Exploratory investigation into the post-fracture model of laminated tempered glass using combined Voronoi-FDEM approach

•A combined Voronoi tessellation and finite-discrete element method (FDEM) approach for modelling the post-fracture behaviour of laminated tempered glass was proposed.•Fragments of tempered glass with different surface compressive stresses were modelled as Voronoi cells.•Statistical distribution par...

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Veröffentlicht in:International journal of mechanical sciences 2021-01, Vol.190, p.105989, Article 105989
Hauptverfasser: Wang, Xing-er, Yang, Jian, Pan, Zhufeng, Wang, Feiliang, Meng, Yanran, Zhu, Yuhan
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Sprache:eng
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Zusammenfassung:•A combined Voronoi tessellation and finite-discrete element method (FDEM) approach for modelling the post-fracture behaviour of laminated tempered glass was proposed.•Fragments of tempered glass with different surface compressive stresses were modelled as Voronoi cells.•Statistical distribution parameters such as the fragment face numbers, volume and sphericity were adopted to reconstruct the fracture morphology of tempered glass.•Post-fracture behaviour of one triple layered laminated tempered glass block under tension was modelled and validated with experimental data.•Key cohesive parameters for describing the residual interaction between glass fragments were determined.•The influence due to the fragments interaction property, bond levels and fracture morphology on the post-fracture behaviour of laminated tempered glass was investigated. It is reported that the fractured glass panels can contribute to the residual load-bearing capability of laminated glass (LG) after cracking. In order to investigate the stiffness and failure characteristics of LG at the post-fracture stage, a combined Voronoi and finite-discrete element method (FDEM) approach was proposed, which includes reconstructing the post-fracture patterns and carrying out the structural simulation of the post-fracture behaviour. The fracture morphology was determined by introducing Voronoi tessellation defined with statistical parameters such as the fragment face numbers, volume and sphericity. The interaction between glass fragments was captured with the cohesive zone model. One fractured LG block under uniaxial tension, which was taken from a triple layered LG beam with ionoplast interlayers, was modelled and validated with experimentally recorded data. Through iteration analysis, the key cohesive parameters were selected. It was then followed by investigating the influence of the fragment interaction property, the bond level and fracture morphology on the post-fracture behaviour of laminated tempered glass. Results show that the combined cohesion and frictional properties can well represent the residual interaction behaviour between fragments. The frictional property has a significant effect on the post-fracture resistance, and whereas the effect on the stiffness is not that evident. Compared to other cohesive parameters, the cohesive stiffness factors have a predominant effect on both the post-fracture stiffness and resistance. The tension stiffening effect is found to be able to provide a c
ISSN:0020-7403
1879-2162
DOI:10.1016/j.ijmecsci.2020.105989