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Articles

Sintering and Microstructure of Phosphorus Steels

Pages 285-291 | Published online: 19 Jul 2013

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C. Luno-Bilbao, N.G. Polvorosa, G. Peña, A. Fayanas, J. Perez, I. Guruceaga, A. Veiga & I. Iturriza. (2021) Powder metallurgy technology at the service of diamond-impregnated tool production. Powder Metallurgy 64:4, pages 331-340.
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G. Straffelini, V. Fontanari, A. Molinari & B. Tesi. (1993) Tensile and Fatigue Behaviour of Phosphorus Alloyed Sintered Steels. Powder Metallurgy 36:2, pages 135-141.
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Articles from other publishers (15)

C. Luno-Bilbao, N. Vielma, A. Veiga, S. Ausejo, G. Peña & I. Iturriza. (2023) About the relationship of the processing conditions, mechanical properties, and microstructure of a co-precipitated Fe/Cu prealloyed powder. Heliyon 9:3, pages e13931.
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S. K. Chaurasia, Vikram V. Dabhade, Ujjwal Prakash & S. K. Nath. (2021) Effect of Carbon Addition on Mechanical Properties and Dry Sliding Behavior of Fe-0.65P Alloy Processed by Powder Forging. Transactions of the Indian Institute of Metals 74:3, pages 735-742.
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Yoo-Young Kim & Kwon-Koo Cho. (2020) Effect of Phosphorus Addition on Microstructure and Mechanical Properties of Sintered Low Alloy Steel. Journal of Korean Powder Metallurgy Institute 27:1, pages 31-36.
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Herbert Danninger, Vassilka Vassileva & Christian Gierl-Mayer. (2017) Embrittling Components in Sintered Steels: Comparison of Phosphorus and Boron. Powder Metallurgy Progress 17:1, pages 47-64.
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Shanquan Jia, Zhiyu Xiao, Jun Wang, Shuo Yang, Hangjian Guan & Quanli Zhu. (2016) Microstructure and mechanical properties of nonmagnetic Fe-25Mn-xCu-C steels by super solidus liquid phase sintering. Materials Research Express 3:11, pages 116502.
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B. Üregen, C. Gierl-Mayer & H. Danninger. (2016) Phosphorus in Sintered Steels: Effect of Phosphorus Content and P Carrier in Sintered Steel Fe-C-P. Powder Metallurgy Progress 16:1, pages 1-13.
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A. Muthuchamy, Rajiv Kumar, A. Raja Annamalai, Dinesh K. Agrawal & Anish Upadhyaya. (2016) An investigation on effect of heating mode and temperature on sintering of Fe-P alloys. Materials Characterization 114, pages 122-135.
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Ming-Wei Wu & Wen-Zhang Cai. (2016) Phase identification in boron-containing powder metallurgy steel using EBSD in combination with EPMA. Materials Characterization 113, pages 90-97.
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H. Danninger & B. Üregen. (2016) Phosphorus in Sintered Steels: Interaction of Phosphorus with Mo. Powder Metallurgy Progress 16:1.
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Ming-Wei Wu, Yu-Chi Fan, Her-Yueh Huang & Wen-Zhang Cai. (2015) Liquid Phase Sintering of Boron-Containing Powder Metallurgy Steel with Chromium and Carbon. Metallurgical and Materials Transactions A 46:11, pages 5285-5295.
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Ming-Wei Wu. (2014) The Influences of Carbon and Molybdenum on the Progress of Liquid Phase Sintering and the Microstructure of Boron-Containing Powder Metallurgy Steel. Metallurgical and Materials Transactions A 46:1, pages 467-475.
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Antonio Itamar Ramos Filho, Renan Schroeder, Cristiano Binder & Aloisio N. Klein. (2014) Development of Fe-P Matrix Composites Containing Embedded Solid Lubricants. Materials Science Forum 802, pages 96-101.
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Dragan Krecar, Jürgen Zwanziger, Vassilka Vassileva, Herbert Danninger & Herbert Hutter. (2005) 2D and 3D SIMS investigations on sintered steels. Applied Surface Science 252:1, pages 282-285.
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Wen-Fung Wang. (2005) Effect of alloying elements and processing factors on the microstructure and hardness of sintered and induction-hardened Fe–C–Cu alloys. Materials Science and Engineering: A 402:1-2, pages 92-97.
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G Straffelini & A Molinari. (1996) Microstructure and mechanical reliability of powder metallurgy (P/M) ferrous alloys. Journal of Materials Engineering and Performance 5:1, pages 27-33.
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