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An experimental and numerical investigation of frictional losses and film thickness for four cylinder liner variants for a heavy duty diesel engine

机译:重型柴油机四缸缸套变形摩擦损失和膜厚的实验和数值研究

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摘要

The piston ring pack is the single greatest contributor to mechanical losses in a heavy duty diesel engine, accounting for 1.1–6.8% of the total losses. Therefore, the piston ring-cylinder liner contact is potentially the most rewarding area to study when attempting to reduce mechanical losses in a heavy duty diesel engine. In this work, four different heavy duty diesel engine cylinder liner variants have been tested to evaluate the lubricating conditions that occur when a section of top compression ring is reciprocated against them in a lubricated environment. Two of the cylinder liners were traditional grey cast iron and plateau honed with different honing angles, one had ANS Triboconditioning® applied and the last was plasma sprayed with a stainless steel and ceramic coating, then honed. An experimental test rig was used where friction and film thickness was recorded, by means of an ultrasonic technique. A numerical model was also developed to calculate the friction and film thickness. Comparisons are made between the simulation and experiment, and the four cylinder liner variants are also evaluated. It was found that both simulation and experiment could differentiate between all surfaces and the results from the model and experiment also correlated well with each other. A lower plateau average surface roughness, as exhibited by the ANS Triboconditioning® and plasma liners, led to a significant reduction in friction.
机译:活塞环组件是重型柴油机机械损耗的最大贡献者,占总损耗的1.1–6.8%。因此,当试图减少重型柴油机的机械损耗时,活塞环-气缸套接触可能是最有意义的研究领域。在这项工作中,已经测试了四种不同的重型柴油发动机气缸套变体,以评估在润滑环境中顶部压缩环的一部分相对于它们往复运动时发生的润滑条件。气缸套中的两​​个是传统的灰口铸铁,并用不同的珩磨角进行了高原抛光,一个应用了ANSTribocondition®,最后一个进行了等离子喷涂,表面涂有不锈钢和陶瓷涂层,然后进行了珩磨。使用了实验测试台,通过超声技术记录了摩擦和膜厚。还开发了一个数值模型来计算摩擦和膜厚。在模拟和实验之间进行了比较,还评估了四种气缸套变体。发现仿真和实验都可以区分所有表面,并且模型和实验的结果也具有很好的相关性。 ANSTribocondition®和等离子衬管具有较低的高原平均表面粗糙度,可显着降低摩擦。

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