异向卷吸作用下润滑剂回填增强效应试验研究

栗心明, 周广运, 郭峰, 张建军

机械工程学报 ›› 2020, Vol. 56 ›› Issue (17) : 225-232.

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机械工程学报 ›› 2020, Vol. 56 ›› Issue (17) : 225-232. DOI: 10.3901/JME.2020.17.225
数字化设计与制造

异向卷吸作用下润滑剂回填增强效应试验研究

  • 栗心明1,2, 周广运1, 郭峰1, 张建军1
作者信息 +

Experimental Investigation into Enhancement of Lubricant Replenishment Induce by Angled Entrainment

  • LI Xinming1,2, ZHOU Guangyun1, GUO Feng1, ZHANG Jianjun1
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文章历史 +

摘要

试验研究了异向卷吸作用对润滑剂回填增强效应和成膜特性的影响。采用球-盘点接触光干涉油膜测量仪,通过控制钢球运动方向产生卷吸速度与滑动速度呈夹角的异向卷吸作用。试验发现,限量供油条件下异向卷吸与同向卷吸相比,接触区入口供油状态得到明显改善,其特征是在入口区产生了与经典乏油工况不同的充盈油池,该油池的出现使油膜厚度接近于充分供油下油膜厚度。试验观察了不同角度、速度、供油量和黏度下的入口油池外形及非对称性油膜特征。接触副表面上侧带与滚道重叠并被卷吸到入口区,是入口油池形成的主要机制;热黏度楔效应是诱发油膜外形非对称性的原因;入口剪切热、侧泄、接触区热量向入口区迁移和剪稀效应,是润滑油膜厚度随角度减小的原因。试验结果表明,将经典的乏油边界条件应用于异向卷吸工况具有局限性。

Abstract

The enhancement of lubricant replenishment and film formation induced by angled entrainment effects are investigated. Using ball-on-disc optical apparatus, angled entrainment is formed by adjusting the motion direction of steel ball which could induce different angles between entrainment and sliding velocities. Comparing with the situations of entrainment in the same directions under fixed amount of oil feeding, it is found that the inlet lubricant supplying conditions are significantly improved, characterized by the appearance of a remarkable inlet oil reservoir. This reservoir pushes the film thickness approach the fully flooded states, which is quite different with the situations of traditional starved contacts. The patterns of inlet reservoir varying with angles, velocities, oil feeding amounts and viscosities, as well as the asymmetry film shapes are investigated. The main mechanisms resulting in the inlet oil reservoir was the delivery of overlapped side bands into the inlet conjunctions. The effect of thermal wedge viscosity is response for the distorted film shape. The reduction in film thickness with angle increas ing is attributed to the inlet shear heating effect, side leakage, inflow of heat from contact zone into inlet zone and shear thinning effect. The observations suggest the tradition boundaries under starvation are limited to be applied to present situations.

关键词

异向卷吸 / 润滑剂回填 / 入口油池 / 乏油 / 光干涉

Key words

angled entrainment / lubricant replenishment / inlet oil reservoir / starvation / interferometry

引用本文

导出引用
栗心明, 周广运, 郭峰, 张建军. 异向卷吸作用下润滑剂回填增强效应试验研究[J]. 机械工程学报, 2020, 56(17): 225-232 https://doi.org/10.3901/JME.2020.17.225
LI Xinming, ZHOU Guangyun, GUO Feng, ZHANG Jianjun. Experimental Investigation into Enhancement of Lubricant Replenishment Induce by Angled Entrainment[J]. Journal of Mechanical Engineering, 2020, 56(17): 225-232 https://doi.org/10.3901/JME.2020.17.225

参考文献

[1] LIANG H,GUO D,LUO JB. Experimental investigation of lubrication film starvation of polyalphaolefin oil at high speeds[J]. Triboloy Letters,2014,56(3):491-500.
[2] WIKSTRÖM V,HÖGLUND E. Starting and steady-state friction torque of grease-lubricated rolling element bearings at low temperatures-Part I:A parameter study[J]. Tribology Transactions,1996,39(3):517-526.
[3] CANN P M. Thin-film grease lubrication[J]. Proceedings of the IMechE,Part J:Journal of Engineering Tribology,1999,213(5):405-416.
[4] LIANG H,GUO D,MA L R,LUO J B. The film forming behavior at high speeds under oil-air lubrication[J]. Tribology International,2015,91:6-13.
[5] CHIU Y P. An analysis and prediction of lubricant film formation in rolling contact systems[J]. ASLE Tribology Transactions,1974,17(1):22-35.
[6] PEMBERTON J,CAMERON A. A mechanism of fluid replenishment in elastohydrodynamic contacts[J]. Wear,1976,37(1):185-190.
[7] GERSHUNI L,LARSON M G,LUGT P M. Repleni-shment in rolling bearings[J]. STLE Tribology Transactions,2008,5(5):643-651.
[8] ÅSTRÖM H,ÖSTENSEN J,HÖGLUND E. Lubricating grease replenishment in an elastohydrodynamic point contact[J]. ASME Journal of Tribology,1993,115(3):501-506.
[9] DAMIENS B,CANN P M,LUBRECHT A A. Influence of cage clearance on bearing lubrication[J]. Tribology Transactions,2004,47(1):2-6.
[10] CANN P M,DAMIENS B,LUBRECHT A A. The effect of transient loading on contact replenishment with lubrica-ting greases[J]. Triology Series,Elsevier,2003,43:745-750.
[11] CANN P M,LUBRECHT A A. Analysis of grease lubrication in rolling element bearings[J],Lubrication Science,1999,11(3):227-245.
[12] FADI A,IVAN K,MARTIN H. Enhancing the para-meters of starved EHL point conjunctions by artificially induced replenishment[J]. Tribology International,2013,66:134-142.
[13] NAGATA Y,KALOGIANNIS K,GLOVNEA R. Track replenishment by lateral vibrations in grease-lubricated EHD contacts[J]. Tribology Transactions,2012,55(1):91-98.
[14] ANDABLO-REYES E,de VICENTE J,HIDALGO-ÁLVAREZ R,et al. Soft elasto-hydrodynamic lubrication[J]. Triboloy Letters,2010,39(1):109.
[15] SVOBODA P,KOSTAL D,KRUPKA I,et al. Experimental study of starved EHL contacts based on thickness of oil layer in the contact inlet[J]. Tribology International,2013,67:140-145.
[16] LI XM,GUO F,WONG PL,et al. Regulation of lubricant supply by wettability gradient in rolling EHL contacts[J]. Tribology International,2018,120:565-574.
[17] THORP N,GOHAR R. Hydrodynamic friction in elliptical and circular point contacts[J]. Journal of Mechanical Engineering Science,1974,16(4):243-249.
[18] JALALI-VAHID D,RAHNEJAT H,GOHAR R,et al. Prediction of oil-film thickness and shape in elliptical point contacts under combined rolling and sliding motion[J]. Proceedings of the Institution of Mechanical Engineers,Part J:Journal of Engineering Tribology,2000,214(5):427-437.
[19] WANG J,QU S,YANG P. Simplified multigrid technique for the numerical solution to the steady-state and transient EHL line contacts and the arbitrary entrain-ment EHL point contacts[J]. Tribology International,2001,34(3):191-202.
[20] OMASTA M,KŘUPKA I,HARTL M. Effect of surface velocity directions on elastohydrodynamic film shape[J]. Tribology Transactions,2013,56(2):301-309.
[21] 张建军,郭峰,KANETA M,等. 卷吸与滑动正交的热弹流润滑研究[J]. 摩擦学学报,2015,35(4):477-484. ZHANG Jianjun,GUO Feng,KANETA M,et al. A study of thermal EHL behaviours under orthogonal entrainment and sliding[J]. Tribology,2015,35(4):477-484.
[22] MOHAMMADPOUR M,THEODOSSIADES S,RAHNEJAT H. Transient mixed non-Newtonian thermo-elastohydrodynamics of vehicle differential hypoid gears with starved partial counter-flow inlet boundary[J]. Proceedings of the Institution of Mechanical Engineers,Part J:Journal of Engineering Tribology,2014,228(10):1159-1173.
[23] 蒲伟,汪巨基,肖科,等. 乏油状态下准双曲面齿轮传动润滑机理分析[J]. 中国科学与技术,2019,51(1):236-240. PU Wei,WANG Juji,XIAO Ke,et al. Analysis on lubrication behavior of hypoid gears under starved condition[J]. Advanced Engineering Sciences,2019,51(1):236-240.
[24] GUO F,WONG P L. A multiple-beam intensity-based approach for thin lubricant film measurement in non-conformal contacts[J]. Proceedings of the Institution of Mechanical Engineers,Part J:Journal of Engineering Tribology,2002,216(5):281-291.
[25] GUO F,YANG P,YAGI K. Film formation in EHL point contacts under zero entraining velocity conditions[J]. Tribology Transactions,2002,45(4):521-530.
[26] YAGI K,KYOGOKU K,NAKAHARA T. Relationship between temperature distribution in EHL film and dimple formation[J]. ASME Journal of Tribology,2005,127(3):658-665.

基金

国家自然科学基金(51875299,51775286)和中国博士后科学基金面上(2017M622296)资助项目。
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