V. G. Efremenko, K. Shimizu, A. P. Cheiliakh, T. V. Kozarevskaya, K. Kusumoto,  and K. Yamamoto, Effect of vanadium and chromium on the microstructural features of V-Cr-Mn-Ni spheroidal carbide cast irons, Int. J. Miner. Metall. Mater., 21(2014), No. 11, pp. 1096-1108. https://doi.org/10.1007/s12613-014-1014-6
Cite this article as:
V. G. Efremenko, K. Shimizu, A. P. Cheiliakh, T. V. Kozarevskaya, K. Kusumoto,  and K. Yamamoto, Effect of vanadium and chromium on the microstructural features of V-Cr-Mn-Ni spheroidal carbide cast irons, Int. J. Miner. Metall. Mater., 21(2014), No. 11, pp. 1096-1108. https://doi.org/10.1007/s12613-014-1014-6

Effect of vanadium and chromium on the microstructural features of V-Cr-Mn-Ni spheroidal carbide cast irons

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  • Corresponding author:

    V. G. Efremenko    E-mail: vgefremenko@rambler.ru

  • Received: 30 January 2014Revised: 25 May 2014Accepted: 28 May 2014
  • The objective of this investigation is to study the influence of vanadium (5.0wt%–10.0wt%) and chromium (0–9.0wt%) on the microstructure and hardness of Cr-V-Mn-Ni white cast irons with spheroidal vanadium carbides. The alloys’ microstructural features are presented and discussed with regard to the distribution of phase elements. The structural constituents of the alloys are spheroidal VC, proeutectoid cementite, ledeburite eutectic, rosette-shaped carbide eutectic (based on M7C3), pearlite, martensite, and austenite. Their combinations and area fraction (AF) ratios are reported to be influenced by the alloys’ chemical composition. Spheroidized VC particles are found to be sites for the nucleation of carbide eutectics. Cr and V are shown to substitute each other in the VC and M7C3 carbides, respectively. Chromium alloying leads to the formation of a eutectic (γ-Fe + M7C3), preventing the appearance of proeutectoid cementite in the structure. Vanadium and chromium are revealed to increase the total carbide fraction and the amount of austenite in the matrix. Cr is observed to play a key role in controlling the metallic matrix microstructure.
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