Lecture 08.docx
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Lecture 08.docx
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Lecture08
StructuralSteelworkEurocodesDevelopmentof
ATrans-nationalApproach
Course:
Eurocode3
Module3:
Framedesignapproaches
Lecture8:
Practicalapplicationofmoderndesignapproaches
Summary:
∙Designstrategiesareintroducedtopermitaneasyadaptationofthetraditionaldesignapproachesandallowconsiderationofthesemi-continuityofjoints.
∙Elasticdesignandrigid-plasticdesignmethodscanbeused.
∙Thedesignapproachisaimedatavoidingcomplex(costly)jointdesignswhiletakingfullaccountofjointbehaviourfromtheoutsetofthedesignprocess.
∙Tablesareprovidedwhichpermitobtaininggoodestimatesofjointstiffness(forelasticdesign)andjointresistance(forpartialstrengthrigid-plasticdesign)fortheglobalanalysis.
∙Inoneofthesedesignstategies,useismadeofthefactthatwithsemi-rigidjoints,gooddesigncanbeobtainedwithapproximatejointstiffnessvalueswithinafairlyconsiderablerangeoftheactualvalue.
Pre-requisites:
∙Aknowledgeofthefundamentalsofthetheoryofresistanceofmaterials(forbeamsandtensionmembers)andofstructuralanalysis.
∙Aknowledgethebasictheoryofcolumnbucklingandotherformsofinstability.
∙Aknowledgeoftheelasticandplasticdesignofsimplemembers.
∙Module2“Frameanalysisanddesign”.
∙Lecture7“Traditionalandmoderndesignapproaches”.
NotesforTutors:
Thismaterialcomprisesone75minutelecture.
Objectives:
Thestudentshould:
∙Understandtheinadequaciesoftraditionaldesignapproachestoaccountforjointbehaviour.
∙UnderstandthattheEurocodePart1-1allowsnewapproachestothedesignofframes.
∙Beabletousethepracticaltoolsgivenforthedesignofframes.
∙Beawarethatthetraditionalapproachesmaynolongerbethemostefficienttoproduceeconomicbuildingdesigns.andthatnewapproachesareeasytointegrateintocurrentpractice.
References:
[1]SteenhuisM.,GresnigtN.,Predesignofsemi-rigidjointsinsteelframes,Workshop1994–COSTC1,ed.,WaldF.,Proceedingsofthestateoftheart,Prague,pp131-140,1995.
[2].MaquoiR.andChabrolin,B.,Framedesignincludingjointbehaviour,
ReportN°EUR18563EN,ECSCContractNo7210-SA/212/320,EuropeanCommission,1998.
[3]6]ENV1993-1-1:
Eurocode3:
Designofsteelstructures:
Part1-1:
Generalrulesandrulesforbuildings.
1Introduction:
designmethodologyanddesignstrategy
Thedesignstrategyfollowedbythedesignerisofvitalimportanceforanefficientdesignprocess.Agoodstrategyleadsnormallytoeconomicalsolutionsforbothmembersandjoints.
Inlecture7“ Traditionalandmoderndesignapproaches ”,severalapproachesforthedesignprocesshavebeenoutlined.Thetraditionaldesignapproachreflectscurrentpracticewherejointsaremodelledaseithersimpleorcontinuousand,furthermore,wherejointdesigniscarriedoutseparately(subsequenttotheglobalanalysisandmemberdesign).Intheconsistentdesignapproach,globalframeanalysisiscarriedoutwithdueaccountbeingtakenofthejointresponsefromtheoutset.
Whenthejointsaresemi-continuous,thetraditionaldesignapproachmaybeused,butinaniterativewayonly,inordertointegratethejointresponseinthefinalglobalanalysis.Obviouslyitisbestthatasinglepartybeinchargeofthewholedesignprocess.Howeveronemustovercomethefollowingdifficultywiththetraditionalapproach.Theactualjointpropertiesaredependentonthejointsizinganddetailing,ataskusuallycarriedoutbythefabricator.Theengineerdoingtheanalysisandmemberdesignmustobtaintheneededinformationonthejointsbeforeperformingthefinalglobalframeanalysis.Suchauseofthetraditionaldesignapproachisneitherveryefficientnordoesitfiteasilywithcommonpractice.
Forthesereasonsthefocushereistogivestrategiessuitedforthedesignofframeswithsemi-continuousjointsbutwhichcanbeeasilyintegratedintoamodifiedtraditionalapproach.Threestrategiesareputforwardwhichstillallowforatwotaskprocessi.e.thedesignoftheframemembersisseparatedfromthefinaldesignofthejoints,asinthetraditionaldesignapproach.Theprincipalaimisoneofefficiencywhilstincorporatinganallowanceforsemi-continuitywhencarryingouttheglobalanalysis.
Thefollowingthreestrategiesareproposed:
∙Theuseofagoodguessforjointstiffnessesforuseinanelasticglobalframeanalysis.
∙Theuseofafixityfactorinthetraditionaldesignapproach.
∙Thedesignofbracedframesusingrigid-plasticanalysis.
Thefirsttwostrategiesareespeciallyapplicablewhenelasticframeanalysisisused,althoughitmayalsobepossibletousethemwhenelastic-plasticanalysisisadopted.Theymainlyaddressunbracedframesbutbracedframescanbecoveredalso.
Thethirdstrategyfocusesononetypeofplasticframedesign;itsusemayberecommendedforbracedframesonly.
2Useofagoodguessforjointstiffness
Thisstrategyreferstothetraditionaldesignapproach(seelecture7(Figure1)).However,twochangesareneededtomakeitsuitableforsemi-continuousdesign(Figure1).
1)Accountforjointstiffnessintheelasticglobalframeanalysis:
InStep3,useismadeofagoodguessfortheinitialjointstiffness.Incommonpractice,aroughguessistoassumethatthejointisrigid.Thereforeatableisgiventomakeabettergoodguessoftheactualinitialjointstiffnessratherthanassumingittoberigid.Thisgoodguessisbasedonthebeamandcolumnpropertiesandonthetypeofthejoints.Thestiffnessofthejointthusobtainedshouldbeuseddirectlyfortheelasticglobalframeanalysis(Step4)whenthedesignerintendstoperformelasticjointandmemberdesignchecks.Itshouldbedividedbyanappropriatefactorwhenplasticdesignchecksaretobecarriedout(seemodule5“Joints”).
AnnexJ
2)Verificationofstiffnessinthedesignofjoints:
InStep8ofFigure1,onemustverifythattheactualstiffnessofanyofthejointsisinreasonableagreementwiththerelevantapproximatestiffnessintroducedinitiallyintheelasticglobalframeanalysis.Thisreplacestheverificationsforrigidand/orpinnedjointclassificationsinthetraditionaldesign.Somerulesaimedatenablingthisverificationaregivenbelow;theirphilosophyisquitesimilartotheclassificationdiagramsforjointsofEurocode3,Part1-1.Theserulescanbeappliedeasilyincombinationwithaglobalanalysissoftware.
AnnexJ
3Simplepredictionoftheinitialjointstiffness
Atthepreliminaryframedesignphase,oneneedstomakeapreliminaryassessmentofthestiffnessesforthejoints(yettobedesigned).Forthispurpose,somesimplifiedformulaehavebeenderivedbasedonEurocode3-(revised)AnnexJ.Bymeansoftheseformulae,thedesignercanmakereasonableestimatesofthejointstiffnessbasedonaconsiderationofthejointconfigurationonly.
AnnexJ
Ofcoursetheseformulaearebasedonsomechoicesconcerningtheconnectiondetailingparametersfortypicaljointsusedinframes.Thechoiceoftheseparameters,whicharerelatedtoplatethickness,boltdiameter,boltpositioningetc,andnotgivenhere[1].
TheapproximatevalueSj,appoftheinitialjointstiffnessisexpressedas:
wherethevaluesofthefactorCaregiveninTable1fordifferentjointconfigurationsandloadings.Thesevaluesofthejointstiffnessinvolvetwoparametersonly:
zandtfc;zisthedistancebetweenthecompressionandtensileforceresultantsinthejointandtfcisthethicknessofthecolumnflange.Inanextendedend-plateconnectionwithtwoboltrows,thedistancezisapproximatelyequaltothebeamdepth.Forthesamejointwithahaunch,zisequaltothesumofthebeamdepthandthehaunchdepth.AnnexJnowgivesatableofrecommendedapproximatevaluesfortheleverarmvalue.
Figure1Designstrategyallowingforsemi-continuousjoints
(elasticglobalanalysis)
4Requiredjointstiffness
Eurocode3providesthedesignerwithtwodiagramswhichenabletheclassificationofjointstobemadeaccordingtotheirstiffness(pinned,semi-rigid,rigid):
oneforbracedandoneforunbracedframes.
Figure6.9.8
Accordingly,forbracedframes,ajointmayberegardedasrigidiftheactualinitialjointstiffnessfulfils :
6.9.6.2
Figure6.9.8
Thatconditionensuresthattherealflexibilityofthejointsdoesnotresultinareductionofmorethan5%intheultimateresistanceoftheframebasedontherigidjointassumption.Theacceptanceofareductionofthismagnitudepermitstheacceptanceoftheglobalframeanalysiswithafinite(ratherthaninfinite)valueofthejointstiffness.Here,thewordingactualinitialstiffnessmeansthebestvalueadesignercanobtainfortheinitialstiffnessofaparticularjoint.Thisis,forexample,thevalueobtainedfromexperiments,fromnumericalsimulationsorfromcomputationsbasedonEurocode3-(revised)AnnexJ.
6.4.2.2
(2)
AnnexJ
Inordertocheckwhetherajointisrigid,athreestepprocedureisrequired(seeFigure2) :
∙Stepa:
aframeanalysisconductedwiththeassumptionofrigidjoints(Step3ofFigure1).
∙Stepb:
checktherangeinwhichtheactualinitialstiffnessshouldbe(inStep8ofFigure1).
∙Stepc:
checkwhethertheactualinitialstiffnessisinthisrange(inStep8ofFigure1).
Jointconfiguration
C
Sj
Extendedend-plate,
singlesided,
unstiffened
(=1)
13
Extendedend-plates,
doublesided,
unstiffened,
symmetrical
(=0)
7,5
Extendedend-plate,
singlesided,
stiffenedintensionandcompression
(=1)
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