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首页> 外文期刊>IEEE transactions on nanotechnology >Material-Insensitive Feature Depth Control and Machining Force Reduction by Ultrasonic Vibration in AFM-Based Nanomachining
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Material-Insensitive Feature Depth Control and Machining Force Reduction by Ultrasonic Vibration in AFM-Based Nanomachining

机译:基于AFM的纳米加工中材料不敏感的特征深度控制和超声振动降低加工力

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摘要

This paper investigates the effect of ultrasonic tip–sample vibration in regulating the fabricated feature depth and reducing machining force in ultrasonic vibration-assisted nanomachining with an atomic force microscope (AFM). Nanopatterns on aluminum and polymethyl methacrylate (PMMA) substrates are fabricated by the ultrasonic vibration-assisted nanomachining approach. It is demonstrated that using a small set-point force and the same vibration amplitude for machining PMMA and aluminum, nearly the same feature depth is achieved. The fabrication depth is mainly controlled by the amplitude of the tip–sample $z$ -vibration, and is insensitive to sample materials. A theoretical analysis of the sample contact stiffness and dynamic stiffness of the cantilever is used to explain the observed material-insensitive depth regulation by ultrasonic tip–sample vibration. The ultrasonic vibration also effectively reduces the normal force and friction during nanomachining. On both PMMA and aluminum samples, experimental results demonstrate significant reduction in set-point force and lateral friction force in ultrasonic vibration-assisted nanomachining compared with nanomachining without ultrasonic $z$-vibration. Smaller tip wear is observed in ultrasonic vibration-assisted nanomachining for the fabrication of PMMA samples.
机译:本文研究了在原子振动显微镜(AFM)的超声振动辅助纳米加工中,超声尖端样品振动在调节加工特征深度和减小加工力方面的作用。通过超声振动辅助纳米加工方法在铝和聚甲基丙烯酸甲酯(PMMA)基板上制作纳米图案。结果表明,使用较小的设定点力和相同的振动幅度来加工PMMA和铝,可以实现几乎相同的特征深度。制造深度主要受尖端样品 $ z $ -振动的幅度控制,并且对样品材料不敏感。 。悬臂的样品接触刚度和动态刚度的理论分析用于解释通过超声尖端-样品振动观察到的材料不敏感的深度调节。超声波振动还可以有效减少纳米加工过程中的法向力和摩擦。在PMMA和铝样品上,实验结果均表明,与不使用超声的纳米加工相比,超声振动辅助纳米加工的设定点力和侧向摩擦力显着降低 $ z $ -振动。在用于PMMA样品制造的超声振动辅助纳米加工中观察到较小的尖端磨损。

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