首页> 外文会议>International Congress on Sound and Vibration >THE THICKNESS/RESONANCE PREDICTION OF AN ULTRA-THIN LAYER BY THE LOW-FREQUENCY ULTRASOUND
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THE THICKNESS/RESONANCE PREDICTION OF AN ULTRA-THIN LAYER BY THE LOW-FREQUENCY ULTRASOUND

机译:低频超声波超薄层的厚度/谐振预测

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A prediction method of the thickness, resonant space and frequency for the two cases of an ultra-thin layer and the narrow-band frequency spectra has been developed without the appearance of the resonance/anti-resonance. Using the characteristic of straight line and the period of π of the layer phase shift obtained from the measured data, the relations of the line slope with time of flight and resonant space of the layer on the half-space substrate of infinite extent are analyzed. The resonant formulas are derived after the different impedance conditions are considered. Using the relations, the formulas and the curve fitting method, the thickness, resonant space and frequencies can be predicted from the less available measured data and no information of the resonance/anti-resonance. The method feasibility and anti-interference capability are analyzed and testified by the numerical simulation for the two cases of an ultra-thin layer and the narrow-band spectra, respectively.
机译:在没有共振/防谐振的情况下开发了用于两种超薄层和窄带频谱的两个情况的厚度,谐振空间和频率的预测方法。利用直线的特性和从测量数据获得的层相移的ππ的周期,分析了线坡与飞行时间的关系和层的半空间衬底的半空间衬底上的谐振空间。在考虑不同的阻抗条件之后衍生共振配方。使用关系,公式和曲线拟合方法,厚度,谐振空间和频率可以从较少的可用测量数据预测,并且没有谐振/防振的信息。通过分别对超薄层和窄带光谱的两种情况的数值模拟来分析和作证方法可行性和抗干扰能力。

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