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Effectiveness of reducing agents during sintering of Cr-prealloyed PM steels

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E. Hryha, L. Nyborg & L. Alzati. (2015) Dissolution of carbon in Cr-prealloyed PM steels: effect of carbon source. Powder Metallurgy 58:1, pages 7-11.
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Articles from other publishers (7)

L. Dyachkova. (2020) On Increasing Powder Carbon Steels Properties Using Activating Additives. International Journal of Applied Mechanics and Engineering 25:2, pages 192-201.
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V. Yu. Dorofeyev, A. N. Sviridova & L. I. Svistun. (2020) Influence of Sodium Microalloying on Rolling Contact Endurance and Mechanical Properties of Hot-Deformed Powder Steels. Russian Journal of Non-Ferrous Metals 61:3, pages 354-361.
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L. N. Dyachkova. (2020) Features of the formation of the structure and properties of powder steels with additives that activate diffusion processes during sintering. Proceedings of the National Academy of Sciences of Belarus, Physical-Technical Series 65:1, pages 43-53.
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V. Yu. DorofeyevA. N. SviridovaL. I. Svistun. (2019) The effect of sodium microalloying on the rolling contact fatigue and mechanical properties of hot-deformed powder steels. Izvestiya vuzov. Poroshkovaya metallurgiya i funktsional’nye pokrytiya:4, pages 4-13.
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Sandeep Chauhan, Vikas Verma, Ujjwal Prakash, P.C. Tewari & Dinesh Khanduja. (2017) Studies on induction hardening of powder-metallurgy-processed Fe–Cr/Mo alloys. International Journal of Minerals, Metallurgy, and Materials 24:8, pages 918-925.
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Maciej Sulowski. (2016) Sintered Structural Steels Containing Mn, Cr And Mo – The Summary of the Investigations. Powder Metallurgy Progress 16:2, pages 59-85.
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. (2015) Powder Forming. Journal of the Japan Society for Technology of Plasticity 56:655, pages 641-645.
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