This paper is published in Volume-4, Issue-3, 2018
Area
Hybrid Composites Materials
Author
Badari Bheema Rao, V. Appala Raju, G. Siva Karuna
Org/Univ
Sai Ganapathi Engineering College, Visakhapatnam, Andhra Pradesh, India
Pub. Date
11 June, 2018
Paper ID
V4I3-1836
Publisher
Keywords
AA 2024, Silicon carbide, Limonia acidissima ash, Sieve analysis, Stir casting technique

Citationsacebook

IEEE
Badari Bheema Rao, V. Appala Raju, G. Siva Karuna. Fabrication and mechanical behaviour of limonia acidissima ash – silicon carbide reinforced AL2024 alloy matrix hybrid composites, International Journal of Advance Research, Ideas and Innovations in Technology, www.IJARIIT.com.

APA
Badari Bheema Rao, V. Appala Raju, G. Siva Karuna (2018). Fabrication and mechanical behaviour of limonia acidissima ash – silicon carbide reinforced AL2024 alloy matrix hybrid composites. International Journal of Advance Research, Ideas and Innovations in Technology, 4(3) www.IJARIIT.com.

MLA
Badari Bheema Rao, V. Appala Raju, G. Siva Karuna. "Fabrication and mechanical behaviour of limonia acidissima ash – silicon carbide reinforced AL2024 alloy matrix hybrid composites." International Journal of Advance Research, Ideas and Innovations in Technology 4.3 (2018). www.IJARIIT.com.

Abstract

In the present scenario, Aluminium metal Metrix hybrid composites are widely using for aerospace applications, transport applications and structural applications due to their desirable properties. In view of this, the present investigation was aimed to synthesized aluminum –silicon-agro waste based hybrid metal matrix composites.The present experiment was carried out to examine fabrication characteristics and mechanical properties of Aluminium hybrid metal matrix composite. In the present investigation, Al 2024 reinforced with silicon carbide (Sic) and Limonia acidissima ash for developing the mechanical properties. The composites were synthesized by the stir casting technique. The composites were synthesized by varying Limonia acidissima percentage of weight as 0%, 2%, 4%, 6% and 8%. The mechanical properties of Tensile strength, Yield strength, the percentage of elongation, hardness were performed. The microstructural study was carried out by SEM examination.