Thermal performance of cold-formed thin-walled steel panel systems in fire

Author:

Feng M,Wang Y.C,Davies J.M

Publisher

Elsevier BV

Subject

General Physics and Astronomy,Safety, Risk, Reliability and Quality,General Materials Science,General Chemistry

Reference18 articles.

1. BSI 476: Part 20: 1987. Fire tests on building materials and structures. Method for determination of the fire resistance of elements of construction (general principles). 1987.

2. Sultan MA. A model for predicting the heat transfer through non-insulated unloaded steel-stud gypsum board wall assemblies exposed to fire. National Fire Laboratory, Institute for Research in Construction, National Research Council Canada, Ottawa, Ont., Canada, 1996.

3. Gerlich JT. Design of load bearing light steel frame walls for fire resistance. Fire Engineering Research Report 95/3. University of Canterbury, Christchurch, New Zealand, 1995.

4. Sterner E, Wickstrom U. TASEF—temperature analysis of structures exposed to fire. Fire Technology SP Report 1990:05, Swedish National Testing Institute Boras, Sweden, 1990.

5. Kodur VR, Sultan MA. Factors governing fire resistance of loadbearing steel stud walls. Proceedings of Fifth AOSFST International Conference, Newcastle, Australia, 2001. p. 1–2.

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