By Prof. Guoqiang Li, Associate Prof. Peijun Wang (auth.)
Advanced research and layout for fireplace safeguard of metal Structures systematically provides the newest findings on behaviours of metal structural elements in a fireplace, resembling the catenary activities of limited metal beams, the layout equipment for confined metal columns, and the membrane activities of concrete ground slabs with metal decks. utilizing a scientific description of structural fireplace security engineering rules, the authors illustrate the real distinction among behaviours of an remoted structural point and the restricted part in an entire constitution lower than fireplace conditions.
The booklet may be a necessary source for structural engineers who desire to enhance their knowing of metal constructions uncovered to fires. it's also an incredible textbook for introductory classes in hearth safeguard for master’s measure courses in structural engineering, and is great studying fabric for final-year undergraduate scholars in civil engineering and fireplace security engineering. moreover, it effectively bridges the data hole among hearth security engineers, structural engineers and development inspectors, and should be of vital curiosity to architects, code officers, construction designers and fireplace fighters.
Dr. Guoqiang Li is a Professor on the university of Civil Engineering of Tongji college, China; Dr. Peijun Wang is an affiliate Professor on the college of Civil Engineering of Shandong collage, China.
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Additional resources for Advanced Analysis and Design for Fire Safety of Steel Structures
C. Ma, B. Wu, and J. P. Ou. Fully developed compartment ﬁre model. Journal of Harbin University of Civil Engineering and Architecture, 32(1):16–24, 1998.  Amer Society of Civil Engineers. Structural Fire Protection (Asce Manual and Reports on Engineering Practice) (No. 78). Amer Society of Civil Engineers, 1992.  S. E. Magnusson and S. Thelandersson. Temperature-Time Curves of Complete Process of Fire Development. Acta Polytechnica Scandinavica, Civil Engineering and Building Construction Series, No.
A tool to design steel elements submitted to compartment ﬁres-ozone v2. part 2: Methodology and application. Fire Safety Journal, 36(5):429–451, 2003.  Z. Yan and G. Holmstedt. Cfd and experimental studies of room ﬁre growth on wall lining materials. Fire Safety Journal, 27(3):201–238, 1996.  Z. C. Ma, B. Wu, and J. P. Ou. Fully developed compartment ﬁre model. Journal of Harbin University of Civil Engineering and Architecture, 32(1):16–24, 1998.  Amer Society of Civil Engineers. Structural Fire Protection (Asce Manual and Reports on Engineering Practice) (No.
Fire Safety Journal, 12, 1987. 3 Properties of Steel at Elevated Temperatures For structural ﬁre engineering, two sets of data are very important which are • the material thermal properties for thermal analysis of structural components, including the thermal conductivity, speciﬁc heat, density; • the material mechanical properties for structural analysis, including the yield strength, Young’s modulus, stress-strain relationship and the expansion coefﬁcient. This chapter describes the thermal and mechanical properties of structural steel, ﬁreresistant steel, high-strength steel and stainless steel at high temperature.