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Numerical Study of Thermal Effect on the Friction of Piston-cylinder Contact in an Internal Combustion Engine

机译:内燃机中活塞缸接触摩擦热效应的数值研究

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For the different operating regime of an internal combustion engine, the compartment ‘Piston-Ring-Liner’ represents the largest share of frictional power loss. This study presents a numerical analysis of ThermoHydroDynamic (THD) lubrication of an internal combustion engine piston to evaluate the thermal effect on the friction of piston-cylinder contact by considering three thermal models: isothermal, Global Thermal (GT) and THD. The results show that the choice of the thermal model has a great influence on the tribological characteristics of the piston-cylinder contact. The transition from the isothermal model to the THD model will lead to a decrease of approximately 6% of the minimum oil film thickness and an increase of 4% of the hydrodynamic pressure, and the transition from the GT model to the THD model will decrease 30% of the friction force in the piston-cylinder contact during an engine cycle.
机译:对于内燃机的不同操作制度,隔室'活塞环衬里'代表摩擦力损失的最大份额。 本研究提出了一种内燃机活塞的热流动动力学(THD)润滑的数值分析,以评估通过考虑三种热模型:等温,全球热(GT)和THD来评估活塞缸接触摩擦的热效应。 结果表明,热模型的选择对活塞缸接触的摩擦学特性有很大影响。 从等温模型到THD模型的过渡将导致最小油膜厚度的大约6%的减少,增加4%的流体动力压力,并且从GT模型到THD模型的转变将减少30 在发动机循环期间活塞缸接触中的摩擦力的百分比。

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