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dc.contributor.authorHarris, Elisha
dc.date.accessioned2024-08-09T04:35:21Z
dc.date.available2024-08-09T04:35:21Z
dc.date.issued2007en
dc.identifier.otherMMSID: 991025876659705106en
dc.identifier.urihttps://hdl.handle.net/2123/32923
dc.description.abstractStorage racks are used throughout the world for bulk storage of materials. They are generally cold-formed steel structures and can be up to 40 metres in height. Collapse can have a high financial cost and has been relatively common when compared to conventional structures. This is believed to be due to a lack of understanding of rack behaviour. Lateral (down-aisle) stability of these structures is usually provided by the ability of the beam-to-column and base-plate connections to prevent down-aisle sway. The research in this thesis focuses on the beam-to-upright connection and its role in lateral frame stability. The main aim is to determine the best way to evaluate stiffness of this connection and to account for it in design. In order to do this, numerous tests have been performed. These tests include the standard tests currently employed to study joint behaviour: the portal sway test and the cantilever test. A modified version of the cantilever test is also developed and performed and compared with the standard tests. Full-scale testing of three storey frame sub-assemblages have been performed as well and use a complex rig to test the sub-assemblages as though they are the lower levels of a high rise rack. The ng allows both the loading and unloading in the post-ultimate range to be followed. Results from all of the various tests as well as comparison of the results are presented in the thesis, along with conclusions regarding the usefulness of each test in the evaluation of actual rack frame behaviour. The main conclusion is that the portal sway test provides much more accurate estimates of frame behaviour than the cantilever tests. The modified cantilever tests allow the actual full range behaviour of connections undergoing closing then opening to be better understood. A design example concludes the thesis and demonstrates the accuracy of designs based on the different test methods.en
dc.language.isoenen
dc.rightsThe author retains copyright of this thesis
dc.subjectSteel, Structuralen
dc.subjectStructural frames--Design and constructionen
dc.subjectStructural stabilityen
dc.titleSway behaviour of high rise steel storage racksen
dc.typeThesis
dc.type.thesisDoctor of Philosophyen
dc.rights.otherThe author retains copyright of this thesis. It may only be used for the purposes of research and study. It must not be used for any other purposes and may not be transmitted or shared with others without prior permission.en
usyd.facultySeS faculties schools::Faculty of Engineering::School of Civil Engineeringen
usyd.degreeDoctor of Philosophy Ph.D.en
usyd.awardinginstThe University of Sydneyen
usyd.include.pubNoen
usyd.description.notesThis thesis has been made available through exception 200AB to the Copyright Act.


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