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Author: Milonov A. S.

  • FEATURES FORMATION OF THE BORIDES TRANSITION METALS LAYERS BY AN ELECTRON-BEAM SURFACING OF SHS PRODUCTS IN VACUUM

    • Milonov A. S.
    • Danzheev B. A.
    • Dasheev D. E.
    • Smirnyagina N. N.
    Machines. Technologies. Materials., Vol. 10 (2016), Issue 3, pg(s) 56-58
    • Abstract
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    The formation features of transition metals borides at high temperatures and low pressures were investigated and discussed the conditions of formation, structure and wear properties of boride layers on the surface, formed in electron beam processing in a vacuum.

  • CREATING NANOSTRUCTURED SUPERHARD AND HEAT-RESISTANT SURFACE LAYERS ON CARBON TOOL STEEL AT INFLUENCE TO INTENSE ELECTRON BEAMS

    • Milonov A. S.
    • Danzheev B. A.
    • Dasheev D .E.
    • Smirnyagina N. N.
    Machines. Technologies. Materials., Vol. 10 (2016), Issue 1, pg(s) 20-22
    • Abstract
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    The saturation of the surface layers of metals and alloys boron is conducted with the purpose of increase of their surface hardness, wear resistance, etc. Multicomponent layers containing in its composition borides of refractory metals, as a rule, formed by the methods of chemical-thermal processing in the interaction boriding component with refractory or by saturation boron refractory impurities metal or alloy.

    In this work, we studied the features of formation of vanadium and iron borides on the surface of instrumental steels U8A and R18 under the influence of intense electron beams in continuous and pulse modes.

  • ION-PLASMA HARDENING OF A TITANIUM ALLOY OT4-1

    • Tsyrenov D. B-D.
    • Semenov A. P.
    • Smirnyagina N. N.
    • Milonov A. S.
    • Semenova I. A.
    Materials Science. Non-Equilibrium Phase Transformations., Vol. 1 (2015), Issue 1, pg(s) 55-58
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    The paper is devoted to studying the influence of technological process parameters of deposition on the composition, structure and strength characteristics of TiN coatings on titanium alloy OT4-1. The TiN coatings were deposited by a vacuum-arc evaporator. In addition, the influence of the type of layers formation on microhardness and wear resistance of TiN layers and a metal substrate is presented.

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