Abstract The effects of heat treatment and cold work on the superconducting properties of Ti-20 at. % Nb have been studied by measurement of magnetization, M(H), critical current density, J c(H) and transition temperature, T c. The metallurgy has been determined by electron and optical microscopy and x-ray diffraction. Quenching the recrystallized alloy from the single phase β region above 500°C produces a martensitic α″ phase characterized by H c2 = 50 koe, T c = 6·5°K and a high J c arising from pinning of flux lines by the α″ structure. After very short ageing times at 330°C the α″ reverts to the β phase and H c2 and T c fall to 15 koe and 4·5 °K respectively and J c drops by several orders of magnitude. On further ageing ω-Ti precipitates and H c2 and T c increase because of Nb enrichment of the matrix. Pinning by the ω precipitate causes J c to increase. A pronounced peak effect in the J c(H) and M(H) curves has been studied in detail. There is strong evidence for a barrier to flux line entr...
No takes yet. Share an insight, caveat, or question.
Baker et al. (1969) studied this question.
Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context: