320
Views
17
CrossRef citations to date
0
Altmetric
Original Articles

Effect of Surface Roughness on Mixed EHD Lubrication Characteristics

Pages 44-48 | Published online: 25 Mar 2008

Keep up to date with the latest research on this topic with citation updates for this article.

Read on this site (7)

Daofei Wang, Si Ren, Ying Zhang & Wei Pu. (2020) A Mixed TEHL Model for the Prediction of Thermal Effect on Lubrication Performance in Spiral Bevel Gears. Tribology Transactions 63:2, pages 314-324.
Read now
Adrian Cubillo, Adrian Uriondo & Suresh Perinpanayagam. (2017) Computational Mixed TEHL Model and Stribeck Curve of a Journal Bearing. Tribology Transactions 60:6, pages 1053-1062.
Read now
Young Sup Kang, Carl H. Hager & Ryan D. Evans. (2015) Effects of Skewed Surface Textures on Lubricant Film Thickness and Traction. Tribology Transactions 58:3, pages 397-406.
Read now
Dong Zhu, Yuchuan Liu & Qian Wang. (2014) On the Numerical Accuracy of Rough Surface EHL Solution. Tribology Transactions 57:4, pages 570-580.
Read now
Jiman Han & Qian Zou. (2013) Evolution of Contact Characteristics during a Scuffing Process. Tribology Transactions 56:1, pages 58-64.
Read now
LAURENTIU MORARU, THEOG. KEITH & AHMET KAHRAMAN. (2004) Aspects Regarding the Use of Probabilistic Models for Isothermal Full Film Rough Line Contacts. Tribology Transactions 47:3, pages 386-395.
Read now
Dmitry Epstein, LeonM. Keer, Q. Jane Wang, H.S. Cheng & Dong Zhu. (2003) Effect of Surface Topography on Contact Fatigue in Mixed Lubrication. Tribology Transactions 46:4, pages 506-513.
Read now

Articles from other publishers (10)

Hui Cao, Zulfiqar Khan & Yonggang Meng. (2020) Comparison of rolling contact fatigue life between elastohydrodynamic lubricated point contacts pre and post running-in treatment. Tribology International 144, pages 106089.
Crossref
Heli Liu, Huaiju Liu, Caichao Zhu, Haifeng He & Peitang Wei. (2018) Evaluation of Contact Fatigue Life of a Wind Turbine Gear Pair Considering Residual Stress. Journal of Tribology 140:4.
Crossref
Xiaopeng Wang, Yuchuan Liu & Dong Zhu. (2017) Numerical Solution of Mixed Thermal Elastohydrodynamic Lubrication in Point Contacts With Three-Dimensional Surface Roughness. Journal of Tribology 139:1.
Crossref
Tze-Chi Hsu, Jing-Hong Chen, Hsin-Lu Chiang & Tsu-Liang Chou. (2013) Lubrication performance of short journal bearings considering the effects of surface roughness and magnetic field. Tribology International 61, pages 169-175.
Crossref
A. Takeuchi. (2009) Observation of lubrication conditions using an ultrasonic technique. Lubrication Science 21:10, pages 397-413.
Crossref
Dong Zhu, Ning Ren & Q. Jane Wang. (2009) Pitting Life Prediction Based on a 3D Line Contact Mixed EHL Analysis and Subsurface von Mises Stress Calculation. Journal of Tribology 131:4.
Crossref
Laurentiu Moraru & Theo. G KeithJr.Jr.. (2009) Application of the Amplitude Reduction Technique Within Probabilistic Rough EHL Models. Journal of Tribology 131:2.
Crossref
Wen-zhong Wang, Shun Wang, Fanghui Shi, Yu-cong Wang, Hai-bo Chen, Hui Wang & Yuan-zhong Hu. (2007) Simulations and Measurements of Sliding Friction Between Rough Surfaces in Point Contacts: From EHL to Boundary Lubrication. Journal of Tribology 129:3, pages 495-501.
Crossref
Wen-zhong Wang, Hui Chen, Yuan-zhong Hu & Hui Wang. (2006) Effect of surface roughness parameters on mixed lubrication characteristics. Tribology International 39:6, pages 522-527.
Crossref
C. K. Gao, X. M. Qi, R. W. Snidle & H. P. Evans. 2006. IUTAM Symposium on Elastohydrodynamics and Micro-elastohydrodynamics. IUTAM Symposium on Elastohydrodynamics and Micro-elastohydrodynamics 423 434 .

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.