Title :
Ultrasonic study of the phase transition in Ni2MnGa
Author :
Worgull, J. ; Petti, E. ; Trivisonno, J.
Author_Institution :
Phys. Dept., John Carroll Univ., Cleveland, OH, USA
Abstract :
The ultrasonic attenuation and velocity of waves associated with the three independent elastic constants C1, C44 and C´ were studied as a function of temperature in a Ni2MnGa single crystal. Recent neutron diffraction studies have reported the existence of an intermediate phase transition near 265K in this alloy. The present ultrasonic measurements confirm the existence of this intermediate phase transition. All three elastic constants soften as the temperature is lowered from 300K to 265K. Also, large increases in attenuation are observed as the temperature is lowered. Pretransformation effects are observed for temperatures as high as 285K for the C´ elastic constant. The velocities obtained from the neutron data are consistent with the velocities directly measured by the ultrasonic technique. The ultrasonic measurements will be compared with the neutron scattering results in Ni2MnGa and also with the elastic behavior near the martensitic phase transformation in NiAl alloys
Keywords :
elastic constants; ferromagnetic materials; gallium alloys; manganese alloys; nickel alloys; shape memory effects; soft modes; solid-state phase transformations; ultrasonic absorption; ultrasonic velocity; 265 to 300 K; Ni2MnGa; US study; elastic constant softening; intermediate phase transition; martensitic phase transformation; neutron scattering; phonon softening; pretransformation effects; shape memory ferromagnetic alloy; temperature dependence; ultrasonic attenuation; ultrasonic velocity; Attenuation; Diffraction; Magnesium; Neutron spin echo; Phonons; Shape memory alloys; Temperature dependence; Temperature measurement; Ultrasonic variables measurement; Velocity measurement;
Conference_Titel :
Ultrasonics Symposium, 1996. Proceedings., 1996 IEEE
Conference_Location :
San Antonio, TX
Print_ISBN :
0-7803-3615-1
DOI :
10.1109/ULTSYM.1996.584016