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Frequency Shift of Carbon-Nanotube-Based Mass Sensor Using Nonlocal Elasticity Theory

机译:基于非局部弹性理论的碳纳米管质量传感器的频移

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摘要

The frequency equation of carbon-nanotube-based cantilever sensor with an attached mass is derived analytically using nonlocal elasticity theory. According to the equation, the relationship between the frequency shift of the sensor and the attached mass can be obtained. When the nonlocal effect is not taken into account, the variation of frequency shift with the attached mass on the sensor is compared with the previous study. According to this study, the result shows that the frequency shift of the sensor increases with increasing the attached mass. When the attached mass is small compared with that of the sensor, the nonlocal effect is obvious and increasing nonlocal parameter decreases the frequency shift of the sensor. In addition, when the location of the attached mass is closer to the free end, the frequency shift is more significant and that makes the sensor reveal more sensitive. When the attached mass is small, a high sensitivity is obtained.
机译:利用非局部弹性理论,分析得出了碳纳米管悬臂梁传感器的频率方程。根据该等式,可以获得传感器的频移和附着质量之间的关系。如果不考虑非局部效应,则将频移随传感器附着质量的变化与以前的研究进行比较。根据这项研究,结果表明,传感器的频移随着附着质量的增加而增加。与传感器相比,当附加质量较小时,非局部效应很明显,增大非局部参数会降低传感器的频移。另外,当附着质量的位置更靠近自由端时,频移会更显着,这会使传感器显示出更高的灵敏度。当附着质量小时,可获得高灵敏度。

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