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Articles

Sinterability Study of PM M2 and T15 High Speed Steels Reinforced with Tungsten and Titanium Carbides

Pages 55-66 | Published online: 19 Jul 2013

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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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Articles from other publishers (22)

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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Huaizhuang Luan, Jie Chen, Rutie Liu, Xiang Xiong, Fangping Ouyang & Junhao Yang. (2022) Deoxidation and densification mechanisms in a pre-sintered Fe-WC-Mo2C-Cr3C2-VC-C alloy. Journal of Materials Research and Technology 18, pages 3808-3818.
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Bo Zhao, Min Xia & Chang-Chun Ge. (2022) Study on microstructure, phase transformation behavior of T15 high-speed steel and the effect of adding REEs. Metallurgical Research & Technology 119:5, pages 525.
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Marcin Madej, Beata Leszczyńska-Madej & Dariusz Garbiec. (2020) High Speed Steel with Iron Addition Materials Sintered by Spark Plasma Sintering. Metals 10:11, pages 1549.
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Gyeong Yun Baek, Gwang Yong Shin, Eun Mi Lee, Do Sik Shim, Ki Yong Lee, Hi-Seak Yoon & Myoung Ho Kim. (2017) Mechanical characteristics of a tool steel layer deposited by using direct energy deposition. Metals and Materials International 23:4, pages 770-777.
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Kuo-Tsung Huang, Shih-Hsien Chang & Po-Ting Yeh. (2017) Microstructures and Mechanical Properties of TaC Added to Vanadis 4 Tool Steel through Vacuum Sintering and Heat Treatments. ISIJ International 57:7, pages 1252-1260.
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C. Garc?a, A. Romero, G. Herranz, Y. Blanco & F. Martin. (2016) Effect of vanadium carbide on dry sliding wear behavior of powder metallurgy AISI M2 high speed steel processed by concentrated solar energy. Materials Characterization 121, pages 175-186.
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Marcin Madej. (2015) Infiltration as a Method of Fabrication of HSS Based Composites. Key Engineering Materials 641, pages 141-148.
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M. Madej. (2015) Some Aspects Of Infiltration Of High Speed Steel Based Composites With Iron Addition. Archives of Metallurgy and Materials 60:2.
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Wen Yan Wang, Pei Wang, Jing Pei Xie, Gao Lu, Xiao Ming Dong & Hui Wu Yu. (2011) Reinforcement Phase of Situ TiC with the Laser Surface Alloying on Steel C1045. Applied Mechanics and Materials 117-119, pages 409-413.
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Marcin Madej. (2010) The Properties and Structure of Infiltrated High Speed Steel-Tungsten Carbide-Copper Composites. Materials Science Forum 636-637, pages 184-191.
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A. Fais & G. Maizza. (2008) Densification of AISI M2 high speed steel by means of capacitor discharge sintering (CDS). Journal of Materials Processing Technology 202:1-3, pages 70-75.
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Yong-Hee Lee, Dong Kyu ParkSung Yeal Bea & In Sup Ahn. (2007) Densification Behaviors of Fe-TiC System during Spark Plasma Sintering. Materials Science Forum 534-536, pages 509-512.
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R. Colaço, E. Gordo, E.M. Ruiz-Navas, M. Otasevic & R. Vilar. (2006) A comparative study of the wear behaviour of sintered and laser surface melted AISI M42 high speed steel diluted with iron. Wear 260:9-10, pages 949-956.
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F. Velasco, E. Gordo, R. Isabel, E.M. Ruiz-Navas, A. Bautista & J.M. Torralba. (2001) Mechanical and wear behaviour of high-speed steels reinforced with TiCN particles. International Journal of Refractory Metals and Hard Materials 19:4-6, pages 319-323.
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N.H Loh, S.B Tor & K.A Khor. (2001) Production of metal matrix composite part by powder injection molding. Journal of Materials Processing Technology 108:3, pages 398-407.
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W.C. Zapata, C.E. da Costa & J.M. Torralba. (1995) Sinterability and wear behaviour of P/M M2 high speed steel reinforced with NbC composite. Journal of Materials Processing Technology 53:1-2, pages 483-490.
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