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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part C. Journal of mechanical engineering science >Investigation of reciprocating conformal contact of piston skirt-to-surface modified cylinder liner in high performance engines
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Investigation of reciprocating conformal contact of piston skirt-to-surface modified cylinder liner in high performance engines

机译:高性能发动机中活塞裙至表面改性气缸套往复共形接触的研究

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摘要

The article presents detailed analysis of the conforming contact between a piston and cylinder liner in a high-speed racing engine under extreme operating conditions owing to high loads and operating speeds in excess of 19 000 r/min, resulting in a high sliding velocity of 42 m/s. The analysis indicates contact forces generated in the order of 2.5 kN. The contribution due to fluid film lubrication is found to reside in iso-viscous rigid or elastic regimes of lubrication, which is insufficient to form a coherent lubricant film during some parts of the cycle, such as at top-dead-centre (TDC). The article shows that at combustion, 95 per cent of the contact can remain in boundary or mixed regimes of lubrication. Piston skirt surface modification features are used in conjunction with an electrolytically applied composite coating, Ni[SiC]p to produce advanced cylinder liners to remedy the situation. Detailed numerical analysis shows that significant improvement is achieved in the regime of lubrication condition.
机译:本文对高速赛车发动机中的活塞和气缸套之间的顺应性接触进行了详细分析,这归因于高负载和超过19 000 r / min的运行速度,从而导致42的高滑动速度在极端运行条件下多发性硬化症。分析表明产生的接触力约为2.5 kN。发现由流体膜润滑引起的贡献在于润滑的等粘刚性或弹性状态,在循环的某些部分(例如上止点(TDC))不足以形成连贯的润滑膜。该文章表明,在燃烧时,95%的接触可以保持在边界润滑或混合润滑状态。活塞裙的表面改性功能与电解涂覆的复合涂层Ni [SiC] p结合使用,可生产先进的气缸套以解决这种情况。详细的数值分析表明,在润滑条件下实现了显着的改善。

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