Influences of Taper Geometry Modified Oil-Grooves on Load Carrying Capacity of Crosshead Bearings

T. Kitahara, M. Otsubo, D. Nakahara
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Abstract

The crosshead bearing in large two-stroke diesel engines operates under severe lubrication conditions, because the bearing oscillates within a small angle at a low speed and is always subject to a high downward load. The recent trend towards more compact engines with increased output raises the bearing specific load, thereby causing the lubrication severity to increase significantly. Thus it is very important to improve the load carrying capacity of the crosshead bearing. In the present study, experiments using a dynamically loaded bearing seizure test apparatus were carried out to clarify the influences of the clearance ratio and the oil-groove geometry on the load carrying capacity. The electrical resistance of the oil film was also measured to evaluate the extent of the oil film formation. The major results are: (1) A decrease in the clearance ratio is effective in enhancing squeeze action on the entirety of the bearing pads, thereby improving the load carrying capacity. When the clearance ratio becomes too low, however, the ability to form an adequate wedge film is degraded, causing the load carrying capacity to decrease; (2) A significant improvement in the load carrying capacity can be expected, because incorporating the taper geometry on both sides of the oil-groove promotes a thicker oil film; and (3) A taper geometry with a subtended length of 5 degrees and a taper angle of 0.1 degree produces the maximum load carrying capacity.
锥度几何形状修正油槽对十字头轴承承载能力的影响
大型二冲程柴油机十字头轴承在低速时以小角度振荡,并始终承受较大的向下载荷,因此在严格的润滑条件下工作。最近的趋势是更紧凑的发动机增加了输出,提高了轴承的比负载,从而导致润滑严重程度显着增加。因此,提高十字头轴承的承载能力是非常重要的。本文采用动载轴承夹持试验装置,研究了间隙比和油槽几何形状对承载能力的影响。测定了油膜的电阻,评价了油膜的形成程度。研究结果表明:(1)减小间隙比可有效增强轴瓦整体的挤压作用,从而提高承载能力。然而,当间隙比过低时,形成足够楔形膜的能力下降,导致承载能力下降;(2)承载能力有显著提高,因为在油槽两侧加入锥度几何形状可以促进更厚的油膜;(3)倾斜长度为5度,锥度角为0.1度的锥度几何形状产生最大承载能力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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