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Dual-motion fretting wear behaviour of 7075 aluminium alloy

机译:7075铝合金的双动微动磨损行为

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摘要

The dual-motion fretting tests composed of the tangential and radial fretting, have been carried out. Such fretting mode is essentially induced by the action of an oscillating normal force in a ball-on-inclined flat contact (45° and 60°). Two flat specimens of 7075 aluminium alloy are symmetrically fixed at two sides of the 52100 steel ball in order to simplify dynamic analysis of the contact condition. The maximum imposed loads are varied from 200 to 800 N at a constant loading speed of 6 mm/min. Variations of vertical force vs. displacement have been recorded as a function of cycles. The effect of the cyclic vertical force and the inclined angle are investigated. Dynamic analysis in combination with microscopic examinations through optical microscopy and confocal laser scanning microscope (CLSM) shows that contact wear, cracking, and plastic deformation accumulation with a strong asymmetry in damage morphology occurred for dual-motion fretting. A transition of fretting mode from dual-motion to radial fretting mode may occur due to a strong modification of local contact configuration. Fretting behaviour between dual-motion, pure tangential and radial fretting is qualitatively compared.
机译:进行了由切向和径向微动组成的双动微动试验。这种微动模式基本上是由倾斜的球形平触点(45°和60°)中的法向振荡力引起的。将两个7075铝合金的扁平试样对称地固定在52100钢球的两侧,以简化接触条件的动态分析。在6 mm / min的恒定加载速度下,最大施加载荷从200到800 N不等。垂直力与位移的变化已记录为周期的函数。研究了循环垂直力和倾斜角的影响。动态分析与通过光学显微镜和共聚焦激光扫描显微镜(CLSM)进行的显微镜检查相结合,表明双运动微动发生了接触磨损,破裂和塑性变形积累,损伤形态具有很强的不对称性。微动模式从双动模式向径向微动模式的过渡可能会由于局部触点配置的强烈修改而发生。定性地比较了双运动,纯切向和径向微动之间的微动行为。

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