[1] Casati R, Vedani M. Metal matrix composites reinforced by nano-particles—a review. Metals. 2014; 4(1):65- 83.
[2] Bakshi SR, Lahiri D, Agarwal A. Carbon nanotube reinforced metal matrix composites-a review. International materials reviews. 2010; (1):41-64.
[3] Sekunowo OI, Durowaye SI, Lawal GI. An overview of nano-particles effect on mechanical properties of composites. International Journal of Mechanical, Aerospace, Industrial, Mechatronic and Manufacturing Engineering. 2015;9(1):1-7.
[4] Rajabi M, Khodai MM, Askari N. Microwave-assisted sintering of Al–ZrO 2 nano-composites. Journal of Materials Science: Materials in Electronics. 2014;25:4577-84.
[5] De Cicco M, Konishi H, Cao G, Choi HS, Turng LS, Perepezko JH, Kou S, Lakes R, Li X. Strong, ductile magnesium-zinc nanocomposites. Metallurgical and Materials Transactions A. 2009;40:3038-45.
[6] Cao G, Konishi H, Li X. Recent developments on ultrasonic cavitation based solidification processing of bulk magnesium nanocomposites. International Journal of Metalcasting. 2008;2:57-65.
[7] Mazahery A, Abdizadeh H, Baharvandi HR. Development of high-performance A356/nano-Al2O3 composites. Materials Science and Engineering: A. 2009;518(1-2):61-4.
[8] Habibnejad-Korayem M, Mahmudi R, Ghasemi HM, Poole WJ. Tribological behavior of pure Mg and AZ31 magnesium alloy strengthened by Al2O3 nano-particles. Wear. 2010;268(3-4):405-12.
[9] Habibnejad-Korayem M, Mahmudi R, Poole WJ. Enhanced properties of Mg-based nano-composites reinforced with Al2O3 nano-particles. Materials Science and Engineering: A. 2009;519(1-2):198-203.
[10] Borgonovo C, Apelian D, Makhlouf MM. Aluminum nanocomposites for elevated temperature applications. Jom. 2011;63:57-64.
[11] Lee-Desautels R, Theory of van der Waals Froces as Applied to Particulate Materials. Mater. Eng. 2005;27. 1–8.
[12] Haritsa H, Akira MW, Zulfia Syahrial A. The Role of Al2O3 Particles on Mechanical Properties and Microstructure of Aluminum A356 Composites Produced by Stir Casting Method. InMaterials Science Forum 2020 (Vol. 1000, pp. 185-192). Trans Tech Publications Ltd.
[13] Hadad M, Babazade A, Safarabadi M. Investigation and comparison of the effect of graphene nanoplates and carbon nanotubes on the improvement of mechanical properties in the stir casting process of aluminum matrix nanocomposites. The International Journal of Advanced Manufacturing Technology. 2020;109:2535-47.
[14] Prakash B, Manimaran M. Investigations on mechanical properties of Al6061-SiC nanocomposites fabricated via stir casting process. Materials Today: Proceedings. 2021;39:22-5.
[15] Rashidi Meybodi R, Babaei Zarch M R, Dehghan Hamadan A, Mahdizadeh Rokhi M. Investigation of mechanical properties of reinforced aluminum-based nanocompositeswith clay nanoparticles. Journal of mechanical engineering of Tabriz University. 2023;53(1)-71-79 (in Persian).
[16] Rashidi Meybodi R, Dehghan Hamadan A, Babaei Zarch M R, Mahdizadeh Rokhi M. Study of the effect of magnesium oxide nanoparticles on the microstructure and mechanical properties of aluminum-based nanocomposites produced by modified stir casting method. Aerospace knowledge and technology journal. 2024;13(1) (in Persian).
[17] Zhang Z, Chen DL. Consideration of Orowan strengthening effect in particulate-reinforced metal matrix nanocomposites: A model for predicting their yield strength. Scripta materialia. 2006;54(7):1321-6.
[18] Pérez JS, Porcel ER, López JC, Sevilla JF, Chisti Y. Shear rate in stirred tank and bubble column bioreactors. Chemical Engineering Journal. 2006;124(1-3):1-5.