Journal: Proceedings of the Institution of Civil Engineers - Structures and Buildings
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Abbreviation
Proc. Inst. Civ. Eng., Struct. build.
Publisher
Institution of Civil Engineers
6 results
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Publications 1 - 6 of 6
- Structural study of masonry buttresses: the stepped formItem type: Journal Article
Proceedings of the Institution of Civil Engineers - Structures and BuildingsDe Lorenzis, Laura; Dimitri, Rossana; Ochsendorf, John (2012) - Stiffness and ductility of fibre-reinforced polymer-strengthened reinforced concrete membersItem type: Journal Article
Proceedings of the Institution of Civil Engineers - Structures and BuildingsDe Lorenzis, Laura; Galati, Donatella; La Tegola, Antonio (2004) - Fire safety of multistorey timber buildingsItem type: Journal Article
Proceedings of the Institution of Civil Engineers - Structures and BuildingsFrangi, Andrea; Fontana, Mario (2010) - Stress-strain response and cross-sectional capacity of steel sections in fireItem type: Journal Article
Proceedings of the Institution of Civil Engineers - Structures and BuildingsKnobloch, Markus; Pauli, Jacqueline; Somaini, Diego; et al. (2013) - Structural study of masonry buttresses: the trapezoidal formItem type: Journal Article
Proceedings of the Institution of Civil Engineers - Structures and BuildingsDe Lorenzis, Laura; Dimitri, Rossana; Ochsendorf, John (2012) - Behaviour and design of members with monosymmetric cross-sectionItem type: Journal Article
Proceedings of the Institution of Civil Engineers - Structures and BuildingsTaras, Andreas; Gonzalez Puig, Manuel; Unterweger, Harald (2013)Columns, beams and beam–columns with monosymmetric cross-sections are very frequently employed in steel structures. In this paper, the realistic, elasto-plastic buckling strength of such members is studied by means of non-linear numerical analyses and compared with the design rules found in Eurocode 3, the British Standard BS5950 and a new design proposal implemented in the Austrian national annex to Eurocode 3. The conservatism of the code regulations is highlighted, along with the codes' inability to capture the characteristic buckling behaviour of monosymmetric sections. For the basic load cases of pure axial compression, N, and pure bending moment, My, the source of the inaccuracy is shown to lie in the use of the buckling curves for flexural buckling as the basis of design. For beam–columns (load case N + My), it is shown that the sign of the bending moment (which can cause compression in either the smaller or the larger flange), in combination with an axial compression force, can cause remarkable differences when compared to the behaviour of double-symmetric sections. © ICE Publishing,
Publications 1 - 6 of 6