Computational Simulations using Time-Dependent Ginzburg–Landau Theory for Nb–Ti-like Microstructures—Critical current data
收藏Mendeley Data2024-03-27 更新2024-06-28 收录
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https://ieee-dataport.org/documents/computational-simulations-using-time-dependent-ginzburg%E2%80%93landau-theory-nb%E2%80%93ti
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Simulations based on time-dependent Ginzburg–Landau theory are employed to determine the critical current for a model system which represents a Nb–Ti-like pinning landscape at low drawing strain. The system consists of ellipsoids of normal metal, with dimensions 60ξ × 3ξ × 3ξ, randomly distributed throughout the superconducting bulk with their long axes parallel to the applied current and perpendicular to the field. These preciptates represent the α-Ti elongated precipitates which act as strong pinning centres in Nb–Ti alloys. We present the critical current density as a function of field across the entire range of precipitate volume fractions and find that optimised material in our model system occurs at 32 vol.% ppt., whereas in real materials the optimum occurs at 25 vol.% ppt.
创建时间:
2023-06-28



