Elastic and non-linear acoustic properties and thermal expansion of cerium metaphosphate glasses

被引:53
作者
Saunders, GA
Brennan, T
Acet, M
Cankurtaran, M
Senin, HB
Sidek, HAA
Federico, M
机构
[1] Univ Bath, Dept Phys, Bath BA2 7AY, Avon, England
[2] Univ Duisburg Gesamthsch, D-47048 Duisburg, Germany
[3] Hacettepe Univ, Dept Phys, TR-06532 Ankara, Turkey
[4] Univ Putra Malaysia Terengganu, Terengganu 21030, Malaysia
[5] Univ Putra Malaysia, Dept Phys, Serdang 43400, Malaysia
[6] Univ Messina, Dipartimento Fis, I-98166 Messina, Italy
基金
英国工程与自然科学研究理事会;
关键词
D O I
10.1016/S0022-3093(01)00311-8
中图分类号
TQ174 [陶瓷工业]; TB3 [工程材料学];
学科分类号
0805 ; 080502 ;
摘要
To test predictions of the soft potential model (SPM) for the thermal and acoustic properties of glasses, the thermal expansion and the ultrasonic wave velocity and attenuation have been measured in cerium metaphosphate glasses with compositions in the vicinity of (Ce2O3)(0.25) (P2O5)(0.75). The ultrasonic wave velocities have been determined as fimctions of temperature and hydrostatic pressure, the results provide the temperature dependences of the adiabatic elastic stiffnesses C-11 and C-44 and related elastic properties, and the hydrostatic-pressure derivatives (partial derivativeC(11)/partial derivativeP)(P=0) and (partial derivativeC(44)/partial derivativeP)(P=0) of the elastic stiffnesses and (partial derivativeB(S)/partial derivativeP)(P=0) of the bulk modulus. The longitudinal ultrasonic wave velocities increase under pressure. The hydrostatic pressure derivative (partial derivativeB(S)/partial derivativeP)(P=0) of the bulk modulus B-S is positive: when compressed, the cerium metaphosphate glasses show a normal volume elastic response. However, the pressure derivative (partial derivativeC(44)/partial derivativeP)(P=0) of the shear modulus is negative but small, indicating weak softening of shear modes under pressure. The shear wave ultrasonic attenuation is characterised by a broad peak; the calculated relaxation parameters are consistent with phonon-assisted relaxation of two-level systems. The results found for C-IJ and (partial derivativeC(IJ)/partial derivativeP)(P=0) are used to determine the long-wavelength acoustic-mode Gruneisen parameters, which quantify the vibrational anharmonicity and are needed to obtain the acoustic mode contribution to thermal expansion. The temperature dependence of the shear wave ultrasound velocity, after subtraction of the relaxation and anharmonic contributions. follows a linear law as predicted by the SPM for relaxation of soft harmonic oscillators. At low temperatures the excess low-energy vibrational states provide a negative contribution to thermal expansion, which can be understood on the basis of the SPM. (C) 2001 Elsevier Science B.V. All rights reserved.
引用
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页码:291 / 305
页数:15
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