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- W124693732 abstract "This paper reviews mechanisms usually assumed to govern the corrosion of oxide refractories by melts such as silicate glasses. Classic boundary layer theories for free or forced convection adequately describe corrosion of totally immersed monolithic single phase refractories. Although the qualitative basis for flux line attack or drilling at the interface between solid, melt and a third fluid phase is well known, the rapid corrosion being produced by flows due to surface tension gradients, no really satisfactory quantitative model exists for this kind of attack. This understanding does not allow quantitative prediction for most real situations for several reasons. Most real refractories contain several phases, some crystalline, some glassy, and attacking melts are generally multi-component so that the desired properties for insertion into theoretical models cannot be precisely defined and are also rarely available, also more complex mechanisms may operate. Glass manufacturers have additional criteria such as the tendency of the refractory to release stones or bubbles into the melt." @default.
- W124693732 created "2016-06-24" @default.
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- W124693732 date "1994-01-01" @default.
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- W124693732 title "Attempting to Predict the High Temperature Corrosion of Oxide Ceramics by Molten Silicates" @default.
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- W124693732 doi "https://doi.org/10.1007/978-94-011-1182-9_21" @default.
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