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Articles

A Quantitative Theory for Supersolidus Liquid Phase Sintering

Pages 101-107 | Published online: 19 Jul 2013

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Somayeh Ghasemi, Maziyar Azadbeh, Mehrdad Mousapour, Ahad Mohammadzadeh, Herbert Danninger & Nushin Salimi. (2020) The role of pore evolution during supersolidus liquid phase sintering of prealloyed brass powder. Powder Metallurgy 63:3, pages 187-196.
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RandallM. German. (1997) Thermal Processing Optimization of Injection Molded Stainless Steel Powders. Materials and Manufacturing Processes 12:4, pages 713-735.
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Articles from other publishers (15)

Raquel de Oro Calderon, Christian Gierl-Mayer & Herbert Danninger. 2022. Encyclopedia of Materials: Metals and Alloys. Encyclopedia of Materials: Metals and Alloys 481 492 .
F. Großwendt, A. Röttger, A. Strauch, A. Chehreh, V. Uhlenwinkel, R. Fechte-Heinen, F. Walther, S. Weber & W. Theisen. (2021) Additive manufacturing of a carbon-martensitic hot-work tool steel using a powder mixture – Microstructure, post-processing, mechanical properties. Materials Science and Engineering: A 827, pages 142038.
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Herbert Danninger, Raquel de Oro Calderon & Christian Gierl-Mayer. (2021) The Use of Transient Liquid Phases in Powder Metallurgy. Materials Science Forum 1016, pages 69-76.
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K. S. Senkevich. (2020) Effect of the Phase Composition of a Titanium Nickelide-Based Alloy on the Formation of Liquid in Sintering. Russian Metallurgy (Metally) 2020:5, pages 549-557.
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P. K. Farayibi, M. Blüm & S. Weber. (2020) Heat Treatment Optimisation of Supersolidus Sintered Steel Compounds. HTM Journal of Heat Treatment and Materials 75:1, pages 48-62.
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Mahesh Paidpilli, Gaurav Kumar Gupta & Anish Upadhyaya. (2017) Sintering Response of Aluminum 6061-TiB2 Composite: Effect of Prealloyed and Premixed Matrix. Journal of Materials Engineering and Performance 26:9, pages 4470-4480.
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Mohamed N. Rahaman. 2015. Powder Metallurgy. Powder Metallurgy 205 236 .
C. Padmavathi, A. Upadhyaya & D. Agrawal. (2011) Effect of microwave and conventional heating on sintering behavior and properties of Al–Mg–Si–Cu alloy. Materials Chemistry and Physics 130:1-2, pages 449-457.
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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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B. Šuštaršič, L. Kosec, M. Kosec, B. Podgornik & S. Dolinšek. (2006) The influence of MoS2 additions on the densification of water-atomized HSS powders. Journal of Materials Processing Technology 173:3, pages 291-300.
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Randall M. German. (2006) Establishment of the Scientific Underpinnings in Powder Injection Molding and Liquid Phase Sintering. Journal of the Japan Society of Powder and Powder Metallurgy 53:9, pages 760-768.
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B Sustarsic, L Kosec, S Dolinsek & B Podgornik. (2003) The characteristics of vacuum sintered M3/2 type HSSs with MoS2 addition. Journal of Materials Processing Technology 143-144, pages 98-104.
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P. Muro, S. Gimenez & I. Iturriza. (2002) Sintering behaviour and fracture toughness characterization of D2 matrix tool steel, comparison with wrought and PM D2. Scripta Materialia 46:5, pages 369-373.
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B Šuštaršič, L Kosec, M Jenko & V Leskovšek. (2001) Vacuum sintering of water-atomised HSS powders with MoS2 additions. Vacuum 61:2-4, pages 471-477.
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Randall M. German. (1997) Supersolidus liquid-phase sintering of prealloyed powders. Metallurgical and Materials Transactions A 28:7, pages 1553-1567.
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