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  4. Experimental and numerical investigations of metal-to-glass embedded connections with thin stainless steel plate
 
conference paper

Experimental and numerical investigations of metal-to-glass embedded connections with thin stainless steel plate

Santarsiero, Manuel  
•
Carvalho, Paulo
•
Louter, Christian  
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Belis, Jan  
•
Louter, Christian  
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2013
Proceedings of the COST Action TU0905 Mid-term Conference on Structural Glass
COST Action TU0905, Mid-term Conference on Structural Glass

The recent demand for architectural transparency has drastically increased the use of glass material also for structural purpose. However, connections between structural glass members represent one of the most critical aspects of glass engineering, due to the fragile behaviour of this material. This work presents the experimental and numerical investigations of embedded metal-to-glass connections realized by embedding a thin metal plate within an ionomer interlayer usually used for laminating glass panels. The tested specimens consist of small rectangular glass panels combined with rectangular stainless-steel plates, laminated with a transparent ionomer polymer. The experimental investigations are performed by pulling out the metal plate from the laminated glass panel, at constant displacement rate. Tests at different temperatures are carried out, because of the temperature sensitivity of the interlayer polymer. The connection’s response in terms of load versus relative displacement is here presented. Then, numerical investigations on this type of metal-to-glass connection are performed, with the goal to compute the non-linear distribution of both strain and stress’s fields within the interlayer. In that regard, the experimental tests are simulated by a non-linear FE model. The effects of geometrical non-linearity are taken into account. Comparisons between experimental and numerical results are here presented focusing on the interface level between interlayer and glass material. From the study it is concluded that (i) the use of the adhesion properties of the interlayer material of laminated glass is a promising technique for joining structural glass member (ii) the numerical model developed in this work represents an efficient tool to predict the behaviour of such type of connection.

  • Details
  • Metrics
Type
conference paper
Author(s)
Santarsiero, Manuel  
Carvalho, Paulo
Louter, Christian  
Cruz, Paulo  
Editors
Belis, Jan  
•
Louter, Christian  
•
Mocibob, Danijel  
Date Issued

2013

Publisher

Taylor & Francis Group

Publisher place

London

Published in
Proceedings of the COST Action TU0905 Mid-term Conference on Structural Glass
ISBN of the book

978-1-138-00044-5

Start page

421

End page

428

Subjects

glass structures

•

adhesive connections

•

ionomer

•

embedded connections

•

experimental investigations

•

non linear numerical analysis

Editorial or Peer reviewed

REVIEWED

Written at

EPFL

EPFL units
RESSLAB  
Event nameEvent placeEvent date
COST Action TU0905, Mid-term Conference on Structural Glass

Porec, Croatia

April 18-19

Available on Infoscience
March 10, 2013
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/90201
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