活塞/内孔界面技术摩擦性能的比较研究

Josef Edtmayer, Siegfried Lösch, Hannes Hick, Simon Walch
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引用次数: 11

摘要

今天,用于乘用车应用的发动机曲轴箱设计基于两种主要材料技术:灰铸铁和越来越多的铝基概念。由于铝的耐磨性低,后一种概念需要为气缸膛表面提供耐磨保护层。铁基热喷涂涂层被广泛用于此目的。正如先前的研究所表明的那样,该涂层显著改善了摩擦学性能。此外,基于铝的概念在发动机重量和热管理方面具有优势。所介绍的工作的目的是讨论这些与活塞/内孔界面的摩擦学和密封性能有关的技术概念。本研究是在AVL FRISC浮动缸套发动机的基础上进行的。虽然基本发动机保持不变,但气缸膛表面发生了变化。除了浮式缸套摩擦测量外,还测量了窜缸和润滑油消耗。最先进的多体动力学模拟模型补充了实验研究,而模拟和测量都得出了类似的结论。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Comparative study on the friction behaviour of piston/bore interface technologies

Engine crank case designs for passenger car applications are based today on two main material technologies: grey cast iron and an increasing share of aluminium-based concepts. Due to the low wear resistance of aluminium, the latter concepts require a wear protective layer for the cylinder bore surface. Iron-based thermal spray coats are widely used for this purpose. The coating improves the tribological behaviour significantly, as previous studies have shown. Additionally, aluminium-based concepts offer advantages regarding engine weight and thermal management. The aim of the presented work was the discussion of these technological concepts regarding the tribological and sealing properties of the piston/bore interface. The study was carried out based on the AVL FRISC Floating Liner Engine. While the basic engine remained unchanged, the cylinder bore surface was varied. In addition to the floating liner friction measurement, the blow-by and lube oil consumption were also measured. A state-of-the-art multi-body dynamic simulation model complements the experimental study, while both simulation and measurement lead to similar conclusions.

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