Full text: Fortschritte in der Metallographie

264 Prakt. Met. Sonderband 41 (2009) 
Literatur 
[1] G. Schiesl, T. Possehn, T. Heller, S. Skikora: “Manufacturing a Roof Frame from Ultrahigh- 
Strength Steel Materials by Hot Stamping”, in Proceedings of IDDRG 2004, Sindelfingen, p 
158-166. 
[2] M. Naderi, V. Uthaisangsuk, U. Prahl, W. Bleck: “A Numerical and Experimental Investiga- 
tion into Hot Stamping of Boron Alloyed Heat Treated Steels”, in Steel Research International 
2008, 79, p. 77-84. 
[3] P. Hein, J. Wilsius: “Status and Innovation Trends in Hot Stamping of USIBOR 1500 P”, in 
Steel Research International, 2008, 79, p. 85-91. 
[4] M. Maikranz-Valentin, U. Weidig, U. Schoof, H.H. Becker, K. Steinhoff: “Components with 
Optimized Properties due to Advanced Thermo-mechanical Process Strategies in Hot Sheet 
Metal Forming”, in Steel Research International, 2008, 79, p. 92-97. 
[5] J. Lechler, M. Merklein, M. Geiger: “Determination of thermal and Mechanical Material Prop- 
erties of Ultra-High Strength Steels for Hot Stamping”, in Steel Research International, 2008. 
79, p. 98-104. 
[6] S.K. Banerji, J.E. Morral: “Boron in Steel”, in TMS-AIME, Warrendale, PA, 1980. 
[7] G. Krauss, M. Saeglitz, D.K. Matlock: “Tempering and Mechanical Properties of Low-Carbon 
Boron-Containing Martensitic Sheet Steel”, in Proceedings of “International Conference on 
New Developments in Advanced High-Strength Sheet Steel, AIST, Orlando. Florida, 2008, p. 
147-154. 
[8] M. Siglitz, G. Krauss, D.K. Matlock, M. Niegel: “Untersuchungen zum Einfluss der Anlassin- 
tensität auf die mechanischen Eigenschaften eines borlegierten Stahls mit niedrigem Kohlen- 
stoffgehalt“, in Journal for Heat Treatment and Materials, 2009, 3, p. 136-143 
[9] H. Schumann: ,,Metallografie®, 14th ed., Wiley-VCH, Weinheim, 2005. 
[10] D. L. Williamson, K. Nakazawa, and G. Krauss: A Study of the Early Stages of Tempering in 
an Fe-1.2 % C Alloy”, Metall. Trans. A, 1979, 10A, p. 1351-1363. 
[11] Leibniz-Institut fiir Festkorper- und Werkstoffforschung Dresden (IFW), lecture notes, 
http://www.ifw-dresden.de/institutes/imw/lectures/lectures/pwe, 04/03/2009. 
[12] G. Krauss, “Steels: Processing Structure. and Performance”, ASM International, Materials 
Park, OH, 2005. 
[13] F. Zia-Ebrahimi, G. Krauss: “Mechanisms of Tempered Martensite Embrittlement in Medium- 
Carbon Steels“, Acta Metallurgica, 1984, 32, p. 1767-1777. 
[14] F. Zia-Ebrahimi, G. Krauss: “The Evaluation of Tempered Martensite Embrittlement in 4130 
Steel by instrumented Charpy V-Notch Testing®, in Metallurgical Transactions A. 1983. 14A. 
p. 1109-1119. 
[15] R. L. Miller: “Ultrafine-Grained Microstructures and Mechanical Properties of Alloy Steels,” 
in Metallurgical Transactions, 1972. 3, p. 905-912.
	        
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