首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part J. Journal of engineering tribology >Fast thermo-elasto-hydrodynamic modeling approach for mixed lubricated journal bearings in internal combustion engines
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Fast thermo-elasto-hydrodynamic modeling approach for mixed lubricated journal bearings in internal combustion engines

机译:内燃机混合润滑轴颈轴承的快速热弹流体力学建模方法

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摘要

Journal bearings are key components in internal combustion engines. Their reliability, durability, and economy are of highest importance. Especially, the accurate prediction of friction loss power and wear are essential for the development of an engine. For an appropriate representation of the hydrodynamic load-carrying capacity and also the friction behavior, both the dynamics of the contacting components, the shape of the contacting component surfaces, the amount of the available lubricant, and the properties of the lubricant itself are of importance. A Reynolds-averaged equation with laminar flow conditions in combination with an asperity contact model is a typical modeling approach for that purpose. The lubricant properties are in particular influenced by its thermal conditions on one hand. On the other hand, the thermal conditions are influenced by the mixed lubricated contact conditions as well. These interactions require a coupled modeling approach, which combines the component flexibility and its interaction with load-carrying capacity as well as the thermal behavior of the lubricant and the component surfaces. In this work, a thermo-elasto-hydrodynamic contact model is presented, which computes the oil film temperature using a 2D energy equation. The 2D equation is derived from the equivalent 3D energy equation by integration over the clearance gap height. Besides component material properties such as specific heat capacity, density, heat conductivity for lubricant and structures, also heat transfer through mixed lubricated regimes and partly filled clearance gaps, as implied in cavitation regions, are being considered. The presented method is applied for a typical engineering task of a sensitivity analysis for oils with different viscosity index (VI) improvers in a main bearing of a four-cylinder inline diesel engine. The influence of the oil film temperature on the oil film viscosity and therefore on the load-carrying capacity is shown. Furthermore, the simplified 2D approach is compared with a 3D approach both in terms of obtained result data and in terms of elapsed calculation times. The presented results show similar accuracy of the 2D approach with significantly reduced simulation time compared to the equivalent 3D case.
机译:轴颈轴承是内燃机的关键部件。它们的可靠性,耐用性和经济性至关重要。尤其是,摩擦损失功率和磨损的准确预测对于发动机的开发至关重要。为了适当地表示流体动力承载能力以及摩擦性能,接触部件的动力学,接触部件表面的形状,可用润滑剂的量以及润滑剂本身的性质都非常重要。 。具有层流条件的雷诺平均方程式与粗糙接触模型相结合是用于此目的的典型建模方法。一方面,润滑性能特别受其热条件影响。另一方面,热条件也受混合润滑接触条件的影响。这些相互作用需要耦合的建模方法,该方法将组件的灵活性及其与承载能力的相互作用以及润滑剂和组件表面的热行为结合在一起。在这项工作中,提出了一个热弹-流体动力接触模型,该模型使用二维能量方程计算油膜温度。通过对间隙高度进行积分,可以从等效的3D能量方程式导出2D方程式。除了气孔区域中隐含的成分材料特性(例如比热容,密度,润滑剂和结构的导热性)外,还考虑通过混合润滑方式和部分填充的间隙进行热传递。提出的方法适用于四缸直列柴油机主轴承中具有不同粘度指数(VI)改进剂的机油敏感性分析的典型工程任务。示出了油膜温度对油膜粘度的影响,并因此对承载能力的影响。此外,就获得的结果数据和经过的计算时间而言,将简化的2D方法与3D方法进行比较。与等效的3D情况相比,所呈现的结果显示了2D方法的相似精度,并且仿真时间大大缩短。

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