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Experimental material determination of viscoelastic glass/ionomer laminates

Dieter Callewaert (UGent) , Didier Delincé (UGent) , Jan Belis (UGent) and Rudy Van Impe (UGent)
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Abstract
To use laminated glass as a structural building material, a better understanding of its mechanical properties is necessary. The Laboratory for Research on Structural Models is performing experimental tests and numerical simulations to gain a better insight into the influence of the viscoelastic interlayer (PVB and SG) on the mechanical behaviour of glass laminates. Among others, the study determines the resistance taking the time- and temperature dependent behaviour of the laminate into account. For this research, an optimised torsion test set-up has been built based on numerical simulations with different support types. Also three-point bending tests are being performed in a climatic chamber in which temperature and humidity are controlled. Further comparison of these test results at different temperatures should produce a complete image of the stiffness of laminated glass, which could be used as a basis for safe but economic design recommendations for laminated glass components.
Keywords
Laminated glass, Viscoelasticity, Experimental

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Citation

Please use this url to cite or link to this publication:

MLA
Callewaert, Dieter, et al. “Experimental Material Determination of Viscoelastic Glass/Ionomer Laminates.” National Congress on Theoretical and Applied Mechanics, 8th, Proceedings, 2009, pp. 511–12.
APA
Callewaert, D., Delincé, D., Belis, J., & Van Impe, R. (2009). Experimental material determination of viscoelastic glass/ionomer laminates. National Congress on Theoretical and Applied Mechanics, 8th, Proceedings, 511–512.
Chicago author-date
Callewaert, Dieter, Didier Delincé, Jan Belis, and Rudy Van Impe. 2009. “Experimental Material Determination of Viscoelastic Glass/Ionomer Laminates.” In National Congress on Theoretical and Applied Mechanics, 8th, Proceedings, 511–12.
Chicago author-date (all authors)
Callewaert, Dieter, Didier Delincé, Jan Belis, and Rudy Van Impe. 2009. “Experimental Material Determination of Viscoelastic Glass/Ionomer Laminates.” In National Congress on Theoretical and Applied Mechanics, 8th, Proceedings, 511–512.
Vancouver
1.
Callewaert D, Delincé D, Belis J, Van Impe R. Experimental material determination of viscoelastic glass/ionomer laminates. In: National Congress on Theoretical and Applied Mechanics, 8th, Proceedings. 2009. p. 511–2.
IEEE
[1]
D. Callewaert, D. Delincé, J. Belis, and R. Van Impe, “Experimental material determination of viscoelastic glass/ionomer laminates,” in National Congress on Theoretical and Applied Mechanics, 8th, Proceedings, Brussels, Belgium, 2009, pp. 511–512.
@inproceedings{675679,
  abstract     = {{To use laminated glass as a structural building material, a better understanding of its mechanical properties is necessary. The Laboratory for Research on Structural Models is performing experimental tests and numerical simulations to gain a better insight into the influence of the viscoelastic interlayer (PVB and SG) on the mechanical behaviour of glass laminates. Among others, the study determines the resistance taking the time- and temperature dependent behaviour of the laminate into account.
For this research, an optimised torsion test set-up has been built based on numerical simulations with different support types. Also three-point bending tests are being performed in a climatic chamber in which temperature and humidity are controlled. Further comparison of these test results at different temperatures should produce a complete image of the stiffness of laminated glass, which could be used as a basis for safe but economic design recommendations for laminated glass components.}},
  author       = {{Callewaert, Dieter and Delincé, Didier and Belis, Jan and Van Impe, Rudy}},
  booktitle    = {{National Congress on Theoretical and Applied Mechanics, 8th, Proceedings}},
  keywords     = {{Laminated glass,Viscoelasticity,Experimental}},
  language     = {{eng}},
  location     = {{Brussels, Belgium}},
  pages        = {{511--512}},
  title        = {{Experimental material determination of viscoelastic glass/ionomer laminates}},
  year         = {{2009}},
}