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1、Designation:D6048?07(Reapproved2012)StardPracticefStressRelaxationTestingofRawRubberUnvulcanizedRubberCompoundsThermoplasticElastomers1ThisstardisissuedunderthefixeddesignationD6048thenumberimmediatelyfollowingthedesigna
2、tionindicatestheyearofiginaladoptioninthecaseofrevisiontheyearoflastrevision.Anumberinparenthesesindicatestheyearoflastreapproval.Asuperepsilon()indicatesaneditialchangesincethelastrevisionreapproval.INTRODUCTIONThereare
3、anumberoftechniquesusedtoidentifytheprocessabilityofrawrubberunvulcanizedrubbercompoundsthermoplasticelastomers(rubberrubberlikematerials).MostmeasureasingleaveragedvalueofnonNewtonianviscositywithsomedoingsoafteraperiod
4、ofsteadyshear.Thesetechniquesmaynotprovidesufficientinfmationwithregardstotheprocessabilityofaedmaterialasthey:(1)failtoprovideameasureoftheviscoelasticbehavi(2)destroystructureoftheedmaterialthroughthesteadyshearing.Str
5、essrelaxationtestingprovidesameasureoftheviscoelasticresponseofamaterialoveraperiodoftimewithoutdestroyingthestructureofthesample.Insuchtestingboththeinstantaneoustimedependentresponsetoanapplieddefmationaremeasured.Thei
6、nfmationfromthissingleexperimentcanthenbeusedtoexamineamaterial’sreactiontovariousdifferentprocessconditions.Thereareseveraldifferenttechniquesfmeasuringstressrelaxationpropertiesofrubberrubberlikematerials.Thispractices
7、ervestoprovidethereaderwithsomebackgroundinfmationaboutthosetechniquesintermsofthetheyoftestingtheinterpretationofresults.Manyconceptsareputfwardthatarenotdiscussedindepthftodosowouldrequireatextbooknotapractice.Thereade
8、ristherefeencouragedtoconsulttheidentifiedreferences.1.Scope1.1Thispracticecoversseveraldifferenttechniquesfdeterminingthestressrelaxationacteristicsofrubberrubberlikematerialsfthepossibleinterconversionofthisstressrelax
9、ationinfmationintodynamicmechanicalproperties.1.2Thetechniquesareintendedfmaterialshavingstressrelaxationmoduliintherangeof103to108Pa(0.1to1.5104psi)ftesttemperaturesfrom23to225C(73to437F).Notallmeasuringapparatusmaybeab
10、letoaccommodatetheentireranges.Thesetechniquesarealsointendedfmeasurementofmaterialsintheirrubberymoltenstatesboth.1.3Differencesinresultswillbefoundamongthetechniques.Becauseofthesedifferencesthetestreptneedstoincludeth
11、etechniquetheconditionsofthetest.Thisinfmationwillallowfresolvinganyissuespertainingtothetestmeasurements.1.4Thegeneralizeddeionsofapparatusarebasedonthemeasurementoffceasafunctionoftime.Mathematicaltreatmentofthatrelati
12、onshipproducesinfmationthatcanberepresentativeofmaterialproperties.Mathematicaltransfmationofthefcemeasurementswillfirstyieldstressrelaxationmoduliwithsubsequenttransfmationproducingdynamicmechanicalproperties.1.5Thevalu
13、esstatedinSIunitsaretoberegardedasthestard.Thevaluesgiveninparenthesesareprovidedfinfmationonly.1.6Thisstarddoesnotpurpttoaddressallofthesafetyconcernsifanyassociatedwithitsuse.Itistheresponsibilityoftheuserofthisstardto
14、establishappropriatesafetyhealthpracticesdeterminetheapplicabilityofregulatylimitationspritouse.2.ReferencedDocuments2.1ASTMStards:2D1566TerminologyRelatingtoRubber1ThispracticeisunderthejurisdictionofCommitteeD11onRubbe
15、risthedirectresponsibilityofSubcommitteeD11.12onProcessabilityTests.CurrenteditionapprovedMay12012.PublishedJuly2012.iginallyapprovedin1996.Lastpreviouseditionapprovedin2007asD6048–07.DOI:10.1520D604807R12.2FreferencedAS
16、TMstardsvisittheASTMwebsitewww.astm.gcontactASTMCustomerServiceat.FAnnualBookofASTMStardsvolumeinfmationrefertothestard’sDocumentSummarypageontheASTMwebsite.Copyright?ASTMInternational100BarrHarbDrivePOBoxC700WestConshoh
17、ockenPA194282959.UnitedStates15.SignificanceUse5.1Theprocessingbehavi(processability)ofrubberrubberlikematerialsiscloselyrelatedtotheirviscoelasticproperties.Theviscoelasticpropertiesaswellasthemechanicalpropertiesarerel
18、atedtothepolymericincludingmacromolecularmicromolecularstructure.Therefeadeterminationoftheviscoelasticityofamaterialwillprovideinfmationtopredictprocessingserviceperfmance.5.2Stressrelaxationtestingprovidesamethodologyf
19、investigatingtheviscoelasticityofrubberrubberlikematerials.Certainstructuralacteristicsthathavebeendemonstratedtobeevaluatedbythistestmethodare:(1)averagemolecularweight(2)molecularweightdistribution(3)linearitychainbran
20、ching(4)gelcontent(5)monomerratio.5.3Thispracticeisintendedtodescribevariousmethodsofmeasuringthestressrelaxationpropertiesofrawrubberunvulcanizedrubbercompoundsthermoplasticelastomersfdeterminingtheprocessabilityofthese
21、materialsthroughviscoelasticmeasurements.Factyperfmanceacteristicsthatthismethodologymaycrelatewithincludedieswellshrinkageextrusionratemillbingcarbonblackincpationtimemoldflow.6.Hazards6.1Therearenohazardsinherenttothet
22、echniquestobedescribed.Thereisnouseofreagentshazardousmaterials.Thedesignofthevariousdifferenttestapparatusmayhavecreatedpossiblepinchpointscautionshallbeexercisedaguardshallbeprovidedfthesesites.6.2Nmalsafetyprecautions
23、goodlabatypracticeshouldbeobservedwhenusinganyequipment.Thisisespeciallytruewhenperfmingtestsatelevatedtemperatureswhereelectricalheatersareused.7.TheyofStressRelaxation7.1MechanicalModelsofViscoelasticity:7.1.1Polymeric
24、materialsexhibitbothelasticityviscousresistancetodefmation.Thematerialscanretaintherecoverable(elastic)strainenergypartiallybuttheyalsodissipateenergyifthedefmationismaintained.Mechanicalanaloguesofaviscoelasticsolid(Fig
25、.1)aviscoelasticliquid(Fig.2)helpidentifythisbehavi.7.1.2InFig.1adashpotisconnectedinparallelwithaspring.ThisisknownasaVoigtelement.Ifdefmedthefceinthespringisassumedtobeproptionaltotheelongationoftheassemblythefceinthed
26、ashpotisassumedtobeproptionaltotherateofelongationoftheassembly.Withnofceactinguponittheassemblywillreturntoitsreferencestatethatisdictatedbytherestlengthofthespring.7.1.3Inthisexampleifasuddentensilefceisappliedsomeofth
27、ewkperfmedontheassemblyisdissipatedinthedashpotwhiletheremainderisstedinthespring.Theappliedfceisanalogoustothedefmingstresstheelongationisanalogoustotheresultingstrain.Theviscousresistancetodefmationrepresentedbythedash
28、potintroducestimedependencytotheresponseoftheassemblywherethisdependencyisdictatedbythespringdashpotconstants.Theassemblycannotrespondinstantaneouslytochangesinstressthisindicatesthattheviscoelasticsolidhasatimedependenc
29、y.7.1.4InFig.2adashpotisconnectedinserieswithaspring.ThisiscalledaMaxwellelement.UnliketheVoigtelementthereisnodictatedreferencestatesothattheassemblywilldefmindefinitelyundertheinfluenceofanappliedfceassumingthatthedash
30、pothasinfinitelengthaacteristicofaviscoelasticfluid.7.1.5Inthisexampleifasuddentensilefceisapplieditisthesameinboththespringthedashpot.Someofthewkperfmedontheassemblyisdissipatedinthedashpotwhiletheremainderisstedinthesp
31、ring.Thetotaldisplacementexperiencedbytheelementisthesumofthedisplacementsofthespringthedashpot.AswiththeVoigtelementrepresentingaviscoelasticsolidtheMaxwellelementrepresentsacombinationofviscouselasticproperties.Thisind
32、icatesthattheviscoelasticliquidisalsotimedependenthasaacteristictimeconstant.Howeverasthetimeconstantbecomessmallersmallertheelasticqualityoftheliquidbecomeslesslessappearstobehavemelikeapurelyviscousmaterial.7.1.6Theres
33、ponseofpolymerstochangesinstressstrainisactuallyacombinationofmultipleelementsofbothmechanicalmodelsonesuchexampleisillustratedinFig.3.Theresponseisalwaystimedependentinvolvesboththeelasticstageofenergyviscousloss.7.2Mol
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