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Articles

Replacement of vanadium by niobium in 86–5–2 high-speed tool steels

Pages 50-57 | Published online: 19 Jul 2013

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Shi Gongqi, Ding Peidao & Zhou Shouze. (1992) Effect of vanadium on cast carbide in high speed steels. Materials Science and Technology 8:5, pages 449-454.
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M. Igharo & J. V. Wood. (1989) Investigation of M2 High Speed Steel Produced by Osprey Process. Powder Metallurgy 32:2, pages 124-131.
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Articles from other publishers (17)

Hao-nan Li, Bo-han Zhang, Gui-ying Qiao, Nai-bo Yuan & Fu-ren Xiao. (2023) Refinement effect of NbC particle additions on the microstructure of high-speed steel rolls. Journal of Materials Research and Technology 26, pages 1697-1711.
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Hossam Halfa. (2022) Microstructure–Wear Resistance Relationship of Nitrogen-Containing High-Speed Tool Steel, AISIM41: Non-equilibrium Solidification. Metallography, Microstructure, and Analysis 11:3, pages 495-512.
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Talal Omar & Marcello M. Veiga. (2021) Is niobium critical for Canada?. The Extractive Industries and Society 8:2, pages 100898.
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L. Lu, L.G. Hou, J.X. Zhang, H.B. Wang, H. Cui, J.F. Huang, Y.A. Zhang & J.S. Zhang. (2016) Improved the microstructures and properties of M3:2 high-speed steel by spray forming and niobium alloying. Materials Characterization 117, pages 1-8.
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Harry W. Rayson. 2006. Materials Science and Technology. Materials Science and Technology.
Jae-Hwan Ahn, Yong-Jin Kim, Sungkyu Lee & Hyungsik Chung. (2005) Effect of niobium on the mechanical properties of powder-metallurgy processed high-speed steels. Zeitschrift für Metallkunde 96:12, pages 1426-1430.
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Leszek A Dobrzański & Adam Zarychta. (1998) The structure and properties of W–Mo–V high-speed steels with increased contents of Si and Nb after heat treatment. Journal of Materials Processing Technology 77:1-3, pages 180-193.
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S. Karagöz & H. F. Fischmeister. (1998) Cutting performance and microstructure of high speed steels: Contributions of matrix strengthening and undissolved carbides. Metallurgical and Materials Transactions A 29:1, pages 205-216.
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L.A. Dobrzański, A. Zarychta & M. Ligarski. (1997) High-speed steels with addition of niobium or titanium. Journal of Materials Processing Technology 63:1-3, pages 531-541.
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S. Karagöz & H. F. Fischmeister. (1988) Niobium-Alloyed high speed steel by powder metallurgy. Metallurgical Transactions A 19:6, pages 1395-1401.
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R. Piotrkowski & R. A. Versaci. (1987) Analysis of stable carbides in M2 type steels containing niobium. Journal of Materials Science Letters 6:12, pages 1382-1384.
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R. Kesri & M. Durand-Charre. (1987) Phase equilibria, solidification and solid-state transformations of white cast irons containing niobium. Journal of Materials Science 22:8, pages 2959-2964.
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A.M. El-Rakayby & B. Mills. (1986) The role of primary carbides in the wear of high speed steels. Wear 112:3-4, pages 327-340.
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Kingo KIYONAGAHideki NAKAMURANorimasa UCHIDA. (1982) Trend of High Speed Tool Steel. Tetsu-to-Hagane 68:1, pages 34-41.
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Sadi Karag�z, Elfriede Kudielka & Hellmut Fischmeister. (1981) Menge und Zusammensetzung der Carbide in einem niobhaltigen Schnellarbeitsstahl vom Typ M7Volume fractions and compositions of the carbide phases in a Nb-alloyed M7 high speed steel. Mikrochimica Acta 76:5-6, pages 391-419.
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Masanori UEKISatoshi KADO. (1981) Metallic Resources Series-Niobium-. Tetsu-to-Hagane 67:10, pages 1696-1707.
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Heinz Kudielka. (1980) Röntgenbeugungsuntersuchungen über Phasenumwandlungen in vanadin- und niobhaltigen Schnellarbeitsstählen. Archiv für das Eisenhüttenwesen 51:9, pages 389-392.
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