Nanostructured BN-Mg composites: features of interface bonding and mechanical properties
Dmitry G Kvashnin1, Arkady V Krasheninnikov2, Dmitry Shtansky3
1National University of Science and Technology MISiS, 4 Leninskiy prospekt, Moscow, 119049, Russian Federation. dgkvashnin@gmail.com and Emanuel Institute of Biochemical Physics RAS, 4 Kosigina st., Moscow, 119334, Russian Federation.
Abstract:
Magnesium (Mg) is one of the lightest industrially used metals. However, wide applications of Mg-based components require a substantial enhancement of their mechanical characteristics. This can be achieved by introducing small particles or fibers into the metal matrix. Using first-principles calculations, we investigate the stability and mechanical properties of a nanocomposite made of magnesium reinforced with boron nitride (BN) nanostructures (BN nanotubes and BN monolayers). We show that boron vacancies at the BN/Mg interface lead to a substantial increase in BN/Mg bonding establishing an efficient route towards the development of BN/Mg composite materials with enhanced mechanical properties.
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