Abstract
We have examined solid solubility extension for melt-spun CuTi alloys (4, 6, 7, and 8 mass% Ti) in comparison with that for conventional quenched alloys. X-ray diffraction (XRD) measurements revealed that the solid solubility extension for the melt-spun alloys was in the range of 78 mass% Ti, whereas that for quenched alloys was less than 6 mass% Ti. After annealing the melt-spun alloys at 673 K, the XRD measurements revealed sidebands with no intermetallic compound peaks, bright-field transmission electron microscopy images showed modulated structures, and selected-area diffraction patterns exhibited satellite structures; taken together, these experimental results confirm the occurrence of spinodal decomposition. In this study, however, distinct superlattice reflections were not observed. [doi:10.2320/matertrans.M2018255]
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Kondo, S. ichiro, Nakashima, H., & Morimura, T. (2019). On the solid solubility extension by rapid quenching and spinodal decomposition during aging in melt-spun Cuti alloys. Materials Transactions, 60(2), 338–345. https://doi.org/10.2320/matertrans.M2018255
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