Print Email Facebook Twitter Performance assessment on high strength steel endplate connections after fire Title Performance assessment on high strength steel endplate connections after fire Author Qiang, X. (Tongji University) Wu, N. (Tongji University) Jiang, X. (Tongji University) Bijlaard, F.S.K. (TU Delft Steel & Composite Structures) Kolstein, M.H. (TU Delft Steel & Composite Structures) Date 2017 Abstract Purpose – This study aims to reveal more information and understanding on performance and failure mechanisms of high strength steel endplate connections after fire. Design/methodology/approach – An experimental and numerical study on seven endplate connections after cooling down from fire temperature of 550°C has been carried out and reported herein. Moreover, the provisions of European design standard for steel structures, Eurocode 3, were validated with test results of high strength steel endplate connections. Findings – In endplate connections, a proper design using a thinner high strength steel endplate can achieve the same failure mode, similar residual load bearing capacity and comparable or even higher rotation capacity after cooling down from fire. It is found that high strength steel endplate connection can regain more than 90 per cent of its original load bearing capacity after cooling down from fire temperature of 550°C. Originality/value – The post-fire performance of high strength steel endplate connection has been reported. The accuracy of Eurocode 3 for endplate connections is validated against test results. Keywords Numerical study, Experimental study, High strength steel, After fire, Endplate connection Subject Beam-to-column connectionsEndplate connectionsFire conditionHigh strength steelStructural fre performance To reference this document use: http://resolver.tudelft.nl/uuid:541ad6bc-6c71-44c7-a518-b6130b785b60 DOI https://doi.org/10.1108/JSFE-11-2016-0018 Embargo date 2017-11-01 ISSN 2040-2317 Source Journal of Structural Fire Engineering, 8 (2), 202-214 Part of collection Institutional Repository Document type journal article Rights © 2017 X. Qiang, N. Wu, X. Jiang, F.S.K. Bijlaard, M.H. Kolstein Files PDF Bijlaard_e.a._JSFE_11_2016_0018.pdf 475.66 KB Close viewer /islandora/object/uuid:541ad6bc-6c71-44c7-a518-b6130b785b60/datastream/OBJ/view