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CUMULATIVE MICROSLIP IN CONROD BIG END BEARING SYSTEM

机译:大端轴承系统中的累积微滴

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摘要

High combustion gas pressure and mass reduction of modern automotive engines have generated new problems in mechanical assemblies. For example, it is now common to observe bearing shell rotation in the conrod of automotive prototype engines at the design stage. The consequence is sometimes the seizure of the bearing due to the presence of the joint face relief in the loaded area. Physically, the bearing shell rotation results from cumulated microslip between the bearing and the conrod. To have a better physical approach of the phenomenon and propose design recommendations, we have performed analyses based on the strength of material theory and numerical modellings. These tools permit us to obtain simple models allowing an easier mechanical understanding as well as an analysis of sensitivity to different parameters. The main results presented in this paper are: 1. The basic description of the phenomenon, 2. The modelling of the conrod, its sensitivity to deformation and numerical validation, 3. The analysis of the microslip between the bearing shell and the conrod, 4. The sensitivity analysis with respect to conception and physical parameters.
机译:现代汽车发动机的高燃烧气体压力和质量降低已在机械组件中产生了新问题。例如,现在在设计阶段通常会在汽车原型发动机的连杆中观察轴承壳的旋转。结果有时是由于在加载区域中存在关节面凸凹而咬住了轴承。从物理上讲,轴承壳旋转是由轴承和连杆之间累积的微滑动引起的。为了对这种现象有更好的物理方法并提出设计建议,我们基于材料理论和数值模型的优势进行了分析。这些工具使我们能够获得简单的模型,从而更容易地进行机械理解以及对不同参数的敏感性进行分析。本文介绍的主要结果是:1.现象的基本描述; 2.连杆的建模,变形敏感性和数值验证; 3.轴承壳与连杆之间的微滑动分析; 4关于概念和物理参数的敏感性分析。

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