首页> 外文会议>ASME international design engineering technical conferences and computers and information in engineering conference 2014 >INVESTIGATION OF DUAL-FREQUENCY EXCITATION AND THE INFLUENCE OF EXCITATION PHASE ON A CONSTRAINED CANTILEVERED BEAM SYSTEM
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INVESTIGATION OF DUAL-FREQUENCY EXCITATION AND THE INFLUENCE OF EXCITATION PHASE ON A CONSTRAINED CANTILEVERED BEAM SYSTEM

机译:双向激励研究及激励阶段对约束悬臂梁系统的影响

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Many types of nonlinear phenomena have been studied in atomic force microscopy (AFM). As a tool for performing topographical measurements and material characterizations at the micro- and nano-scales, improving the understanding of the dynamic AFM system will impact many areas of research. The authors' previous studies have shown that in dynamic AFM, with dual-frequency excitation, influence of attractive and repulsive interaction forces can be revealed by the presence of specific frequency components in the response. Motivated by the phenomenon predicted in the AFM system, a macro-scale test platform is used in this effort in order to qualitatively investigate the relationships between the dual-frequency excitation, interaction conditions, and the specific frequency components observed in the response. The experimental setup includes a base driven cantilever with a tip, a soft material as the sample and an electromagnet behind the sample to provide attractive interaction forces. The components in the experimental setup are characterized and the system is studied by using numerical and experimental methods. A thorough numerical and experimental study of the influence of the phase difference between the two frequency components in the excitation signal is investigated in this work.
机译:在原子力显微镜(AFM)中已经研究了许多类型的非线性现象。作为在微米和纳米尺度上执行地形测量和材料表征的工具,提高对动态AFM系统的了解将影响许多研究领域。作者以前的研究表明,在动态AFM中,在双频激励下,响应中特定频率分量的存在可以揭示吸引力和排斥力的影响。受AFM系统中预测的现象的启发,在此工作中使用了宏测试平台,以定性研究双频激励,相互作用条件和响应中观察到的特定频率成分之间的关​​系。实验装置包括带有尖端的基座驱动悬臂,作为样品的软材料以及位于样品后方的电磁体,以提供有吸引力的相互作用力。对实验装置中的组件进行了表征,并通过数值和实验方法对系统进行了研究。在这项工作中,对两个频率分量之间的相位差对激励信号的影响进行了彻底的数值和实验研究。

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