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| A Comparative Experimental Study
| This paper presents a Machine Learning approach for predicting the acoustic properties of different glazing systems.
| The authors present results achieved in a roll-to-roll deposition process of vanadium oxide on flexible glass of 0.1 mm thickness.
| Glass is a brittle material. After the stress due to loading exceeds the resistance, a breakage occurs, and the glass is no longer intact.
| In this paper, a prediction method of the heat transfer coefficient of composite vacuum glazing (CVG) is proposed.
| It is hypothesized that the usage of smart glass in the building envelope can provide optimum solutions to adapt buildings to the variable climatic and environmental characteristics.
| In this study, the superhydrophilic coating behavior on glass substrate has been developed.
| This paper examines the visual performance of building facades that utilize windows with different photochromic-coated glass.
| This paper aims to contribute to this topic by examining the potential of a smart window system that has double dynamic insulated glazing in preventing heat gain and maximising daylight indoors.
| The durability of an innovative polymeric coating recently developed by the authors to prevent stress corrosion in annealed glass is herein examined.
| In this third episode of the #AskGlaston flat tempering series, Taneli Ylinen deals with the commonly asked question of how to handle the issues with mixed production.
| Color Depth is a material-based research project investigating the optical and structural properties of thick glass.
| 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 research revolves around the design, fabrication and testing of tubular glass columns, with particular focus on their redundancy and fire-safety mechanisms.
| In the second episode of #AskGlaston Flat Tempering Series, we will talk about the new solution to estimate the stress level in glass – online.
| This latest Glastory blog by Miika Äppelqvist is dealing with the areas of the tempering process that can be improved to make operations more efficient.
| Industry demand for impeccable glass quality has increased notably over the last years. Customer expectations run high, forcing glass processors to strive for ever-stricter quality control and ensure minimal rejection rates for finished products.
| The most common quality issues that arise in tempered glass are roller waves, glass distortion, bad anisotropy and white haze. In this post, we want to focus on white haze and ways to control it.
| Glass can form and shape a space, creating transparent architecture that can make you feel closer to the outside world.
| In 2015, the bold concept of a curvy tower at 252 East 57th Street, New York, was presented to an audience at the Glass Performance Days conference. At that time, building construction was just beginning, and no one was certain such a novel idea could be realized.
| This poetry in architecture, one of the most advanced structures in the Nordic countries, Oodi Library exalts the very elements of glass, wood and steel that work in balance as a free-standing masterpiece. 
| In glass tempering, we look for equipment that uses less energy, leading to fewer emissions. But sometimes, the numbers are too good to be true.
| Global environmental concern is motivating efforts to improve energy efficiency in all industrial sectors. And glass tempering is no exception.
| Today, almost all new devices – from home appliances to production equipment – are connected. Rapid development in consumer electronics has been increasingly moving towards industrial use. In the glass industry, this development is still in its early stages.
| To really succeed in glass lamination, it takes much more than just having the best equipment – it’s about understanding the process in and out.