Behaviour of the Cold-formed Trapezoidal Sheet Overlap Joint in a Gerber Lapped Connection

dc.contributor.advisor Iqbal, Naveed
dc.contributor.author Acosta, April Anne
dc.contributor.referee Wald, František
dc.date.accepted 2018-02-09
dc.date.accessioned 2018-06-27T17:57:30Z
dc.date.available 2018-06-27T17:57:30Z
dc.date.issued 2018-02-09
dc.description.abstract The behavior of the overlap joint in a cold-formed trapezoidal sheeting used for roof decking is studied in this research. A Gerber-type connection is used, where an overlap joint is introduced in the second span. This joint acts as a hinge of zero-moment to achieve balanced field and support moments. However, this type of joint is sensitive to collapse in the event of sheet failure at the internal support. Due to this problem, a variant of the Gerber joint with an increase overlap length is developed. At normal snow load conditions, the system acts as a Gerber system, transferring minimal moments at the hinge; while at the event of the sheet failure at mid-support, the system acts as a continuous beam and provides a post-elastic load bearing capacity, avoiding sudden collapse.Due to the thinness of the material, local buckling often occurs in cold-formed sections which can cause drastic loss of stiffness and capacity. This research is also investigating the effects of this loss of stiffness to the internal forces in the overlap joint.The research is carried out using theoretical, numerical, and experimental approaches. Full-scale experimental tests are performed to observe the behavior and failure modes of the trapezoidal sheet for two different overlap lengths.Full-scale finite element models are also developed. These numerical models are used to perform parametric analysis on the varying stiffness at mid-support. The internal forces at the overlap joint are determined, and how these forces change with the stiffness at mid-support. Finally, the overlap joint is checked for structural adequacy under maximum stresses at the ultimate load. cs
dc.description.abstract The behavior of the overlap joint in a cold-formed trapezoidal sheeting used for roof decking is studied in this research. A Gerber-type connection is used, where an overlap joint is introduced in the second span. This joint acts as a hinge of zero-moment to achieve balanced field and support moments. However, this type of joint is sensitive to collapse in the event of sheet failure at the internal support. Due to this problem, a variant of the Gerber joint with an increase overlap length is developed. At normal snow load conditions, the system acts as a Gerber system, transferring minimal moments at the hinge; while at the event of the sheet failure at mid-support, the system acts as a continuous beam and provides a post-elastic load bearing capacity, avoiding sudden collapse.Due to the thinness of the material, local buckling often occurs in cold-formed sections which can cause drastic loss of stiffness and capacity. This research is also investigating the effects of this loss of stiffness to the internal forces in the overlap joint.The research is carried out using theoretical, numerical, and experimental approaches. Full-scale experimental tests are performed to observe the behavior and failure modes of the trapezoidal sheet for two different overlap lengths.Full-scale finite element models are also developed. These numerical models are used to perform parametric analysis on the varying stiffness at mid-support. The internal forces at the overlap joint are determined, and how these forces change with the stiffness at mid-support. Finally, the overlap joint is checked for structural adequacy under maximum stresses at the ultimate load. en
dc.identifier KOS-779034214705
dc.identifier.uri http://hdl.handle.net/10467/78264
dc.language.iso ENG
dc.publisher České vysoké učení technické v Praze cs
dc.publisher Czech Technical University in Prague en
dc.rights A university thesis is a work protected by the Copyright Act of the Czech Republic. Extracts, copies and transcripts of the thesis are allowed for personal use only and at one`s own expense. The use of thesis should be in compliance with the Copyright Act. en
dc.rights Vysokoškolská závěrečná práce je dílo chráněné autorským zákonem. Je možné pořizovat z něj na své náklady a pro svoji osobní potřebu výpisy, opisy a rozmnoženiny. Jeho využití musí být v souladu s autorským zákonem v platném znění. cs
dc.subject cold-formed steel,roof decking,trapezoidal sheet,thin-walled,plastic analysis,trapezoidal sheet,Gerber system,roof collapse,FEA cs
dc.subject cold-formed steel,roof decking,trapezoidal sheet,thin-walled,plastic analysis,trapezoidal sheet,Gerber system,roof collapse,FEA en
dc.title Behaviour of the Cold-formed Trapezoidal Sheet Overlap Joint in a Gerber Lapped Connection cs
dc.title Behaviour of the Cold-formed Trapezoidal Sheet Overlap Joint in a Gerber Lapped Connection en
dc.type diplomová práce cs
dc.type master thesis en
dspace.entity.type Publication
relation.isAdvisorOfPublication fa27fe6f-c039-4486-a726-831ab82c24f8
relation.isAdvisorOfPublication.latestForDiscovery fa27fe6f-c039-4486-a726-831ab82c24f8
relation.isAuthorOfPublication eb0cb42a-caf8-45be-9f4c-b7eea270b16a
relation.isAuthorOfPublication.latestForDiscovery eb0cb42a-caf8-45be-9f4c-b7eea270b16a
relation.isRefereeOfPublication ad2c6af2-1327-4aa2-a060-52b091aabce9
relation.isRefereeOfPublication.latestForDiscovery ad2c6af2-1327-4aa2-a060-52b091aabce9
theses.degree.discipline Sustainable Constructions under Natural Hazards and Catastrophic Events cs
theses.degree.grantor katedra ocelových a dřevěných konstrukcí cs
theses.degree.programme Civil Engineering cs

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