The Academic Perspective Procedia publishes Academic Platform symposiums papers as three volumes in a year. DOI number is given to all of our papers.
Publisher : Academic Perspective
Journal DOI : 10.33793/acperpro
Journal eISSN : 2667-5862
[1] R. M. German, Powder Metallurgy & Particulate Materials Processing, Metal Powder Industries Federation, 2005.
[2] C. Suryanaryana, “Recent developments in mechanical alloying,” Rev. Adv. Mater. Sci., vol. 18, 203-211, 2008.
[3] M. S. El-Eskandarany, “Structural evolution of rod milled Cu2O and Ti powders during mechanical solid state reduction,” Mater. Trans., vol. 36, pp. 182-187, 1995.
[4] D. Özyürek, S. Tekeli, A. Güral, A. Meyveci and M. Gürü, “Effect of Al2O3 amount on microstructure and wear properties of Al-Al2O3 metal matrix composites prepared using mechanical alloying method,” Powder Metall. Met. Ceram. vol. 49, 289-294, 2010.
[5] A. Azimi, A. Shokuhfar and A. Zolriasatein, “Nanostructured Al-Zn-Mg-Cu-Zr alloy prepared by mechanical alloying followed by hot pressing,” Mater. Sci. Eng. A, vol. 595, 124-130, Feb. 2014.
[6] S. Kamrani, D. Penther, A. Ghasemi, R. Riedel, C. Fleck, “Microstructural characterization of Mg-SiC nanocomposite synthesized by high energy ball milling,” Adv. Powder Technol. 29, 1742-1748, 2018.
[7] L. Litynska-Dobrzynska, J. Dutkiewicz, W. Maziarz, A. Góral, “The effect of zirconium addition on microstructure and properties of ball milled and hot compacted powder of Al–12 wt% Zn–3 wt% Mg–1.5 wt% Cu alloy,” J. Alloys Compd. vol. 509S, S304-S308, 2011.
[8] I.. Lahiri, S. Bhargava, “Crystallite size of mechanically alloyed Cu–Cr powder - A comparison between X-ray diffraction and atomic force microscopy techniques,” Mater. Charact. vol. 60, 1406-1410, 2009.
[9] M. Rabiee, H. Mirzadeh, A. Ataie, “Processing of Cu-Fe and Cu-Fe-SiC nanocomposites by mechanical alloying,” Adv. Powder Technol. vol. 28, 1882-1887, 2017.