Obrabotka Metallov 2019 Vol. 21 No. 4

OBRABOTKAMETALLOV Vol. 21 No. 4 2019 125 MATERIAL SCIENCE References 1. Biruni A.R. Sobranie svedenii dlya poznaniya dragotsennostei (mineralogiya) [Collection of information for the knowledge of jewelry (mineralogy)]. Leningrad, Academy of Sciences of the Soviet Union Publ., 1963. 520 p. (In Russian). 2. Gaev I.S. Bulat i sovremennye zhelezouglerodistye splavy [Damask steel and modern iron-carbon alloys]. Metallovedenie i termicheskaya obrabotka metallov = Metal Science and Heat Treatment, 1965, no. 9, pp. 17–24. ( In Russian ). 3 . Zschokke В. Du Damasse et des Lamés de Damast. La Revue de Metallurgie , 1924, no. 21, pp. 639–669. DOI: 10.1051/metal/192421110639. 4. Panseri C . Damascus steel in legend and in reality. Gladius, 1965, no. 4, pp. 5–66. DOI: 10.3989/gladi- us.1965.188. 5. Sunada H., Wadsworth J., Lin J., Sherby O.D. Mechanical properties and microstructure of heat-treated ultra- high carbone steels. Materials Science and Engineering, 1979, no. 38, pp. 35–40. 6. Wadsworth J., Sherby O.D. On the Bulat–Damascus steels revisited. Progress in Materials Science , 1980, no. 25, pp. 35–68. 7. Sherby O.D., Wadsworth J. Damascus steel. Scientific American , 1985, no. 252 (2), pp. 112–120. DOI: 10.1038/ scientificamerican0285-112. 8. Sherby O.D., Wadsworth J. Ultrahigh carbon steels, Damascus steels and superplasticity. 9 th International Met- allurgical and Materials Congress, Istanbul, Turkey. United States, 1997, pp. 1–22. DOI: 10.2172/555400. 9. Taleff E.M., Bramfitt B.L., Syn Ch.K., Lesuer D.R., Wadsworth J., Sherby O.D. Processing, structure, and properties of a rolled, UHC steel plate exhibiting a damask pattern. Materials Characterization , 2001, vol. 46, pp. 11–18. DOI: 10.1016/S1044-5803(00)00087-5. 10. Golikov I.N. Dendritnaya likvatsiya v stali [Dendritic segregation in steel]. Moscow, Metallurgizdat Publ., 1958. 206 p. 11. Tavadze F.N.,Amaglobeli B.G., Inanishvili G.V., Eterashvili T.V. Elektronno-mikroskopicheskie issledovaniya Bulatnoi stali [Electron microscopic examination of Damascus steel]. Soobshcheniya Akademii nauk Gruzinskoi SSR = Bulletin of the Academy of Sciences of the Georgian SSR , 1984, no. 3 (113), pp. 601–604. 12. Tavadze F.N., Amaglobeli B.G., Inanishvili G.V. Mekhanicheskie svoistva bulatnoi stali [Damask steel mechanical properties]. Soobshcheniya Akademii nauk Gruzinskoi SSR = Bulletin of the Academy of Sciences of the Georgian SSR , 1984, no. 3 (113), pp. 589–592. 13. Verhoeven J.D., Jones L.L. Damascus steel, Part II: Origin of the Damask pattern. Metallographe, 1987, vol. 20, pp. 153–180. DOI: 10.1016/0026-0800(87)90027-9. 14. Verhoeven J.D., Pendray A.H., Gibson E.D. Wootz Damascus steel blades. Materials Characterization, 1996, vol. 37, pp. 9–22. DOI: 10.1016/s1044-5803 (96)00019-8. 15. Verhoeven J.D., Pendray A.N., Dauksch W.E. The key role of impurities in ancient Damascus steel blades. Journal of Metallurgy , 1998, vol. 50, pp. 58–64. DOI: 10.1007/s11837-998-0419-y. 16. Verhoeven J.D. Pattern Formation in wootz Damascus steel swords and blades. Indian Journal of History of Science , 2007, vol. 42.4, pp. 559–574. 17. Taganov I.N. Zakat legend o bulate [Damask legends sunset]. Kalashnikov , 2009, no. 11, pp. 92–97. (In Russian). 18. Sukhanov D.A. Influence of phosphorus impurity on the structure and nature of the destruction of the genuine Damascus steel. International Journal of Engineering Technologies and Management Research , 2018, vol. 5 (4), pp. 26–37. DOI: 10.5281/zenodo.1244689. 19. Sukhanov D.A., Plotnikova N.V. Influence of the distribution of excess carbides on the properties of genuine Damascus steel. Materials Sciences and Applications, 2019, vol. 10, pp. 118–136. DOI: 10.4236/msa.2019.102010. 20. Oyama T., Sherby O.D., Wadsworth J., Walser B. Application of the divorced eutectoid transformation to the development of fine-grained, spheroidized structures in UHC steels. Scripta Metallurgica , 1984, vol. 18, pp. 799–804. 21. Sukhanov D.A., Arkhangelsky L.B., Plotnikova N.V., Belousova N.S. Morphology of excess carbides Damascus steel. Journal of Materials Science Research , 2016, vol. 5 (3), pp. 59–65. DOI: 10.5539/jmsr.v5n3p59.

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