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Experimental and theoretical studies of frequency response function of dagger‐shaped atomic force microscope cantilever in different immersion environments

机译:不同浸没环境中匕首原子力显微镜悬臂频率响应函数的实验与理论研究

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Summary In this study, the amplitude of frequency response functions of vertical and rotational displacements and resonant frequency of a dagger‐shaped atomic force microscope cantilever have been investigated. To increase the accuracy of theoretical model, all necessary details for cantilever and sample surface have been taken into account. In this paper, carbon tetrachloride ( CCL 4 ), methanol, acetone, water and air have been considered as the environments. In the most cases, presence and absence of tip–sample interaction force have studied. For a sample cantilever immersed in air, both of the Euler–Bernoulli and Timoshenko beam theories have been compared. The results indicate that the tip–sample interaction force raises the resonant frequency. Increasing the liquid viscosity leads to a decrease in the resonant frequency and the amplitude of frequency response functions of vertical and rotational displacements. Increasing the rectangular and tapered parts lengths, decreases the resonant frequency and amplitude of frequency response functions of vertical and rotational displacements. By increasing the cantilever thickness the resonant frequency and amplitude of frequency response functions of vertical and rotational displacements increases. Theoretical model for air and water has been compared with experimental work. Results show good agreement.
机译:发明内容在本研究中,研究了垂直和旋转位移的频率响应函数的幅度和沿法格形原子力显微镜悬臂的谐振频率。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。本文认为,四氯化碳(CCl 4),甲醇,丙酮,水和空气被认为是环境。在大多数情况下,研究了尖端样品相互作用力的存在和不存在。对于浸入空气中的样品悬臂,欧拉伯努利和TIMOSHENKO光束理论进行了比较。结果表明尖端样品相互作用力提高了谐振频率。增加液体粘度导致谐振频率的降低和垂直和旋转位移的频率响应函数的幅度。增加矩形和锥形部件长度,降低垂直和旋转位移的频率响应函数的谐振频率和幅度。通过增加悬臂厚度,垂直和旋转位移的频率响应函数的谐振频率和幅度增加。与实验工作相比,空气与水的理论模型。结果表明良好的一致意见。

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