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首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >Development of an improved calibration method for the LFB ultrasonic material characterization system
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Development of an improved calibration method for the LFB ultrasonic material characterization system

机译:为LFB超声材料表征系统开发改进的校准方法

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摘要

We investigated standard specimens for accurately calibrating the line-focus-beam ultrasonic material characterization (LFB-UMC) system without system dependencies. We evaluated several types of lithium tantalate (LiTaO3) substrates using two LFB-UMC systems with different device/system characteristics to measure and calibrate the propagation characteristics of the leaky surface acoustic waves (LSAWs), and analyzed the variations between the calibrated results. We concluded from this analysis that, by selecting materials with the cut surfaces and propagation directions of standard specimens that are identical to the objects to be calibrated, calibration errors resulting from different performance characteristics between the two systems could be nearly eliminated. Also, analytical errors caused by the effects of spectra with two close peaks (another propagation wave mode), one of the most common problems of characterization in the past, could be eliminated at the same time by this method.
机译:我们调查了标准标本,以在没有系统依赖性的情况下准确地校准线聚焦电子束超声材料表征(LFB-UMC)系统。我们使用具有不同设备/系统特性的两个LFB-UMC系统评估了几种类型的钽酸锂(LiTaO3)基板,以测量和校准泄漏声表面波(LSAW)的传播特性,并分析了校准结果之间的差异。从该分析得出的结论是,通过选择标准样品的切割表面和传播方向与要校准的对象相同的材料,几乎可以消除两个系统之间不同的性能特征所导致的校准误差。此外,通过这种方法可以同时消除由两个最接近的峰(另一个传播波模式)的光谱效应所引起的分析误差,这是过去表征中最常见的问题之一。

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