IN SITU MEASUREMENT OF VISCOSITY OF LIQUIDS IN THE FE-FES SYSTEM AT HIGH PRESSURES AND TEMPERATURES

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dc.contributor.author Dobson D.P.
dc.contributor.author Crichton W.A.
dc.contributor.author Vocadlo L.
dc.contributor.author Jones A.P.
dc.contributor.author Wang Y.
dc.contributor.author Uchida T.
dc.contributor.author Rivers M.
dc.contributor.author Sutton S.
dc.contributor.author Brodholt J.P.
dc.date.accessioned 2021-01-30T12:24:32Z
dc.date.available 2021-01-30T12:24:32Z
dc.date.issued 2000
dc.identifier https://elibrary.ru/item.asp?id=13987695
dc.identifier.citation American Mineralogist, 2000, 85, 11, 1838-1842
dc.identifier.issn 0003-004X
dc.identifier.uri https://repository.geologyscience.ru/handle/123456789/24073
dc.description.abstract The viscosity of liquid FeS and Fe-FeS eutectic was measured at pressures between 0.5 and 5.0 GPa using a synchrotron-based falling sphere technique. We obtain viscosities of 2 × 10−2 to 4 × 10−3 Pa-s in FeS at 1450 to 1700 °C and 2 × 10−2 to 8 × 10−3 Pa-s in Fe-Seut at 1150 to 1380 °C. These results are consistent with recent viscosity measurements in Fe-Seut at 5 to 7 GPa (Urakawa, in preparation), measured diffusivities (Dobson 2000) and ab initio simulated viscosity (Voc̆adlo et al. 2000). The results are also similar to the values for pure iron at low pressure (Shimoji and Itami 1986). A systematic increase in viscosity and activation energy is seen with increasing sulfur content. Interpolation between the data presented yields a viscosity of 1.4 × 10−2 Pa-s for an outer core composition with ~10 wt% S at the melting temperature. There is good evidence of homologous behavior for Fe-S liquids which implies that the liquid alloy at the inner core boundary may have a similar viscosity.
dc.title IN SITU MEASUREMENT OF VISCOSITY OF LIQUIDS IN THE FE-FES SYSTEM AT HIGH PRESSURES AND TEMPERATURES
dc.type Статья


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