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首页> 外文期刊>SAE International Journal of Fuels and Lubricants >Lubrication Analysis of a Con-Rod Bearing Using a Cycle Simulation of Gasoline Engines with A/F Variation
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Lubrication Analysis of a Con-Rod Bearing Using a Cycle Simulation of Gasoline Engines with A/F Variation

机译:使用A / F变化的汽油机循环模拟对连杆轴承进行润滑分析

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摘要

In the case of engine bearings, pressure in a cylinder is necessary for the analysis of lubrication. In this study, a cycle simulation of gasoline engines has been developed to predict the pressure in the cylinder under the wide range of engine operation. In the cycle simulation, intake and exhaust processes are included and combustion process is calculated with flame propagation based on burning velocity. Here, the equation of ignition delay and the equation of burning velocity were determined with experimental results of a gasoline engine over wide A/F ratio. The pressure in the cylinder over the engine cycle is introduced into an elastohydrodynamic lubrication analysis of a con-rod bearing to calculate the load on the bearing in addition to the inertia force. Orbital movement, minimum film thickness, and power loss in the bearing were estimated over the wide range of engine operation. This method is useful to clarify the effects of the design and operation parameters of engines on the lubrication of bearings without experimental pressure data.
机译:对于发动机轴承,气缸内压力对于润滑分析是必需的。在这项研究中,已经开发出汽油发动机的循环仿真,以预测在广泛的发动机运行情况下气缸中的压力。在循环模拟中,包括进气和排气过程,并根据燃烧速度通过火焰传播计算燃烧过程。在此,通过在宽的空燃比下的汽油发动机的实验结果确定了点火延迟方程和燃烧速度方程。在整个发动机循环中,气缸中的压力被引入到连杆轴承的弹性流体动力润滑分析中,以计算除惯性力外的轴承载荷。在广泛的发动机运行范围内,估算了轨道运动,最小薄膜厚度和轴承中的功率损耗。该方法有助于阐明没有实验压力数据的发动机设计和运行参数对轴承润滑的影响。

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