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Analytical Methods for Determining Fire Resistance of Concrete Members
Abstract Concrete structures have a reputation for excellent behavior in fires. Many reinforced concrete buildings that have experienced severe fires have been repaired and put back into use. Concrete is by nature noncombustible and has a low thermal conductivity. Concrete tends to remain in place during a fire, protecting the reinforcing steel, with the cool inner core continuing to carry the load. Catastrophic failures of reinforced concrete structures in fires are rare, but some occasionally occur [1].
Analytical Methods for Determining Fire Resistance of Concrete Members
Abstract Concrete structures have a reputation for excellent behavior in fires. Many reinforced concrete buildings that have experienced severe fires have been repaired and put back into use. Concrete is by nature noncombustible and has a low thermal conductivity. Concrete tends to remain in place during a fire, protecting the reinforcing steel, with the cool inner core continuing to carry the load. Catastrophic failures of reinforced concrete structures in fires are rare, but some occasionally occur [1].
Analytical Methods for Determining Fire Resistance of Concrete Members
Fleischmann, Charles (Autor:in) / Buchanan, Andy (Autor:in) / Abu, Anthony (Autor:in)
SFPE Handbook of Fire Protection Engineering ; 1949-1978
Fifth Edition
01.01.2016
30 pages
Aufsatz/Kapitel (Buch)
Elektronische Ressource
Englisch
Concrete Slab , Fire Resistance , Fire Test , Concrete Member , Lightweight Concrete Engineering , Civil Engineering , Mechanical Engineering , Safety in Chemistry, Dangerous Goods , Materials Science, general , Engineering Thermodynamics, Heat and Mass Transfer , Industrial and Organizational Psychology
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