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Herbert Danninger

, vol. 40, 2008, no. 1, p. 33 [11] De Oro Calderon, R., Gierl-Mayer, C., Danninger, H.: Journal of Thermal Analysis and Calorimetry, vol. 127, 2017, no. 1, p. 91 [12] Gierl-Mayer, C., De Oro Calderon, R., Danninger, H.: JOM, vol. 68, 2016, no. 3, p. 920 [13] De Oro Calderon, R., Gierl-Mayer, C., Danninger, H.: Powder Metallurgy, vol. 59, 2016, no. 1, p. 31 [14] Jones, PK., Buckley-Golder, K., Sarafinchan, D.: Int. J. Powder Metallurgy, vol. 34, 1998, no. 1, p. 26 [15] Dlapka, M., Gierl, C., Danninger, H., Altena, H., Stetina, G., Orth, P

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R. Shvab, M. V. Sundaram, H. Karlsson, D. Chasoglou, S. Berg, E. Hryha and L. Nyborg

Delubrication and Sintering of Chromium-alloyed Powder Metallurgy Steels”, PhD Thesis, Chalmers University of Technology, Gothenburg, Sweden, 2015. [7] Berg S.: Adv. Powder. Metall. Part. Mater., vol. 5, 2001, p. 5. [8] Hryha E., Dudrova E., Bengtsson S.: Powder Metall., vol. 5, 2007, p. 3. [9] Delarbre P., Schoppa A., Hornof B.: Met. Powder Rep., vol. 71, 2016, p. 344. [10] Torralba J. M., Esteban L., Bernardo E., Campos M.: Powder Metall., vol. 57, 2014, p. 357. [11] Mousavinasab S., Blais C.: Mater. Sci. Eng. A, vol. 667, 2016, p. 444

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Magdalena Dlapka, Christian Gierl-Mayer, Raquel de Oro Calderon, Herbert Danninger, Sven Bengtsson and Eva Dudrova

References [1] Motooka, M., Kuroishi, N., Hara, A., Furukawa, N.: Metal Powder Report, vol. 38, 1983, no. 11, p. 3 [2] Berg, S., Maroli, B. In: Adv. Powder Metall. and Partic. Mater. Proc. PM2002 Orlando. Princeton NJ : MPIF, 2002, on CD [3] Bergman, O.: Powder Metallurgy, vol. 50, 2007, p. 243 [4] Kremel, S., Danninger, H., Yu, Y.: Powder Metall. Progress, vol. 2, 2002, p. 211 [5] Danninger, H., Gierl, C., Kremel, S., Leitner, G., Jaenicke-Roessler, K., Yu, Y.: Powder Metall

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Ch. Fiał

REFERENCES [1] Fang, HS., Feng, C., Zheng, YK., Yang, ZG., Bai, BZ.: Journal of Iron and Steel Research, International, vol. 15, 2008, no. 6, p. 1 [2] ASM Handbook. Vol. 4. Metals Park : American Society for Metals, 1991 [3] Metals Handbook. Vol. 2. Metals Park : American Society for Metals, 1964 [4] Girardini, L., Molinari, A., Locatelli, G., Tonini, G.: Metallurgia Italiana, vol. 98, 2006, no. 2, p. 23 [5] Zendron, M., Molinari, A., Girardini, L.: Progress in Powder Metallurgy, vol. 1-2, 2007, no. 534–546, p. 625 [6] Zendron

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Hassan Abdoos, Ahmad Tayebi and Meysam Bayat

REFERENCES [1] Khorsand, H., Abdoos, H.: The mechanical behavior and fatigue of porous sintered steel, K. N. Toosi university of Technology press, Tehran, Iran, 2015 [2] Khorsand, H., Abdoos, H., Amirjan, M.: Metallurgical Engineering Journal, vol. 43, 2011, p. 3 [3] Aliabadi, A., Heydarzadeh Sohi, M., Ghambari, M., Sheikhi Moghadam, K.: Advance Material, vol. 7, 2017, no. 28, p. 27 [4] Sahri, SM., Ghayour, H., Amini, K., Naseri, M., Morteza, H., Rastegari, H., Golparvar, M., Javaheri, V.: The effect of quench and temper treatment on

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Jaroslav Kováčik and Štefan Emmer

References [1] W. Kroll, Z. Metallkunde 29 (1937) 189-192. [2] M. Qian, Powder Metal. 46 (2010) 29-44. [3] J.E. Barnes, W. Peter, C.A. Blue, Mater. Sci. Forum 618-619 (2009) 165-168. [4] Wikipedia.org [5] Powder processing, Consolidation and Metallurgy of Titanium Ti (PM Titanium 2011), Conerence Proceedings, Brisbane, December 2011 [6] P.J. Anderson, V.M. Svoyatkovsky, F.H. Froes, Y. Mahajan, D. Eylon, Modern Developments in Powder Metallurgy, Metal Powder

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C. F. John, R. C. Paul, S. C. E. Singh and T. Ramkumar

to microstructure of novel 6092 aluminium alloy-Ni3Al powder metallurgy composite”, Wear 251 (1-12), 1421-1432 (2001). [4] A. Abdollahi, A. Alizadeh, and H.R. Baharvandi, “Dry sliding tribological behavior and mechanical properties of Al2024-5 wt. %B4C nanocomposites produced by mechanical milling and hot extrusion”, Materials and Design 55, 471-481(2014). [5] J. Corrochano, J.C. Walker, M. Lieblich, J. Ibáñez, and W.M. Rainforth, “Dry sliding wear behaviour of powder metallurgy Al-Mg-Si alloy-MoS2 composites and the relationship

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H. Danninger and B. Üregen

References [1] Lenel FV: U.S.Pat. 2.226,520 (1940) [2] Kieffer R, Hotop W: Sintereisen und Sinterstahl. Springer, Vienna (1948) [3] Eisenkolb F: Arch. Eisenhüttenwesen 24 (1953) 257 [4] Jones WD: Fundamental Principles of Powder Metallurgy. Edward Arnold, London (1960) [5] Lenel FV: Powder Metallurgy - Principles and Applications. MPIF, Princeton (1980) [6] Šalak A: Ferrous Powder Metallurgy. Cambridge Int. Sci. Publ., Cambridge (1995) [7] Höganäs Handbook for Sintered Components Vol.1 „Material and Powder Properties

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B. Üregen, C. Gierl-Mayer and H. Danninger

References [1] Lenel, FV.: U.S.Pat. 2.226,520 (1940) [2] Kieffer, R., Hotop, W.: Sintereisen und Sinterstahl. Vienna : Springer, 1948 [3] Eisenkolb, F.: Arch. Eisenhüttenwesen, vol. 24, 1953, p. 257 [4] Eisenkolb, F.: Planseeber. Pulvermet., vol. 2, 1954, p. 2 [5] Jones, WD.: Fundamental Principles of Powder Metallurgy. London : Edward Arnold, 1960 [6] Lenel, FV.: Powder Metallurgy - Principles and Applications. Princeton : MPIF, 1980 [7] Petzow, G., Exner, HE.: Powder Metall. Int., vol. 21, 1989, no. 2, p. 9 [8

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A. T. Tabrizi and M. Azadbeh

Research and Applications, vol. 2, 2012, p. 365 [44] Alloy Phase Diagrams. ASM Handbook. Vol. 3. Materials Park, OH : ASM International, 1992 [45] Martin, JM., Gomez-Acebe, T., Castro, F.: Powder Metallurgy, vol. 45, 2002, p. 173