首页> 外文会议>STLE/ASME Joint International Tribology Conference >DETERMINATION OF THE FRETTING REGIMES UNDER STICK-SLIP CONDITION USING THE PHASE DIFFERENCE BETWEEN FRICTION AND RELATIVE DISPLACEMENT OF TWO FRETTING SURFACES
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DETERMINATION OF THE FRETTING REGIMES UNDER STICK-SLIP CONDITION USING THE PHASE DIFFERENCE BETWEEN FRICTION AND RELATIVE DISPLACEMENT OF TWO FRETTING SURFACES

机译:使用摩擦摩擦和相对位移的相位差确定粘滑条件下的微动制度

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Friction and wear characteristics between two steel surfaces under fretting condition are experimentally investigated. The fretting damage caused by low-amplitude oscillatory motions can be classified into three regimes of gross-slip, mixed-slip and partial-slip depending on the degree of stick-slip phenomenon. One of the most important characteristics of fretting wear is the transition behavior from gross-slip to mixed-slip. Several criteria have been introduced for a quantitative determination of the transition between mixed-slip and gross-slip. However, the transition criteria have some problems in determining the regimes because parameters are difficult to calculate and those are frequently depending on system. To introduce new transition criteria in this study, the phase difference between friction force and the relative displacement are used to determine the transition behavior and to predict the amount of fretting wear. The validation of phase difference is investigated by comparing the hysteresis graphs of friction force and the relative displacement with sine waves according to phase differences.
机译:经过实验研究了微动条件下的两个钢表面之间的摩擦和磨损特性。根据粘滑现象的程度,低振幅振荡运动引起的微小振荡运动引起的损坏可以分为三个总体滑移,混合滑移和局部滑移的制度。微动磨损最重要的特征之一是从储物到混合滑动的过渡行为。已经介绍了几种标准,用于定量测定混合滑动和粗略滑动之间的过渡。然而,转换标准在确定制度时存在一些问题,因为参数难以计算,并且频繁地根据系统。为了在本研究中引入新的过渡标准,使用摩擦力和相对位移之间的相位差来确定过渡行为并预测磨损的磨损量。通过比较摩擦力的滞后图和根据相位差的摩擦力的滞后图来研究相位差的验证。

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