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首页> 外文期刊>Wear: an International Journal on the Science and Technology of Friction, Lubrication and Wear >The effect of contact geometry on fretting wear rates and mechanisms for a high strength steel
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The effect of contact geometry on fretting wear rates and mechanisms for a high strength steel

机译:接触几何形状对高强度钢微动磨损率和机理的影响

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摘要

This paper investigates the effect that contact geometry on fretting wear rates and mechanisms for non-conforming contacts. Tests have been conducted in the gross sliding regime under a constant normal load in a cylinder-on-flat configuration with a high strength steel for a range of cylinder radii. Two distinct damage mechanisms have been identified, with the operative mechanism depending upon contact geometry. Fretting of less conforming contacts results in higher wear rates compared to that associated with more conforming contacts where the wear rate is significantly lower (between 20% and 50% of that of the less conforming contacts) in addition, much higher levels of adhesive transfer are observed in more conforming contacts, with beds of metallic debris particles being evident. It is proposed that the dependence of wear rate and mechanism on the contact geometry is not associated with differences in contact pressure (although these do exist), but is associated with the influence of contact geometry on debris flow out of the fretting contact and on the effectiveness of oxygen being excluded from the centre of the fretting contact patch.
机译:本文研究了接触几何形状对微动磨损率和不合格接触机理的影响。已经在大缸滑动状态下,在恒定的法向载荷下,在高强度钢在一定半径范围内使用高强度钢制成的扁平气缸上,进行了试验。已经确定了两种不同的损坏机制,其操作机制取决于接触几何形状。与较贴合的触点相比,较不贴合的触点的微动导致较高的磨损率,后者的磨损率明显较低(介于较不贴合的触点的20%至50%之间),此外,粘合剂的转移水平更高在更贴合的接触中观察到,金属碎屑颗粒床很明显。有人提出,磨损率和机理对接触几何形状的依赖性与接触压力的差异无关(尽管确实存在),但与接触几何形状对从微动接触中流出的碎屑的影响以及对摩擦的影响有关。从微动接触斑片的中心排除了氧气的有效性。

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