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Dynamic response of a cracked atomic force microscope cantilever used for nanomachining

机译:纳米加工裂纹原子力显微镜悬臂的动态响应

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摘要

The vibration behavior of an atomic force microscope [AFM] cantilever with a crack during the nanomachining process is studied. The cantilever is divided into two segments by the crack, and a rotational spring is used to simulate the crack. The two individual governing equations of transverse vibration for the cracked cantilever can be expressed. However, the corresponding boundary conditions are coupled because of the crack interaction. Analytical expressions for the vibration displacement and natural frequency of the cracked cantilever are obtained. In addition, the effects of crack flexibility, crack location, and tip length on the vibration displacement of the cantilever are analyzed. Results show that the crack occurs in the AFM cantilever that can significantly affect its vibration response.>PACS: 07.79.Lh; 62.20.mt; 62.25.Jk
机译:研究了纳米加工过程中带有裂纹的原子力显微镜[AFM]悬臂的振动行为。悬臂被裂缝分为两个部分,并使用旋转弹簧来模拟裂缝。可以表示裂纹悬臂的两个独立的横向振动控制方程。然而,由于裂纹相互作用,相应的边界条件被耦合。得到了裂纹悬臂的振动位移和固有频率的解析表达式。此外,分析了裂纹的柔韧性,裂纹的位置和尖端长度对悬臂振动位移的影响。结果表明,裂纹出现在AFM悬臂中,可显着影响其振动响应。> PACS: 07.79.Lh; 62.20.mt; 62.25。

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