In the present study, monolithic magnesium, nanosized SiC reinforced magnesium and nanosized hybrid reinforced magnesium materials have been synthesized by using powder metallurgy route involving microwave sintering followed by hot extrusion. The results show that the monolithic and the reinforced magnesium materials have minimal porosity and the reinforced magnesium materials have fairly well distributed nanosized SiC and particles in the matrix. The thermo-mechanical property measured in terms of coefficient of thermal expansion of the reinforced magnesium shows dimensionally more stable magnesium as compared to monolithic magnesium. The hardness 0.2% YS and UTS were found to improve significantly after addition of nanosized SiC and nanosized hybrid particles to the magnesium, However, ductility measured in terms of failure strain was found to be marginally reduced. Fractography results showed the presence of brittle failure mode with cleavage steps on the fractured surface of the magnesium matrix.
Skip Nav Destination
e-mail: sanjay.kumar.thakur@delphi.com
e-mail: director@nftdc.res.in
e-mail: mpegm@nus.edu.sg
Article navigation
April 2007
Technical Papers
Microwave Synthesis and Characterization of Magnesium Based Composites Containing Nanosized SiC and Hybrid Reinforcements
Sanjay Kumar Thakur,
e-mail: sanjay.kumar.thakur@delphi.com
Sanjay Kumar Thakur
Delphi Automotive Systems Singapore Pte Ltd.
, 501 Ang Mo Kio Industrial Park 1, Singapore 569621
Search for other works by this author on:
K. Balasubramanian,
e-mail: director@nftdc.res.in
K. Balasubramanian
Nonferrous Materials Technology Development Centre
, Kanchanbagh, Hyderabad 500058, India
Search for other works by this author on:
Manoj Gupta
Manoj Gupta
Department of Mechanical Engineering, Faculty of Engineering,
e-mail: mpegm@nus.edu.sg
National University of Singapore
, 9 Engineering Drive 1, Singapore 117576
Search for other works by this author on:
Sanjay Kumar Thakur
Delphi Automotive Systems Singapore Pte Ltd.
, 501 Ang Mo Kio Industrial Park 1, Singapore 569621e-mail: sanjay.kumar.thakur@delphi.com
K. Balasubramanian
Nonferrous Materials Technology Development Centre
, Kanchanbagh, Hyderabad 500058, Indiae-mail: director@nftdc.res.in
Manoj Gupta
Department of Mechanical Engineering, Faculty of Engineering,
National University of Singapore
, 9 Engineering Drive 1, Singapore 117576e-mail: mpegm@nus.edu.sg
J. Eng. Mater. Technol. Apr 2007, 129(2): 194-199 (6 pages)
Published Online: June 17, 2006
Article history
Received:
January 24, 2006
Revised:
June 17, 2006
Citation
Thakur, S. K., Balasubramanian, K., and Gupta, M. (June 17, 2006). "Microwave Synthesis and Characterization of Magnesium Based Composites Containing Nanosized SiC and Hybrid Reinforcements." ASME. J. Eng. Mater. Technol. April 2007; 129(2): 194–199. https://doi.org/10.1115/1.2400279
Download citation file:
Get Email Alerts
Analytical Modeling of Electronic and Photonic Materials Reliability: Perspective and Extension
J. Eng. Mater. Technol (July 2023)
Multiphysics Simulations of Microwave Induced Damage Applied to Rock Samples of Varying Strength and Absorptivity
J. Eng. Mater. Technol (July 2023)
Creation of a Life Prediction Model for Combined High-Cycle Fatigue and Creep
J. Eng. Mater. Technol (July 2023)
XFEM Analysis of Strain Rate Dependent Mechanical Properties of Additively Manufactured 17-4 Precipitation Hardening Stainless Steel
J. Eng. Mater. Technol (July 2023)
Related Articles
Development and Characterization of Ductile Mg ∕ Y 2 O 3 Nanocomposites
J. Eng. Mater. Technol (July,2007)
Enhancing Uniform, Nonuniform, and Total Failure Strain of Aluminum by Using SiC at Nanolength Scale
J. Eng. Mater. Technol (October,2010)
Related Proceedings Papers
Related Chapters
PVDF/CO 3 O 4 Nanocomposites: Porosity, Crystallinity and Conductivity
International Conference on Advanced Computer Theory and Engineering, 4th (ICACTE 2011)
Characterization of Ultra-High Temperature and Polymorphic Ceramics
Advanced Multifunctional Lightweight Aerostructures: Design, Development, and Implementation
Dissolution and Hydrogen Diffusion Control of IGSCC in Sensitized Aluminum-Magnesium Alloys
International Hydrogen Conference (IHC 2012): Hydrogen-Materials Interactions