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首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >Flexural composite oscillators for the measurement of anelastic and elastic properties of solids at frequencies of 1 to 10 kHz
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Flexural composite oscillators for the measurement of anelastic and elastic properties of solids at frequencies of 1 to 10 kHz

机译:挠曲复合振荡器,用于测量频率为1至10 kHz的固体的弹性和弹性

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摘要

Longitudinal composite oscillators for measuring internal friction, piezoelectric modulus, and strain modulation effects are usually limited to a frequency range of 30 to 200 kHz. If the same crystals are vibrated in flexure, a longitudinal strain can be introduced with the resonance frequency below 3 kHz while at the same time keeping the inherent high Q of the composite system. This paper develops the theory for the strain amplitude and damping for the flexural composite oscillator made up of two quartz crystals plus specimen and, if appropriate, spacers. This high Q technique of vibrating in flexure has applications for strain modulation and damping experiments.
机译:用于测量内部摩擦,压电模量和应变调制效应的纵向复合振荡器通常限于30至200 kHz的频率范围。如果相同的晶体弯曲振动,则可引入纵向应变,谐振频率低于3 kHz,同时保持复合系统固有的高Q值。本文提出了由两个石英晶体加上试样和适当的垫片组成的挠曲复合振荡器的应变振幅和阻尼的理论。这种高Q值的弯曲振动技术可用于应变调制和阻尼实验。

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