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1、AppliedSurfaceScience288(2014)208–214ContentslistsavailableatScienceDirectAppliedSurfaceSciencejournalhomepage:locateapsuscCrelationbetweencontactsurfacefrictionduringtheopticalglasspolishingN.Belkhir?T.AliouaneD.BouzidL
2、abatyofAppliedopticsInstituteofOpticsPrecisionMechanicsUniversityFerhatAbbasSetif1AlgeriaarticleinfoArticlehisty:Received22February2013Receivedinrevisedfm21September2013Accepted1October2013Availableonline11October2013Key
3、wds:OpticalglassPolishingPressuredistributionSurfacecontactFrictionabstractThisstudyaimstodetermihecrelationbetweenthecontactsurfacethepolishingpressurethefrictioncoefficientduringtheopticalglasspolishing.FthispurposeBK7
4、opticalglasssampleswerepolishedthementionedparametersweremeasuredtofindacrelationbetweenthem.SeveralmethodsofacterizationhavebeenusedthemechanicalprofilometertheAFMinadditionsetupsfmeasuringfcesthecontactsurfacehavebeend
5、evelopedadaptedtothepolishingmachine.Thefoundresultshaveshowntheexistenceofacloserelationshipbetweenthethreeparameterstheinfluenceofeachother.Thishaveallowedtodeducethatduringthepolishingprocessitisveryimptanttocontrolth
6、econtactpressurethepolisherfmaccdingtothepressuredistributionindertoguaranteeaveryhighqualityofthepolishedsurface.?2013ElsevierB.V.Allrightsreserved.1.IntroductionThereproducibilityofopticalsurfaceswithhighaccuracyisamaj
7、aimoftheopticalindustrydevelopment.Thefreeabrasivespolishingprocessconsistsofafrictionalcontactbetweenthesampletherotatingpolishingpad.Inpolishingslurryofabrasivegrainsizesbelow1?missuppliedonasoftpolishergenerallyusedin
8、thisoperation.Thefineabrasiveparticlesareretainedonthepadsurfaceresilientlyplasticallythewksurfacesarescratchedmicroscopically.Polishingactionsarebyfarsmallerifcomparedwithlappingcontributingtothesuccessfulapplicationsto
9、thebrittlematerials[1].Severalhypotheseswereproposedtodescribethematerialremovalinthepolishingprocess[1–5]butthemostusedisthecombinedhypothesisoftwoactionsamechanicalactiongeneratedbytheabrasivegrainsachemicaloneproduced
10、bythereactionbetweenthesuspensionliquidthepolishedmaterial.Duringthepolishingprocessmaterialremovalishighlyinfluencedbythelocalpressuretherelativespeedbetweenthetoolthewkpiece.Faconstanttoolpressuretheshapechangecanbeeas
11、ilyfound.Howeverthisisnotpossibleinseveralcasesbecauseofthetoolthewkpieceshapesthatarenotgenerallythesametheroughness(overlapbetweenthepolisherthe?Crespondingauth.Tel.:21336844653fax:21336844653.Emailaddresses:(N.Belkhir
12、).sampleasperities)thepresenceofthefcestheaccelerationssimultaneouslyactivatingonthesurfacetobepolished[6–11].ThematerialremovalmodelproposedbySavioetal.[2]showsasatisfactyestimationofthematerialremovalasafunctionofthepr
13、ocessparameters.Thepolishingprocesscanproducedhighlymirrsurface.Materialisremovedataverylowrate.Consequentlythegeometryofthesurfaceneedstobeveryclosetothecrectshapebefepolishing.Thepolishingpressureisappliedontheabrasive
14、throughthecomftablepolishingpad.Thisallowstheabrasivetofollowthecontoursofthewkpiecesurfacelimitstheperationofindividualgrainsintothesurface.Theuseoffineabrasivegrainsinvolvesamoderateabrasiveactionbetweenthegrainsthewkp
15、iece.Thepolishingoperationprincipalconsiststothecontactbetweenthesamplethepolishingpadwiththepresenceoftheabrasivegrains.Duringtheprocessthefrictionofthesamplesurfaceonthepolisherallowstheabrasivegrainstemovethehydratedl
16、ayerfmedonthesurfaceofthesamplebythechemicalreaction.Itwasreptedthattheeffectduetofrictionisproptionaltothecompressivefce[12].Thepolishingrateisassumedtobeproptionaltothefrictionbetweenthesubstratethepad[13].Inpolishingt
17、heremovalmaterialonthesurfaceiscloselyrelatedtothevariationofthefrictioncoefficient[14].BowdenTab[15]havestatedthatthetrueareaofcontactisaverysmallpercentageoftheapparentcontactarea.Thetruecontactareaisfmedbyasperities.W
18、henthenmalfceincreasesmeasperitiescomeintocontacttheaverageareaofeachasperitycontactgrows.Thefrictionalfceisdependenton01694332$–seefrontmatter?2013ElsevierB.V.Allrightsreserved.:dx.doi.g10.1016j.apsusc.2013.10.008210N.B
19、elkhiretal.AppliedSurfaceScience288(2014)208–214060120180240300360420480540600660720780840900960102010801140120051015202530354045Pressure[kPa]Polishingtime[s]Fig.2.Variationofthepressurevs.thepolishingtime.01020108011401
20、2009609008407807206606005404804203603002401801206023456789101112Surfacecontact[cm]Polishingtime[s]Fig.3.Variationofthecontactsurfacevs.polishingtimeoftheglasssample.profileduringthepolishingoperationwhichchangesfromaflat
21、surfacetoanyshapesurface(seeFig.8).3.2.ContactsurfaceFig.3showsthevariationofthecontactsurfaceaccdingtothepolishingtime.ResultsinFig.3showthatthevariationofthecontactsurfaceissimilartothepressureone(seeFig.2).Indeedtheco
22、ntactareaincreasesinthefirstminutestendstostabilizedattheendofthepolishingoperationalowdecreasingisobserved.Thismaybeduetothesurfacequalitythepolishingpressurethepolishingslurrydistributioninthewkingareawhichinfluencesth
23、enaturethepositioningbetweenthepolisherthesamplesurface.Infactatthebeginningoftheoperationtheroughsurfaceofthesampletheexistenceofahighvolumeofslurrywhichrepresentsthevolumeofslurryfeedatthebeginningoftheoperationcausean
24、increaseinthecontactsurface.Howeverthecontactsurfacedecreasesaftersomeminutesbecauseoftheincreasingofthesurfacequality.Table3Chemicalcompositionoftheceriumoxideabrasivegrains(%mass).ElementsSiO2CeO2Cs2OPFLa2O3MgO%mass2.3
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