Obrabotka Metallov. 2016 no. 4(73)

ОБРАБОТКА МЕТАЛЛОВ № 4 (73) 2016 74 МАТЕРИАЛОВЕДЕНИЕ 29. Bataev I.A., Bataev A.A., Golkovski M.G., Krivizhenko D.S., Losinskaya A.A., Lenivtseva O.G. Structure of surface layers produced by non-vacuum electron beam boriding. Applied Surface Science , 2013, vol. 284, pp. 472– 481. doi: 10.1016/j.apsusc.2013.07.121 30. Lenivtseva O.G., Bataev I.A., Ivancivsky V.V., Belousova N.S., Golovin E.D., Zimoglyadova T.A. Vne- vakuumnaya elektronno-luchevaya naplavka uglerodsoderzhashchikh poroshkovykh smesei na zagotovki iz titana VT1-0 [Аtmospheric electron-beam overlay welding of carbon containing powder mixtures onto technically pure titanium VT1-0]. Obrabotka metallov (tekhnologiya, oborudovanie, instrumenty) – M etal Working and Material Sci­ ence , 2013, no. 4 (61), pp. 49–57. 31. Zhang X., Lü W., Zhang D., Wu R., Bian Y., Fang P. In situ technique for synthesizing (TiB+TiC)/Ti compos- ites. Scripta Materialia , 1999, vol. 41, iss. 1, pp. 39–46. doi: 10.1016/S1359-6462(99)00087-1 32. Li J., Yu Z., Wang H., Li M. Microstructural characterization of titanium matrix composite coatings rein- forced by in situ synthesized TiB + TiC fabricated on Ti6Al4V by laser cladding. Rare Metals , 2010, vol. 29, iss. 5, pp. 465–472. doi: 10.1007/s12598-010-0151-y 33. Liang J., Chen S., Liu C., Liu F. Study on microstructure of laser in situ formation of TiBX and TiC tita- nium composite coatings. Materials Science Forum, 2011, vol. 686, pp. 646–653. doi: 10.4028/www.scientific.net/ MSF.686.646 34. Zhang Y., Sun J., Vilar R. Characterization of (TiB + TiC)/TC4 in situ titanium matrix composites pre- pared by laser direct deposition. Journal of Materials Processing Technology , 2011, vol. 211, iss. 4, pp. 597–601. doi: 10.1016/j.jmatprotec.2010.11.009 35. Villars P., Prince A., Okamoto H., eds. Handbook of ternary alloy phase diagrams . Materials Park, Ohio, ASM International, 1994. ISBN 10: 0871705265. ISBN 13: 9780871705266. 36. Lu W., Zhang D., Zhang X., Wu R., Sakata T., Mori H. Microstructural characterization of TiB in in situ synthesized titanium matrix composites prepared by common casting technique. Journal of Alloys and Compounds , 2001, vol. 327, iss. 1–2, pp. 240–247. doi: 10.1016/S0925-8388(01)01445-1 37. Sahay S.S., Ravichandran K.S., Atri R., Chen B., Rubin J. Evolution of microstructure and phases in in situ processed Ti–TiB composites containing high volume fractions of TiB whiskers. Journal of Materials Research , 1999, vol. 14, iss. 11, pp. 4214–4223. doi: 10.1557/JMR.1999.0571 38. Ni D.R., Geng L., Zhang J., Zheng Z.Z. TEM characterization of symbiosis structure of in situ TiC and TiB prepared by reactive processing of Ti–B4C. Materials Letters , 2008, vol. 62, iss. 4–5, pp. 686–688. doi: 10.1016/j. matlet.2007.06.033 39. Kooi B.J., Pei Y.T., Hosson J.T.M. de. The evolution of microstructure in a laser clad TiB–Ti composite coat- ing. Acta Materialia , 2003, vol. 51, iss. 3, pp. 831–845. doi: 10.1016/S1359-6454(02)00475-5 40. Tamirisakandala S., Bhat R.B., Tiley J.S., Miracle D.B. Grain refinement of cast titanium alloys via trace boron addition. Scripta Materialia , 2005, vol. 53, iss. 12, pp. 1421–1426. doi: 10.1016/j.scriptamat.2005.08.020 Funding The reported study was funded by RFBR, according to the research project No. 16-33-60066 mol_а_dk Article history Received 12 October 2016 Revised 21 October 2016 Accepted 15 November 2016

RkJQdWJsaXNoZXIy MTk0ODM1