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Composite Fretting Wear of Aluminum Alloy

机译:铝合金复合微动磨损

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摘要

A complex relative motion of fretting combined by dual motions of radial and tangential fretting was achieved on a modified fretting tester. The composite fretting motion was induced by the action of an oscillating normal force in a sphere-on-inclined flat contact (52100 steel ball against 2091 aluminum alloy). Two types of inclined angles (45° and 60°) were used in the tests. Variations of veridical force vs displacement have been recorded and analyzed as a function of cycles. Effects of the cyclic normal force and the inclined angle were discussed. The test results showed that wear, cracking and plastic deformation accumulation with a strong dissymmetry in damage morphology was observed. A transformation of fretting mode from composite to radial fretting mode occurred due to a strong modification at local contact configuration. As a conclusion, a physical model for wear mechanism of composite fretting was presented.
机译:在改进的微动测试仪上实现了微动的复杂相对运动与径向和切向微动的双重运动相结合。复合的微动运动是由倾斜的球形平触点(52100钢球对2091铝合金)的法向振荡力引起的。测试中使用了两种类型的倾斜角(45°和60°)。垂直力相对于位移的变化已被记录并分析为周期的函数。讨论了循环法向力和倾斜角的影响。试验结果表明,观察到磨损,开裂和塑性变形累积,并且在损伤形态上具有很强的不对称性。微动模式从复合模式向径向微动模式的转变是由于局部接触构型发生了很大的变化而引起的。作为结论,提出了复合微动磨损机理的物理模型。

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