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Extraction and tribological investigation of top piston ring zone oil from a gasoline engine

机译:汽油机顶部活塞环区油的提取及摩擦学研究

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摘要

With tightening emission regulations, increased expected fuel economy, and longer drain intervals impacting on lubricant formulation, greater understanding of how oil degrades in an automotive engine is becoming ever more important. Equally significant is the effect that this degraded lubricant has on the tribological operation of the engine, particularly its overall internal friction and component wear. In a previous paper, four tests to degrade oil in a single cylinder engine were reported [1]. These tests were set up such that the lubricating oil was degraded in the ring pack before returning to the sump, where it was sampled and chemical and rheological analysis undertaken. This paper reports the extension of this work using the same Hydra engine and describes how oil has additionally been extracted from the rear of the top piston ring during engine operation. This extracted oil has then been subjected to similar analysis as the sump oil samples in the previous tests, along with additional analysis to look at the tribological properties of the oil using tribometers. The results clearly show significant differences in the rheological, tribological, and chemical properties of the fresh oil and used sump oil samples when compared with the top ring zone (TRZ) oil samples, particularly the effect of load on the levels of volatiles present in the TRZ samples and their effect on traction and friction coefficient values during tribological testing.
机译:随着严格的排放法规,增加的预期燃料经济性和更长的排油间隔影响润滑剂配方,对机油在汽车发动机中如何降解的深入了解变得越来越重要。同样重要的是,这种降解的润滑剂对发动机的摩擦性能,特别是其整体内部摩擦和部件磨损的影响。在以前的论文中,报告了四项测试以降低单缸发动机的机油[1]。进行这些测试的目的是使润滑油在返回到油底壳之前在环管中降解,然后在油底壳中取样并进行化学和流变分析。本文报道了使用同一台Hydra发动机进行此项工作的扩展,并描述了在发动机运行期间如何从顶部活塞环的后部另外抽出机油。然后,对该提取的油进行了与先前测试中的油底壳油样品相似的分析,并进行了其他分析,以使用摩擦计查看该油的摩擦学特性。结果清楚地表明,与顶环区(TRZ)油样品相比,新鲜油和用过的油底壳油样品的流变,摩擦学和化学性质存在显着差异,尤其是负荷对油中挥发性成分含量的影响。 TRZ样品及其在摩擦学测试中对牵引力和摩擦系数值的影响。

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