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Materials  2013 

Tensile and Compressive Responses of Ceramic and Metallic Nanoparticle Reinforced Mg Composites

DOI: 10.3390/ma6051826

Keywords: metal matrix composites, microwave sintering, mechanical properties, microstructure, scanning electron microscopy, X-ray diffraction

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Abstract:

In the present study, room temperature mechanical properties of pure magnesium, Mg/ZrO 2 and Mg/(ZrO 2 + Cu) composites with various compositions are investigated. Results revealed that the use of hybrid (ZrO 2 + Cu) reinforcements in Mg led to enhanced mechanical properties when compared to that of single reinforcement (ZrO 2). Marginal reduction in mechanical properties of Mg/ZrO 2 composites were observed mainly due to clustering of ZrO 2 particles in Mg matrix and lack of matrix grain refinement. Addition of hybrid reinforcements led to grain size reduction and uniform distribution of hybrid reinforcements, globally and locally, in the hybrid composites. Macro- and micro- hardness, tensile strengths and compressive strengths were all significantly increased in the hybrid composites. With respect to unreinforced magnesium, failure strain was almost unchanged under tensile loading while it was reduced under compressive loading for both Mg/ZrO 2 and Mg/(ZrO 2 + Cu) composites.

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