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Flexural response of glass-GFRP composite sandwich façade panels

  • Kingston University
  • Delft University of Technology

Research output: Chapter in Book/Report/Conference proceedingConference contributionpeer-review

Abstract

This study addresses the limited understanding of the structural performance of composite sandwich façade panels made with glass and pultruded glass fiber-reinforced polymer (GFRP), which represent a promising alternative to conventional aluminum glazed systems. These panels, measuring 1300 × 600 mm, were experimentally tested under monotonic flexural loading to explore the influence of adhesive type on structural performance, comparing assemblies bonded with silicone-based adhesives to those bonded with epoxy-based adhesives. An initial-stage ANSYS FE model was developed and validated against the experimental results, providing further confidence in the findings and enabling predictive analysis. Key focus areas include analyzing the flexural response and investigating shear lag effects, which are critical to understanding the effective widths and mechanical behavior of glazed composite sandwich panels. The findings highlight that epoxy-bonded panels demonstrate significantly greater stiffness and load-bearing capacity compared to silicone-bonded panels, underscoring the importance of adhesive properties in achieving optimal performance. This research contributes to the development of analytical models that can accurately predict the behavior of glass-GFRP composite panels, providing engineers and designers with essential insights into the mechanical performance of such systems. By demonstrating the feasibility of replacing traditional aluminum unitized curtain walls with glass-GFRP sandwich panels, this study illustrates the potential to create slimmer, stronger, and more durable façade systems with enhanced corrosion resistance. These findings support the transformative role of composite materials in advancing façade panel design for minimalist, sustainable, and architecturally innovative building exteriors.
Original languageEnglish
Title of host publication12th International Conference on FRP Composites in Civil Engineering (CICE 2025)
EditorsJosé Sena-Cruz, Joaquim A. O. Barros, Luís Correia, João Custódio, Ana Sofia Louro
Place of PublicationCham, Switzerland
PublisherSpringer Cham
Pages81-90
Number of pages10
ISBN (Electronic)9783032093875
ISBN (Print)9783032093868
DOIs
Publication statusPublished - 8 Feb 2026
Event12th International Conference on Fiber-Reinforced Polymer (FRP) Composites in Civil Engineering - University of Lisbon, Lisbon, Portugal
Duration: 14 Jul 202516 Jul 2025
https://cice2025.org/

Publication series

NameLecture Notes in Civil Engineering
PublisherSpringer
ISSN (Print)2366-2557
ISSN (Electronic)2366-2565

Conference

Conference12th International Conference on Fiber-Reinforced Polymer (FRP) Composites in Civil Engineering
Abbreviated titleCICE 2025
Country/TerritoryPortugal
CityLisbon
Period14/07/2516/07/25
Internet address

Keywords

  • Adhesively Bonded Connections
  • Façade
  • Façade Panels
  • GFRP
  • Glass
  • Sandwich Structures

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