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首页> 外文期刊>Journal of intelligent material systems and structures >A Study on the F-T Characteristics of Thickness Modes of Doubly Rotated Y-cut Piezoelectric Quartz Crystal
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A Study on the F-T Characteristics of Thickness Modes of Doubly Rotated Y-cut Piezoelectric Quartz Crystal

机译:双旋转Y形压电石英晶体厚度模式的F-T特性研究

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摘要

This study describes a method for analyzing the F-T characteristics of the thickness modes of a doubly rotated Y-cut anisotropic quartz crystal, including a-, b-, and c-modes by using the Christoffel equation that describes sound waves in solids. With this method, the F-T characteristics of the independent rotational angles φ_3/φ_1 can be predicted. Based on the predicted F-T characteristic curve, the potential application of some cut-types as sensors is discussed. Combined with other methods, such as crystal force-frequency characteristic analysis, this method is expected to provide a research platform for studying new cut-types for various applications, such as frequency control and physical, chemical, and biological sensors, etc.
机译:这项研究描述了一种方法,该方法通过使用描述固体声波的Christoffel方程来分析双旋转Y形各向异性石英晶体(包括a,b和c模式)的厚度模式的F-T特性。利用这种方法,可以预测独立旋转角φ_3/φ_1的F-T特性。基于预测的F-T特性曲线,讨论了某些切工类型作为传感器的潜在应用。结合晶体力-频率特性分析等其他方法,该方法有望提供一个研究平台,用于研究频率控制以及物理,化学和生物传感器等各种应用的新切割类型。

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