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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part J. Journal of engineering tribology >Investigation of the wear of engine journal bearings approaching severe lubrication conditions using a microabrasion tester
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Investigation of the wear of engine journal bearings approaching severe lubrication conditions using a microabrasion tester

机译:用微交换测试仪接近严重润滑条件的发动机轴颈轴承磨损的研究

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摘要

Ideally, engine journal bearings are expected to operate under hydrodynamic lubrication regime to limit wear and promote minimal friction by sliding. Nevertheless, engine journal bearings fail since wear caused by severe conditions in actual engine operation, such as start/stop, misalignment, lubricant degradation, overheating, and debris contamination, producing a transition from hydrodynamic to mixed and boundary lubrication regimes and wear increased in both engine journal bearings and crankshaft. Thus, this work aims to study the influence of boundary lubrication, engine mineral oil aging, and debris contamination on wear of engine journal bearings. An adapted microscale abrasion tester using a ball-on-concave flat configuration was used to reproduce boundary lubrication under controlled conditions. Steel balls having a similar surface than crankshafts and concave flat samples cut from actual engine journal bearings were tested. The tests were run under boundary lubrication at a constant load, speed, and sliding distance at 26 celcius and 100 celcius using separately clean fresh and aged engine mineral oil, and then, tests were conducted using the oils contaminated with hard abrasive particles. The engine mineral oil was degraded by a laboratory aging process approaching oxidation of an engine mineral oil used in actual use conditions. Oxidation, additives depletion and changes in viscosity were evaluated. The wear volumes and scar morphologies of engine journal bearing samples were analyzed. The results suggested that high temperature was the main contributor for wear increase in engine journal bearings, while oil aging and debris did not influence considerably on the wear. However, the oils contaminated with hard particles produced a wear decrease in engine journal bearing samples but increased wear in rotary balls.
机译:理想情况下,预计发动机轴颈轴承将在流体动力润滑制度下运行,以限制磨损并通过滑动促进最小的摩擦。尽管如此,发动机轴颈轴承失败了,自实际发动机运行中严重的条件引起的磨损,如开始/停止,未对准,润滑剂降解,过热和碎片污染,从流体动力学到混合和边界润滑制度的过渡,两者都增加发动机轴颈轴承和曲轴。因此,这项工作旨在研究边界润滑,发动机矿物油老化和碎片污染对发动机轴颈轴承磨损的影响。使用球形凹凸平面配置的适应性微观磨损测试仪在受控条件下再现边界润滑。测试了与曲轴和从实际发动机轴颈轴承切割的曲轴和凹凸平面样品相似的表面的钢球。在26个塞尔西乌斯的恒定负载,速度和滑动距离下,在26个塞尔西乌斯和100个塞尔西乌斯使用单独清洁的新鲜和老化发动机矿物油来运行测试,然后使用用硬磨料颗粒污染的油进行测试。通过在实际使用条件下使用的发动机矿物油氧化的实验室老化过程降低了发动机矿物油。评估氧化,添加剂耗尽和粘度的变化。分析了发动机轴颈轴承样品的磨损体积和瘢痕形态。结果表明,高温是发动机轴颈轴承磨损增加的主要因素,而油老化和碎片在磨损上没有相当影响。然而,用硬质颗粒污染的油产生了发动机轴颈轴承样品的磨损减少,而是增加旋转球的磨损。

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