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The effect of gas loading on the RUS spectra of spheres

机译:气体载荷对球体RUS光谱的影响

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Resonant Ultrasound Spectroscopy (RUS) of a spherical sample in a pressurizing gas atmosphere was investigated experimentally and theoretically. Measurements were made on a fused silica sphere in He, Ar, and N_(2) gases up to pressures of 120 bar. The pressure-dependent shift in the resonant frequency, △f, and the Q-factor were measured for the S00, S11, and T02 modes. A theoretical model based on acoustic radiation impedance was used to calculate △f and the radiation-resistance component, Q_(r), of the Q-factor. Agreement between theory and experiment was good for Q_(r), but there were discrepancies for △f. It was found that the theoretical △f due to gas-loading effects associated with acoustic radiation was very small and consistent with the observed dependence on pressure and gas species for the T02 mode but not for the S00 and S11 modes. We conclude that the T02 mode is the most reliable of these modes to use in measuring third-order elastic constants by RUS.
机译:实验和理论上研究了在加压气体气氛中球形样品的共振超声光谱(RUS)。在He,Ar和N_(2)气体中,在高达120 bar的压力下,在熔融石英球上进行测量。对于S00,S11和T02模式,测量了谐振频率中与压力有关的位移Δf和Q因子。基于声辐射阻抗的理论模型用于计算△f和Q因子的辐射阻抗分量Q_(r)。理论和实验之间的一致性对Q_(r)有利,但△f存在差异。结果发现,由于与声辐射有关的气体加载效应,理论上的△f非常小,并且与观察到的对于T02模式而不是对于S00和S11模式对压力和气体种类的依赖性一致。我们得出的结论是,T02模式是这些模式中最可靠的,可用于RUS测量三阶弹性常数。

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