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Experimental and theoretical investigations about the nonlinear vibrations of rectangular atomic force microscope cantilevers immersed in different liquids

机译:矩形原子力显微镜悬臂的非线性振动浸没在不同液体中的实验和理论研究

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摘要

Nonlinear flexural vibrations of rectangular atomic force microscope cantilever have been investigated by both the theoretical model and experimental works. As for the theoretical model, the Timoshenko beam theory which takes the rotatory inertia and shear deformation effects into consideration has been adopted. To increase the accuracy of the theoretical model, all necessary details for cantilever and sample surface have been taken into account. Differential quadrature method as a simple and fast numerical method has been used for solving the differential equations. During the investigation, the softening behavior was observed for all cases. It was also seen that raising the amplitude of vibrations led to a decrease in the nonlinear resonant frequency to linear resonant frequency ratio. The effects of different parameters such as normal and lateral contact stiffness, cantilever thickness, the angle between cantilever and sample surface and tip height in the presence of air as environment on the softening behavior were also examined. It was also demonstrated that increasing the lateral and normal contact stiffness, but decreasing the Timoshenko beam parameter would lead to an increase in the amplitude of vibrations for the first and second modes. The vibrational behavior of cantilever immersed in different liquids including water, methanol, acetone and carbon tetrachloride has been studied. Results show that increasing the liquid density reduces the nonlinear frequency. Furthermore, experimental works were compared with theoretical model for water and air environments. Results show good agreement.
机译:通过理论模型和实验工程研究了矩形原子力显微镜悬臂的非线性弯曲振动。至于理论模型,采用了考虑旋转惯性和剪切变形效应的Timoshenko光束理论。为了提高理论模型的准确性,已经考虑了悬臂和样品表面的所有必要细节。差分正交方法作为简单快速的数字方法,用于解决微分方程。在调查期间,所有病例都观察到软化行为。还可以看出,提高振动的幅度导致非线性谐振频率的降低到线性谐振频率比。还研究了不同参数的影响,例如正常和横向接触刚度,悬臂厚度,悬臂与样品表面之间的角度和空气存在下的尖端高度作为软化行为的环境。还证明了横向和正常接触刚度,但减小Timoshenko光束参数将导致第一和第二模式的振动幅度增加。研究了悬浮在不同液体中的悬臂的振动行为,包括水,甲醇,丙酮和四氯化碳。结果表明,增加液体密度降低了非线性频率。此外,将实验工程与水和空气环境的理论模型进行了比较。结果显示良好的一致性。

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