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首页> 外文期刊>Sensors and Actuators, A. Physical >Correlation of high frequency QCM sphere-plate stiffness measurements with macroscopic frictional contacts in thin film and bulk stainless steel materials
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Correlation of high frequency QCM sphere-plate stiffness measurements with macroscopic frictional contacts in thin film and bulk stainless steel materials

机译:薄膜和散装不锈钢材料中宏观摩擦接触高频QCM球板刚度测量的相关性

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摘要

We compare friction coefficient values mu for stainless steel contacts, obtained directly using a ball on disk tribometer and/or a basic "da Vinci" method, with values inferred from two microscale analysis methods reported in the literature that treat the response of a Quartz Crystal Microbalance (QCM) to rubbing contacts with one or more ball bearings. The microscale analysis methods both employ a Cattaneo-Mindlin slip scenario to relate contact stiffness to QCM response. Analysis Method 1 involves sweeps of the QCM amplitude of vibration while ball bearings are held in continuous contact with the oscillating electrode. It obtains mu from the slope of the associated frequency or bandwidth shift trace. We find that this method yields values for mu that compare favorably with macroscale values when the bandwidth dependence on vibrational amplitude is utilized. Method 2 obtains mu by analyzing the shifts in frequency and bandwidth that occur when ball bearings are brought in and out of contact with a QCM's oscillating electrode at a fixed vibrational amplitude. We find that this method yields values for mu that compare favorably with macroscale values when the measurements are performed with a contact comprised of 3 close-packed ball bearings situated symmetrically about the center of the QCM electrode. Overall, the results validate the combination of assumptions employed in the analysis methods, and support the methods as a viable means for linkage of macro and nanoscale tribological measurements. (C) 2020 Elsevier B.V. All rights reserved.
机译:我们比较不锈钢触点的摩擦系数值Mu,直接在盘摩特计和/或基本的“达芬奇”方法上直接获得,从文献中报告的两种微米分析方法推断出了价值的值,这是一种治疗石英晶的响应微稳定(QCM)与一个或多个滚珠轴承摩擦触点。微尺度分析方法都采用Cattaneo-Mindin Slip场景,以将接触刚度与QCM响应相关联。分析方法1涉及泵的振动振幅的扫描,而滚珠轴承与振荡电极连续接触。它从相关频率或带宽换档轨迹的斜率获取MU。我们发现该方法为MU产生的值,当利用带宽依赖性时,可以在宏观值上比较的摩擦值。方法2通过分析滚珠轴承在固定振动幅度的柱轴承与QCM的振荡电极出现时发生的频率和带宽中的频率和带宽的换档来获得MU。我们发现该方法为MU产生有利地比较宏尺寸的μS值,当使用由对称地围绕QCM电极的中心对称的3个闭合填充球轴承组成的触点来进行宏观值。总体而言,结果验证了分析方法中采用的假设的组合,并支持该方法作为宏观和纳米级摩擦学衡量联系的可行性手段。 (c)2020 Elsevier B.v.保留所有权利。

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