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首页> 外文期刊>Tribology International >Mutual influence of crosshatch angle and superficial roughness of honed surfaces on friction in ring-pack tribo-system
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Mutual influence of crosshatch angle and superficial roughness of honed surfaces on friction in ring-pack tribo-system

机译:交叉填充角和珩磨面的表面粗糙度对环填料摩擦系统中摩擦的相互影响

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摘要

The cylinder bore surface texture, widely produced by the honing technique, is an essential factor for a good engine performance (friction, oil consumption, running-in, wear etc.). This explains the improvement and development of various new honing techniques. These different honing processes generate surfaces with various texture features characteristics (roughness, valleys depth, crosshatch angle, etc.). This paper addresses a comparison of ring-pack friction for cylinder surfaces produced by plateau honing and helical slide honing. It takes in consideration the mutual effect of superficial plateau roughness amplitude and honing angle. A numerical model is developed to predict friction within the cylinder ring-pack system in mixed lubrication regime. The results show the effectiveness of helical slide honed surface texture in comparison to plateau honed bore surfaces.
机译:珩磨技术广泛产生的汽缸孔表面纹理是良好发动机性能(摩擦,机油消耗,磨合,磨损等)的重要因素。这解释了各种新珩磨技术的改进和发展。这些不同的珩磨过程会生成具有各种纹理特征特征(粗糙度,谷底深度,交叉影线角度等)的表面。本文比较了高原珩磨和螺旋滑动珩磨产生的气缸表面的环填料摩擦。它考虑了表层高原粗糙度振幅和珩磨角的相互作用。建立了一个数值模型来预测混合润滑状态下气缸环-密封系统内的摩擦。结果表明,与高原珩磨孔表面相比,螺旋滑动珩磨表面纹理的有效性。

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