The use of anisotropic texturing for control of directional friction
Lu, Ping, Wood, Robert J.K., Gee, Mark G., Wang, Ling, Pfleging, Wilhelm
Published in Tribology international (01.09.2017)
Published in Tribology international (01.09.2017)
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Journal Article
Effect of grain size on the micro-tribological behavior of pure titanium processed by high-pressure torsion
Wang, Chuan Ting, Gao, Nong, Gee, Mark G., Wood, Robert J.K., Langdon, Terence G.
Published in Wear (20.03.2012)
Published in Wear (20.03.2012)
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Journal Article
The Friction Reducing Effect of Square-Shaped Surface Textures under Lubricated Line-Contacts—An Experimental Study
Lu, Ping, Wood, Robert J K, Gee, Mark G, Wang, Ling, Pfleging, Wilhelm
Published in Lubricants (01.09.2016)
Published in Lubricants (01.09.2016)
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Journal Article
A Novel Surface Texture Shape for Directional Friction Control
Lu, Ping, Wood, Robert J. K., Gee, Mark G., Wang, Ling, Pfleging, Wilhelm
Published in Tribology letters (01.03.2018)
Published in Tribology letters (01.03.2018)
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Journal Article
On the three-dimensional structure of WC grains in cemented carbides
Borgh, Ida, Hedström, Peter, Odqvist, Joakim, Borgenstam, Annika, Ågren, John, Gholinia, Ali, Winiarski, Bartlomiej, Withers, Philip J., Thompson, George E., Mingard, Ken, Gee, Mark G.
Published in Acta materialia (01.08.2013)
Published in Acta materialia (01.08.2013)
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Journal Article
A Novel Surface Texture Shape for Directional Friction Control
Lu, Ping, Wood, Robert J. K., Gee, Mark G., Wang, Ling, Pfleging, Wilhelm
Published in Tribology letters (01.03.2018)
Published in Tribology letters (01.03.2018)
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Journal Article
Processing of an ultrafine-grained titanium by high-pressure torsion: An evaluation of the wear properties with and without a TiN coating
Wang, Chuan Ting, Gao, Nong, Gee, Mark G., Wood, Robert J.K., Langdon, Terence G.
Published in Journal of the mechanical behavior of biomedical materials (01.01.2013)
Published in Journal of the mechanical behavior of biomedical materials (01.01.2013)
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Journal Article
Randomised nano-/micro- impact testing – A novel experimental test method to simulate erosive damage caused by solid particle impacts
Beake, Ben D., Goodes, Stephen R., Zhang, Hannah, Isern, Luis, Chalk, Christine, Nicholls, John R., Gee, Mark G.
Published in Tribology international (01.07.2024)
Published in Tribology international (01.07.2024)
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