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- W2033204042 endingPage "3098" @default.
- W2033204042 startingPage "3079" @default.
- W2033204042 abstract "A micromechanism-based model is developed for nanoparticle densification during uniaxial and hydrostatic pressing. The model takes into account the effects on densification of agglomeration, bulk and surface impurities, fewer dislocations per particle and low stability of dislocations due to fine size, and other factors unique to nanoparticle systems. The model is applicable to a general nanoparticle system, and is capable of predicting density, densification rate(s), dominant densification mechanisms, and microstructural features, as a function of consolidation parameters. The present model is the first rigorous and comprehensive attempt to extend the Helle–Easterling–Ashby model to the nanocrystalline grain-size regime. Predictions of the model were compared with experimental data on nanocrystalline copper and nanocrystalline molybdenum disilicide and observations reported in literature. A good agreement of model predictions with experimental data for a wide range of material and processing variables was observed." @default.
- W2033204042 created "2016-06-24" @default.
- W2033204042 creator A5081730079 @default.
- W2033204042 creator A5085023611 @default.
- W2033204042 date "1999-08-01" @default.
- W2033204042 modified "2023-09-28" @default.
- W2033204042 title "Consolidation of nanoparticles—development of a micromechanistic model" @default.
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- W2033204042 doi "https://doi.org/10.1016/s1359-6454(99)00116-0" @default.
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