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简介:本文从酒钢3×6000Nm~3/h制氧生产工艺及其控制设备的现状出发,介绍了改造后DCS控制系统软、硬件的构成和实现的主要功能,取得了良好的应用效果。
简介:DifferentphasesofMg-Li-SmalloyswerepreparedbygalvanostaticelectrolysisinLiCl-KCl-MgCl2-SmCl3meltsat670°C.TheelectrolysisprocessandphasecontrolofMg-Li-Smalloyswerestudied.Themicrostructuresofα,α+β,βphasesofMg-Li-SmalloyswerecharacterizedbyX-raydiffraction(XRD)andopticalmicroscope(OM).Analysisofscanningelectronmicroscopy(SEM)andEDSmappinganalysisshowedthatMgdistributedhomogeneouslyinMg-Li-Smalloys.EDSresultshowedthatthedistributionofSmwasmoreat...
简介:ItisfundamentallyimportanttounderstandtheinfluenceofstrainonthedensityofdeformationtwinsinTWIPsteelbecausetwinningisitsdominantdeformationmechanism.ThedeformationbehaviorofaFe-30Mn-4Si-3Al-0.097CsteelhasbeeninvestigatedbyX-raydiffraction(XRD),electronbackscatterdiffraction(EBSD)andtransmissionelectronmicroscopy(TEM)techniques.Samplewithanaveragegrainsizeof10μmwasdeformedincold-rollingwithareductionof10%,20%,30%,40%,50%,60%and70%,respectively.Themechanicalpropertiesofthecold-rolledsampleswerefurtherinvestigatedbytensiletests.Theyieldstrength(σy)andultimate-tensile-strength(σUTS)oftheas-preparedsampleis480MPaand850MPa,respectively.However,undercoldrollingdeformation,thetensilestrengthobviouslyincreaseswithanincreaseinrollingreduction.Thesamplewitharollingreductionof10%exhibitsσyof610MPaandσUTSof-1000MPa.Theyieldstrengthandtensilestrengtharefurtherenhancedupto1320MPaand1378MPaforthespecimenwitharollingreductionof70%,regardlessofthepoorductilityof6.7%.ThedeformationmicrostructureswerestudiedbyEBSDandTEMobservations.Itisfoundthat,withincreasingrollingreduction,theaveragedistancebetweendeformationtwinsdecreasesgraduallywhilethedensityofdeformationtwins(thelengthoftwinboundaryinunitarea)exhibitamaximumvalueat40%cold-rolling+tension.Carefullystatisticsanalysisrevealsgrainorientationiscloselyrelatedtothedeformationtwinsandtheunderlyingmechanismgoverningthetwinningisdiscussed.
简介:EffectofCe-Mg-Si(lightRE)andY-Mg-Si(heavyRE)nodulizersonthemicrostructuresandmechanicalpropertiesofheavysectionductileironwasinvestigatedtodevelopthematerialofspent-nuclear-fuelcontainers.Twoas-castsweretreatedbythesamequalitypercentageoflightREandheavyRE,respectively.Fourpositionswerechosentostandfordifferentsolidificationcoolingratesofspecimens.Thetensilestrength,elongationandimpacttoughnessofspecimenstreatedbyheavyREwereallhigherthanthoseofthespecimenstreatedbylightRE.Withthedecreaseofcoolingrate,themechanicalpropertiesoftwospecimensdecreased,andthefracturemorphologychangedfromductilefracturetobrittlefracture.TheimprovingeffectofmechanicalpropertiesbetweenheavyREandlightREwasobviousduetothebetteranti-degradationpropertyofheavyRE.Whilethesolidificationprocesslastedformorethan250min,theimprovingeffectwasnotobviousduetoseriousspheroidalizationdecaying.
简介:将95%Mg+3%Ni+2%MnO2混合粉末在行星式高能球磨机中充氢反应球磨100h,利用X射线衍射(XRD)和扫描电镜(SEM)对球磨后的粉体进行表征,并研究其与水反应的动力学性能。结果表明,充氢球磨能对Mg-3Ni-2MnO2进行充分的氢化,Mg全部形成MgH2。制备的氢化态Mg-3Ni-2MnO2复合粉末的颗粒尺寸为0.1~5gm,晶粒尺寸在1~40nm之间。复合物在二次去离子水中水解时,随温度升高,放氢量增加,当温度为343K时,在20min内放出的氢气达到理论放氢量的91-3%,有望成为1种新的安全高效氢源技术。Avrami指数的数值变化表明,氢化态Mg-3Ni-2MnO2复合粉体的水解过程中,不同阶段其水解机理有所不同。
简介:MagnesiumalloyEZ10(Mg-RE-Zn)wasdeformedintensionattemperaturesfrom20upto520°C.Arapiddecreaseoftheyieldandtensilestrengthwithtemperaturewasobservedattemperatureshigherthan300°C.Ontheotherhand,ductilityofsamplesrapidlyincreasedinthesametemperaturerange.Lightmicroscopyandscanningelectronmicroscopywasusedtorevealthereasonforthesebehaviours.Intermetallicparticlesingrainboundariesareresponsibleforexcellentmechanicalpropertiesatlowertemperatures.Diffusionalprocessesoccurringattemperatureshigherthan300°Csignificantlyinfluencedthedeformationmechanismaswellasthefracturecharacter.
简介:ThephaseandmorphologytransformationduringthehydrothermaltreatingprocessofY2O3wasevaluatedwithX-raydiffcrcnce(XRD),scanningelectronmicroscopy(SEM),transmissionelectronmicroscopy(TEM),particlesizeandspecificsurfaceareadetermination.TheresultsshowedthatthecubicY2O3didnottransferintohexagonalY(OH)3inpurewater.Therefore,purehexagonalY(OH)3withnanotubeandmicrorodmorphologieswereobtainedbyhydrothermaltreatingY2O3at150℃for12hin15mlof2mol/LNaOHsolutionwithandwith-outPVAorPEGItwassuggestedthatthecharacteristicpreferentialgrowthofY(OH)3wasattributedtothestructureanisotropyofhexahedronY(OH)3.TheadditionofPVAorPEGcouldpromotetheformingprocessofnanotubesbyselectiveadsorptionondifferentcrystalplanes,whichalteredthegrowthratealongdifferentdirectionsandresultedinthediffusionlimitofconstructingionsinthecentertopofrods.Finally,Y(OH)3:EuandY2O3:Eunanotubeswerealsosynthesizedbyusingthismethod,andtheirphotoluminescencepropertieswereevaluated.
简介:微观结构和当演员组Mg-4.0Sm-1.0Ca合金的机械性质在由热挤出组成的thermomechanical处理期间被调查,滚动,并且在473K变老。Mg41Sm5阶段包含Ca和像针的Mg2在Mg矩阵形成的Ca阶段,和平均谷物尺寸和延伸是4.2m并且27%,分别地在热挤出以后,它在韧性暗示了增加。在滚动以后,另外,谷物尺寸进一步被精制,并且张力的力量增加了到293MPa。一新猛抛Mg3Sm在山峰Mg-4.0Sm-1.0Ca合金被发现,这合金显示了最好的机械性质,与83HV的山峰坚硬和313MPa的最终的张力的力量;这些性质被归因于谷物精炼加强,加强的稳固的答案,变硬的工作,并且降水加强。
简介:Al-Zn-Mg-Cu系超强铝合金因为高强度和高韧性,已作为轻质高强结构材料广泛应用于航空航天领域。该文主要介绍国内外高强铝合金的发展历程及最新研究进展,指出Al-Zn-Mg-Cu超强铝合金的研究经历了高强低韧→高强耐蚀→高强高韧耐蚀→超强高韧耐蚀4个发展阶段,认为调控晶界结构及晶界析出相状态已成为目前铝合金研究的重点;简要评述微观组织和晶界结构对超强铝合金性能的影响,并介绍超强铝合金弥散相和形变—热处理工艺的研究现状及其调控晶界结构和晶界析出相状态的原理。最后指出寻找新型弥散相和开发新型的形变—热处理工艺是提高超强铝合金性能的重要发展方向和途径。