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Mass sensitivity of thin rod acoustic wave sensors

机译:细杆声波传感器的质量灵敏度

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摘要

Theoretical and experimental investigations of mass sensitivities of thin rod acoustic wave sensor are presented. From the low-frequency approximation of the dispersion equations, explicit forms of the relation describing the mass sensitivity are derived with the consideration of the effects due to elasticity and inertia of the loading layer. The three lowest thin rod acoustic modes are presented. Mass sensing experiments are based on the electrodeposition of loading material on a thin metallic fiber (the thin rod). Copper has been used to load the propagation of acoustic waves in gold fibers. The mass of copper deposited and the phase shift of the acoustical thin rod delay line were monitored simultaneously by a computer. Mass response curves showing the variation in phase due to the mass deposited per unit surface area were then obtained in order to determine the mass sensitivity. Both flexural and extensional wave modes have been excited. Theoretical and experimental results were found to be consistent in both sign and magnitude.
机译:提出了细杆声波传感器质量灵敏度的理论和实验研究。从色散方程的低频近似中,考虑到载荷层的弹性和惯性,可以得出描述质量灵敏度的关系的明确形式。给出了三种最低的细杆声模式。质量感测实验基于负载材料在细金属纤维(细棒)上的电沉积。铜已被用来加载金纤维中声波的传播。用计算机同时监测沉积的铜的质量和细杆声延迟线的相移。然后获得质量响应曲线,以显示由于每单位表面积沉积的质量引起的相位变化,以确定质量敏感性。弯曲波模式和拉伸波模式都已被激发。理论和实验结果被发现在符号和大小上都是一致的。

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