首页> 外文会议>ASME/STLE international joint tribology conference 2011 : Nanotribology .... >MIXED LUBRICATION ANALYSIS OF PISTON PIN BEARING IN DIESEL ENGINE WITH HIGH POWER DENSITY
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MIXED LUBRICATION ANALYSIS OF PISTON PIN BEARING IN DIESEL ENGINE WITH HIGH POWER DENSITY

机译:高功率密度柴油机活塞销的混合润滑分析

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Based on the unified Reynolds equation and Fast Fourier Transform (FFT) method, the mixed lubrication characteristics of piston pin bearing in diesel engine with high power density are numerically simulated. Firstly, the unified Reynolds equation and the elastic deformation equation are solved simultaneously, and then the effects of viscosity-pressure on the maximum film pressure, the minimum oil film thickness and the piston pin orbit are analyzed. It is shown that for the semi-floating piston pin bearing with high power density, when viscosity-pressure is taken into consideration, both the minimum oil film thickness and the maximum oil film pressure increase, while the elastic deformation of the area in which the maximum load applies decreases. The transient diagrams of the relative position between the piston pin and its bearing within a whole loading period are given. It is also indicated that the eccentricity ratio of piston pin bearing along the direction of piston stroke is greater because of the greater load exerting on the back of the semi-floating piston pin bearing and thus resulting in the obvious deformation in the back area. This result is in good agreement with the existing real failure mode of the piston pin bearing with high power density. In addition, the effects of bearing clearance and length on the minimum oil film thickness are investigated respectively. It is shown that the smaller bearing clearance and the greater width are beneficial for the increasing of the minimum oil film thickness of piston pin bearing.
机译:基于统一的雷诺方程和快速傅立叶变换(FFT)方法,对高功率密度柴油机活塞销轴承的混合润滑特性进行了数值模拟。首先,同时求解统一的雷诺方程和弹性变形方程,然后分析了黏度-压力对最大膜压力,最小油膜厚度和活塞销轨道的影响。结果表明,对于高功率密度的半浮式活塞销轴承,当考虑粘度-压力时,最小油膜厚度和最大油膜压力都增加,而在最大负载会减少。给出了在整个加载期间活塞销与其轴承之间的相对位置的瞬态图。还表明,由于施加在半浮动活塞销轴承的背面上的负载较大,因此活塞销轴承沿活塞冲程方向的偏心率较大,从而导致背面区域明显变形。该结果与具有高功率密度的活塞销轴承的现有实际故障模式非常吻合。另外,分别研究了轴承游隙和长度对最小油膜厚度的影响。结果表明,较小的轴承间隙和较大的宽度有利于增加活塞销轴承的最小油膜厚度。

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