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Treatment of slip in a generalized acoustic load concept

机译:在广义声载概念中处理滑动

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The one-dimensional transmission-line model has been applied successfully for the description of the transduction mechanism of acoustic-wave-based microsensors, e.g.. In this model, the surface acoustic load acting at the interface between the acoustic device and the adjacent medium plays the dominant role and reflects changes in mass, density, or film thickness of a coating (gravimetric effects) as well as (visco-)elastic properties of the material (non-gravimetric effects). One important requirement of the transmission-line model is the continuity of particle displacement and stress at the interface. This has the disadvantage that it cannot allow for the existence of slip. This contribution introduces a new concept for the treatment of slip between an acoustic wave device and a contacting solid film or a contacting liquid. In this concept slip modifies the acoustic load acting at the surface of the sensor.
机译:一维传输线模型已成功应用于用于基于声波的微传感器的转换机制的描述,例如。在该模型中,作用在声学装置和相邻介质之间的界面处的表面声学负载主导作用并反映涂层(重量效应)的质量,密度或膜厚度的变化以及材料的(粘性效果)的弹性性质。传输线模型的一个重要要求是界面处的粒子位移和应力的连续性。这具有以下缺点,即它不能允许滑动的存在。该贡献介绍了用于处理声波装置和接触实心膜或接触液之间的滑动的新概念。在该概念上,滑动改变了作用在传感器表面的声学负载。

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