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The Effects of Post-Sintering Treatments on Microstructure and Mechanical Properties of Mn-Mo Steel

. 231 [12] Ciaś, A., Mitchell, SC., Pilch, K., Ciaś, H., Sułowski, M., Wroński, AS.: Powder Metallurgy, vol. 46, 2003, no. 2, p. 165 [13] Fiał, C., Dudrová, E., Kabátová, M., Kupková, M., Selecká, M., Sułowski, M., Ciaś, A.: Powder Metallurgy Progress, vol. 14, 2014, no. 3, p. 137 [14] Fiał, C., Dudrová, E., Kabátová, M., Kupková, M., Selecká, M., Sułowski, M., Ciaś, A.: Powder Metallurgy Progress, vol. 15, 2015, p. 124 [15] Fiał, C., Dudrová, E., Kabátová, M., Kupková, M., Selecká, M., Sułowski, M., Ciaś, A.: Archives of Metallurgy and

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Density, Microstructure, Strength and Fractography of Spark Plasma and Conventionally Sintered Mn Steels

., Zhang, J.: Journal of American Ceramic Society, vol. 89, 2006, no. 2, p. 494 [7] Zhaohui, Z., Fuchi, W., Lin, W.: Materials Letters, vol. 62, 2008, no. 24, p. 3987 [8] Hebda, M.: Czasopismo Techniczne, z. 11, Mechanika, z. 6-M, 2012, no. 11, p. 47 [9] Cias, A.: Development and Properties of Fe-Mn-(Mo)-(Cr)-C Sintered Structural Steels. AGH – Uczelniane Wydawnictwa Naukowo-Dydaktyczne, 2004 [10] Dudrova, E., Kabatova, M. In: Fractography – Principles and Application, Workshop. March 23–25, 2015, Košice, Slovakia

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Investigation on Feedstock Preparation for Micro-Cemented Carbide Injection Molding

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The Structure and Mechanical Properties of Ni-Mo PM Steels with Addition of Mn And Cu

-Mn-(Mo)-(Cr)-C Sintered Structural Steels, 2004 [8] Fiał, C., Dudrova, E., Kabatova, M., Kupkova, M., Selecka, M., Sułowski, M., Ciaś, A.: Arch. Metall. Mater., vol. 60, 2015, p 783 [9] Ciaś, A., Czarski, A.: Arch. Metall. Mater., vol. 58, 2013, no. 4, p. 1045 [10] Zhang, Z., Frisk, K., Salwén, A., Sandström, R.: Powder Metall., vol. 47, 2004, no. 3, p. 239 [11] Lindsley, B., James, WB. In: Euro PM 2010 Florence, no. 5, 2010, p. 1 [12] Salak, A., Selecká, M.: Manganese in powder metallurgy steels, 2012 [13] Dudrova, E., Kabátová, M. In: Workshop

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Analytical Model of the Anisotropic Dimensional Change on Sintering of Ferrous PM Parts

.: Powder Metallurgy, vol. 56, 2013, no. 3, p. 189 [13] Cristofolini, I., Corsentino, N., Pilla, M., Molinari, A., Larsson, M. In: Advances in Powder Metallurgy and Particulate Materials. Vol. 11. Princeton (NJ) : Metal Powders Industry Federation, 2013, p. 49 [14] Cristofolini, I., Corsentino, N., Molinari, A., Larsson, M.: International Journal of Precision Engineering and Manufacturing, vol. 15, 2015, no. 9, p. 1865 [15] Cristofolini, I., Corsentino, N., Molinari, A., Larsson, M. In: Advances in Powder Metallurgy and Particulate Materials. Vol. 1

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Sintered Structural Steels Containing Mn, Cr And Mo – The Summary of the Investigations

Metallurgy and Particulate Materials. Vol. 10, 2001, p. 131 [11] Šalak, A.: Powder Metallurgy International, vol.16, 1984, p. 6 [12] Šalak, A., Leitner G., Hermel, W.: Powder Metallurgy International, vol. 13, 1981, p. 1 [13] James, J., Lindsley, B., Rutz, B., Narasimhan, KS. In: Proc. Euro PM2009. Vol. 1, 2009, p. 23 [14] Lindsley, B., James, J. In: Proc. 2010 PM World Congress&Exhibition. Vol. 3. Sintered steels, 2010, p. 151 [15] Bergman, O., Bengtsson, S. In: Euro PM2009, Sintered Steels II

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Manufacturing of Valve Bridge Component Utilizing Lean Alloyed Powders and Vacuum Sintering

. [12] Azadbeh M., Mohammadzadeh A., Danninger H., Gierl-Mayer C.: Metall. Mater. Trans. B, vol. 46B, 2015, p. 1471. [13] Dahlström M.: Advances in Powder Metallurgy and Particulate Materials - 2014, Proceedings of the 2014 World Congress on Powder Metallurgy and Particulate Materials, PM 2014, p. 660.

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The Effect of Powder Ball Milling on the Microstructure and Mechanical Properties of Sintered Fe-Cr-Mo-Mn-(Cu) Steel

., Bellon, P.: Acta Materialia, vol. 50, 2002, p. 4711 [8] Oleszak, D.: Acta Physica Polonica A, vol. 96, 1999, no. 1, p. 101 [9] Jurczyk, M.: Mechaniczna synteza. Poznań : Wyd. Politechniki Poznańskiej, 2003 [10] Metalog Guide, Struers, 2001 [11] Mukhtar, NZF., Borhan, Z., Rusop, M., Bin Adullah, S.: Advanced Materials Research, vol. 795, 2013, p. 711 [12] Parvin, N., Assadifard, R., Safarzadeh, P., Sheibani, S., Marashi, P.: Materials Science and Engineering A, vol. 492, 2008, p. 134 [13] Ciaś, A.: Private correspondence, 2017

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Applying “Spark Plasma Sintering” Technology to Enhance the Resistance to Contact Fatigue of Sintered Steel Based on Astaloy CRL

. 16, 2010, no. 1, p. 12 [5] Čerňan, J., Rodziňák, D., Semrád, K., Briančin, J.: Powder Metallurgy Progress, vol. 13, 2013, no. 2, p. 63 [6] Čerňan, J., Rodziňák, D., Briančin, J.: Powder Metallurgy, vol. 57, 2014, no. 14, p. 258 [7] Rodziňák, D.: Kovové materiály, vol. 24, 1986, p. 102 [8] Omori, M.: Materials Science and Engineering: A , vol. 287, 2000, no. 2, p. 183 http://dx.doi.org/10.1016/S0921-5093(00)00773-5 [9] Chen, W. et all: Materials Science and Engineering: A, vol. 394, 2005, no. 1–2, p. 132 http://dx.doi.org/10.1016/j

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Phosphorus in Sintered Steels: Effect of Phosphorus Content and P Carrier in Sintered Steel Fe-C-P

] Šalak, A.: Ferrous Powder Metallurgy. Cambridge : Cambridge Int. Sci. Publ., 1995 [9] Lindskog, P., Carlsson, A.: Powder Metall. Int., vol. 4, 1972, p. 39 [10] Lindskog, P.: Powder Metall., vol. 16, 1973, p. 374 [11] Molinari, A., Fontanari, V., Straffelini, G., Canteri, R.: Powder Metall., vol. 35, 1992, no. 4, p. 285 [12] Straffelini, G., Fontanari, V., Molinari, A., Tesi, B.: Powder Metall., vol. 36, 1993, no. 2, p. 135 [13] Molinari, A., Straffelini, G., Canteri, R.: Int. J. Powder Metall., vol. 30, 1994, no. 3, p. 283 [14

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