期刊


ISSN0301-679X
刊名Tribology International
参考译名国际摩擦学
收藏年代1998~2024



全部

1998 1999 2000 2001 2002 2003
2004 2005 2006 2007 2008 2009
2010 2011 2012 2013 2014 2015
2016 2017 2018 2019 2020 2021
2022 2023 2024

2024, vol.191 2024, vol.192 2024, vol.193 2024, vol.194 2024, vol.195 2024, vol.196
2024, vol.197

题名作者出版年年卷期
The comparative research on tribological behavior of carbon-doped CoCrFeNiV high entropy alloys in air and vacuum environmentsZhang M.; Zhou Z.; Pengfei Q.; Jiang Z.; Niu M.; Zhang X.; yang J.20242024, vol.197
Influence of the finger inclination on its frictional interaction with micro-textured surfacesLouyot E.; Carpentier L.; Cornuault P.-H.; Chatelet E.; Massi F.20242024, vol.197
Investigation of hardness, tribological and adhesion properties of TiAlNiVN HEA films heat treated at different temperaturesYilmaz A.M.; Cicek H.; Duran S.; Gulten G.; Efeoglu I.20242024, vol.197
Analysis of free convective flow of nanofluid due to inclined surface with thermos-diffusion effects and chemical reactionZhao X.; Mopuri O.; Raju K.V.; Farooq S.; Abdullaev S.; Alhazmi H.; Khan S.U.; Jameel M.20242024, vol.197
Mechanical properties of tribofilms formed by metal dithiodiphosphatesLi X.; Devlin M.; Roache D.C.20242024, vol.197
Fretting wear behavior and wear mechanism of selective laser melting IN738LC alloy with various loads and micro-structuresHu Y.; Zhang X.; Jia H.; Yang X.; Wang S.; Chai L.20242024, vol.197
Numerical analysis of multiple slip effects on CuO /MgO/TiO2-water ternary hybrid nanofluid with thermal and exponential space-based heat sourceKhan S.A.; Imran M.; Waqas H.; Yasmin S.; Muhammad T.; Alhushaybari A.20242024, vol.197
On the importance of the experimental setup design in hydrodynamic journal bearing friction measurementGosar A.; Klemenc J.; Nagode M.; Oman S.20242024, vol.197
Enhancing tribological properties of lubricated contacts via synergistic interactions of green silica nanoparticles and ZDDPSyed J.; Hakkim N.L.; Nebhani L.; Gosvami N.N.20242024, vol.197
Chemical mechanical polishing of sapphire elucidated by densely discrete phase model and verified using atomic force microscopyZhou M.; Zhong M.; Xu W.; Yi M.; Li X.; Chen J.20242024, vol.197
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