Cite

[1] Ed. Houdremont: Handbuch der Sonderstahlkunde. Springer, Berlin-Göttingen-Heidelberg, 1956.10.1007/978-3-662-11973-0 Search in Google Scholar

[2] ASM Handbook Vol.4 „Heat Treating“, ASM, Materials Park OH, 1991. Search in Google Scholar

[3] Krauss, G.: Steels – Structure, Processing, and Performance. ASM Materials Park OH, 2005. Search in Google Scholar

[4] Brian James, W.: What is sinter hardening? Proc. PM2 TEC ‘98 Las Vegas, MPIF, Princeton NJ, 1998. Search in Google Scholar

[5] Engström, U.. In: Proc. PowderMet 2000 New York, MPIF, Princeton NJ, Part 5, 2000, p. 157. Search in Google Scholar

[6] Semel, FJ.: Cooling rate effects on the metallurgical response of a recently developed sintering hardening grade. Adv. Powder Metall. & Partic. Mater. -2002, MPIF, Princeton NJ, Part 13, 2002, p.102. Search in Google Scholar

[7] Maroli, B., Berg, S., Thorne, P., Engström, U. In: Proc. PM2TEC’03 Las Vegas, MPIF, Princeton NJ, 2003. Search in Google Scholar

[8] Stoyanova, V., Molinari, A.: Powder Metall. Progress, vol. 4, no. 2, 2004, p. 79. Search in Google Scholar

[9] Yu, Y. In: Proc. PMAsia2007, Shanghai, China, 2007. Search in Google Scholar

[10] Ratzi, R., Orth, P.: Metal Powder Rep., vol. 55, no.7/8, 2000, p. 20. Search in Google Scholar

[11] Bocchini, GF., et al.: Influence of density and surface/volume ratio on the cooling speed of sinter-hardening materials, Part two: Microstructure and microhardness distribution inside parallelepipeds. Adv. Powder Metall. & Partic. Mater. – 2002, MPIF, Princeton NJ, Part 13, 2002, p. 60. Search in Google Scholar

[12] Karamchedu, S., Hatami, S., Nyborg, L., Andersson, M.: Powder Metall. Progress, vol. 14, no.2, 2014, p. 93. Search in Google Scholar

[13] Berg, S., Maroli, B.: Properties obtained by chromium-containing material. Adv. Powder Metall. & Partic. Mater. -2002, MPIF, Princeton NJ, Part 8, 2002, p. 1. Search in Google Scholar

[14] Engström, U., Mc.Lelland, J., Maroli, B.: Effect of sinter hardening on the properties of high temperature sintered PM steels. Adv. Powder Metall. & Partic. Mater. – 2002, MPIF, Princeton NJ, Part 13, 2002, p. 1. Search in Google Scholar

[15] Dlapka M. et al: Powder Metall. Progress, vol. 10, no.1, 2010, p. 20. Search in Google Scholar

[16] Dlapka, M., Danninger, H., Gierl, C., Lindqvist, B.: HTM - Journal of Heat Treatment and Materials, vol. 67, no.3, 2012, p. 223.10.3139/105.110147 Search in Google Scholar

[17] Danninger, H., Gierl, C.: Sci. Sintering, vol. 40, no.1, 2008, p. 33.10.2298/SOS0801033D Search in Google Scholar

[18] Dlapka, M., Strobl, S., Danninger, H., Gierl, C.: Pract. Metallography, vol. 47, no. 12, 2010, p. 686.10.3139/147.110099 Search in Google Scholar

[19] Berg, S. In: Proc. PM2004 Powder Metallurgy World Congress Vienna, EPMA, Shrewsbury UK, Vol.3, 2004, p. 53. Search in Google Scholar

[20] Danninger, H., de Oro Calderon, R., Gierl-Mayer, C.: Powder Metall., vol. 61 no. 3, 2018, p. 241.10.1080/00325899.2018.1458489 Search in Google Scholar

[21] Steven, W., Haynes, AG.: J. Iron Steel Inst., vol. 183, 1956, p. 349. Search in Google Scholar

[22] Andrews, KW.: J. Iron Steel Inst., vol. 203, 1965, p. 721. Search in Google Scholar

[23] Chagnon, F., Trudel, Y.: Effect of copper additions on properties of 1.5%Mo sintered steels. Adv. Powder Metall. & Partic. Mater. -2002, MPIF, Princeton NJ, Part 13, 2002, p. 73. Search in Google Scholar

[24] de Oro Calderon, R., Gierl-Mayer, C., Danninger, H.: Powder Metallurgy Review, vol. 5, no.3, 2016, p. 59.10.1080/00325899.2016.1148897 Search in Google Scholar

[25] de Oro Calderon, R., Jaliliziyaeian, M., Dunkley, JJ., Gierl-Mayer, C., Danninger H. In: “Proceedings WorldPM2018”, The Chinese Society for Metals, Beijing, 2018, p. 1943. Search in Google Scholar

[26] Gierl-Mayer, C., de Oro Calderon, R., Danninger H.: BHM Berg- und Hüttenmännische Monatshefte, vol. 164 no. 9, 2019, p. 372.10.1007/s00501-019-0885-2 Search in Google Scholar