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Dive into the research topics where Sam Van Dam is active.

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Featured researches published by Sam Van Dam.


Challenging Glass Conference 6 Proceedings | 2018

Experimental Characterization and Finite Element Modelling of Strain-rate Dependent Hyperelastic Properties of PVB Interlayers

Joren Pelfrene; Sam Van Dam; Siebe Spronk; Wim Van Paepegem

Laminated glass provides safety in an impact or explosion event by way of a polymer interlayer to which glass fragments adhere upon fracture. The mechanical deformation of the interlayer defines how the impact energy can be absorbed to prevent calamities by flying glass debris, penetration of a blast wave, lacerations, etc. The PVB interlayer used in safety glass shows highly nonlinear viscoelastic material behaviour, with a great sensitivity to temperature and deformation rate. Although various material models for PVB can be found in literature, few publications discuss the full range of its mechanical behaviour and none are found to describe a material model that is valid in a wide range of deformation rates and up to high elongations. Such material model is necessary for the numerical study of the post-fracture response in a dynamic event. The article describes the mechanical behaviour of PVB interlayer and the constitutive models by which the polymer can be represented under different load cases. Tensile experiments of Saflex® PVB are presented for a wide range of deformation rates and up to tearing of the specimens. Subsequently, a method to calibrate a hyper-viscoelastic material model for the interlayer by numerically simulating the tensile tests is developed. The resulting material models are valid up to the tearing strain of the interlayer and are accurate within a specified range of deformation rates and temperatures.


International Journal of Impact Engineering | 2014

Experimental study on the dynamic behaviour of glass fitted with safety window film with a small-scale drop weight set-up

Sam Van Dam; Joren Pelfrene; Stijn De Pauw; Wim Van Paepegem


COST ACTION TU0905: MID-TERM CONFERENCE ON STRUCTURAL GLASS | 2013

A new experimental test set-up for investigating impact resistance of laminated glass

Sam Van Dam; Joren Pelfrene; Wim Van Paepegem; Joris Degrieck; D. Lecompte; John Vantomme


COST ACTION TU0905: MID-TERM CONFERENCE ON STRUCTURAL GLASS | 2013

Numerical simulation of elastic, fracture and post-failure response of monolithic and laminated glass under impact loading

Joren Pelfrene; Sam Van Dam; Joris Degrieck; Wim Van Paepegem


Challenging Glass 5 (CGC5) Conference on Architectural and Structural Applications of Glass | 2016

Fracture simulation of structural glass by element deletion in explicit FEM

Joren Pelfrene; Sam Van Dam; Ruben Sevenois; Francisco Antonio Gilabert Villegas; Wim Van Paepegem


6th International Conference on Optical Measurement Techniques for Structures and Systems III (OPTIMESS2015) | 2016

Accurately measuring 2D position using a composed grid pattern and DTFT

Sam Van Dam; Frederik Allaeys; Wim Van Paepegem; Joris Degrieck


Proceedings of Challenging Glass 4 & COST Action TU0905 Final Conference | 2014

Numerical and experimental study of the peel test for assessment of the glass-PVB interface properties in laminated glass

Joren Pelfrene; Sam Van Dam; Wim Van Paepegem


Archive | 2017

Experimental analysis of the post-fracture response of laminated glass under impact and blast loading

Sam Van Dam


Challenging Glass 5 (CGC5) Conference on Architectural and Structural Applications of Glass | 2016

Numerical simulation of the EN 12600 Pendulum Test for Structural Glass

Joren Pelfrene; Sam Van Dam; Wim Van Paepegem; Johannes Kuntsche


Challenging Glass 4 & COST Action TU0905 Final Confrerence | 2014

Study on the use of cohesive zone modelling for assessment of adhesive properties at the glass-PVB interface

Joren Pelfrene; Sam Van Dam; Wim Van Paepegem; Joris Degrieck

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D. Lecompte

Royal Military Academy

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