基于粒子群优化算法的滑动轴承沟槽纹理优化研究

IF 1.2 4区 工程技术 Q3 ENGINEERING, MECHANICAL
Xiangyuan Zhang, Chongpei Liu, Bin Zhao
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引用次数: 12

摘要

本研究旨在优化滑动轴承沟槽织构的分布,以降低其摩擦系数。首先,建立了沟槽纹理滑动轴承的润滑模型,采用有限差分法和超松弛迭代法对模型进行了数值求解。然后,采用摩擦系数作为适应度函数,利用粒子群算法对凹槽长度进行优化,进化出最优分布;此外,还讨论了偏心比和转速对槽织构最佳分布的影响。数值结果表明:在不同偏心比和转速下,沟槽织构的最优分布呈梯形,且随着偏心比的增大,梯形逐渐变细;在较低的偏心比下,最优沟槽织构对摩擦系数的降低更为显著。简而言之,该研究可以为表面纹理设计提供指导,以提高滑动轴承的摩擦学性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
An optimization research on groove textures of a journal bearing using particle swarm optimization algorithm
This study aims to optimize the distributions of groove textures in a journal bearing to reduce its friction coefficient. Firstly, A lubrication model of a groove textured journal bearing is established, and the finite difference and overrelaxation iterative methods are used to numerically solve the model. Then, the friction coefficient is adopted as the fitness function and the groove lengths are optimized by particle swarm optimization (PSO) algorithm to evolve the optimal distributions. Furthermore, the effects of eccentricity ratios and rotary speeds on optimal distributions of groove textures are also discussed. The numerical results show the optimal distributions of groove textures are like trapeziums under different eccentricity ratios and rotary speeds, and the trapeziums become slenderer with increasing of eccentricity ratios. It is also found that the reductions of friction coefficients by optimal groove textures are more significant under lower eccentricity ratios. Briefly, this study may provide guidance on surface texture design to improve the tribological performance of journal bearings.
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来源期刊
Mechanics & Industry
Mechanics & Industry ENGINEERING, MECHANICAL-MECHANICS
CiteScore
2.80
自引率
0.00%
发文量
25
审稿时长
>12 weeks
期刊介绍: An International Journal on Mechanical Sciences and Engineering Applications With papers from industry, Research and Development departments and academic institutions, this journal acts as an interface between research and industry, coordinating and disseminating scientific and technical mechanical research in relation to industrial activities. Targeted readers are technicians, engineers, executives, researchers, and teachers who are working in industrial companies as managers or in Research and Development departments, technical centres, laboratories, universities, technical and engineering schools. The journal is an AFM (Association Française de Mécanique) publication.
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