Ni-Ti-Cu shape memory alloy interlayers supporting low-friction W-S-C coatings
Ni-Ti-Cu shape memory alloy interlayers supporting low-friction W-S-C coatings
This work is aimed at assessing the capability of Ni-Ti(-Cu) interlayers, integrated in a bilayer design (tribological top layer/Ni-Ti(-Cu) layer/substrate), to improve the resistance against adhesion damage and the tribological performance of W-S-C self-lubricant coatings, when these bilayers are subjected to different sliding conditions. Interesting differences on adhesion and tribological performance are observed in relation to the grain size of the interlayer material
Callisti, M.
093b5320-2398-4d72-8b09-278d22a08937
Polcar, T.
c669b663-3ba9-4e7b-9f97-8ef5655ac6d2
July 2015
Callisti, M.
093b5320-2398-4d72-8b09-278d22a08937
Polcar, T.
c669b663-3ba9-4e7b-9f97-8ef5655ac6d2
Callisti, M. and Polcar, T.
(2015)
Ni-Ti-Cu shape memory alloy interlayers supporting low-friction W-S-C coatings.
6th International Conference on Mechanics and Materials in Design, Ponta Delgada, Portugal.
25 - 29 Jul 2015.
Record type:
Conference or Workshop Item
(Paper)
Abstract
This work is aimed at assessing the capability of Ni-Ti(-Cu) interlayers, integrated in a bilayer design (tribological top layer/Ni-Ti(-Cu) layer/substrate), to improve the resistance against adhesion damage and the tribological performance of W-S-C self-lubricant coatings, when these bilayers are subjected to different sliding conditions. Interesting differences on adhesion and tribological performance are observed in relation to the grain size of the interlayer material
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Published date: July 2015
Venue - Dates:
6th International Conference on Mechanics and Materials in Design, Ponta Delgada, Portugal, 2015-07-25 - 2015-07-29
Organisations:
Engineering Mats & Surface Engineerg Gp
Identifiers
Local EPrints ID: 380913
URI: http://eprints.soton.ac.uk/id/eprint/380913
PURE UUID: ad7d8026-0599-47dd-94fa-9cfc482eed8c
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Date deposited: 18 Sep 2015 11:03
Last modified: 12 Dec 2021 03:51
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Contributors
Author:
M. Callisti
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