The Structure and Properties of 65 wt.% Fe–35 wt.% FKh800 Chromium Carbide Steel Doped with Titanium Boride Additions

Author:

Kyryliuk Y.S.,Maslyuk V.A.,Mamonova A.A.,Gripachevsky O.M.,Varchenko V.T.

Publisher

Springer Science and Business Media LLC

Subject

Materials Chemistry,Metals and Alloys,Mechanics of Materials,Condensed Matter Physics,Ceramics and Composites

Reference13 articles.

1. A. Bondar, V. Ivanchenko, A. Kozlov A, and I.-C. Tedenac, “Carbon–chromium–iron,” in: Landolt–Börnstein, Numerical Data and Functional Relationships in Science and Technology, W. Martienssen (ed.), New Series. Group IV: Physical Chemistry, Ternary Alloy Systems, Phase Diagrams, Crystallographic and Thermodynamic Data Critically Evaluated by MSIT, Vol. 11D2, Springer–Verlag, Berlin, Heidelberg (2007), pp. 1–55.

2. D.N. Hanlon, W.M. Rainforth, and C.M. Sellars, “The rolling/sliding wear response of conventionally processed and spray formed high chromium content cast iron at ambient and elevated temperature,” Wear, 225–229, 587–599 (1999).

3. X.H. Tang, “Microstructure of high (45 wt.%) chromium cast irons and their resistances to wear and corrosion,” Wear, 271, 1426–1431 (2011).

4. O.M. Shevchenko, “Carbide steels. Grades and production methods (overview),” Sovr. Probl. Fiz. Materialoved. Ser. Fiz. Khim. Osn. Tekhnol. Poroshk. Mater., Issue 20, 51–64 (2011).

5. V.A. Maslyuk, E.S. Karaimchuk, M.I. Podoprygora, V.T. Varchenko, and Ya.A. Sytnyk, “Structure and mechanical and tribotechnical properties of powder iron–high-carbon ferrochrome doped with Ni3B additions,” Powder Metall. Met. Ceram., 57, No. 3–4, 175–181 (2018).

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