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首页> 外文期刊>SAE International Journal of Fuels and Lubricants >Methodology for Predictive Friction Modeling in Direct-Acting Mechanical Bucket Valvetrain System
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Methodology for Predictive Friction Modeling in Direct-Acting Mechanical Bucket Valvetrain System

机译:直接作用机械式斗式气门机构系统中的预测摩擦建模方法

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Valvetrain friction can represent a substantial portion of overall engine friction, especially at low operating speed. This paper describes the methodology for predictive modeling of frictional losses in the direct-acting mechanical bucket tappet-type valvetrain. The proposed modeling technique combines advanced mathematical models based on established theories of Hertzian contact, hydrodynamic and elastohydrodynamic lubrication (EHL), asperity contact of rough surfaces, flash temperature, and lubricant rheology with detailed measurements of lubricant properties and surface finish, driven by a detailed analysis of valvetrain system kinematics and dynamics. The contributions of individual friction components to the overall valvetrain frictional loss were identified and quantified. Calculated valvetrain friction was validated against motored valvetrain friction torque measurements on two engines. The system friction was analyzed across the operating speed range and at several oil supply temperatures as well as varying component surface finishes. A good agreement was observed between simulated and measured valvetrain friction torque suggesting that the proposed analytical methodology and the tool can be very useful in guiding new engine design and enhancing the performance of a given valvetrain design.
机译:气门机构摩擦可代表整个发动机摩擦的很大一部分,尤其是在低运行速度下。本文介绍了直接作用式机械铲斗挺杆式气门机构中摩擦损失的预测建模方法。拟议的建模技术结合了先进的数学模型,这些模型基于已建立的赫兹接触理论,流体动力和弹性流体动力润滑(EHL)理论,粗糙表面的粗糙接触,闪蒸温度和润滑剂流变学,以及对润滑剂性能和表面光洁度的详细测量,并由详细的驱动气门机构系统运动学和动力学分析。确定并量化了各个摩擦分量对整个气门机构摩擦损失的贡献。针对两个发动机上的电动气门机构摩擦扭矩测量结果验证了计算的气门机构摩擦。在整个运行速度范围内,在几个供油温度以及变化的组件表面光洁度下分析了系统摩擦。在模拟和测量的气门机构摩擦扭矩之间观察到良好的一致性,表明所提出的分析方法和工具在指导新发动机设计和增强给定气门机构设计的性能方面非常有用。

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