Title of article :
High Temperature Mechanical Properties of Concrete
Author/Authors :
Bastami، M. نويسنده International Institute of Earthquake Engineering and Seismology (IIEES),Tehran,Iran , , Aslani، F. نويسنده School of Civil and Environmental Engineering,University of Technology Sydney,Sydney,Australia , , Esmaeilnia Omran، M. نويسنده Department of Civil Engineering,University of Kurdistan,Sanandaj,Iran ,
Issue Information :
فصلنامه با شماره پیاپی 29 سال 2010
Pages :
15
From page :
337
To page :
351
Abstract :
Structural fire safety capacity of concrete is very complicated because concrete materials have considerable variations. In this paper, constitutive models and relationships for concrete subjected to fire are developed, which are intended to provide efficient modeling and to specific fire performance criteria of the behavior of concrete structures exposed to fire. They are developed for unconfined concrete specimens that include residual compressive and tensile strengths, compressive elastic modulus, compressive and tensile stress strain relationships at elevated temperatures. In this paper, the proposed relationships at elevated temperatures are compared with experimental result tests and pervious existing models. It affords to find several advantages and drawbacks of present stress strain relationships and using these results to establish more accurate and general compressive and tensile stress strain relationships. Additional experimental test results are needed in tension and the other main parameters at elevated temperatures to establish well founded models and to improve the proposed relationships. The developed models and relationships are general, rational, and have good agreement with experimental data.
Keywords :
constitutive models , strength of concrete , fire , Stress strain relationship , residual compressive and tensile strengths , Elastic modulus , elevated temperature
Journal title :
International JOurnal of Civil Engineering(Transaction A: Civil Engineering)
Serial Year :
2010
Journal title :
International JOurnal of Civil Engineering(Transaction A: Civil Engineering)
Record number :
2396615
Link To Document :
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