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Simulation of crack initiation and propagation in an adhesive layer using a mesomechanical model: Polymer Composite Materials for Wind Power Turbines
University of Skövde, School of Technology and Society.
University of Skövde, School of Technology and Society.
2006 (English)In: the 27th Risö International Symposium on Material Science, Riso National Laboratory , 2006, 315-320 p.Conference paper, (Other academic)
Abstract [en]

A finite element modle of a double cantilever beam specimen is developed. The adherents are modeled using plane strain elastic continuum elements. Furthermore, the adhesive is modeled using a mesomechanical modeling teqnique wich allows for simulation of initiation and prognationb of micro-cracks. This enables the modelling of entire process of degradation and fracture of the adhesive layer. The purpose of the present study is to compare the stress-deformation behavior in an idealized peel loading to the behavior in a double cantilever beam (DCB) specimen where the adhesive layer is deformed wilt a slight gradient along the layer. Previously performed experiments and simulations of the RVE are used as a compariosn to the simulated results.

Place, publisher, year, edition, pages
Riso National Laboratory , 2006. 315-320 p.
Identifiers
URN: urn:nbn:se:his:diva-1899ISBN: 87-550-3528-0 OAI: oai:DiVA.org:his-1899DiVA: diva2:32175
Available from: 2007-09-19 Created: 2007-09-19 Last updated: 2013-03-19

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http://www.risoe.dk/afm/symp27/Papers/34,%20Risoe%20Symposium%202006,Proc,%20Salomonsson.pdf

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Andersson, TobiasSalomonsson, Kent
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