Effect of thickness of the intumescent alkali aluminosilicate coating on temperature distribution in reinforced concrete

Author:

Krivenko Pavel V.,Guzii Sergii G.,Bodnarova Lenka,Valek Jaroslav,Hela Rudolf,Zach Jiri

Funder

Czech Science Foundation

Publisher

Elsevier BV

Subject

Mechanics of Materials,Safety, Risk, Reliability and Quality,Building and Construction,Architecture,Civil and Structural Engineering

Reference26 articles.

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2. L. Bisby, P. Pimienta, State-of-the-Art on Fire Resistance of Concrete Structures: Structure-Fire Model Validation, DRAFT Submitted to: Applied Research Associates Consulting Services Agreement # CSA-D00017.00004.03.LAB Prime Contract SB1341-12-CQ-0014 28th March. 〈http://www.nist.gov/el/fire_research/upload/Microsoft-Word-NIST-White-Paper-on-Concrete_DRAFT_25-03-14-Copy.pdf〉, 2014

3. EUREKA-Bericht zu EU 499 Firetun, Fire in Transport Tunnels, Report on Full-Scale Tests, Studiengesellschaft für Stahlanwendung, Düsseldorf, 1996

4. CEMBUREAU, BIBM, ERMCO, Comprehensive Fire Protection and Safety with Concrete. 〈http://www.cement.ca/images/stories/fire_protection_and_safety_with_concrete.pdf〉

5. PIARC, Road Tunnels Manual. Part 9. Tunnel Response to Fire. All rights reserved. © World Road Association (PIARC). 〈http://tunnels.piarc.org/tunnels/ressources/2/262,Chap-9-Response-to-fire-EN-v-07.09.2.pdf〉

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