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Piston ring cylinder liner scuffing phenomenon: Investigation, simulation and prevention

机译:活塞环缸套磨损现象:调查,仿真和预防

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In spite of being a popular topic in technical publications, scuffing between piston ring face and cylinder liner is an extremely unpredictable and hard-to-reproduce phenomenon that significantly decreases engine performance. This paper will discuss results of metallurgical and metrological (post-mortem) examinations of he scuffing between hard and soft cylinder liners and different piston ring coatings after field, engine and bench testing. Datailed metallurgical analysis describes the lubricity mechanism between various piston ring coatings and iron cylinder liner at different temperatures with and without oil. The paper will explain the origin of the scuffing through lack of or inadequate lubrication at top dead center, particularly for hardened iron heavy-duty diesel cylinder liners. The mechanism of the scuffing origin and subsequent catastrophic seizer during lab testing with Falex and LS9 machines were evaluated through coefficient of friction and acoustic emission measurements. To simulate the same scuffing mechanism between piston ring and cylinder liner after field usage and accelerated lab testing, special testing methodology and measurement techniques were developed. The paper will provide the data from tibological testing of the conventional and new piston ring coatings against hard and soft cylinder liners at different temperatures with and without oil. A new type of piston ring coating will be described that decreases the scuffing phenomenon appearance.
机译:尽管是技术出版物中的流行课题,活塞环面部和汽缸套之间的磨损是一种极其不可预测的并且难以繁殖的现象,显着降低了发动机性能。本文将讨论冶金和计量(后验证)检查的结果,他在钢板和软缸衬垫和不同的活塞环涂层之间磨损,发动机和板凳测试。 DATaILED冶金分析描述了各种活塞环涂层与铁缸衬里之间的润滑机制,在不同温度下,不含油状物。本文将通过缺乏或不足的润滑在顶部死亡中心缺乏或不充分的润滑来解释磨损的起源,特别是对于硬化铁重型柴油缸衬里。通过摩擦系数和声发射测量评估使用Falex和LS9机器的实验室测试期间磨损起源和随后的灾难性Seizer的机制。为了在现场使用和加速实验室测试之后模拟活塞环和气缸衬里之间的相同磨损机制,开发了特殊的测试方法和测量技术。本文将提供传统和新的活塞环涂层的突然间测试的数据,以及在不同的温度下的硬质和软缸衬垫,在不同的温度下,没有油。将描述一种新型的活塞环涂层,这降低了扫描现象的外观。

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