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Keyword: carbide

  • TECHNOLOGIES

    Creative wear of C-Cr-Mo-Nb-W-V surface system

    • Jozef Vyboch
    • Milan Čomaj
    • Ján Viňáš
    Machines. Technologies. Materials., Vol. 18 (2024), Issue 2, pg(s) 63-65
    • Abstract
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    The paper presents experimental work focused on the wear resistance of clads made with OPEN ARC technology (MOG) and clads with cycled cladding nozzle. The distribution of carbide phases by electron beam was evaluated. The influence of the tempering temperature of the clads on the hardness of the layers was determined. Tests of the resistance of the clads to abrasive wear were carried out.

  • MATERIALS

    High-entropy alloy of Fe-Ti-Cr-Mn-Si-C system, produced by hot forging from powder mixtures of ferroalloys

    • Gennadii Bagliuk
    • Miroslav Marich
    • Alla Mamonova
    • Yulia Shishkina
    • Galina Molchanovska
    • Stepan Kyriliuk
    Machines. Technologies. Materials., Vol. 15 (2021), Issue 5, pg(s) 198-200
    • Abstract
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    The peculiarities of the structure and phase composition of the high-entropy alloy of the TiCrFeMnSiC system obtained from the powder mixture of ferrotitanium, ferrochrome and ferrosilicon-manganese ferroalloys are considered in the work. The technological scheme of alloy production included joint grinding of the mixture in a planetary mill, consolidation of the blanks, their heating to 1100 0C, hot forging on the arc press and subsequent annealing of hot-forged samples at 1200 0C. According to the results of X-ray analysis of the obtained alloy, it was found that the main phase of the alloy is the BCC phase with the parameter of the cubic lattice a = 0.2868 nm, which is a solid solution based on alloying components of the original charge. The phase composition of the composite also recorded ti tanium carbide TiC with FCC lattice with the parameter a = 0.4319 nm, which corresponds to a stoichiometric composition of about TiC0.6 and a small amount of FCC phase of iron-chromium carbide (Cr, Fe)23C6 with lattice parameter a = 1.0645 nm. The material has a high hardness (up to 60-61 HRC), which can provide high resistance of this multicomponent alloy.

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