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首页> 外文期刊>Journal of Physics, D. Applied Physics: A Europhysics Journal >Prediction of asperity contact condition using FFT-based analysis for micro-grooved surface design in tribological applications
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Prediction of asperity contact condition using FFT-based analysis for micro-grooved surface design in tribological applications

机译:在摩擦学应用中,基于FFT的微沟槽表面设计的粗糙接触条件预测

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In this paper, the frictional behaviours of single and multi-balls slid against micro-grooved silicon surfaces were investigated by using a micro-tribotester built inside a scanning electron microscope. Various micro-grooves were fabricated on the silicon surface to investigate the frictional behaviour with respect to the contact geometry between the surface asperities. Particularly, fast Fourier transform (FFT) analyses of the friction signals were performed with the motivation to assess the contact conditions. The primary objective of this paper was to understand better the asperity interaction condition at the sliding interface by analysing the frictional force signal using FFT. The experimental and numerical simulation results showed that the relative geometric ratio and the distribution of contact asperities on the surfaces could be predicted by the power and frequency spectra of the FFT analysis of the friction signal. Also, the frictional behaviour for multi-asperities was found to be the result of superposition of the frictional interaction of each asperity contact. It is expected that these observations will be utilized for the design of micro-structured surface with optimum geometry for better tribological performance. [References: 29]
机译:在本文中,使用内置在扫描电子显微镜中的微型三硼酸酯,研究了单球和多球在微沟槽硅表面上的摩擦行为。在硅表面上制作了各种微沟槽,以研究相对于表面粗糙之间的接触几何形状的摩擦行为。尤其是,对摩擦信号进行了快速傅里叶变换(FFT)分析,以评估接触条件。本文的主要目的是通过使用FFT分析摩擦力信号来更好地了解滑动界面上的粗糙相互作用条件。实验和数值模拟结果表明,可以通过摩擦信号的FFT分析的功率和频谱来预测相对几何比和表面接触凹凸的分布。同样,发现多粗糙性的摩擦行为是每个粗糙接触的摩擦相互作用叠加的结果。预期这些观察将用于具有最佳几何形状的微结构表面的设计,以获得更好的摩擦性能。 [参考:29]

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