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Production of zinc coatings by electro-spark deposition

Treść / Zawartość
Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
The paper describes the method of producing a zinc coating on steel by electro-spark deposition technology. The technology of applying electro-spark zinc to the surface was presented. Microscopic observations and corrosion resistance tests were made. The possibilities of practical application of this type of coatings in the process of repairing zinc coatings, either damaged or with manufacturing defects, were analyzed.
Wydawca
Rocznik
Strony
253--258
Opis fizyczny
Bibliogr. 24 poz., rys., tab.
Twórcy
  • Kielce University of Technology, Poland
  • CracowUniversity of Technology, Poland
  • Czestochowa University of Technology, Poland
Bibliografia
  • [1] Burkov, A.A., Pyachin, S.A., 2014. Investigation of WC-Co electrospark coatings with various carbon contents, J. Mater. Eng. Performance, 23, 2034-2042.
  • [2] Chang-bin,T., Dao-xin,L., Zhan,W., Yang,G., 2011. Electro-spark alloying using graphite electrode on titanium alloy surface for biomedical applications, Appl. Surf. Sci., 257, 6364-6371.
  • [3] Depczyński,W., 2001. Wpływ pierwiastków stopowych na proces cynkowania stali,II KonferencjaTechniczna „Powłoki Metalowe -Czystsze Technologie”,Łódź-Rogów, 93-97.
  • [4] Depczyński,W., 2004. Cynkowanie ogniowe-dłuższa eksploatacja obiektu, Kalejdoskop Budowlany, 10, 70-72.
  • [5] Domagala, M., 2013. Simulation of cavitation in jet pumps, Technical Transactions, 110 (5), 51-58.
  • [6] Domagala, M., Momeni, H., 2017. CFD simulation of cavitation over water turbine hydrofoils, Technical Transactions,114 (9), 159-164.
  • [7] Domagala, M., Momeni, H., Domagala-Fabis, J., Filo, G., Krawczyk, M., 2018a. Simulation of Particle Erosion in a Hydraulic Valve, Mater. Res. Proc.,5, 17-24.
  • [8] Domagala, M., Momeni, H., Domagala-Fabis, J., Filo, G., Kwiatkowski, D., 2018b. Simulation of Cavitation Erosion in a Hydraulic Valve, Mater. Res. Proc.,5, 1-6.
  • [9] Fabis-Domagala, J., 2013. Application of FMEA matrix for prediction of potential failures in hydraulic cylinder, Technical Transactions,110 (5), 97-104.
  • [10] Fabis-Domagala,J.,Domagala, M., 2017.Matrix FMEA analysis with cause-effect diagram for selected fluid power component, Technical Transactions,114 (10), 141-146.
  • [11] Filo, G., 2013. Computer monitoring and control system of a local LNG supply station, Technical Transactions,110 (5), 105-112.
  • [12] Filo, G., 2015. Asynchronous buffer read method in development of DAQ application for supporting research of hydraulic systems, Technical Transactions,112 (7), 77-82.
  • [13] Maszke, A., Dwornicka,R.,Ulewicz, R., 2018. Problems in the implementation of the lean concept at a steel works -Case study, MATEC Web of Conf. 183, 01014.DOI: 10.1051/matecconf/201818301014.
  • [14] Maass,P., Peissker,P.,Ahner, Ch.,2011. Hot-dip galvanization,Wiley, Hoboken, 494.
  • [15] Osocha, P.,2018. Calculation of residual life for P91 material based on creep rate and time to rupture, Mater. Res. Proc.,5, 177-182.
  • [16] Pawlowska, G., Klimecka-Tatar, D., Radomska, K., 2017. The effect of bio-tolerated binder content on the corrosive behavior of RE-M-B in magnetic composites in sulphite solutions, Ochr. Przed Koroz.,60, 372-375.
  • [17] Radek,N., 2009. Determining the operational properties of steel beaters after electro-spark deposition .Eksploatacja i Niezawodność -Maintenance and Reliability, 4, 10-16.
  • [18] Radek,N., Sladek,A., Bronček,J., Bilska,I.,Szczotok,A., 2014. Electrospark alloying of carbon steel with WC-Co-Al2O3: deposition technique and coating properties,Adv. Mater. Res.-Switz., 874, 101-106.
  • [19] Salmaliyan, M., Malek, Ghaeni, F., Ebrahimnia, M., 2017. Effect of electro-spark deposition process parameters on WC-Co coating on H13 steel, Surf. Coat. Tech., 321, 81-89.
  • [20] Skrzypczak-Pietraszek, E., Reiss, K., Żmudzki, P. and Pietraszek, J., 2018a. En-hanced accumulation of harpagide and 8-O-acetyl-harpagide in Melittis melisso-phyllum L. agitated shoot cultures analyzed by UPLC-MS/ MS. PLoS ONE, 13(8), art. e0202556.
  • [21] Skrzypczak-Pietraszek, E., Piska, K., Pietraszek, J., 2018b. Enhanced production of the pharmaceutically important polyphenolic compounds in Vitex agnus castus L. shoot cultures by precursor feeding strategy, Eng. Life Sci., 18, 287-297.
  • [22] Skrzypczak-Pietraszek, E., Urbańska, A., Żmudzki, P. and Pietraszek, J., 2019. Elicitation with methyl jasmonate combined with cultivation in the Plantform™ temporary immersion bioreactor highly increases the accumulation of selected centellosides and phenolics in Centella asiatica (L.) Urban shoot culture, Eng. Life Sci., 19, 931-943.
  • [23] Ulewicz, R., Selejdak, J., Borkowski, S., Jagusiak-Kocik, M., 2013. Process management in the cast iron foundry, Metal 2013, Proc. 22nd Int. Conf. Metallurgy and Materials, Ostrava, Tanger, 1926-1931.
  • [24] Wlodarczyk, R., Dudek, A., Nitkiewicz, Z., 2011. Corrosion analysis of sintered material used for low-temperature fuel cell plates, Arch. Metall. Mater., 56, 181-186.
Uwagi
Opracowanie rekordu ze środków MNiSW, umowa Nr 461252 w ramach programu "Społeczna odpowiedzialność nauki" - moduł: Popularyzacja nauki i promocja sportu (2021).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-476ca60f-d8a8-458e-b2ba-969346ca58bf
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