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Determination of the electric and dielectric constants of quartz.

机译:石英的电和介电常数的测定。

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摘要

In order to design electronic devices utilising quartz, a material of paramount importance in the electronic industry, a reliable set of the material constants and their temperature coefficients is required. The previously available data sets suffer from inconsistencies and inaccuracies in experimental and/or theoretical approach. The objective and result of this research was to provide a universally consistent and accurate data set of the elastic and dielectric moduli of quartz. An automated pulse-echo phase detection system for the measurement of acoustic delay time in highly parallel, orientated, single-crystal specimens was designed and built. Data for ten propagation modes in standard grade synthetic quartz were used to determine the six independent elastic moduli and their temperature coefficients to an accuracy better than 0.02% over the temperature range -60°C to 120°C using a frequency range of 10 MHz to 220 MHz. Computer control allowed the accumulation of several orders of magnitude more data than was acquired in previous experiments. This large data base enabled reliable calculations to be made of the parameters of the indium cold-weld bond used to attach the transducers. Use of this bonding technique allowed delay line measurements to be made to above 120°C, whereas the use of organic bonding agents had limited previous measurements to ~30°C. Comprehensive diffraction and transducer/bond reflection delay models were used to correct the experimental delay time data. An interferometric length measuring system was designed and used to measure specimen length. Capacitance measurements were performed to allow calculation of the dielectric moduli of quartz to an accuracy of 0.2%. The first fully documented and error-corrected measurements of the temperature coefficients of the dielectric moduli over the range -60°C to 120°C were also performed. An accurate hydrostatic and volumetric determination was made of the density of quartz. A full data set of the fundamental constants of standard grade synthetic quartz was thus compiled. Finally, the experimentally derived values of effective elastic moduli were varied within the experimental error to fit to the extremely sensitive curves of frequency versus temperature for singly and doubly rotated quartz resonators. Results show that the data set produced by this research is more reliable than other previously available data sets. Measurements on five propagation modes in very high purity synthetic quartz indicate that there may be a significant difference between this and standard grade synthetic quartz.
机译:为了设计利用石英的电子设备,石英是电子工业中最重要的材料,需要可靠的一组材料常数及其温度系数。先前可用的数据集在实验和/或理论方法中存在不一致和不准确之处。这项研究的目的和结果是提供一个普遍一致且准确的石英弹性模量和介电模量数据集。设计并构建了一种用于自动测量高度平行,定向单晶样品中的声学延迟时间的自动脉冲回波相位检测系统。使用标准等级合成石英中十种传播模式的数据来确定六个独立的弹性模量及其温度系数,在-60°C至120°C的温度范围内(频率范围为10 MHz至120MHz),其精度优于0.02% 220 MHz。与以前的实验相比,计算机控制可以积累更多数量级的数据。庞大的数据库可以对用于连接换能器的铟冷焊键的参数进行可靠的计算。使用这种键合技术可以使延迟线测量值高于120°C,而使用有机键合剂将先前的测量值限制在〜30°C。综合衍射和换能器/键反射延迟模型用于校正实验延迟时间数据。设计了干涉式长度测量系统,并将其用于测量样品长度。进行电容测量以允许计算石英的介电模量,精确度为0.2%。还对-60°C至120°C范围内的介电模量的温度系数进行了首次完整记录和误差校正的测量。对石英的密度进行了精确的静水压力和体积测定。这样就汇编了标准等级合成石英基本常数的完整数据集。最后,通过实验得出的有效弹性模量值会在实验误差范围内变化,以适应单旋转和双旋转石英谐振器的频率与温度极其敏感的曲线。结果表明,这项研究产生的数据集比其他先前可用的数据集更可靠。在非常高纯度的合成石英中对五个传播模式的测量表明,该石英与标准级合成石英之间可能存在显着差异。

著录项

  • 作者

    James, Brynley Jonathan.;

  • 作者单位

    University of London, Royal Holloway and Bedford New College (United Kingdom).;

  • 授予单位 University of London, Royal Holloway and Bedford New College (United Kingdom).;
  • 学科 Electrical engineering.
  • 学位 Ph.D.
  • 年度 1987
  • 页码 232 p.
  • 总页数 232
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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