首页> 外文期刊>Journal of Micromechanics and Microengineering >Spatio-temporal dynamics of microcantilevers tapping on samples observed under an atomic force microscope integrated with a scanning laser Doppler vibrometer: applications to proper orthogonal decomposition and model reduction
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Spatio-temporal dynamics of microcantilevers tapping on samples observed under an atomic force microscope integrated with a scanning laser Doppler vibrometer: applications to proper orthogonal decomposition and model reduction

机译:在与扫描激光多普勒振动计集成的原子力显微镜下观察到的样品上的微悬臂攻丝的时空动力学:在适当的正交分解和模型简化中的应用

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摘要

As the use of microsystems has become more widespread, the need for reduced order models that accurately and efficiently predict their dynamic behavior has also grown. Proper orthogonal decomposition (POD) has proven to be a beneficial model-reduction tool in structural dynamics; however, its use in the development of reduced order models of microsystems from experimental data has not received much attention. In this paper, we combine a scanning laser vibrometer with a fully functional atomic force microscope (AFM) to measure the vibration field of AFM microcantilevers tapping on stiff and soft samples. Both stiff and soft AFM microcantilevers with internal resonance are studied. This represents a wide class of vibrating microsystems with spatially confined nonlinearity at the sharp probe tip arising from short and long range surface forces. We apply POD to the measured vibration field of AFM cantilevers and show that a small number of experimentally extracted proper orthogonal modes (POMs) can accurately represent the nonlinear microcantilever dynamics under a variety of conditions. Moreover only one or two sets of POMs are needed to represent the dynamics under a wide range of operating conditions including in the attractive and repulsive regimes of oscillation.
机译:随着微系统的使用变得越来越广泛,对精确,有效地预测其动态行为的降阶模型的需求也在增长。正确的正交分解(POD)已被证明是结构动力学中一种有益的模型简化工具。然而,它在根据实验数据开发微系统的降阶模型中的应用并未引起太多关注。在本文中,我们将扫描激光振动计与功能齐全的原子力显微镜(AFM)结合在一起,以测量敲击刚性和软质样品的AFM微悬臂梁的振动场。研究了具有内部共振的刚性和软性AFM微悬臂梁。这代表了一大类振动微系统,它们在尖锐的探针尖端具有空间受限的非线性,这是由短距离和长距离表面力引起的。我们将POD应用于AFM悬臂的测得的振动场,并表明少量实验提取的适当正交模式(POM)可以准确表示各种条件下的非线性微悬臂动力学。此外,仅需要一组或两组POM即可表示各种工作条件下的动力学,包括有吸引力的和排斥的振动状态。

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