arXiv · cond-mat/0108168
Elastic and thermodynamic properties of the shape-memory alloy AuZn
Abstract
The current work reports on the elastic shear moduli, internal friction, and the specific heat of the B2 cubic ordered alloy AuZn as a function of temperature. Measurements were made on single-crystal and polycrystalline samples using Resonant Ultrasound Spectroscopy (RUS), semi-adiabatic calorimetry and stress-strain measurements. Our results confirm that this alloy exhibits the shape-memory effect and a phase transition at 64.75 K that appears to be continuous (second-order) from the specific heat data. It is argued that the combination of equiatomic composition and a low transformation temperature constrain the chemical potential and its derivatives to exhibit behavior that lies at the borderline between that of a first-order (discontinuous) and a continuous phase transition. The acoustic dissipation does not peak at the transtion temperature as expected, but shows a maximum well into the low-temperature phase. The Debye temeprature value of 219 K, obtained from the low-temperature specific heat data is in favorable agreement with that determined from the acoustic data (207 K) above the transition.
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T. W. Darling, F. Chu, A. Migliori, D. J. thoma, J. C. Lashley, B. E. Lang, J. Boerio-Goates, B. F. Woodfield. 2001-08-09. Elastic and thermodynamic properties of the shape-memory alloy AuZn. https://doi.org/10.1080/13642810110109535
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