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A rig test to measure friction and wear of heavy duty diesel engine piston rings and cylinder liners using realistic lubricants

机译:使用实际润滑剂测量重型柴油机活塞环和气缸套摩擦和磨损的装置测试

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摘要

Laboratory tests to evaluate piston ring and cylinder liner materials for their friction and wear behavior in realistic engine oils are described to support the development of new standard test methods. A ring segment was tested against a flat specimen of gray cast iron typical of cylinder liners. A wide range of lubricants including Jet A aviation fuel, mineral oil, and a new and engine-aged, fully formulated 15W40 heavy duty oil were used to evaluate the sensitivity of the tests to lubricant condition. Test temperatures ranged from 25 to 100 ℃. A stepped load procedure was used to evaluate friction behavior using a run-in ring segment. At 100℃, all lubricants showed boundary lubrication behavior, however, differences among the lubricants could be detected. Wear tests were carried out at 240 N for 6 h at 100℃ with new ring segments. The extent of wear was measured by weight loss, wear volume and wear depth using a geometric model that takes into account compound curvatures before and after testing. Wear volume by weight loss compared well with profilometry. Laboratory test results are compared to engine wear rates.
机译:描述了用于评估活塞环和气缸套材料在实际发动机油中的摩擦和磨损行为的实验室测试,以支持新标准测试方法的开发。相对于气缸套典型的灰口铸铁的扁平试样测试了一个环段。广泛使用的润滑剂包括Jet A航空燃料,矿物油,以及新的和发动机老化的,全配方的15W40重型润滑油,用于评估测试对润滑剂状况的敏感性。测试温度范围为25至100℃。使用磨合环段,采用阶梯式加载程序评估摩擦性能。在100℃时,所有润滑剂均表现出边界润滑行为,但可以检测到润滑剂之间的差异。使用新的环段在100 N下于240 N下进行了6小时的磨损测试。使用几何模型通过重量损失,磨损量和磨损深度来测量磨损程度,该几何模型考虑了测试前后的复合曲率。与轮廓测量法相比,按重量减少的磨损量更好。将实验室测试结果与发动机磨损率进行比较。

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