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Nonlinear Calculations Methods for Polymeric Materials in Structural Glass Construction - an Overview


The result of the calculation for the strain energy density is shown below (Figure 5).
Fig. 5 Deformation energy density [J / mm³] in the cross section of the L-shaped adhesive joint (long side a), corner b), short side c)).
The section through the long and short side as well as through the module corner is displayed. The results clearly indicate the critically stressed areas in the adhesive. They occur where relatively thin adhesive layer thicknesses connect the two substrates and the load caused by large impediments to transverse expansion has high hydrostatic proportions. The model provides valuable insights into dimensioning and geometry optimization for the described component. ....

Bruxelles Capitale , City Of , United Kingdom , Thomas Schwarz , Technische Universit , Wolfgang Wittwer , Christian Scherer , Automobiltechnische Zeitschrift , Thomas Scherer , European Organisation For Technical Approvals , Chadstone Shopping Center , Ghent University , Taylor Francis Group , Structural Applications , Element Analysis , Shopping Mall , Struct Eng , European Organisation , European Technical Approval , Structural Sealant Glazing Kits , Elastic Adhesive Joints , Systematic Approach , Challenging Glass Conference Proceedings , Mid Term Conference , Structural Glass , Francis Group ,

Behaviour of Different Glass Elements subjected to Elevated Temperatures – State of the Art


Ghent University, Belgium
Glass has become an indispensable construction material. However, in extreme events such as fire, the behaviour of glass elements is still relatively unknown. The susceptibility of glass to thermal shock and its changeable material properties when subjected to high temperatures make predicting the behaviour of glass elements during fire complex.Practical applications of fire-resistant glazing, however,already exist as infill panels and frameless glass walls/doors, and are commonly used.
They are highly effective to maintain compartmentation, providing temporary protection of the unexposed side against the passage of flames and smoke and, depending on the classification, they also provide thermal insulation. This paper gives astate of the art overview of experimental research performed on glazing subjected to fire loading. Studies on temperature-dependent properties, monolithic glazing and layered glass products exposed to heating are summarised. T ....

United States , Bruxelles Capitale , Le Bourhis , Evelien Symoens , Veeret Al , Procedia Eng , Ruben Van Coile , Brandwerend Glas , Jan Belis , International Journal Of Thermal Sciences , Glass Technology , Elastic Properties , Ghent University , Experimental Research , Structural Applications , Transient Plane Source , Material Testing System , Low Thermal Expansion Glass , Structural Glass Systems , Design Issues , Build Mater , Glass Processing Days , Exploratory Investigation , Structural Glass , General Requirements , European Structural Design ,