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Tribology Transactions

JournalCitation impact & published research

Tribology Transactions is a journal indexed in ScholarIQ from OpenAlex. ScholarIQ records 3,749 works, 81,706 citations and an h-index of 94.

3,749
Works
81,706
Citations
94
h-index

What are the most-cited papers on Tribology Transactions?

ScholarIQmost cited works
Influence of Colloidal Abrasive Size on Material Removal Rate and Surface Finish in SiO<sub>2</sub>Chemical Mechanical Polishing
Chunhong Zhou, Lei Shan, J. Robert Hight, S. Danyluk, Sum Huan Ng, Andrew. J. Paszkowski
Tribology Transactions. 200293 Citations
The Dynamic Performance Analysis of Foil Journal Bearings Considering Coulomb Friction: Rotating Unbalance Response
Donghyun Lee, Young‐Cheol Kim, Kyung-Woong Kim
Tribology Transactions. 200862 Citations
Wear and Friction Characteristics of Magnetorheological Fluid under Magnetic Field Activation
Wanli Song, Seung‐Bok Choi, Jae-Young Choi, Chul-Hee Lee
Tribology Transactions. 201157 Citations
The Effect of Shear-Thinning on Film Thickness for Space Lubricants
Scott Bair, Philippe Vergne, Mario Marchetti
Tribology Transactions. 200256 Citations
Tribological Performance of Gradient Ag-Multilayer Graphene/TC4 Alloy Self-Lubricating Composites Prepared By Laser Additive Manufacturing
Hongyan Zhou, Chaohua Wu, Dongyan Tang, Xiaoliang Shi, Yawen Xue, Qipeng Huang, Jin Zhang, Ammar H. Elsheikh, Ahmed Mohamed Mahmoud Ibrahim
Tribology Transactions. 202154 Citations

Related on ScholarIQ

Influence of Colloidal Abrasive Size on Material Removal Rate and Surface Finish in SiO<sub>2</sub>Chemical Mechanical Polishing
Paper
The Dynamic Performance Analysis of Foil Journal Bearings Considering Coulomb Friction: Rotating Unbalance Response
Paper
Wear and Friction Characteristics of Magnetorheological Fluid under Magnetic Field Activation
Paper
The Effect of Shear-Thinning on Film Thickness for Space Lubricants
Paper
Tribological Performance of Gradient Ag-Multilayer Graphene/TC4 Alloy Self-Lubricating Composites Prepared By Laser Additive Manufacturing
Paper
Investigation into the Normal Contact Stiffness of Rough Surface in Line Contact Mixed Elastohydrodynamic Lubrication
Paper
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