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Validity of Describing Resonant Viscosity and Mass Density Sensors by Linear 2nd Order Resonators

机译:通过线性2nd谐振器描述谐振粘度和质量密度传感器的有效性

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Resonant viscosity and mass density sensors are based on the determination of a mechanical oscillator's frequency response at a characteristic resonant mode upon immersion in a liquid. In many cases the sensors' characteristics and sensitivities are demonstrated by showing the dependence of their quality factor Q and resonance frequency fr to viscosity tj and mass density p. Commonly, the transfer function of a linear second order resonator is fit into the recorded frequency response to extract /r and Q, which are then related to the liquid's T] and p. This approach is widespread in the field of resonant (viscosity and mass density) sensors and thus became a common procedure. However, as from a theoretic point of view, resonators which are interacting with a liquid do not yield linear second order functions, the applicability of this standard approach and its limits are investigated in this work.
机译:共振粘度和质量密度传感器基于在浸入液体中以特征谐振模式确定机械振荡器的频率响应。在许多情况下,通过表示其质量因子Q和共振频率fr至粘度Tj和质量密度p的依赖性来证明传感器的特性和灵敏度。通常,线性二阶谐振器的传递函数适合于对提取/ r和q的记录频率响应,然后与液体的t]和p有关。这种方法在谐振(粘度和质量密度)传感器的领域中普遍存在,因此成为常见的过程。然而,根据理论的观点,与液体相互作用的谐振器不产生线性的二阶功能,在这项工作中研究了该标准方法的适用性及其限制。

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