE-2012, Beijing, China, July 22-28, 2012, (2-page paper)
  • [42] Tadeusz Hryniewicz, Krzysztof Rokosz, Jan Valíček, Hugo Ricardo Zschommler Sandim, Steinar Raaen, Niobium Surface Studies after HF-free Electrochemical Treatment, Proc. 20th Intern. Confer. on Composite/Nanoengineering ICCE-20, Beijing, China, July 22-28, 2012, (2-page paper)
  • [43] Tadeusz Hryniewicz, Krzysztof Rokosz, Hugo Ricardo Zschommler Sandim, Applied Surface Science 263 (2012) 357-361.
  • [44] Tadeusz Hryniewicz, Krzysztof Rokosz, Applied Surface Science 265 (2013) 931-934.
  • [45] Krzysztof Rokosz, Tadeusz Hryniewicz, International Journal of Materials Research (former: Zeitschrift für METALLKUNDE), (2013) 1-10; http://www.ijmr.de/ MK110984
  • [46] Tadeusz Hryniewicz, Krzysztof Rokosz, Correlation of Corrosion Resistance and Nanoindentation Results of AISI 316L SS Biomaterial after Surface Finishing Operations, Book of Abstracts, Corrosion Mechanisms and Methods, Eurocorr 2013, 1-5 September 2013, Paper No 1804, page 282.
  • [47] Tadeusz Hryniewicz, Krzysztof Rokosz, Jan Valiček, Ryszard Rokicki, Marta Harničarova, Michel Vyležik, PAK (Measurement Automation and Monitoring) 59(7) (2013) 676-679.
  • [48] Krzysztof Rokosz, Electrochemical polishing of steels in the magnetic field (in Polish), Politechnika Koszalińska Editorial House, Koszalin, 2012 (210 pages).
  • [49] Tadeusz Hryniewicz, Krzysztof Rokosz, Magnetoelektropolerowanie: stan badań 2012, (in Polish), Mater. SNOE (Scientific School of Electroerosive Treatment), Warsaw, 2012 (8 pages).
  • [50] C. Praisarnti, J. W. W. Chang, G. S. P. Cheung, Journal of Endodontics 36(8) (2010) 1354-1357 .
  • [51] Krzysztof Rokosz, Tadeusz Hryniewicz, AUTOBUSY 5 (2013) 233-236.
  • [52] Tadeusz Hryniewicz, Materials Chemistry and Physics 15(2) (1986) 139-154.
  • [53] Tadeusz Hryniewicz, Zdzisław Hryniewicz, Journal of the Electrochemical Society 136(12) (1989) 3767-3769.
  • [54] Tadeusz Hryniewicz, Surface & Coatings Technology 64(2) (1994) 75-80.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-0eec4885-4e14-4f8e-8d91-92f30c0a4513
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