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Lubricant film thickness and friction force measurements in a laser surface textured reciprocating line contact simulating the piston ring-liner pairing

机译:激光表面纹理往复线接触中的润滑剂膜厚度和摩擦力测量,模拟活塞环-衬套配对

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Applying surface texture to piston liners may provide an effective means of controlling friction and hence improving engine efficiency. However, little is understood about the mechanisms by which pockets affect friction, primarily because of a lack of reliable experimental measurements. To address this, the influence of surface texture on film thickness and friction force was measured simultaneously in a convergent divergent bearing, under conditions that closely replicate an automotive piston ring-liner conjunction. Film thicknesses were measured using a modified version of the ultra-thin film optical interferometry approach, enabling film thicknesses < 50 nm to be measured under transient, mixed lubrication conditions. This involved using the out-of-contact curvature of the specimens in place of a spacer layer and analysing multiple interference fringes to avoid fringe ambiguity. Tests were performed on both a textured sample (with features oriented normal to the direction of sliding) and a non-textured reference sample, while angular velocity, applied normal load and lubricant temperature were controlled in order to study the effect of varying lubrication regime (as typically occurs in service). Results showed that the presence of surface pockets consistently enhances fluid film thickness in the mixed lubrication regime by approximately 20 nm. Although this is only a modest increase, the effect on friction is pronounced (up to 41% under these conditions), due to the strong dependence of friction on film thickness in the mixed regime. Conversely, in the full film regime, texture caused a reduction in film thickness and hence increased friction force, compared with the non-textured reference. Both textured and non-textured friction values show nearly identical dependence on film thickness, (showing that, under these conditions, texture-induced friction reduction results entirely from the change in film thickness). These results are important in providing film thickness data to validate piston-ring lubrication models and also in helping to understand the effect of surface roughness on texture performance. (C) 2016 Elsevier Ltd. All rights reserved.
机译:在活塞衬套上施加表面纹理可以提供控制摩擦并因此提高发动机效率的有效手段。但是,人们对袋影响摩擦的机理了解甚少,这主要是由于缺乏可靠的实验测量结果。为了解决这个问题,在会聚发散轴承中,在紧密复制汽车活塞环-缸套连接的条件下,同时测量了表面纹理对薄膜厚度和摩擦力的影响。使用超薄膜光学干涉测量方法的改进版本来测量膜厚,从而能够在瞬态混合润滑条件下测量<50 nm的膜厚。这涉及使用样品的非接触曲率代替间隔层,并分析多个干涉条纹以避免条纹模糊。对带纹理的样品(特征垂直于滑动方向的方向)和无纹理的参考样品都进行了测试,同时控制了角速度,施加的法向载荷和润滑剂温度,以研究不同润滑方式的影响(通常会在服务中出现)。结果表明,在混合润滑过程中,表面凹坑的存在持续增加了液膜厚度约20 nm。尽管这只是适度的增加,但是由于在混合状态下摩擦对薄膜厚度的强烈依赖性,对摩擦的影响是明显的(在这些条件下高达41%)。相反,在全膜状态下,与无纹理的参考相比,纹理会导致膜厚度的减小,从而增加摩擦力。纹理和非纹理摩擦值对膜厚的依赖性几乎相同(表明,在这些条件下,纹理引起的摩擦减小完全是由膜厚的变化引起的)。这些结果对于提供膜厚数据以验证活塞环润滑模型以及帮助理解表面粗糙度对织构性能的影响非常重要。 (C)2016 Elsevier Ltd.保留所有权利。

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