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Double membrane sensors for liquid viscosity and mass density facilitating measurements in a large frequency range

机译:用于液体粘度和质量密度的双膜传感器,便于在大频率范围内进行测量

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摘要

A resonating double membrane based sensor for viscosity and mass density facilitating measurements at different frequencies and two adjustable modes of vibration is presented. The sensor is designed to be suitable, e.g., for low cost handheld devices with inline capabilities and disposable sensor elements. In the sensor, a sample liquid is subjected to time harmonic shear stress induced by two opposed vibrating polymer membranes, placed in an external static magnetic field. These membranes carry two conductive paths each. The first path is used to actuate the membranes by means of Lorentz forces while the second acts as a pick-up coil providing an induced voltage representing the movement of the membrane. From the measured frequency response the liquid's viscosity and mass density can be deduced. This double membrane based setup allows to examine the test liquid at adjustable frequencies in the low kilohertz range from 1 kHz to 15 kHz. Two different designs are presented and the results obtained by experimental investigation are compared to previous theoretical findings.
机译:提出了一种基于共振双膜的传感器,用于粘度和质量密度测量,可在不同的频率和两种可调节的振动模式下进行测量。该传感器被设计为例如适合于具有在线能力和一次性传感器元件的低成本手持式设备。在传感器中,样品液会受到放置在外部静磁场中的两个相对的振动聚合物膜所引起的时间谐波剪切应力的影响。这些膜各自带有两个导电路径。第一条路径用于通过洛伦兹力来驱动薄膜,而第二条路径则用作拾取线圈,提供代表薄膜运动的感应电压。根据测得的频率响应,可以得出液体的粘度和质量密度。这种基于双膜的设置允许在1 kHz至15 kHz的低千赫兹范围内的可调频率下检查测试液体。介绍了两种不同的设计,并将通过实验研究获得的结果与以前的理论发现进行了比较。

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