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All Outputs (13)

Behaviour and design of cold-formed high strength steel RHS T-joints undergoing compression loads at elevated temperatures (2023)
Journal Article

This study presents a comprehensive numerical program aiming to investigate the static resistances of cold-formed high strength steel (CFHSS) T-joints with square and rectangular hollow section (SHS and RHS) braces and chords at elevated temperatures... Read More about Behaviour and design of cold-formed high strength steel RHS T-joints undergoing compression loads at elevated temperatures.

Cold-formed high strength steel CHS-to-RHS T- and X-joints: Performance and design after fire exposures (2023)
Journal Article

The post-fire structural performance of cold-formed high strength steel (CFHSS) T- and X-joints with circular hollow section (CHS) braces and square and rectangular hollow section (SHS and RHS) chords is numerically investigated in this study. The tu... Read More about Cold-formed high strength steel CHS-to-RHS T- and X-joints: Performance and design after fire exposures.

Numerical analysis and design of cold-formed high strength steel RHS X-joints at elevated temperatures (2023)
Journal Article

A numerical program is carried out in this study with an aim to investigate the static performance of cold-formed high strength steel (CFHSS) X-joints with square and rectangular hollow section (SHS and RHS) braces and chords at elevated temperatures... Read More about Numerical analysis and design of cold-formed high strength steel RHS X-joints at elevated temperatures.

Design of cold-formed high strength steel rectangular hollow section T-joints under post-fire conditions (2023)
Journal Article

A comprehensive numerical investigation looking into the static post-fire structural performance of cold-formed high strength steel (CFHSS) T-joints is presented in this paper. The braces and chords of T-joints were made of square and rectangular hol... Read More about Design of cold-formed high strength steel rectangular hollow section T-joints under post-fire conditions.