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Tribological behaviour of alumina sliding against Ti6A14V in unlubricated contact

机译:氧化铝在未润滑接触中滑动对Ti6A14V的摩擦学行为

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Tribological behaviour of alumina balls (99.5precent) sliding against a Ti6A14V disc over a range of loads (5-80 N) and speeds (0.0625-1 m s~(-1)) has been investigated using a pin-on-disc tribometer under unlubricated conditions. The maximum wear coefficient was observed to be several orders of magnitude higher than the reported value for alumina against alumina or alumina against steel counterfaces. When the load or speed increased, the wear rate of the alumina ball increased initially and then decreased, showing typical transition features. On the other hand, the friction coefficients for the Ti6A14V/alumina tribosystem were found to increase inversely with the applied loads or the sliding speeds. The wear mechanisms and the wear transition were investigated based on examinations of worn surfaces as well as debris using SEM, XRD and XPS, and it was revealed that a tribochemical mechanism accounted for the observed high wear rate of alumina sliding against the titanium alloy.
机译:使用销钉盘式摩擦计研究了在一定负载(5-80 N)和速度(0.0625-1 ms〜(-1))下在Ti6A14V圆盘上滑动的氧化铝球(99.5%)的摩擦学行为未润滑的条件。观察到最大磨损系数比氧化铝对氧化铝或氧化铝对钢端面的报道值高几个数量级。当负载或速度增加时,氧化铝球的磨损率首先增加,然后降低,显示出典型的过渡特征。另一方面,发现Ti6A14V /氧化铝摩擦系统的摩擦系数与所施加的载荷或滑动速度成反比。通过使用SEM,XRD和XPS对磨损表面和碎屑进行检查,研究了磨损机理和磨损过渡,并发现摩擦化学机理可解释观察到的氧化铝在钛合金上滑动的高磨损率。

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