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Macroscopic and microscopic modeling of the growth of YBaCuO bulk material

M. Seeßelberg, G. J. Schmitz, B. Nestler, I. Steinbach

IEEE Transactions on Applied Superconductivity, 7, 1739-1742, (1997)

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Melt processing of YBaCuO is widely accepted to yield the best superconducting properties in bulk specimens of this material. Modeling of melt processing is a promising tool to optimize the production of bulk YBaCuO material. In a macroscopic simulation, temperature fields in YBaCuO specimen of arbitrary geometry in e. g. Bridgman or VGF furnaces are calculated during solidification. This allows the visualization of the shape of the solidification isotherm and its dependence on cooling rate and the geometries of furnaces and samples. Microscopic modeling of microstructural evolution during YBaCuO growth is of great interest to deepen the understanding of growth kinetics. For this purpose, YBaCuO growth can be simulated numerically using the multiphase field model.

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{"type":"inproceedings", "name":"m.seeßelberg19971", "author":"M. Seeßelberg and G. J. Schmitz and B. Nestler and I. Steinbach", "title":"Macroscopic and microscopic modeling of the growth of YBaCuO bulk material", "journal":"IEEE Transactions on Applied Superconductivity", "volume":"7", "OPTnumber":"", "OPTmonth":"1", "year":"1997", "OPTpages":"1739-1742", "OPTnote":"", "OPTkey":"alloys", "DOI":""}
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