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mechanicalengineeringAnintroductionto1Lecturer:LiuJu-rongCHAPTER5MaterialsandStressOVERVIEW1TENSIONANDCOMPRESSION23RESPONSEOFENGINEERINGMATERIALS
2SHEAR4FACTOROFSAFETY5Vocabulary3shearstress剪应力stress-strain应力-应变aluminum铝elasticmodulus弹性模数plasticbehaviorn.塑性roundrod圆钢shrink收缩Poissoncontraction(泊松收缩gauge测量rubberband橡皮筋springbackvi.弹回hypothetical假想的chassis底盘low-carbonsteel低碳钢stiffness刚度ductility延展性;塑性brittlematerials脆性材料castiron铸铁;生铁concrete混凝土Vocabulary4ceramics陶器glass玻璃low-strain小应变permanentset永久变形;残余变形proportionallimit比例极限pipefittings管接头bushings衬套annealed退火tempered回火heattreatmentn.热处理quenchingn.淬火artificialagingn.人工时效;人工老化hingepinn.铰销1OVERVIEW5Aspartoftheirresponsibilities,mechanicalengineersmustdesignhardwaresothatitdoesn'tbreak.Knowingthoseforcesalone,however,isnotsufficientforanengineertopredictwhetheracertainmechanicalcomponentwillbestrongenoughandnotfailinthetaskathand.By"fail"or"failure"wemeanthatthehardwarewillnotbreak,stretch,orbendsomuchastobecomenonusable.Inshort,engineersareabletocombinetheirknowledgeofforces,materials,shapes,anddimensionsinordertolearnfrompastfailuresandtobetterdesignnewhardware.1OVERVIEW6Inthischapter,wewilldiscussthepropertiesofengineeringmaterialsandexaminethevarioustypesofstressesthatcandevelopwithinthem.Tension,compression,andshearstressarequantifiesthatengineerscalculatewhentheyrelatethedimensionsofamechanicalcomponenttotheforcesactingonit.Thosestressesarethencomparedwiththematerial'sphysicalpropertiesinordertodeterminewhetherornotfailureisexpectedtooccur.Engineersgenerallyconductthistypeofforce,stress,andfailanalysisearlyinaproduct'sdesigncycleaschoicesaremadefordimensions,materials,andoperatingconditions.1OVERVIEW7FINGURE5.1Abrokencrankshaftfromasingle-cylinderinternalcombustionengine.1OVERVIEW---Theabilitytobeavailableinthischapter8Afterstudy,whatshouldyoubeabletohave?Identifycircumstanceswhereamachinecomponentisloadedintension,compression,orshear,andcalculatethestressthatispresent.Drawstress-straincurvesforandsteel,anddeterminetheelasticmodulusandyieldstrengthfromsuchUnderstandthedifferencesbetweenelasticandplasticbehaviorApplyafactorofsafetytocomponentsthataresubjectedtotensionorshearstress.2TENSIONANDCOMPRESSION
ElasticbehaviorPlasticbehavior9theroddoesnottakeonapermanentsetafterFhasbeenapplied,thestretchingissaidtooccurelastically.theforcecouldhavebeenlargeenoughthattherodwouldhavebeenplasticallydeformed,meaningthatwhentheforcewasapplied,andthenremoved,therodwouldendupbeinglongerthanitwasinitially.ThediameteroftherodshrinksbyasmallamountduetotheeffectknownasPoissoncontraction.2TENSIONANDCOMPRESSION10FINGURE5.3descriptionoftensilestressinarod.(a)Thestretchedrodwithendload,(b)asectionslicedfromtherodexposingtheinternalforceF,(c)thestressdistributedoverthecrosssection,and(d)tensilestressesactingontheendsofanyelementslicedfromtherod.2TENSIONANDCOMPRESSION
internalforceTesion11imagineslicingthroughthebaratsomepointinwardoftheright-handend.Whenthestresstendstolengthentherod,itiscalledtension,andσ>0.CompressionwhentherodwouldbeCompressionshortened,thestressiscalledcompression,andσ<0.σ=F/A2TENSIONANDCOMPRESSION
Elongation12Thestretchorelongation△LisonewaytodescribehowtherodlengthenswhenFisapplied,butitisnottheonlyway,norisitnecessarilythebestway.Strainisdefinedastheamountofstretchingthatoccursperunitoflength.Strainε(thelowercaseGreekcharacterepsilon)isscaledtotherod'soriginallengthandcalculatedfromtheexpressionε=△L/LStrain3RESPONSEOFENGINEERINGMATERIALS13Figure5.7showsanidealizedstress-straincurveforamaterialsuchasductile(韧性;可塑)low-carbonsteel(低碳钢).SpringconstantforceFandelongation△LareproportionalaccordingtoF=k△L.Theparameterkiscalledthestiffnessorspringconstant.ThisobservationistheHooke'slawbasisoftheconceptcalledHooke'slaw,whichstatesthatforceanddeflectionareproportional.
springconstantHooke’slawStress-straincurve3RESPONSEOFENGINEERINGMATERIALS14FINGURE5.76Eachrodhassimilarstress-strainbehavior.3RESPONSEOFENGINEERINGMATERIALS15FINGURE5.7Idealizedstress-straincurveforaductilelow-carbonsteel.3RESPONSEOFENGINEERINGMATERIALS16Thestress-straindiagramforaductilematerialisbrokendownintotworegions:thelow-strainelasticregion(wherenopermanentsetremainsregionsafteraloadhasbeenappliedandremoved)andthehigher-strainplasticregion(wheretheloadislargeenoughthat,uponremoval,thematerialispermanentlyelongated).Structuralsteelsductilematerialandsomealuminumalloysareexamplesofductilemetals,andtheyareoftenusedinmachinecomponentsbecausewhentheybecomeoverloaded,theytendtonoticeablystretchorbendbeforetheybreak.Brittlematerialssuchascastiron,concrete,ceramics,andglassbreaksuddenlyandwithoutmuchpriorwarningwhentheyareoverloaded.DuctilematerialBrittlematerialElasticandplasticregions3RESPONSEOFENGINEERINGMATERIALS17ThematerialpropertythatquantifieschangesinthecrosssectioniscalledthePoissonratio,v(thelowercaseGreekcharacternu).v=εdiameter/εlength=-(△d/d)/(△L/L)△d=-vd△L/LForstrainsbelowtheproportionallimitAinFigure5.7,stressandstrainarelinearlyrelatedaccordingtoσ=EεTheelasticmodulusisamaterialproperty,anditismeasuredsimplyastheslopeofthestress-straincurveinitsstraight-lineregion.△L=εL=(σ/E)L=((F/A)/E)L==FL/EAF=k△Lwherek=EA/LEsteel≈210GPa≈30MpsiEaluminum≈70GPa≈10MpsiProportionallimitElasticmodulusPoissonratio3RESPONSEOFENGINEERINGMATERIALS18Forthatreason,theonset
ofyieldingisoftentakenbyengineersasanindicationoffailure.ThevalueofstressinregionB-Cdefinesaquantitycalledtheyieldstrength,Sy.Returningtoourdiscussionofthestress-strainbehaviorinFigure5.7,pointBiscalledtheelasticlimit.YieldingoccursintheregionbetweenBandC;forsmallchangesinstress,therodexperiencesalargechangeinstrain.elasticlimityieldingYieldstrengthAstheloadisincreasedevenfurtherbeyondUltimatestrengthpointC,σgrowstotheultimatetensilestrengthSuatpointD.Ultimatestrength19AstheforceFisapplied,thematerialtendstobesliced,sheared,orcutalongthetwoedgesmarkedasshearplanesThetwoforcesVarecalledshearforces,andtheyareorientedparalleltotheshearplanes.Theshearforcesare,infact,distributedwithinthematerialovertheentirecrosssectionsothatVistheresultantoftheshearstressShearplaneShearforce4SHEARτ=V/A204SHEARFINGURE5.11ShearforceVandsheatstressesτactonanelasticblockthatisbeingpressedbetweentworigidsupports.214SHEARSingleshearDoubleshearFINGURE5.12Adhesivelybondedconnectionsthatareplacedin(a)singleshearwithV=Fand(b)doubleshearwithV=F/2.Theadhesivelayersareindicatedbytheheavilyweightedlines.5FACTOROFSAFETY22Failureduetoductileyieldingispredictedifσ>Sy.Engineersdefinethetensilefactorofsafetyas
ntension=sy/σIfn>1,thisviewpointpredictsthatthecomponentwillnotyield,andifn<1,failisexpectedtooccur.Asdevelopedinmoreadvancedtreatmentsofstressanalysis,onetheoryformaterialfailurerelatestheyieldstrengthinsheartothevalueintensionaccordingtoSsy=Sy/2Toevaluatethepossibilityofaductilematerialyieldinginshear,wecomparestressandstrengthaccordingtotheshearfactorofsafety
nshear
=Ssy/τSUMMARY23Inthischapter,wehavediscussedtheloadingconditionsknownastension,compression,andshear,andafailuremechanismcalledductileyielding.Stressistheintensityofaforcedistributedoveranareaofmaterial.Dependingonthedirectioninwhichthestressacts,itcanbetensionorshear.Strainisdefinedasthechangeinlengthperunitoforiginallength.Becauseofitsdefinitionasaratiooftwolengths,strainisadimensionlessquantity,anditisoftenexpressedas
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