Influence of Temperature on Laminated Glass Performances Assembled with Various Interlayers
The increasing demand for use of laminated glass in building facades is the driving force for new interlayers testing and their implementation. Architects’ and engineers’ requests require searching for new solutions and processes of lamination. Intelligent facades, electrochromic windows, integrate...
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Challenging Glass Conference
2016
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oai:doaj.org-article:9a24aa7ff70f4c9cb29a84611abfdb6a2021-12-04T05:12:27ZInfluence of Temperature on Laminated Glass Performances Assembled with Various Interlayers10.7480/cgc.5.22482589-8019https://doaj.org/article/9a24aa7ff70f4c9cb29a84611abfdb6a2016-06-01T00:00:00Zhttps://proceedings.challengingglass.com/index.php/cgc/article/view/202https://doaj.org/toc/2589-8019 The increasing demand for use of laminated glass in building facades is the driving force for new interlayers testing and their implementation. Architects’ and engineers’ requests require searching for new solutions and processes of lamination. Intelligent facades, electrochromic windows, integrated photovoltaics, integrated lighting, enhanced solar control, acoustic pollution reduction, wires incorporation, use of special sealants and glues are some of the design drivers of new laminated structures. Laminated safety glass is composed of two or more glass panes bonded by one or more interlayers. The interlayers are typically soft polymers like polyvinyl butyral (PVB), ethylene vinyl acetate (EVA), polyurethane (PU) or ionomer. Today, there are many interlayers on the market with a large variation in their properties. For some projects, it is a challenging task to choose the optimal interlayer. M. NovotnyB. PootChallenging Glass ConferencearticleGlassLaminatedPVBEVAIonomerTemperatureClay industries. Ceramics. GlassTP785-869ENChallenging Glass Conference Proceedings, Vol 5 (2016) |
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Glass Laminated PVB EVA Ionomer Temperature Clay industries. Ceramics. Glass TP785-869 M. Novotny B. Poot Influence of Temperature on Laminated Glass Performances Assembled with Various Interlayers |
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The increasing demand for use of laminated glass in building facades is the driving force for new interlayers testing and their implementation. Architects’ and engineers’ requests require searching for new solutions and processes of lamination. Intelligent facades, electrochromic windows, integrated photovoltaics, integrated lighting, enhanced solar control, acoustic pollution reduction, wires incorporation, use of special sealants and glues are some of the design drivers of new laminated structures.
Laminated safety glass is composed of two or more glass panes bonded by one or more interlayers. The interlayers are typically soft polymers like polyvinyl butyral (PVB), ethylene vinyl acetate (EVA), polyurethane (PU) or ionomer. Today, there are many interlayers on the market with a large variation in their properties. For some projects, it is a challenging task to choose the optimal interlayer.
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format |
article |
author |
M. Novotny B. Poot |
author_facet |
M. Novotny B. Poot |
author_sort |
M. Novotny |
title |
Influence of Temperature on Laminated Glass Performances Assembled with Various Interlayers |
title_short |
Influence of Temperature on Laminated Glass Performances Assembled with Various Interlayers |
title_full |
Influence of Temperature on Laminated Glass Performances Assembled with Various Interlayers |
title_fullStr |
Influence of Temperature on Laminated Glass Performances Assembled with Various Interlayers |
title_full_unstemmed |
Influence of Temperature on Laminated Glass Performances Assembled with Various Interlayers |
title_sort |
influence of temperature on laminated glass performances assembled with various interlayers |
publisher |
Challenging Glass Conference |
publishDate |
2016 |
url |
https://doaj.org/article/9a24aa7ff70f4c9cb29a84611abfdb6a |
work_keys_str_mv |
AT mnovotny influenceoftemperatureonlaminatedglassperformancesassembledwithvariousinterlayers AT bpoot influenceoftemperatureonlaminatedglassperformancesassembledwithvariousinterlayers |
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1718372869688262656 |