Formation of electric-spark coatings from composite materials based on titanium-chromium carbide and diboride
Electrode composite materials of the TiCrB 2 -(Fe-Cr) and TiCrC-(Fe-Cr) systems are discussed. The composition, structure, mechanical and tribotechnical properties of the materials have been studied. Coatings from the materials developed have been applied to the 30KHGSA steel and VT3-1 titanium allo...
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Published in | Journal of superhard materials Vol. 31; no. 4; pp. 274 - 280 |
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Main Authors | , , , , |
Format | Journal Article |
Language | English |
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Allerton Press, Inc
01.08.2009
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Abstract | Electrode composite materials of the TiCrB
2
-(Fe-Cr) and TiCrC-(Fe-Cr) systems are discussed. The composition, structure, mechanical and tribotechnical properties of the materials have been studied. Coatings from the materials developed have been applied to the 30KHGSA steel and VT3-1 titanium alloy. The effect of the length of electric-spark alloying and electrode and substrate materials on the mass-transfer kinetics has been analyzed. It has been shown that the materials developed can be successfully deposited onto steels and titanium alloys by the electric-spark method. |
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AbstractList | Electrode composite materials of the TiCrB
2
-(Fe-Cr) and TiCrC-(Fe-Cr) systems are discussed. The composition, structure, mechanical and tribotechnical properties of the materials have been studied. Coatings from the materials developed have been applied to the 30KHGSA steel and VT3-1 titanium alloy. The effect of the length of electric-spark alloying and electrode and substrate materials on the mass-transfer kinetics has been analyzed. It has been shown that the materials developed can be successfully deposited onto steels and titanium alloys by the electric-spark method. |
Author | Konoval, V. P. Podchernyaeva, I. O. Umans’kyi, O. P. Panasyuk, A. D. Koval’, O. Yu |
Author_xml | – sequence: 1 givenname: V. P. surname: Konoval fullname: Konoval, V. P. organization: Frantsevich Institute for Materials Science Problems, National Academy of Sciences of Ukraine – sequence: 2 givenname: O. P. surname: Umans’kyi fullname: Umans’kyi, O. P. organization: Frantsevich Institute for Materials Science Problems, National Academy of Sciences of Ukraine – sequence: 3 givenname: A. D. surname: Panasyuk fullname: Panasyuk, A. D. organization: Frantsevich Institute for Materials Science Problems, National Academy of Sciences of Ukraine – sequence: 4 givenname: I. O. surname: Podchernyaeva fullname: Podchernyaeva, I. O. organization: Frantsevich Institute for Materials Science Problems, National Academy of Sciences of Ukraine – sequence: 5 givenname: O. Yu surname: Koval’ fullname: Koval’, O. Yu organization: Frantsevich Institute for Materials Science Problems, National Academy of Sciences of Ukraine |
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Keywords | electric-spark alloying titanium-chromium carbide titanium-chromium diboride composite material coating |
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References | Koval’chenkoM.S.PaustovskiiA.V.KirilenkoS.N.Electric-Spark Alloying of Steel with Tungstenfree Hard AlloyPowder Metallurgy and Metal Ceramics198423.64750 Bovkun, G.A. and Laptev, A.V., Relation of Erosion and Mechanical Characteristics of the WC-16%Co Hard Alloy Produced by a Solid- and Liquid-Phase Consolidation. I. Erosion Resistance, Powder Metallurgy and Metal Ceramics, 2004, nos. 9/10, pp. 57–66. PanashenkoV.M.PodchernyaevaI.A.Grigor’evO.N.Regularities of the Mass Transfer and Structural and Phase Transformations in ESA of AlN and ZrB2-based Ceramic MaterialsElektricheskie kontakty i elektrody2001KievIPM, Nat. Ac. Sci. of Ukraine221226(Electric Contacts and Electrodes) TeplenkoM.A.Structure Formation of composite Gradient Coatings with an Increased Wear and Corrosion Resistance in Electric-Spark Mass Transfer of Ceramics of the Al-Ti(Zr)-N-B SystemExtended Abstract of Cand. Sci. (Eng.) Dissertation2003KievIPM, Nat. Ac. Sci. Ukraine Yurechko, D.V., Podchernyaeva, I.A., Panasyuk, A.D., and Grigor’ev, O.N., Physicochemical Model of the Formation of Wear Coatings on Aluminum Alloys in Electric-Spark Mass Transfer of Composite Ceramics, Powder Metallurgy and Metal Ceramics, 2006, nos. 1/2, pp. 51–58. Podchernyaeva, I.A., Yurechko, D.V., Panasyuk, A.D., and Teplenko, M.A., Regularities of the Mass Transfer and Adhesion Interaction in Electric-Spark Alloying (ESA) of the AL9 Alloy with the AlN-Ti(Zr)B2-Ti(Zr)Si2 Ceramic Electrodes, Powder Metallurgy and Metal Ceramics, 2004, nos. 9/10, pp. 43–50. VerkhoturovA.D.PodchernyaevaI.A.PryadkoL.F.EgorovF.F.Electrodnye materialy dlya elektroiskrovogo legirovaniya1988MoscowNauka(Electrode Materials for Electric-Spark Alloying) Verkhoturov, A.D., Podchernyaeva, I.A., Stolyarova, N.N., et al., Electric-Spark Coatings from New Heterophase Materials, Preprint of Institute of Mining, USSR Acad. Sci., Vladivostok, 1987. Umanskii, A.P., Konoval, V.P., Panasyuk, A.D., and Dvornik, E.P., Contact Interaction of Titanium and Chromium Double Diboride with Fe-Cr Alloys, Powder Metallurgy and Metal Ceramics, 2007, nos. 1/2, pp. 109–115. Verkhoturov, A.D., Podchernyaeva, I.A., and Kurilenko, L.I., Kinetics of the Inverse Mass Transfer in ESA and the Secondary Structure Formation at the Anode, Fizika i Khimiya Obrabotki Materialov, 1986, no. 4, pp. 31–34. Mamykin, E.N. and Yuga, A.I., A Set of Machines and a Procedure to Determine Antifriction Properties of Materials in Sliding Friction, Powder Metallurgy and Metal Ceramics, 1973, no. 1, pp. 67–72. Umanskii, A.P., Konoval, V.P., Panasyuk, A.D., and Neshpor, I.P., Mechanism of the Contact Interaction of Titanium-Chromium Double Carbide with Fe-Ni and Fe-Cr Alloys, Adgeziya Rasplavov and Paika Materialov, 2005, no. 38, pp. 51–58. 6044_CR3 6044_CR10 6044_CR11 M.S. Koval’chenko (6044_CR2) 1984; 23. 6044_CR8 6044_CR7 A.D. Verkhoturov (6044_CR1) 1988 6044_CR6 M.A. Teplenko (6044_CR12) 2003 6044_CR5 V.M. Panashenko (6044_CR9) 2001 6044_CR4 |
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Snippet | Electrode composite materials of the TiCrB
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Title | Formation of electric-spark coatings from composite materials based on titanium-chromium carbide and diboride |
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