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EXPERIMENTAL AND THEORETICAL STUDY OF INSTANTANEOUS PISTON ASSEMBLY FRICTION IN A GASOLINE ENGINE

机译:汽油机瞬时活塞组装摩擦的实验和理论研究

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摘要

A piston assembly friction model has been developed to predict the individual performance of compression rings, the oil control ring and the piston skirt. Validation of this model has been undertaken by comparing the predicted results with the experimental measurements of piston assembly friction in a gasoline engine under fired conditions using the IMEP (indicated mean effective pressure) method. The experimental results for an SAE 0W20 without friction modifier were compared with the predictions. The predicted results correlate very well with the measurements, especially at higher lubricant inlet temperatures. Piston skirt friction was predicted using both a simple concentric piston / cylinder model and a more realistic but computationally intensive method incorporating piston secondary motion. The results clearly indicate that the latter more realistic method is required to achieve satisfactory correlation with the measured data.
机译:已经开发了活塞组件摩擦模型来预测压缩环,油控环和活塞裙的各个性能。通过使用IMEP(指示平均有效压力)方法将预测结果与汽油发动机在燃烧条件下的活塞组件摩擦的实验测量值进行比较,从而对该模型进行了验证。将不含摩擦改进剂的SAE 0W20的实验结果与预测结果进行了比较。预测结果与测量结果非常相关,尤其是在较高的润滑剂入口温度下。使用简单的同心活塞/汽缸模型和结合活塞二次运动的更实际但计算量大的方法来预测活塞裙摩擦。结果清楚地表明,需要后者更实际的方法来实现与测量数据的令人满意的相关性。

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