Spontaneous cracking of thermally toughened safety glass. Part four: a case study of isothermal breakages in a building, and conclusions thereof for the heat soak test

Author:

Kasper Andreas,Rubbert Frank

Publisher

Springer Science and Business Media LLC

Subject

Building and Construction,Architecture,Civil and Structural Engineering

Reference24 articles.

1. Avrami, M.: Kinetics of phase change. J. Chem. Phys. 7, 1103–1112 (1939); concrete source: DSC software applied on results obtained by Moschek

2. Bishop, D.W., Thomas, P.S., Ray, A.S., Simon, P.: Two-stage model for the a–b phase recrystallisation in nickel sulphide. J. Therm. Anal. Calorim. 64, 201–210 (2001)

3. Bordeaux, F., Kasper, A.: Nickelsulfid: Neue Ergebnisse zur Optimierung des HST. Speech at meeting of Fachausschusses (Technical committee) III of DGG, Oct. 16th, 1997 in Wuerzburg, Protocol p. 3. HVG-Mitteilung (HVG Notice) Nr. 1908. Glastech. Ber. Glass Sci. Technol. 71 Nr. 3, pp. N27–N28 (1998)

4. Bordeaux, F., Kasper, A.: Optimized HST to eliminate dangerous NiS stones in heat strengthened and tempered glass. In: Proceedings of the ESG Annual Meeting “Fundamentals of Glass Science and Technology” in Vaxjö, Schweden, pp. 255–264 (1997)

5. EN 14179-1:2005 (revised version: 2016): Glass in Building—Heat Soaked Thermally Toughened Safety Glass Part One: Definition and Description. European Standard, CEN (Comité Européen de Normalisation), B-1050 Brussels

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