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Articles

Supersolidus Sintering of High Speed Steels: Part 1: Sintering of Molybdenum Based Alloys

Pages 213-219 | Published online: 19 Jul 2013

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Junhao Yang, Rutie Liu, Xiang Xiong, Huaizhuang Luan, Yanrong Hao, Baozhen Yang & Jie Chen. (2022) Microstructure and mechanical properties of high carbon M2 powder metallurgy high-speed steel prepared by the carbide addition. Powder Metallurgy 65:5, pages 403-412.
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Haixia Sun, Fang Yang, Qian Qin, Biao Zhang, Alex A. Volinsky & Zhimeng Guo. (2020) In-situ VN reinforced powder metallurgy M30 steels prepared from water atomized powers via pressureless sintering. Powder Metallurgy 63:1, pages 43-53.
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S. Eroglu. (2010) Sintering and Mechanical Properties of AISI M2 High-Speed Steel Powder Molded at Low Pressures. Materials and Manufacturing Processes 25:9, pages 1025-1029.
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C.S. Wright, A.S. Wronski & I. Iturriza. (2000) Development of robust processing routes for powder metallurgy high speed steels. Materials Science and Technology 16:9, pages 945-957.
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C.S. Wright, M. Youseffi, A.S. Wronski, I. Ansara, M. Durand-Charre, J. Mascarenhas, M.M. Oliveira, F. Lemoisson & Y. Bienvenu. (1999) Supersolidus liquid phase sintering of high speed steels: Part 3: computer aided design of sinterable alloys. Powder Metallurgy 42:2, pages 131-146.
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B. Martin, C. S. Wright, L. Vincent & A. S. Wronski. (1999) Potential of sintered high speed steels in antifretting applications. Powder Metallurgy 42:1, pages 63-69.
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Articles from other publishers (29)

Marcin Madej, Beata Leszczyńska-Madej & Dariusz Garbiec. (2022) Effect of Sintering Temperature and Iron Addition on Properties and Microstructure of High Speed Steel Based Materials Produced by Spark Plasma Sintering Method. Materials 15:21, pages 7607.
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T. T. Molla, A. Atthapreyangkul & G. B. Schaffer. (2022) Computational Alloy Design for Process-Related Uncertainties in Powder Metallurgy. Integrating Materials and Manufacturing Innovation 11:2, pages 172-186.
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Baozhen Yang, Xiang Xiong, Rutie Liu, Jie Chen, Junhao Yang & Huaizhuang Luan. (2021) Effect of yttrium hydride addition on microstructure and properties of powder metallurgy CM2 high speed steel. Journal of Materials Research and Technology 14, pages 1275-1283.
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Peeyush Nandwana, Rangasayee Kannan & Derek Siddel. (2020) Microstructure evolution during binder jet additive manufacturing of H13 tool steel. Additive Manufacturing 36, pages 101534.
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N.S. Myers & D.F. Heaney. 2012. Handbook of Metal Injection Molding. Handbook of Metal Injection Molding 516 525 .
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Manuela Covaciu, Traian Canta & Elena Gordo. (2007) Characterization and Sinterability Study of P.M. High-Speed Steel Obtained by Water Atomization. Advanced Materials Research 23, pages 147-150.
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Gemma Herranz, B. Levenfeld & A. Várez. (2007) Effect of Residual Carbon on the Microstructure Evolution during the Sintering of M2 HSS Parts Shaping by Metal Injection Moulding Process. Materials Science Forum 534-536, pages 353-356.
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P. Romano, F.J. Velasco & J.M. Torralba. (2007) Starch Consolidation as a New Process for Manufacturing Powder Metallurgy High-Speed Steels. Metallurgical and Materials Transactions A 38:1, pages 159-168.
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Oscar O. Araujo Filho, Maurício David Martins das Neves, João Franklin Liberati, Luís Carlos Elias da Silva, Lucio Salgado & Francisco Ambrozio Filho. (2006) Sintering of AISI M3:2 High Speed Steel – Part II. Materials Science Forum 530-531, pages 358-363.
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João M.G. Mascarenhas, Manuela Oliveira & C. Steven Wright. (2006) Effect of Vanadium and Carbon Content on the Sinterability of Water Atomised High Speed Steel Powders. Materials Science Forum 514-516, pages 529-533.
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Isabel M. Martins, Luis Esperto & Mário J.G. Santos. (2006) Sintering M3/2 High Speed Steel Powder by DMLS Process. Materials Science Forum 514-516, pages 1506-1510.
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Z.Y. Liu, N.H. Loh, K.A. Khor & S.B. Tor. (2001) Mechanical alloying of TiC/M2 high speed steel composite powders and sintering investigation. Materials Science and Engineering: A 311:1-2, pages 13-21.
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Z.Y Liu, N.H Loh, K.A Khor & S.B Tor. (2000) Microstructure evolution during sintering of injection molded M2 high speed steel. Materials Science and Engineering: A 293:1-2, pages 46-55.
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