1. Gamanyuk, S.B., Zyuban, N.A., Rutskii, D.V., and Babin, G.V., Understanding the effect of deoxidation regime on the formation and arrangement of sulphide inclusions and on mechanical properties in steel, CIS Iron Steel Rev., 2018, no. 2, pp. 44–48. https://doi.org/10.17580/cisisr.2018.02.09
2. Zaitsev, A.I., Knyazev, A.V., Amezhnov, A.V., Koldaev, A.V., and Stepanov, A.B., Effect of nonmetallic inclusions and impurities on the properties and quality characteristics of round rolled product made of special alloyed steels, Metallurgist, 2017, vol. 61, nos. 7–8, pp. 679–685.
3. Rodionova, I.G., Baklanova, O.N., Amezhnov, A.V., Knyazev, A.V., Zaitsev, A.I., and Feoktistova, M.V., Effect of nonmetallic inclusions on corrosion resistance of carbon and low-alloy steels for oil industry pipelines, Stal, 2017, no. 10, pp. 41–48.
4. Efron, L.I., Metallovedenie v bol’shoi metallurgii. Trubnye stali (Metal Science in Large-Scale Metallurgy: Pipe Steels), Moscow: Metallurgiya, 2012.
5. Pales, J.R., Edwards, W.P., and Clay Beriger, W.H., The effect of forging practices and sulfide inclusions on the mechanical properties and fatigue performance of large crank shafts, Proc. IFM
2011: 18th Int. Forgemasters Meeting, Pittsburgh, Pa.: Santander, 2011, pp. 443–443.