2022
AIR PLASMA TREATMENT FOR IMPROVING THE SAFETY PROPERTIES OF LAMINATED GLASSES CONTAINING IONOPLAST INTERLAYER USED IN CIVIL ENGINEERING
KOVÁČIK, Dušan; Richard KRUMPOLEC; Leila ZAHEDI; Pedram GHOURCHI BEIGI; Monika STUPAVSKÁ et al.Základní údaje
Originální název
AIR PLASMA TREATMENT FOR IMPROVING THE SAFETY PROPERTIES OF LAMINATED GLASSES CONTAINING IONOPLAST INTERLAYER USED IN CIVIL ENGINEERING
Autoři
KOVÁČIK, Dušan; Richard KRUMPOLEC ORCID; Leila ZAHEDI ORCID; Pedram GHOURCHI BEIGI ORCID; Monika STUPAVSKÁ; Slavomír SIHELNÍK ORCID; Evžen RAINER a Mirko ČERNÁK
Vydání
17th High Pressure Low Temperature Plasma Chemistry Symposium, 2022
Další údaje
Jazyk
angličtina
Typ výsledku
Konferenční abstrakt
Obor
10305 Fluids and plasma physics
Stát vydavatele
Nizozemské království
Utajení
není předmětem státního či obchodního tajemství
Odkazy
Označené pro přenos do RIV
Ne
Organizační jednotka
Přírodovědecká fakulta
Změněno: 7. 11. 2022 08:55, Mgr. Marie Novosadová Šípková, DiS.
Anotace
V originále
Laminated glasses used in civil engineering are produced by layering two and often more glass plates, between which a safety foil (interlayer) is placed. The layering and lamination of plates allow not only to increase the standard load-bearing capacity and improve the acoustic insulation properties of the glass, but above all, it enables its residual load-bearing capacity after breakage and prevents the release of glass shards due to their high adhesion to the safety film. For several decades, PVB (Polyvinyl butyral) foils have been the most commonly used interlayer in the laminated safety glasses (LSGs) for building glazing of the standard design to the simplicity of lamination, good safety after breakage and low cost. However, LSGs are increasingly used as a load-bearing and structural support element in modern functional buildings. For these applications, an ionoplast (ionomer-based) interlayer is more suitable, due to its several times higher strength, up to 100 times greater toughness, and considerably higher stability under prolonged load and at higher temperatures. The ionoplast interlayer in LSGs does not depend on the type of glass support and has greater resistance to ageing and clarity. The listed properties of ionoplast interlayer enable to production of thinner and lighter, more safety and high-quality LSGs with the larger dimensions of the minimal framing and point supporting as well as load-bearing glass elements (beams, stairs, floors, railings, etc.).
Návaznosti
| FW03010109, projekt VaV |
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| LM2018097, projekt VaV |
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