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| This study delves into the critical aspects of fire safety in laminated glass.
| Christoph Timm, Principal at SOM New York, shared insights on decarbonizing the built environment and the evolving landscape of sustainable construction.
| This study describes what to our knowledge is the first full scale fire resistance tests of Timber-Glass composites beams.
| A review of experimental research and main influencing parameters
| This study conducts a survey of the literature to identify and discuss various materials and design approaches incorporated to augment the sustainability of laminated glass.
| In this paper, the attention is given to a glass facade built in 1962 and currently subjected to accidental bird-strike.
| The research paper gives an idea and compares the structural behaviour and fracture pattern and evaluates laminated glass samples with PVB, Ionoplast and EVA interlayers.
| The latest Glastory blog presents how to overcome interlayer temperature hurdles in laminated glass processing with the prediction method. More of the presentation by Mikko Rantala at GPD 2023.
| This article proposes a methodology for the structural design of multi-layered glass beams considering lateral-torsional buckling.
| Given the growing spread of glass as a construction material, the knowledge of structural response must be ensured, especially under dynamic accidental loads.
| The idea was realized in a collaborative research effort of TU Berlin, BTU Cottbus-Senftenberg and Josef Gartner GmbH that resulted in a full-scale mock-up of a Double‑Skin Facade.
| This study investigates the structural behavior of adhesive bonds of glass and metal using thin, structural silicones in heavily constrained applications.
| New translucent, structural and modular façade component.
| The objective of this research is to facilitate a waste-free fabrication of doubly curved glass elements and a facile, fast, low-cost mold-making process for the hot bending of glass.
| In his blogs, Luc Moeyersons covered various subjects related to laminated glass, whether it is automotive, architectural, or photovoltaic.
| Automotive Glass Laminating Guide – Part 6
| This paper presents the results of an original test series carried out on monolithic glass panes with the dimensions of 500 × 500 mm2 and different thicknesses, under the exposure to radiant heating.
| This paper deals with experiments and numerical simulations of cylindrically curved IGUs.
| In the present paper, attention is focused on the experimental and Finite Element (FE) numerical analysis of in-service LG modular units acting as pedestrian elements that are affected by partial glass fracture and ordinary walking conditions.
| Automotive Glass Laminating Guide – Part 5
| Automotive Glass Laminating Guide – Part 4
| BIPV represents an important field to explore, since PV systems have an enormous potential within the context of architectural and urban design.
| Automotive Glass Laminating Guide – Part 3
| In the latest Glastory blog, Jukka Immonen shares some practical tips for optimizing energy consumption in automotive glass production. From preprocessing to final inspection, there is huge potential every step of the way.
| An experimental investigation of the post-fracture bending moment capacity based on time-temperature mapping of interlayer yield stress