Infiltration Kinetics of Cr3C2 by Manganese Cupronickel in the Process of Obtaining Cermets

Journal Title: Фізика і хімія твердого тіла - Year 2015, Vol 16, Issue 2

Abstract

A theoretical model of infiltration kinetics based on the Darcy's law which was evaluated by W − Lambert function has been established for Cu-Ni-Mn alloy (grade MNMts 60-20-20) during melt infiltration into Cr3C2 porous skeletons with different morphology. It is shown, that theoretical calculations are in good correlation with experimental data obtained by pressureless infiltration of carbide preforms with open porosity 20-40 vol. % at 1200 °C. Calculations shows that infiltration height dependence on the average size of carbide particles is described by curves with a maximum which corresponds to~ 60 μm for specified system with carbide skeleton porosity of 40 vol. %.

Authors and Affiliations

T. A. Shihab, Ya. A. x Kryl’, Yu. I. Paraiko, P. M. Prysyazhnyuk, L. Ya. Ropyak, V. V. Turluch

Keywords

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  • EP ID EP307997
  • DOI 10.15330/pcss.16.2.408-412
  • Views 68
  • Downloads 0

How To Cite

T. A. Shihab, Ya. A. x Kryl’, Yu. I. Paraiko, P. M. Prysyazhnyuk, L. Ya. Ropyak, V. V. Turluch (2015). Infiltration Kinetics of Cr3C2 by Manganese Cupronickel in the Process of Obtaining Cermets. Фізика і хімія твердого тіла, 16(2), 408-412. https://europub.co.uk./articles/-A-307997