ASTM D6097-2001a(2008)e1 固体介电绝缘材料对应通气孔水柱上升的电阻力的标准试验方法

时间:2024-05-10 19:46:39 来源: 标准资料网 作者:标准资料网 阅读:9781
下载地址: 点击此处下载
【英文标准名称】:StandardTestMethodforRelativeResistancetoVentedWater-TreeGrowthinSolidDielectricInsulatingMaterials
【原文标准名称】:固体介电绝缘材料对应通气孔水柱上升的电阻力的标准试验方法
【标准号】:ASTMD6097-2001a(2008)e1
【标准状态】:现行
【国别】:美国
【发布日期】:2001
【实施或试行日期】:
【发布单位】:美国材料与试验协会(US-ASTM)
【起草单位】:D09.12
【标准类型】:(TestMethod)
【标准水平】:()
【中文主题词】:
【英文主题词】:electricalbreakdown;soliddielectrics;treeing;water-treeing;Dielectricapplications;Electricalbreakdown;Extrudedpolymericinsulation;Soliddielectrics;Solidnon-blackthermoplastic/crosslinkedelectricalinsulation;Treeing;Ventedwater-treeg
【摘要】:Thisisalaboratorytestdesignedtosimulatethegrowthofventedwater-treesinthesoliddielectricinsulatingmaterialinitiatedbyasharpprotrusionattheinsulatingandconductiveinterfaceunderawetenvironmentinahighelectricalfield.Water-treeingisthephenomenonwhichdescribestheappearanceoftree-likegrowthinorganicdielectricsunderanacfieldwhenexposedtomoistenvironments.Twotypesofwater-treesareformed.Bowtietrees(withinthedielectric)andventedwater-treesformedfromconductive/insulatingmaterialinterfaceintotheinsulatingmaterial.Thewater-treesreferredtointhistestmethodaretheventedtype.Theinsulatingmaterialisthesoliddielectricorganicmaterial.Theconductivematerialisthesaltsolution.Thissaltsolutionisusedonbothsidesoftheinsulatingmaterialtosimulatethesameinnerandoutersemiconductiveshieldssaturatedwithmoisturebetweentheinsulationlayerusedinamedium-voltageundergroundpowercable.Thistestmethodprovidescomparativedata.Thedegreeofcorrelationwiththeperformanceinservicehasnotbeenestablished.Thestandardtestconditionsaredesignedtogrowasufficientwater-treelengthformostsoliddielectricinsulatingmaterialsofinterestbeforeelectricalbreakdownoccurs.Materialswithaveryhighresistancetowater-treegrowthmayrequirealongertimeundertestconditions(suchas180days)orhighervoltage(suchas10or15kV)inordertodifferentiatetheirperformance.Formaterialswithaverylowresistancetowater-treegrowth,electricalbreakdownmayoccurduringthe30-daytestingtime.Ashortertestingtime(suchasoneortendays)isrecommendedtopreventelectricalbreakdownduringtestingforthoselowwater-treeresistantmaterials.Othervoltages,frequencies,temperatures,aqueoussolutions,anddefectscanbeusedtoevaluatespecificmaterialsforspecificapplications.Temperaturesshouldnotexceedthesofteningormeltingpointofthematerialor10to15x00B0;Cbelowtheboilingpointofthesaltsolution.Anynonstandardconditionsshouldbereportedalongwiththeresults.Tree-growthratesgenerallyincreasewiththetestfrequency.Anaccelerationfactorduetofrequencyisgivenby(f/60)kwherefisthetestfrequencyandkisbetween0.6and0.7.Thetestfrequencyof1kHzisselectedtoacceleratethewater-treegrowth.However,thechemicalnatureofoxidizedproductsfromwater-treeingmaybedifferentatdifferentfrequencyranges.Twoassumptionsforthistestmethodare:(1)alltestedmaterialsgrowtreesinthesamepowerlawkineticmannerand(2)thetimeundertestconditionsof30daysislongenoughtoestablishthedifferenceinwater-treegrowth.Ifthereisadoubt,atleastthreedifferenttestingtimes(suchas30,90,and180days)shouldbeusedtoverifytheircomparativeperformanceanddisclosetheirkineticnatureofwater-treegrowth.Ofcourse,itisalsoassumedthatallwater-treedregionsareoxidizedregionsthatcanbestainedforopticalobservation.Differentmaterialsmayalsohavedifferenttemperaturesandtimestostaintheoxidized(treed)regionsduetotheirdifferentsofteningtemperature.1.1Thistestmethodcoverstherelativeresistancetoventedwater-treegrowthinsolidtranslucentthermoplasticorcross-linkedelectricalinsulatingmaterials.Thistestmethodisespeciallyapplicabletoextrudedpolymericinsulationmaterialsusedinmedium-voltagecables.1.2ThevaluesstatedinSIunitsaretoberegardedasstandard.Nootherunitsofmeasurementareincludedinthisstandard.
【英文标准名称】:StandardTestMethodforLeadandCadmiumExtractedfromtheLipandRimAreaofGlassTumblersExternallyDecoratedwithCeramicGlassEnamels
【原文标准名称】:外表用陶瓷玻璃釉装饰的玻璃酒杯杯口及外缘析出铅和镉的标准试验方法
【标准号】:ASTMC927-1980(2004)
【标准状态】:现行
【国别】:
【发布日期】:1980
【实施或试行日期】:
【发布单位】:美国材料与试验协会(US-ASTM)
【起草单位】:C14.10
【标准类型】:(TestMethod)
【标准水平】:()
【中文主题词】:危险物质;铅;保健;试验;镉;上釉陶瓷制品;边缘;洗池;瓷漆;陶瓷;玻璃
【英文主题词】:atomicabsorption;cadmium;ceramicglassenamels;glaze;heavymetals;lead
【摘要】:Theheavymetals,leadandcadmium,areknowntocauseserioushealtheffectsinmanifconsumedinexcess.Itis,therefore,importanttomeasuretheamountthatmaybeextractedfromanareaoftheglassdrinkingvesselincontactwiththelip.Eventhoughtheamountofleadandcadmiumextractedbythistestmethodisinnowayrepresentativeoftheamountofthemetalsextractedbyactuallipcontact,therelativemagnitudeofmetalsextractedfromonetestspecimeninrelationtoanothertestspecimenprovidesaneffectivetoolfordiscrimination.1.1Thistestmethodcoversthedeterminationofleadandcadmiumextractedbyaceticacidfromthelipandrimareaofglasswareusedfordrinkingandwhichisexteriorlydecoratedwithceramicglassenamels.Theprocedureofextractionmaybeexpectedtoacceleratethereleaseofleadandcadmiumfromthedecoratedareaandtoserve,therefore,asaseveretestthatisunlikelytobematchedundertheactualconditionsofusageofsuchglassware.Thistestmethodisspecificforleadandcadmium.Note1ForadditionalinformationseeTestMethodC738.1.2Thevaluesstatedinacceptablemetricunitsaretoberegardedasthestandard.Thevaluesgiveninparenthesesareforinformationonly.1.3Thisstandardmayinvolvehazardousmaterials,operations,andequipment.Thisstandarddoesnotpurporttoaddressallofthesafetyconcernsassociatedwithitsuse.Itistheresponsibilityoftheuserofthisstandardtoestablishappropriatesafetyandhealthpracticesanddeterminetheapplicabilityofregulatorylimitationspriortouse.
【中国标准分类号】:Y22
【国际标准分类号】:67_250;97_040_60
【页数】:4P.;A4
【正文语种】:


基本信息
标准名称:钒铁化学分析方法 铬天青S光度法和EDTA容量法测定铝量
英文名称:Methods for chemical analysis of ferrovanadium. The chromazurol S photometric method and EDTA volumetric method for determination of aluminium comtent
中标分类: 冶金 >> 金属化学分析方法 >> 钢铁与铁合金分析方法
ICS分类: 冶金 >> 黑色金属
替代情况:被GB/T 8704.8-2009代替
发布部门:国家技术监督局
发布日期:1994-09-26
实施日期:1995-06-01
首发日期:1994-09-26
作废日期:2010-04-01
主管部门:中国钢铁工业协会
提出单位:中华人民共和国冶金工业部
归口单位:全国钢标准化技术委员会
起草单位:峨眉铁合金(集团)股份有限公
起草人:侯文质、唐华应、王玉生
出版社:中国标准出版社
出版日期:1995-06-01
页数:6页
适用范围

本标准规定了以下两个方法测定钒铁中铝量。方法Ⅰ:铬天青S光度法,测定范围:0.10%~0.80%;方法Ⅱ:EDTA容量法,测定范围:0.50%~3.50%。

前言

没有内容

目录

没有内容

引用标准

没有内容

所属分类: 冶金 金属化学分析方法 钢铁与铁合金分析方法 冶金 黑色金属