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1 China Association for Engineering Construction Standardization. Specification for the Design of Steel Reinforced Concrete Structures (YB9082-97). Beijing, 1998/ View Article
2 British Standards Institution. Steel, Concrete and Composite Bridges: Part 5: Code of Practice for Design of Composite Bridges (BS 5400). London: British Standards Institution, 1979/ View Article
3 GB50018-2002. Technical Code of Cold -formed Thin-wall Steel Structures/ View Article
4 AS3600 (2001), Concrete Strnctures, Standards Australia/ View Article
5 NZS 3101-95 (1995), Concrete Structures Standard - The Design of Concrete Structures, Standards New Zealand/ View Article
6 NZS 3101 (1995), 'Concrete structures standard, Part 1 and 2, Code and commentary on the design of concrete structures', New Zealand Standard, New Zealand/ View Article
7 Iranian Code of Practice for Seismic Resistance Design of Buildings, Standard No.2800, 2nd Edition (1999), Building and Housing Research Center, Tehran, Iran/ View Article
8 Noh, H.C. (2006), 'Nonlinear behavior and ultimate load bearing capacity of reinforced concrete natural draught cooling tower shell', Eng. Struct., 28(3), 399-410/   DOI   Ndsl View Article
9 Rahman, M.A. and Khan, R.M. (2006), 'Unique local defonnations of the superelastic SMA rods during stressrelaxation tests ', Struct. Eng. Mech., Int. J., 22(5), 563-574/   DOI   Ndsl View Article
10 Rahman, M.A. and Tani, J. (2006), ' Local defonnation characteristics of the shape memory alloy rods during forward and reverse stress induced martensitic transfonnations ', J. Intelligent Material Systems and Structures(In Press)/ View Article