Sheng, Y, Yang, DM, Tan, YQ et al. (1 more author) (2010) Microstructure effects on transverse cracking in composite laminae by DEM. Composites Science and Technology, 70 (14). 2093 - 2101 . ISSN 0266-3538
Abstract
A particle discrete element method (DEM) was employed to simulate transverse cracking in laminated fiber reinforced composites. The microstructure of the laminates was modeled by a DEM model using different mechanical constitutive laws and materials parameters for different constituents, i.e. fiber, matrix and fiber/matrix interface. Rectangular, hexagonal and random fiber distributions were simulated to study the effect of fiber distribution on the transverse cracking. The initiation and dynamic propagation of transverse cracking and interfacial debonding were all captured by the DEM simulation, which showed similar patterns to those observed from experiments. The effect of fiber volume fraction was also studied for laminae with randomly distributed fibers. It was found that the distribution and volume fraction of fibers affected not only the transverse cracking path, but also the behavior of matrix plastic deformation and fiber/matrix interface yielding in the material.
Metadata
Item Type: | Article |
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Authors/Creators: |
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Keywords: | Discrete element method, Transverse cracking, Debonding, Matrix cracking, Microstructure, Polymer-matrix composites (PMCs), Fiber-Reinforced Composites, Positioned Long Fibers, Glass/Epoxy Composites, Numerical Simulations, Polymer Composites, Fracture-Behavior, Damage, Concrete, Matrix |
Dates: |
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Institution: | The University of Leeds |
Academic Units: | The University of Leeds > Faculty of Engineering & Physical Sciences (Leeds) > School of Civil Engineering (Leeds) |
Depositing User: | Symplectic Publications |
Date Deposited: | 18 May 2011 11:08 |
Last Modified: | 04 Nov 2016 03:35 |
Published Version: | http://dx.doi.org/10.1016/j.compscitech.2010.08.00... |
Publisher: | Elsevier B.V |
Identification Number: | 10.1016/j.compscitech.2010.08.006 |
Open Archives Initiative ID (OAI ID): | oai:eprints.whiterose.ac.uk:42985 |