Pressure Dependences of Elastic Constants of AMg6 Aluminum–Magnesium Alloy and n-AMg6/С60 Nanocomposite Alloy
The ultrasonic study results for dependence of the elastic wave velocities and second-order elasticity coefficients of the polycrystalline aluminum alloy AMg6 and its nanocomposite n -AMg6/C 60 on hydrostatic pressure up to 1.6 GPa have been described. The ultrasonic research has been carried out us...
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Veröffentlicht in: | Physics of the solid state 2018-04, Vol.60 (4), p.769-773 |
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Format: | Artikel |
Sprache: | eng |
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Zusammenfassung: | The ultrasonic study results for dependence of the elastic wave velocities and second-order elasticity coefficients of the polycrystalline aluminum alloy AMg6 and its nanocomposite
n
-AMg6/C
60
on hydrostatic pressure up to 1.6 GPa have been described. The ultrasonic research has been carried out using a highpressure ultrasonic piezometer based on the piston-cylinder device. The pressure derivatives of the secondorder elastic constants of these materials established in the present study have been compared with the results of the third-order elastic constants measurements of the test alloys using the Thurston–Brugger method. Involving available literature data, we determined the relationships between the pressure derivatives of the second-order elastic constants of the AMg6 alloy and the Mg-content and nanostructuring. |
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ISSN: | 1063-7834 1090-6460 |
DOI: | 10.1134/S106378341804025X |