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Simulation of nanoidentation and penetration tests for coating-substrate-characterisation

Simulation von Nanoindentation und Einpresstests zur Charakterisierung von Schicht-Substrat-Systemen
 
: Leopold, J.; Schmidt, G.; Stark, S.; Wielage, B.; Wank, A.; Rupprecht, C.; Hoyer, K.

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Präsentation urn:nbn:de:0011-n-638508 (1.7 MByte PDF)
MD5 Fingerprint: b3fb147f0feb4f90eaea3d195d95e10f
Erstellt am: 8.4.2011


Univ. Hannover, Institut für Fertigungstechnik und Werkzeugmaschinen:
THE Coatings in Manufacturing Engineering 2007 : October 25-26, 2007, Hannover
Garbsen: PZH Gesellschaft, 2007 (Berichte aus dem IFW 10/2007)
ISBN: 978-3-939026-64-8
S.223-233
International Conference THE Coatings in Manufacturing Engineering <6, 2007, Hannover>
Englisch
Konferenzbeitrag, Elektronische Publikation
Fraunhofer IWU ()
coating; characterisation; numerical simulation; nanoindentation; penetration test; forming tool; Schichtsystem; Schichtcharakterisierung; numerische Simulation; nanoindentation; Einpresstest; Umformwerkzeug

Abstract
The paper deals with the finite element simulation of coating subatrate systems and with test methods to determine matarial parameters like Young´s modulus of thin coatings. Two variants of nanoindentation of coating-substrate-systems were simulated. A penatration test, which incorporates the increase of the surface and the generation of free surfaces in bulk metal forming processes, is used to investigate the friction behaviour of the coating-substrate-system. Two numerical models of this penetration tests are compared with experimental results. The laser-wave measurment technique LAwave is introduced and the measured values of Young´s moduls for different coatings are presented.

: http://publica.fraunhofer.de/dokumente/N-63850.html