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Articles

Interpretation of effect of matrix hardening on tensile and impact strength of sintered steels

Pages 167-172 | Published online: 19 Jul 2013

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D. Toledo, I. Cristofolini, A. Molinari, V. Arnhold, V. Kruzhanov, P. Vervoort, M. Dougan, L. Wimbert, V. Bonnefoy, R. Hellein, H. Weber, F. Baumgärtner, J. Sicre, C. Larsson & M. Schneider. (2020) High temperature sintering and its effect on dimensional and geometrical precision and on microstructure of low alloyed steels. Powder Metallurgy 63:2, pages 80-93.
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Lin Zhang, Zhiwei Liu, Haishen Sun, Mingli Qin, Xuanhui Qu & Yuanzhi Lyu. (2017) Dynamic properties of high-density low-alloy PM steels. Powder Metallurgy 60:1, pages 56-65.
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I Cristofolini, M Pilla, G Straffelini & A Molinari. (2013) Design guidelines for PM parts subject to dry rolling–sliding wear. Powder Metallurgy 56:2, pages 124-134.
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T. Marcu, A. Molinari, G. Straffelini & S. Berg. (2005) Microstructure and tensile properties of 3%Cr–0·5%Mo high carbon PM sintered steels. Powder Metallurgy 48:2, pages 139-143.
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Articles from other publishers (10)

Alessio Suman, Annalisa Fortini, Ottavia Vezzani & Mattia Merlin. (2023) Microstructural Investigation and Impact Strength of Sinter-Hardened PM Steels: Influence of Ni Content and Tempering Temperature. Metals 13:12, pages 1940.
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O. Vezzani, A. Fortini, A. Blum, C. Morales, C. Soffritti & M. Merlin. (2023) Fractographic investigation and microstructural characterization of a diffusion-bonded sinter-hardened steel: A case study. Engineering Failure Analysis 152, pages 107442.
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J. Zhang, J. Schumacher & B. Clausen. (2023) A comprehensive study on the influence of the scan pattern in two porosity levels and surface roughness on the fatigue behavior of laser powder bed fusion manufactured specimens made of steel H13. Journal of Materials Science 58:25, pages 10457-10483.
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D. Toledo Dos Santos, A. Salemi, I. Cristofolini & A. Molinari. (2019) The tensile properties of a Powder Metallurgy Cu–Mo–Ni diffusion bonded steel sintered at different temperatures. Materials Science and Engineering: A 759, pages 715-724.
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S. Tesfaye Mekonone, I. Cristofolini, W. Pahl & A. Molinari. (2018) Surface Hardening Vs. Surface Embrittlement in Carburizing of Porous Steels. Powder Metallurgy Progress 18:1, pages 21-30.
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G. Straffelini, M. Benedetti & V. Fontanari. (2014) Damage evolution in sinter-hardening powder-metallurgy steels during tensile and fatigue loading. Materials & Design 61, pages 101-108.
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Giulia Cipolloni, Cinzia Menapace, Ilaria Cristofolini & Alberto Molinari. (2014) A quantitative characterisation of porosity in a Cr?Mo sintered steel using image analysis. Materials Characterization 94, pages 58-68.
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Eva Dudrová, Marco Actis Grande, Mario Rosso, Margita Kabátová, Róbert Bidulský & Eduard Hryha. (2011) Improvement of Mechanical Properties of Fe-Cr-Mo-[Cu-Ni]-C Sintered Sintered Steels by Sinter Hardening. Materials Science Forum 672, pages 31-38.
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Z. Oksiuta, E. Boehm-Courjault & N. Baluc. (2010) Relation between microstructure and Charpy impact properties of an elemental and pre-alloyed 14Cr ODS ferritic steel powder after hot isostatic pressing. Journal of Materials Science 45:14, pages 3921-3930.
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T.K. Kandavel, R. Chandramouli & M. Ravichandran. (2010) Experimental study on the plastic deformation and densification characteristics of some sintered and heat treated low alloy powder metallurgy steels. Materials & Design 31:1, pages 485-492.
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