稳定工况下双抛物型和沟槽结构滑动轴承的多目标优化

IF 1.2 4区 工程技术 Q3 ENGINEERING, MECHANICAL
Chongpei Liu, Ning Zhong, Xi-qun Lu, Bin Zhao
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引用次数: 4

摘要

双抛物线轮廓可以帮助轴颈轴承减少衬套边缘磨损,但也会降低承载能力,增加摩擦损失。为了克服这些缺点,本研究采用田口分析和灰色关联分析方法,研究了稳定工况下双抛物线型和沟槽结构滑动轴承的多目标优化问题。首先,建立了含轴颈错位、弹性变形、粗糙接触、热效应的润滑模型,并分析了缺陷的形成原因。然后,在考虑沟槽数、沟槽深度、沟槽长度、双抛物线型轴向宽度、双抛物线型径向高度和沟槽位置6个因素的情况下,进行正交试验,揭示各因素对响应变量的影响及意义。最后,通过灰色关联分析确定6个因素的最优参数组合,使承载能力最大,摩擦损失最小。研究结果可为提高滑动轴承的摩擦学性能提供指导。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A multiobjective optimization of journal bearing with double parabolic profiles and groove textures under steady operating conditions
The double parabolic profiles can help journal bearing to reduce bushing edge wear, but it also reduces load carrying capacity and increases friction loss. To overcome these drawbacks, in this study, a multiobjective optimization of journal bearing with double parabolic profiles and groove textures is researched under steady operating conditions using Taguchi and grey relational analysis methods. Firstly, a lubrication model with journal misalignment, elastic deformation, asperity contact, thermal effect is established and formation cause of drawbacks is illustrated. Then, an orthogonal test with considering six factors, i.e., groove number, groove depth, groove length, axial width of double parabolic profiles, radial height of double parabolic profiles and groove location is conducted, meanwhile the effects and significances of each factor on response variables are revealed. Finally, an optimal parameters combination of six factors is determined by grey relational analysis, which gives maximum load carrying capacity and minimum friction loss. Overall, this study may give guidance on journal bearing design to enhance its tribological performance.
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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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