This contribution shows the effectiveness of a simple mixed Finite Element Model (FEM) for simulating the mechanical behavior of structural Laminated Glass (LG) beams, by numerically reproducing several laboratory tests of small LG specimens taken from literature. The proposed mixed model adopts small displacements and Euler-Bernoulli beam hypotheses and assumes glass layers displacements and polymeric interlayer shear actions as independent fields. Numerical simulations show that such a simple model is able to correctly reproduce LG specimens’ initial stiffness and first peak strength and can be adopted for design purposes of LG elements at a larger scale
AbstractLaminated glass units exhibit complex response as a result of different mechanical behavior ...
The paper focuses on the numerical investigation of SentryGlas\uae(SG)-laminated reinforced glass be...
In this thesis, methods for efficiently determining stresses in laminated glass structures are devel...
A simple and effective beam finite element model is here proposed for studying the behaviour of elas...
Laminated glass structures are formed by stiff layers of glass connected with a compliant plastic in...
This paper presents an analytical model that predicts stress development and ultimate strength of la...
This paper presents a simple Finite Element model aimed at efficient simulation of layered glass uni...
Laminated glass is used in several engineering and architecture applications to enhance their struct...
Despite the increased use of laminated glass (two monolithic layers of glass joined with an elastome...
Laminated glass (LG) consists of two or more glass layers bonded by an elasto-polymeric layer, the m...
The cross-sectional behaviour of laminated glass (LG) is characterised by a significant zigzag effec...
Based on past experimental research results, this paper aims to investigate the structural performan...
Taking advantage of past full-scale experimental test results, the bending performance of laminated ...
AbstractA simply supported glass/polyvinyl butyral (PVB)/glass beam is modelled by plane finite elem...
Two-ply laminated architectural glass used in automotive industry since 1914, now become an importan...
AbstractLaminated glass units exhibit complex response as a result of different mechanical behavior ...
The paper focuses on the numerical investigation of SentryGlas\uae(SG)-laminated reinforced glass be...
In this thesis, methods for efficiently determining stresses in laminated glass structures are devel...
A simple and effective beam finite element model is here proposed for studying the behaviour of elas...
Laminated glass structures are formed by stiff layers of glass connected with a compliant plastic in...
This paper presents an analytical model that predicts stress development and ultimate strength of la...
This paper presents a simple Finite Element model aimed at efficient simulation of layered glass uni...
Laminated glass is used in several engineering and architecture applications to enhance their struct...
Despite the increased use of laminated glass (two monolithic layers of glass joined with an elastome...
Laminated glass (LG) consists of two or more glass layers bonded by an elasto-polymeric layer, the m...
The cross-sectional behaviour of laminated glass (LG) is characterised by a significant zigzag effec...
Based on past experimental research results, this paper aims to investigate the structural performan...
Taking advantage of past full-scale experimental test results, the bending performance of laminated ...
AbstractA simply supported glass/polyvinyl butyral (PVB)/glass beam is modelled by plane finite elem...
Two-ply laminated architectural glass used in automotive industry since 1914, now become an importan...
AbstractLaminated glass units exhibit complex response as a result of different mechanical behavior ...
The paper focuses on the numerical investigation of SentryGlas\uae(SG)-laminated reinforced glass be...
In this thesis, methods for efficiently determining stresses in laminated glass structures are devel...