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- W2014283944 abstract "Monte Carlo calculations of the grain growth in two-phase nanocomposite films with microstructures comprising of nanocrystalline (n) and amorphous (a) phases are presented based on a modified Q-state Potts model. The mechanisms of amorphous-phase-volume-fraction-(Va)-dependent grain growth are observed by analyzing the microstructure evolution. The results show that with Va values increasing to a critical value of 23%, the grain growth transforms from a n-∕n-grain boundary (GB)-curvature-driven growth to the a-∕n-GB-curvature-driven growth. The driving force for the transition is caused by the energy difference exerted on n∕n or a∕n boundaries. With further increasing Va, nanograins are completely surrounded by amorphous matrices and the diffusion-controlled growth mode driven by the difference between a-∕n-interfacial energies and n-∕n-boundary energies has been found. The homogeneity of the grain growth in the nanocomposite films with different Va values is also discussed." @default.
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- W2014283944 date "2008-01-14" @default.
- W2014283944 modified "2023-10-16" @default.
- W2014283944 title "Mechanisms of amorphous-phase-dependent grain growth in two-phase nanocomposite films: A Monte Carlo analysis" @default.
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- W2014283944 doi "https://doi.org/10.1063/1.2834850" @default.
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