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Machining of Micro Dimples for Friction Reduction in Cylinder Liners

机译:用于加工气缸衬套摩擦减少

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In combustion engines a large percentage of mechanical losses result from friction, for example within the cylinder liner. In order to reduce the friction between cylinder liner and piston, micro dimples in the surface decrease the internal friction of combustion engines. These dimples hold back lubricant from being pressed out of the tribological contact zone which enhances the friction behaviour. Competing processes such as laser material removal allow micro dimples to be generated at high productivity. Therefore the process time of machining micro dimples needs to be reduced in order to maintain low production costs. For this purpose a rotating single-toothed tool is used in an axially parallel turn-milling process. The aim of this paper is to show the investigation of productive machining and the effect of the micro dimples in heavy duty cylinder liners. The cutting behaviour is investigated by analyzing micro dimples cut at high speed concerning their burr formation and geometrical deviations.
机译:在燃烧发动机中,从摩擦产生的大量机械损失是由摩擦,例如在汽缸衬里内产生。为了减少气缸衬套和活塞之间的摩擦,表面中的微凹槽降低了燃烧发动机的内部摩擦。这些凹坑阻挡润滑剂从摩擦接触区域压出,这增强了摩擦行为。竞争过程,如激光材料去除允许以高生产率产生微凹坑。因此,需要减少加工微窝的处理时间以保持低生产成本。为此目的,在轴向平行的转铣过程中使用旋转的单齿形工具。本文的目的是展示重型气缸衬套中微凹槽的生产性加工和微齿的影响。通过分析其毛刺形成和几何偏差的高速分析微凹槽来研究切割行为。

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