考虑曲轴轴向运动和变形的粗糙表面发动机主轴承热流体润滑性能研究

IF 1.6 3区 工程技术 Q3 ENGINEERING, MECHANICAL
Biao Li, Jun Sun
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引用次数: 2

摘要

在考虑曲轴轴向运动的情况下,研究了热效应对粗糙表面发动机主轴承润滑性能的影响。在分析中,以四缸四冲程发动机的曲轴-轴承系统为对象。通过发动机台架试验测量了曲轴的轴向运动。采用全曲轴有限元法计算了主轴承轴颈载荷和曲轴变形。在平均流量润滑模型的基础上建立了分析模型。采用动力学方法对主轴承的润滑进行了分析。采用能量方程和固体热传导方程计算润滑油和轴承的温度。结果表明:曲轴轴向运动对粗糙表面发动机主轴承润滑的影响程度受热效应影响较大;当考虑热效应时,曲轴的轴向运动对发动机主轴承润滑的影响使其工作状态进一步恶化。当考虑曲轴的轴向运动时,热效应对不同主轴承润滑的影响差异很大。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Research on the thermohydrodynamic lubrication performance of engine main bearing with rough surface considering the axial motion and deformation of crankshaft
In this paper, the influence of the thermal effect on the lubrication performance of engine main bearing with rough surface considering the axial motion of crankshaft is investigated. In the analysis, the crankshaft-bearing system of a four-cylinder four-stroke engine is taken as the object. The axial motion of crankshaft is measured by the engine bench test. The journal load of main bearing and crankshaft deformation are calculated by the whole crankshaft finite-element method. The analysis model is established based on the average flow lubrication model. The lubrication of main bearing is analyzed by the dynamic method. The temperatures of lubricating oil and bearing are calculated by the energy equation and solid heat conduction equation. The results show that the influence degree of the axial motion of crankshaft on the lubrication of engine main bearing with rough surface is greatly affected by the thermal effect. When the thermal effect is considered, the influence of the axial motion of crankshaft on the lubrication of engine main bearing makes its working condition deteriorate further. When the axial motion of crankshaft is considered, the influence of the thermal effect on the lubrication of different main bearings varies significantly.
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来源期刊
CiteScore
4.20
自引率
5.00%
发文量
110
审稿时长
6.1 months
期刊介绍: The Journal of Engineering Tribology publishes high-quality, peer-reviewed papers from academia and industry worldwide on the engineering science associated with tribology and its applications. "I am proud to say that I have been part of the tribology research community for almost 20 years. That community has always seemed to me to be highly active, progressive, and closely knit. The conferences are well attended and are characterised by a warmth and friendliness that transcends national boundaries. I see Part J as being an important part of that community, giving us an outlet to publish and promote our scholarly activities. I very much look forward to my term of office as editor of your Journal. I hope you will continue to submit papers, help out with reviewing, and most importantly to read and talk about the work you will find there." Professor Rob Dwyer-Joyce, Sheffield University, UK This journal is a member of the Committee on Publication Ethics (COPE).
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