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| This text takes a look at the roller process of lamination. It explores different heating concepts such as convection, long wave and short wave IR radiation, and micro-waves, as well as the importance of the correct IR radiation.
| The bridging behavior between fragments is one vital factor in the post-fracture stage of glass laminates.
| This Glastory blog by Kalle Kaijanen is dealing with the processing of high-strength / structural laminates.
| Laminating glass is a process that requires precision and safety. In order to ensure that the glass is laminated safely and to a high standard, special cleanroom requirements must be met. This includes air pressure, clothing, static charges, and cleaning protocols.
| A new BIM tool processing IEQ data input for building management and energetic optimizations
| Within this research, two sets of real-scale laminated banister panels with the embedded connection were tested.
| This paper presents a study on the development of a bonded edge seal for fluid-filled insulating glass units.
| This article explores the various aspects of PVB Preparation, handling, and assembly. It explains how to store, transport, and handle PVB in order to ensure optimal performance and adhesion.
| Determination of the linear viscoelastic material behaviour of interlayers with semi-crystalline structures shown by the example of a semi-crystalline ionomer
| In this research, the structural sealed façade structure with triple IGU was investigated and the effect of the thickness of ordinary and laminated glasses.
| When we look at glass lamination, there are 3 basic systems: Nip roller system, Vacuum bag system and Autoclave free system.
| In the structural design of facade glazing, various types of loads such as dead weight, wind and climatic loads must be taken into account. In practice, however, there are many cases of damage that can be attributed to direct solar radiation.
| In the next session(s), Luc would like to take you through the 3 glass lamination processes in detail, going from glass and PVB requirements to design concepts.
| The main challenge in the design of the duplex façade was the high aesthetical performance that the façade had to meet.
| In this study, the bending process of specially-fabricated double glazing units (‘panels’) is investigated with a focus on a local instability phenomenon.
| In this paper, we present the development of an intrinsic parameter σQM characterizing the sensitivity of a coating (or configuration) to the quench marks.
| This paper presents work undergone for a set of four high-rise towers, featuring 11,136 unique cold-bentpanels, hundreds of which are pushed beyond 250mm.
| The paper presents the results of FEM analysis as well as tests performed on double glazed units including Sikasil® IG-25 secondary sealing joints and SikaGlaze® IG-5 PIB as primary seal.
| The paper undertakes a review of basic interlayer stack data with regards to viscoelastic properties and adhesion, and the engineering hypotheses using recent preliminary fitting test results for various loading schemes.
| This paper shows different Pummel classifications that can currently be found on the market. Subsequently, approaches to the automatization and standardization of the execution and especially the evaluation of the Pummel test are shown.
| This paper sheds some light on the challenges to build with high performing glazing façade systems (originally called curtain wall systems) while efficiently utilising resources and reducing its manufacturing embodied carbon.
| This research revolves around the design, fabrication and testing of tubular glass columns, with particular focus on their redundancy and fire-safety mechanisms.
| This study provides a closer look at fire performance of glass beams and proposes further examinations to increase the load-bearing capacity in case of fire.
| The goal of this work is to investigate the mechanical performance of VIG’s subjected to soft body impact and gain insight into the failure mechanisms of the VIG when exposed to dynamic loads.
| This paper discusses the structural response of cable-supported glass façades, through time history finite element (FE) analyses, under different wind action combinations.