




已閱讀5頁,還剩3頁未讀, 繼續(xù)免費閱讀
版權(quán)說明:本文檔由用戶提供并上傳,收益歸屬內(nèi)容提供方,若內(nèi)容存在侵權(quán),請進行舉報或認領(lǐng)
文檔簡介
MaterialsScienceandEngineeringA485(2008)367374TheroleoffrictionstirweldingtoolonmaterialflowandweldK.Kumar,SatishInstituteformAbstracttoolinthereenfltogethergibasedis2007ElsevierB.V.Allrightsreserved.K1.cessaluminiumjoiningwithnoconsumables.Ingeneral,theprocessiscarriedoutbyplungingarotatingFSWtoolintotheinterfaceoftworigidlyclampedsheets,untiltheshouldertouchesthesurfaceofthematerialbeingwelded,andtraversedalongtheweldline.Thefrictionalunderfrictionaldeformationethesimilarisgeometrytoolandmallystirturalafparenteterswhichcontrolsthematerialflowandheatinput,andinturnthequalityoftheweld.Buffaetal.2numericallyinves-tigatedtheeffectoftoolpinangleonvariousweldzones,grainsizeandweldingforces,andtheyhadshownthatthereisagood0921-5093/$doi:heatanddeformationheatareutilizedforthebondingtheappliednormalforce1.Theprimaryheatsourceisheatfromtoolshoulderandsecondaryheatsourceisheatfromthetoolpin2.TheprocessandterminologyofFSWareschematicallyxplainedinFig.1.Theadvancingside(AS)isthesidewherevelocityvectorsoftoolrotationandtraversedirectionareandthesidewherethevelocityvectorsareoppositereferredasretreatingside.Theprocessparametersaretool,axialforce,toolrotationspeed,traversespeedandtiltangle.Tooltiltangleistheanglebetweenthetoolaxisthenormaltothesurfaceofthesheetsbeingwelded.Nor-Correspondingauthor.Tel.:+918022932301;fax:+918023600648.E-mailaddress:satvkmecheng.iisc.ernet.in(S.V.Kailas).agreementbetweentheresultsofexperimentandthemodel.TheexperimentalworkcarriedoutbyKumarandKailas7usingdifferenttoolgeometryexplainstheeffectofshoulderdiameter,pindiameterandpinprofilesonsizeandlocationofdefects,mechanicalpropertiesandfinalgrainsize.But,thereisnotenoughconceptualbackgroundavailableonFSWtooldesign.Inmostoftheresearcharticlesthetoolgeometryisnotreportedduetovariousreasons.AsMishraandMa8pointedout,mostofthetooldesignisbasedonintuitiveconcepts.ThefirststepinderivingtheconceptofFSWtooldesignistounderstandtheroleoftoolinfrictionstirweldformation.Insolid-statewelding,theacceptedprincipleofweldfor-mationisstatedthatthebondingoccurs,whenapairofcontamination-freesurfacesarebroughttogetherintherangeofinter-atomic-distancesandtheforceutilizedforbondingistheinter-atomicforce9.Inmostofthesolid-stateweldingseefrontmatter2007ElsevierB.V.Allrightsreserved.10.1016/j.msea.2007.08.013DepartmentofMechanicalEngineering,IndianReceived30January2007;receivedinrevisedInthisinvestigationanattempthasbeenmadetounderstandthemechanisminit.Thishasbeendonebyunderstandingthematerialflowpatternfrictionstirweldingtoolwiththebasematerialiscontinuouslyincreased.gimesinvolvedinthefrictionstirweldformation;namely“pin-drivtoformadefect-freeweld.Theetchingcontrastintheseregimesonthematerialflowcharacteristicsamechanismofweldformationeywords:Frictionstirwelding;Materialflow;Mechanism;Defects;TooldesignIntroductionTheenvironmentfriendlyfrictionstirwelding(FSW)pro-isapotentialandprovenmethodforweldinghigh-strengthalloys.Thissolid-statelocalizedthermo-mechanicalprocessispredominantlyusedforbuttandlapjointsformationV.KailasofScience,Bangalore560012,India30July2007;accepted8August2007offrictionstirweldformationandtheroleoffrictionstirweldingtheweldproducedinaspecialexperiment,wheretheinteractionofTheresultsshowthattherearetwodifferentmodesofmaterialflowow”and“shoulder-drivenflow”.Thesematerialflowregimesmergevesrisetoonionringpatterninfrictionstirwelds.Inadditiontothatproposed.,themicrostructuralinvestigationrevealsthatthefrictionweldmenthasfourdifferentregionsbasedonthemicrostruc-features,namelyweldnugget(WN),thermo-mechanicallyfectedzone(TMAZ),heat-affectedzone(HAZ)andbaseormaterial36.Toolgeometryisconsideredtobeoneoftheprimeparam-368K.Kumar,S.V.Kailas/MaterialsScienceandEngineeringA485(2008)367374process,ing,thecontactinterfprocessisfyadditionalbodyarecoalescedture,theonlyysisthecomputationaltheFSWflomarkals.suitableorinitialmaterialtheand19offlocontribal.microstructuraltion20ringformationcofcylindersresultsintheonionringpattern.Fratinietal.20explainedthereasonfortheonionringpatternusingnumer-icalmodelthatthematerialenteringfromtheretreatingsideenterstheactionvolumeandrotatesatthebackofthetool.But,ingeneral,thereisnoexperimentalevidencethatcon-firmsthemechanismofonionringformationproposedbytheresearchers.stir23grooformationandformationinsufinformationformation.posedstirresearch,markmechanismsand2.alloAlZnMgturalalloThewithfrustumdiameterpinetryHDSweldingareThemachinebaseincreasingmaterialangleFig.1.Schematicoffriction-stirweldingprocessandterminology.likeforgewelding,diffusionwelding,frictionweld-explosivewelding,ultrasonicwelding,rollbonding,etc.,bondingisestablishedbygeneratingfreshmetal-to-metalbyeliminatingoxidelayersandimpuritiesfromtheaceunderrequiredpressureandtemperature10.Theseconditionsmodifythebasematerialinterfacetosat-thesolid-stateweldingcondition,anddonotgenerateanysurfacesinthematerial.Incontrast,duetothethird(theFSWtool)interactioninFSW,additionalinterfacesgeneratedduringtheprocess.Finally,allthesurfacesarewitheachotherbytheappliedpressureandtempera-andthus,thesoundsolid-stateweldisproduced.Therefore,mechanismofweldformationinFSWwillbeclearlyknownwhentheroleoftoolisunderstood.Thematerialflowanal-isanimportanttooltounderstandtheroleofFSWtoolonofweldformation.Thereareanumberofexperimentalstudies1115,andwork1618hasbeencarriedouttoanalyzematerialflow,anditisreportedthatthematerialflowiniscomplexanditisnotclearlyunderstood.Ingeneral,thewvisualizationstudieshavebeenconductedbyintroducingaermaterialintheweldline,orbyweldingdissimilarmateri-Afterwelding,themarkermaterialpositionistracedbackbymeans,i.e.,X-rayradiographyortomography11,12differentialetchingprocedure1315,andcomparedwithitsposition.But,ithasbeensaidthattheinsertionofmarkerintheweldlinecanalterthenatureofmaterialflowinweldduetodifferentmaterialflowcharacteristicsofthebasemarkermaterialsandintroductionofadditionalinterfaces.Ontheotherhand,thematerialflowindissimilarmaterialsdifferentflowpropertiescannotbecomparedwithmaterialwinfrictionstirweldsofsimilarmaterials.TheimportantutiontomaterialflowvisualizationisdonebyFratiniet20.Theyincorporatedthematerialflowandanalysiswithevolution.Aninterestingphenomenoninfrictionstirweldsisforma-ofringpattern.ThishasbeenstudiedbyFratinietal.andKrishnan21.Krishnan21explainedtheonionformationusingaclaymodel.Hepointedoutthattheofonionringisageometriceffect.Hestatedthatsemi-ylindricalsheetsofmaterialareextrudedduringeachrotationthetoolandcross-sectionalslicethroughsuchasetofsemilength4.6ofthepinInflothematerialTheotherimportantaspectisdefectformationinfrictionwelds.Kimetal.22andElangovanandBalasubramanianreportedexcessiveflashformation,cavity,tunneldefectandvelikedefects.Andfurthertheyconcludedthatthedefectisduetoinsufficientheatinput,excessiveheatinputabnormalstirring.Zangetal.19reportedthattheporeinafrictionstir-weldedmagnesiumalloyisduetoficientpressureunderneaththeshoulder.But,thereisnoavailableontheroleoftoolgeometryondefectInthisinvestigationasimpleexperimentalmethodispro-toanalyzetheroleoffrictionstirweldingtoolonfrictionweldformationbyanalyzingthematerialflow.Inthisthematerialflowisanalyzedwithouttheinsertionofermaterial.Basedonobservationsmadeintheanalysis,offrictionstirweldformation,defectformationonionringformationareproposed.ExperimentalmethodsThebasematerialusedinthisstudyis7020-T6.Aluminiumy7020isamediumstrengthprecipitationhardenablealloy,whichisusedinaerospaceindustryforstruc-applications.ThenominalchemicalcompositionoftheyisZn4.63wt.%,Mg1.13wt.%,andrestaluminium.basematerialdimensionis300mm75mm4.4mmsquareedges.Thetoolusedinthisstudyis4.2mmlongshapedpinof6mmtopdiameterand4mmbottomwith20mmdiameterflatshoulder.Thefrustumshapedprofileischosenaccordingtotheself-optimizedtoolgeom-suggestedbyPradoandMurr24.Thetoolmaterialis(H13),andishardenedto55HRC.Inthisinvestigation,speed,toolrotationspeedandbackwardtooltiltanglekeptconstantat80mm/min,1400rpm,and2,respectively.FSWtrialsarecarriedoutonakneetypeverticalmillingwithsquarebuttjointconfiguration.Theexperimentisconductedinsuchawaythatthetoolandmaterialinteractioniscontinuouslyincreasedbylinearlytheinterferencebetweentoolshoulderandthebasesurface.ThisisdonebykeepingthebackingplateatantotheweldlineasshowninFig.2.Initiallythe4.2mmtoolpinisplunged3.8mm,andthetoolplungingreachesmmbytheendoftheweld.Inordertoavoidthedamagethebackingplateanaluminiumsupportpieceiskeptbeneathworkpiece.Theideaoftheexperimentisthattheroleoftoolandshoulderonweldformationcanbeanalyzedseparately.ordertoexplaintheeffectoftoolinteractiononthematerialwandweldformationintermsofheatinputandtemperature,axialloadsaremeasuredforthecorrespondingtoolandbaseinteraction.K.Kumar,S.V.Kailas/MaterialsScienceandEngineeringA485(2008)367374369Fig.2.Experimentaldetails.Thebackingplatewaskeptatananglesuchthattheaxialloadcanbelinearlyincreased(from4to10.9kN)bylinearlyincreasingtheinterferencebetweentoolandmaterialbeingwelded.Afterwelding,metallographicsamplesarepreparedfromtheweldcouponatevery20mminterval.Standardmetallographicpracticeisfollowed,anddilutedKellersreagentisusedforetching.3.Resultsanddiscussion3.1.MaterialflowandweldformationFig.3showsthecross-sectionsoftheweldtakenatvarioustoolinterferencelevelswiththebasematerial,withincreasingaxialloads.Itcanbeseenthatthedefectsizereducesasthetoolinterferenceincreases.Itcanalsobenoticedthattheaxialloadincreasesasthetoolinteractionincreases.Aboveanormalloadof7.4kN(Fig.3f),defectshavedisappeared.AsBuffaetal.2reported,therequirementforfrictionstirweldingprocesstoproduceadefect-freeweldisbygeneratingsufficientamountoffrictionalheat,therebygeneratingrequiredtemperatureandhydrostaticpressureintheweldline.AsColegroveandShercliff18explained,theshoulderisthesourceoffrictionalheat,anditpreventsthematerialfromflowingoutoftheweldcavity.Inthepresentsetofexperiments,attheinitialstagesoftheweld-ingthetoolshoulderisnotinfullcontactwiththebasematerial,andhenceaxialloadisinsufficientforheatgeneration.Thefric-tionalheatgeneratedinthisstageisduetotheinteractionoftheshoulderandtheflashmaterial,frictionalheatgeneratedbytheinteractionofthepinwiththebasematerialandheatgeneratedduetotheplasticofthedeformedmaterial.Theprimaryreasonforhavingdefectintheweld,attheinitialstages,wheretheaxialloadislessthan7.4kN,isthelackofshouldercontactwiththebasematerial.Whentheshouldercontactincreaseswiththebasematerialtheaxialloadincreases.Whentheaxialloadisabove7.4kN,thetransferredmaterialfromtheleadingedgeiscon-finedintheweldcavity,andsufficientamountoffrictionheatandhydrostaticpressureisgeneratedtoproduceadefect-freeweld.Theotherobservationisthattheweldcross-sectionissym-metricabouttheweldlineuntiltheaxialloadexceedthe8.1kN(Fig.3af),andabovethisloadtheweldlosesitssymmetry(Fig.3gandh).ItisevidentfromFig.3gandhthatthebaseFig.3.Evolutionofadefect-freeweldasafunctionoftheshoulderinteractionwiththebasematerial.Arrowmarksindicatethepresenceofvoidsintheweld.370K.Kumar,S.V.Kailas/MaterialsScienceandEngineeringA485(2008)367374materiallosesitssymmetrybecausethebasematerialfromtheretreatingsideisdrawnintotheweldnuggetregion.Itcanbenoticedthatthebasematerialmovementawayfromthepincanonlybeinfluencedbytheshoulder.Whenahardandasoftmaterialarerubbedagainsteachother25thesurfaceandsub-surfacematerialflowsinthedirectionofslidingandtheamountofmaterialflowisafunctionofcontactload.Consequently,infrictionstirwelds,whentheaxialloadincreasesaboveacriti-calvaluethesub-surfacematerialflowbecomesintense.Havingthebackwardtooltilt,thecontactpressureinthetrailingedgeofthetoolishigher,andhencethereisbasematerialmovemen
溫馨提示
- 1. 本站所有資源如無特殊說明,都需要本地電腦安裝OFFICE2007和PDF閱讀器。圖紙軟件為CAD,CAXA,PROE,UG,SolidWorks等.壓縮文件請下載最新的WinRAR軟件解壓。
- 2. 本站的文檔不包含任何第三方提供的附件圖紙等,如果需要附件,請聯(lián)系上傳者。文件的所有權(quán)益歸上傳用戶所有。
- 3. 本站RAR壓縮包中若帶圖紙,網(wǎng)頁內(nèi)容里面會有圖紙預(yù)覽,若沒有圖紙預(yù)覽就沒有圖紙。
- 4. 未經(jīng)權(quán)益所有人同意不得將文件中的內(nèi)容挪作商業(yè)或盈利用途。
- 5. 人人文庫網(wǎng)僅提供信息存儲空間,僅對用戶上傳內(nèi)容的表現(xiàn)方式做保護處理,對用戶上傳分享的文檔內(nèi)容本身不做任何修改或編輯,并不能對任何下載內(nèi)容負責(zé)。
- 6. 下載文件中如有侵權(quán)或不適當(dāng)內(nèi)容,請與我們聯(lián)系,我們立即糾正。
- 7. 本站不保證下載資源的準確性、安全性和完整性, 同時也不承擔(dān)用戶因使用這些下載資源對自己和他人造成任何形式的傷害或損失。
最新文檔
- 城市化進程風(fēng)險評估-洞察及研究
- 南極冰緣生態(tài)系統(tǒng)-洞察及研究
- 數(shù)字化轉(zhuǎn)型中的領(lǐng)導(dǎo)力-洞察及研究
- 農(nóng)村職業(yè)技能培訓(xùn)與農(nóng)村環(huán)境保護關(guān)系研究
- 化學(xué)穩(wěn)定化研究-洞察及研究
- 中國塑料薄膜市場深度調(diào)查及戰(zhàn)略研究報告(2026版)
- 衛(wèi)生監(jiān)督部門職責(zé)
- 精神科臨床護理帶教老師職責(zé)
- 2025年中國SiC電機控制器行業(yè)發(fā)展監(jiān)測及投資戰(zhàn)略研究報告
- 2025年中國焊接設(shè)備行業(yè)競爭格局分析及投資規(guī)劃研究報告
- GB/T 3480.1-2019直齒輪和斜齒輪承載能力計算第1部分:基本原理、概述及通用影響系數(shù)
- GB/T 21153-2007土方機械尺寸、性能和參數(shù)的單位與測量準確度
- GB/T 10045-2001碳鋼藥芯焊絲
- GA/T 1556-2019道路交通執(zhí)法人體血液采集技術(shù)規(guī)范
- GA 533-2005擋煙垂壁
- 復(fù)習(xí)課專題講座課件
- 提高人工氣道氣囊管理正確率品管圈匯報書模板課件
- 2023年景德鎮(zhèn)藝術(shù)職業(yè)大學(xué)輔導(dǎo)員招聘考試筆試題庫及答案解析
- 信號與系統(tǒng)思維導(dǎo)圖(所有內(nèi)容)
- 藥物外滲嚴重后果以及處理
- 國家職業(yè)教育老年服務(wù)與管理專業(yè)教學(xué)資源庫
評論
0/150
提交評論