4.4 Editorial Material

Current and Future Trends in Tribological Research

期刊

LUBRICANTS
卷 11, 期 9, 页码 -

出版社

MDPI
DOI: 10.3390/lubricants11090391

关键词

tribology; contact mechanics; tribodynamics; electrotribodynamics; textured surfaces; coated surfaces; biotribology; nanotribology; biomimetics; artificial intelligence

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The paper provides a commentary on the current state and future trends in tribological research, highlighting the interdisciplinary nature of the subject and its interactions with various other disciplines. It discusses the kinematics of contacts at different physical scales and explores a wide range of applications. The paper also presents the current state-of-the-art tribological research within a multi-physics, multi-scale framework.
The paper provides a commentary on the theme of Current and Future Trends in Tribological Research: Fundamentals and Applications, which is a special feature issue commemorating the 10th anniversary of the journal, Lubricants. A historical discourse is provided regarding various aspects of tribology as a multi-disciplinary subject that interacts in an inter-disciplinary manner with many other subjects: multi-body dynamics, thermofluids and heat transfer, contact mechanics, surface science, chemistry, rheology, data science, and biology, to name but a few. Such interactions lead to many important topics including propulsion with different sources of energy, mitigating emissions, palliation of friction, enhancing durability and sustainability, optimization through detailed analysis, and the use of artificial intelligence. Additionally, issues concerning kinetics at various physical scales (from macroscale to microscale onto mesoscale and nanoscale) affecting the kinematics of contacts are discussed. The broad range of considered applications includes vehicular powertrains, rotor bearings, electrical machines, mammalian endo-articular joints, nanobiological attachment/detachment, and locomotion. Current state-of-the-art tribological research is highlighted within a multi-physics, multi-scale framework, an approach not hitherto reported in the open literature.

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