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The Transient Friction Response of a Laser-Textured, Reciprocating Contact to the Entrainment of Individual Pockets

机译:激光纹理往复接触对单个口袋夹带的瞬态摩擦响应

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摘要

To shed light on the mechanisms with which surface texture improves the tribological performance of piston–liner contacts, we have measured the transient friction response as individual pockets pass through a reciprocating sliding contact. Tests were performed at different sliding speeds and results compared to those from a non-textured, reference specimen under different lubrication regimes. At low speed when the contact is in the boundary regime, friction force falls abruptly as each pocket leaves the contact zone, before gradually returning to an approximately steady-state value. This suggests that each pocket acts to temporarily increase the film thickness, which then decays to its non-textured value as oil is squeezed out. At higher speeds, friction is seen to reduce in a stepwise fashion, since the period between pockets being entrained is less than the time taken for the film to decay. In addition, friction results obtained when the contact is operating in the middle of the mixed regime point to a temporary film thickness collapse as the pocket enters the contact, and this agrees with recent modelling predictions. At higher speeds, the compound effect of successive pockets is to shift the contact to the right on Stribeck curve. These results imply that each pocket gives rise to an increase in film thickness that is both short-lived and small in magnitude (we estimate a few tens of nm). However, the resulting effect on friction can be significant (up to 82 % in this study) for two reasons: (1) provided the pocket frequency is sufficiently high, each successive pocket entrainment builds the film up without there being time for it to reduce back to its steady-state value; (2) when the contact is in the mixed regime, the Stribeck curve is at its steepest and friction is therefore most sensitive to film thickness changes. This has important practical implications in that pocket spacing on piston liners should be varied as a function of reciprocating sliding speed.
机译:为了阐明表面纹理改善活塞-缸套接触的摩擦性能的机理,我们测量了当各个凹穴通过往复滑动接触时的瞬态摩擦响应。在不同的润滑方式下,以不同的滑动速度进行了测试,结果与无纹理的参考样品相比有所不同。在低速下,当接触处于边界状态时,摩擦力会随着每个凹穴离开接触区域而突然下降,然后逐渐返回到近似稳态值。这表明每个凹穴的作用都是暂时增加膜的厚度,然后随着油的挤出,膜的厚度会下降至其非纹理化值。在较高的速度下,可以看到摩擦以逐步的方式减小,因为被夹带的袋之间的时间间隔小于薄膜腐烂所花费的时间。另外,当触点在混合状态的中间进行操作时获得的摩擦结果表明,当凹穴进入触点时,薄膜的暂时厚度会崩溃,这与最近的模型预测相符。在较高的速度下,连续凹穴的复合作用是使触头在Stribeck曲线上向右移动。这些结果表明,每个凹穴都会导致膜厚度的增加,这种增加既是短暂的,又是小幅度的(我们估计几十纳米)。但是,由于以下两个原因,对摩擦产生的影响可能非常显着(在本研究中高达82%):(1)如果囊袋频率足够高,则每次连续的囊袋夹带都会积聚膜而没有时间减少膜回到其稳态值; (2)当接触处于混合状态时,斯特里贝克曲线最陡,因此摩擦对膜厚变化最敏感。这具有重要的实际意义,因为活塞衬套上的凹坑间距应根据往复滑动速度而变化。

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