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You searched for id:"tud:oai:tudelft.nl:uuid:d53f2842-480c-4cf2-b8c7-cbaf157d4398". One record found.

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Delft University of Technology

1. Khajeh Salehani, M. Modelling adhesion and friction in contact problems.

Degree: 2019, Delft University of Technology

The main objective of this thesis is to obtain a better understanding of adhesive contacts and their frictional behaviour. Both natural and man-made surfaces are rough over a wide range of length scales. Tribological studies of rough surfaces need to account for the interactions between these asperities. In this work a sim- ple atomistically–inspired macro-scale model is developed to study smooth and rough contacts between elastically deformable bodies where adhesion and fric- tion are simultaneously active at the interface. A full description of the model is presented in Chapter 2. There, the Green’s function molecular dynamics (GFMD) technique is extended to explicitly de- scribe the two solids in contact and their mixed-mode interface interactions. The interactions between surfaces are described through a coupled cohesive-zone model implemented in the GFMD technique. The extended GFMD technique includes an incremental iterative scheme, which is necessary to capture the con- tact area evolution when tangential tractions develop at the interface between the solids under loading. Advisors/Committee Members: Nicola, L., Irani, N., Delft University of Technology.

Subjects/Keywords: Adhesion and friction; Contact Area and Load; Cohesive Law; Rough Surfaces; Green’s Function Molecular Dynamics; tribology

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APA · Chicago · MLA · Vancouver · CSE | Export to Zotero / EndNote / Reference Manager

APA (6th Edition):

Khajeh Salehani, M. (2019). Modelling adhesion and friction in contact problems. (Doctoral Dissertation). Delft University of Technology. Retrieved from http://resolver.tudelft.nl/uuid:d53f2842-480c-4cf2-b8c7-cbaf157d4398 ; urn:NBN:nl:ui:24-uuid:d53f2842-480c-4cf2-b8c7-cbaf157d4398 ; d53f2842-480c-4cf2-b8c7-cbaf157d4398 ; urn:isbn:978-94-6380-408-0 ; 10.4233/uuid:d53f2842-480c-4cf2-b8c7-cbaf157d4398 ; urn:NBN:nl:ui:24-uuid:d53f2842-480c-4cf2-b8c7-cbaf157d4398 ; http://resolver.tudelft.nl/uuid:d53f2842-480c-4cf2-b8c7-cbaf157d4398

Chicago Manual of Style (16th Edition):

Khajeh Salehani, M. “Modelling adhesion and friction in contact problems.” 2019. Doctoral Dissertation, Delft University of Technology. Accessed July 20, 2019. http://resolver.tudelft.nl/uuid:d53f2842-480c-4cf2-b8c7-cbaf157d4398 ; urn:NBN:nl:ui:24-uuid:d53f2842-480c-4cf2-b8c7-cbaf157d4398 ; d53f2842-480c-4cf2-b8c7-cbaf157d4398 ; urn:isbn:978-94-6380-408-0 ; 10.4233/uuid:d53f2842-480c-4cf2-b8c7-cbaf157d4398 ; urn:NBN:nl:ui:24-uuid:d53f2842-480c-4cf2-b8c7-cbaf157d4398 ; http://resolver.tudelft.nl/uuid:d53f2842-480c-4cf2-b8c7-cbaf157d4398.

MLA Handbook (7th Edition):

Khajeh Salehani, M. “Modelling adhesion and friction in contact problems.” 2019. Web. 20 Jul 2019.

Vancouver:

Khajeh Salehani M. Modelling adhesion and friction in contact problems. [Internet] [Doctoral dissertation]. Delft University of Technology; 2019. [cited 2019 Jul 20]. Available from: http://resolver.tudelft.nl/uuid:d53f2842-480c-4cf2-b8c7-cbaf157d4398 ; urn:NBN:nl:ui:24-uuid:d53f2842-480c-4cf2-b8c7-cbaf157d4398 ; d53f2842-480c-4cf2-b8c7-cbaf157d4398 ; urn:isbn:978-94-6380-408-0 ; 10.4233/uuid:d53f2842-480c-4cf2-b8c7-cbaf157d4398 ; urn:NBN:nl:ui:24-uuid:d53f2842-480c-4cf2-b8c7-cbaf157d4398 ; http://resolver.tudelft.nl/uuid:d53f2842-480c-4cf2-b8c7-cbaf157d4398.

Council of Science Editors:

Khajeh Salehani M. Modelling adhesion and friction in contact problems. [Doctoral Dissertation]. Delft University of Technology; 2019. Available from: http://resolver.tudelft.nl/uuid:d53f2842-480c-4cf2-b8c7-cbaf157d4398 ; urn:NBN:nl:ui:24-uuid:d53f2842-480c-4cf2-b8c7-cbaf157d4398 ; d53f2842-480c-4cf2-b8c7-cbaf157d4398 ; urn:isbn:978-94-6380-408-0 ; 10.4233/uuid:d53f2842-480c-4cf2-b8c7-cbaf157d4398 ; urn:NBN:nl:ui:24-uuid:d53f2842-480c-4cf2-b8c7-cbaf157d4398 ; http://resolver.tudelft.nl/uuid:d53f2842-480c-4cf2-b8c7-cbaf157d4398

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