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| Ultra-thin glass is opening new possibilities for high-performance insulating glass units, delivering improved energy efficiency, comfort, safety, and reduced weight for next-generation glazing solutions.
| Discover how Vacuum Insulated Glazing (VIG) is shaping the future of sustainable construction, combining outstanding thermal performance with innovative design solutions for residential, commercial, and heritage buildings.
| A new study explores how Vacuum Insulated Glass (VIG) can support energy-efficient retrofits and new construction projects, while addressing the critical challenge of temperature-induced stress and future design standards.
| Ultra-thin center glass is redefining what’s possible for insulating glass units—delivering lighter, thinner, and more energy-efficient glazing solutions for modern buildings.
| This research explores how load-bearing glass can move beyond infill applications through an innovative linear metal edge fitting integrated into insulated glazing units.
| This article presents how the pioneering G2C (Glass-to-Concrete) project is redefining construction by successfully integrating bonded glass and concrete into a full-scale pedestrian bridge demonstrator.
| This study demonstrates how fibre-reinforced and ultra-high-performance concretes enable structurally bonded glass-to-concrete systems, opening new possibilities for efficient, sustainable, and visually striking hybrid structures.
| This study explores how fibre optic sensors can accurately measure strain and temperature in laminated glass systems, revealing how adhesives, temperature, and load conditions influence the mechanical behaviour of PVB and embedded sensors.
| Understanding how glazing systems behave under blast conditions is essential for designing safer, more resilient façades.
| In this sixth episode, the focus is on how to assemble and gas-fill IG units synchronously.
| The path to low-carbon, high-performance facades depends on mastering the long-term thermal behavior and lifecycle performance of Insulating Glass Units (IGUs).
| A new study explores how the size, shape, and material of tiny support pillars in Vacuum Insulated Glass (VIG) impact both its thermal efficiency and mechanical strength — offering analytical tools to optimize VIG design for better performance.
| A new advanced FEM model has been developed to accurately simulate the nonlinear behavior of Insulating Glass Units (IGUs), including curved configurations, offering higher precision and faster computation compared to commercial software.
| Discover how TPS® boosts IGU longevity and energy performance in this Glastory blog and download the presentation.
| Retrofitting buildings is key to boosting energy efficiency and climate resilience, especially in dense, subtropical cities like Hong Kong.
| The German code for the design of glass structures, DIN 18008, was first published in its final version in 2010 and 2013; as several major changes were suggested, the periodical revision took longer than expected.
| Vacuum insulating glass (VIG) has demonstrated competitive Ug-values (heat transfer coefficients) which show promise to further reduce energy consumption from buildings.
| This paper is a discussion about concepts to minimize the glass thickness as much as possible for a usage of thin glass for insulated glass.
| In this paper, the behaviour of various Insulating Glass Units (IGUs) is examined under the influence of quasi-static uniform wind pressure and weather actions.
| In this paper, two specific liquid cold-poured interlayer adhesives are investigated for their mechanical material properties in an extensive test regime.
| The organic design and seamlessly reflective surface of “The Henderson” establish it as a landmark in Hong Kong. With its all-glass façade and a height of 210 m, the skyscraper designed by Zaha Hadid Architects offers spectacular panoramic views.
| Examination method and design approaches
| This paper presents investigations on a novel approach for post-tensioning laminated glass beams with adhesively bonded iron-based shape memory alloy tendons along both longitudinal glass beam edges.
| This paper aims to quantify the savings achieved through the ERM of secondary layer addition to existing glazed facades, for a high WWR office building in cooling and heating dominated climate locations.