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dc.creatorNashid, Hassan
dc.creatorFerguson, W.G.
dc.creatorClifton, G.C.
dc.creatorHodgson, M.
dc.creatorBattley, M.
dc.creatorSeal, C.
dc.creatorChoi, J.H.
dc.date2014-09-30
dc.identifierhttps://bulletin.nzsee.org.nz/index.php/bnzsee/article/view/154
dc.identifier10.5459/bnzsee.47.3.181-189
dc.descriptionA non-destructive hardness testing method is being developed to determine plastic strain in steel elements that have been subjected to inelastic seismic loading. The focus of this study is on the active links of eccentrically braced frames (EBFs). The 2010/2011 Christchurch earthquake series, especially the very intense February 22 shaking, was the first earthquake worldwide to push complete EBF systems into their inelastic state, generating a moderate to high level of plastic strain in EBF active links for a range of buildings from 3 to 23 storeys in height. Plastic deformation was confined to the active links. This raised two important questions: 1) what was the extent of plastic deformation; and 2) what effect does that have to post-earthquake steel properties? To answer these questions a range of actions is being taken. A non-destructive hardness test method is being developed to determine a relationship between hardness and plastic strain inactive link beams. Active links from the earthquake affected, 23-storey Pacific Tower building in Christchurch has been hardness and material property tested to determine the changes in the steel, and cyclic testing of active links to defined levels of inelastic demand is underway. Test results to date show clear evidence that the hardness based method is able to give a good relationship between hardness measurements and plastic strain. This paper presents recent significant findings from this project. The principal of these is the discovery that hot rolled steel tested beams, all carry manufacturing induced plastic strains, in regions of the webs, of up to 5%.en-US
dc.formatapplication/pdf
dc.languageeng
dc.publisherNew Zealand Society for Earthquake Engineeringen-US
dc.relationhttps://bulletin.nzsee.org.nz/index.php/bnzsee/article/view/154/142
dc.rightsCopyright (c) 2014 Hassan Nashid, W.G. Ferguson, G.C. Clifton, M. Hodgson, M. Battley, C. Seal, J.H. Choien-US
dc.rightshttps://creativecommons.org/licenses/by/4.0en-US
dc.sourceBulletin of the New Zealand Society for Earthquake Engineering; Vol 47 No 3 (2014); 181-189en-US
dc.source2324-1543
dc.source1174-9857
dc.titleNon-destructive method to investigate the hardness-plastic strain relationship in cyclically deformed structural steel elementsen-US
dc.typeinfo:eu-repo/semantics/article
dc.typeinfo:eu-repo/semantics/publishedVersion
dc.typeArticleen-US


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