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- W2005832593 abstract "The flux-jump stability and cryostability of model conductors based on the ceramic superconductor YBa2Cu3O7 (YBC) are considered. The higher specific heat of materials at 80 K than at 4 K guarantees a much greater adiabatic flux-jump stability. In fact, YBC should be immune to adiabatic flux jumping in applied fields of less than about 5 T, which accounts for most fields of practical interest. As for the dynamic flux-jump stability of a model metal-matrix composite, the high thermal conductivity of YBC at 80 K is partly responsible for relieving the customary requirement for 100 μm filaments. Depending on the assumed Jc dynamically flux-jump stable filaments can be many millimetres thick. The general conditions for cryostability in composite conductors are investigated as the operating temperature is increased from 4 to 80 K and as, for pool boiling coolant, liquid helium is replaced by liquid nitrogen. Finally, it is pointed out that although thick conductors will satisfy the electrical requirements for stable d.c. operation, fine filamentary subdivision will always be needed to reduce a.c. hysteretic losses under both external-field and self-field conditions." @default.
- W2005832593 created "2016-06-24" @default.
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- W2005832593 date "1988-11-01" @default.
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- W2005832593 title "Design considerations for high Tc ceramic superconductors" @default.
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- W2005832593 doi "https://doi.org/10.1016/0011-2275(88)90135-x" @default.
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