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Hiwa Mohammad Qadr and Ari Maghdid Hamad

Society for Testing and Materials, Philadelphia. 1982, vol., pp. 207-233. [23] Kohyama, A., Hishinuma, A., Gelles, D., Klueh, R., Dietz, W., and Ehrlich, K., Low-activation ferritic and martensitic steels for fusion application, Journal of Nuclear Materials. 1996, vol. 233, pp. 138-147. [24] Zinkle, S., 1.03-Radiation-Induced effects on microstructure, Comprehensive Nuclear Materials. 2012, vol. 1, pp. 65-98. [25] Grossbeck, M. L., Effect of radiation on strength and ductility of metals and alloys, Comprehensive Nuclear Materials. 2012, vol. 1, pp. 99

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Ileana Nicoleta Popescu and Ruxandra Vidu

-386 [23] C.A. Leon, G. Rodriguez-Ortiz, E.A. Aguilar-Reyes, Cold compaction of metal-ceramic powders in the preparation of copper base hybrid materials, Materials Science and Engineering A 526 (2009) 106-112. [24] E. Arzt, The influence of an increasing particle coordination on the densification of spherical powders Acta metall. mater., 30 (1982).1883-1890. , [25] F.F. Lange, L. Atteraas, F. Zok, J.R. Porter. Deformation consolidation of metal powders containing steel inclusions Acta Metall. Mater. 39 (1991).209-219. [26] D Bouvard, FF

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Ileana Nicoleta Popescu and Ruxandra Vidu

Compressibilidade de Pós De Ligas De Alumínio, 17o Proceedings of CBECIMat, 15 -19 de November, Foz do Iguaçu, PR, Brasil (2006) 7452. [5] R. Panelli, Thesis, Coordinator Prof. Dr. Ambrosio Fillo, Production of AISI M2 + 10%Vol. NbC by Mechanical Alloying, Sao Paulo, 1999. [6] S. Mani, L.G. Tabil and S. Sokhansanj, Evaluation of compaction equations applied to four biomass species, Canadian Biosystems Engineering/Le génie des biosystèmes au Canada, 46(2004) 3.55-3.61. [7]Luciano José De Oliveira, Thesis, Processing and