Mechanical Properties of Interfaces


Organisationseinheit:
Graduiertenkolleg 1896/2 In situ Mikroskopie mit Elektronen, Röntgenstrahlen und Rastersonden

Beschreibung:


The research subject area covers the following six sub-projects:




  • B1: Mechanical switching of molecules on surfaces


  • B2: Adhesion and friction of particles on model surfaces


  • B3: Strength and toughness of interfaces at small scales


  • B4: Sliding of incommensurate interfaces in layered compounds


  • B5: Plasticity at interfaces in complex compounds


  • B6: Atomistic simulation of mechanical properties of nanostructures and interfaces



Forschungsprojekt(e)

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(In-situ Characterization of Nanomaterials with Electrons, X-rays/Neutrons and Scanning Probes):
B1: Mechanical switching of molecules on surfaces
Prof. Dr. Rainer Fink; Prof. Dr. Sabine Maier
(01.10.2013 - 30.09.2017)
(In-situ Characterization of Nanomaterials with Electrons, X-rays/Neutrons and Scanning Probes):
B2: Adhesion and friction of particles on model surfaces
Prof. Dr. Mathias Göken; Prof. Dr.-Ing. Wolfgang Peukert
(01.10.2013 - 30.09.2017)
(In-situ Characterization of Nanomaterials with Electrons, X-rays/Neutrons and Scanning Probes):
B4: Sliding of incommensurate interfaces in layered compounds
Prof. Dr. Sabine Maier; Prof. Dr. Erdmann Spiecker
(01.10.2013 - 30.09.2017)
(In-situ Characterization of Nanomaterials with Electrons, X-rays/Neutrons and Scanning Probes):
B5: Plasticity at interfaces in complex compounds
Prof. Dr. Mathias Göken; Prof. Dr. Erdmann Spiecker
(01.10.2013 - 30.09.2017)
(In-situ Characterization of Nanomaterials with Electrons, X-rays/Neutrons and Scanning Probes):
B6: Atomistic simulation of mechanical properties of nanostructures and interfaces
Prof. Dr.-Ing. Erik Bitzek; Prof. Dr. Tobias Unruh
(01.10.2013 - 30.09.2017)

Zuletzt aktualisiert 2018-24-10 um 15:41