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海报制作指南制作海报过程中,请注意以下事项:海报尺寸为91.44cm/36inch(宽)x121.92cm/48inch(高)的纵向样式,页面边距为2.54cm/1inch。建议使用白色或浅色背景。请保持海报标题字号最大(90-120pt.),其次是副标题字号(70-80pt.)。图表标题、参考文献和所属机构的字号最小(18-40pt.)。您可以在COMSOL提供的模板基础上根据您的需求进行修改,但请注意不要超出海报尺寸范围。使用COMSOL软件中的“图像快照”功能可以导出高质量的透明背景图片。红框标出了其中两项重要设置。按此设置将导出一张可用于海报最上方蓝色区域的图片。如何在COMSOL中导出高清图片请注意:红色实线是打印时将被裁切掉的3mm区域。红色虚线表示在打印过程中可能会被裁切掉的小边距。您可以使用自己常用的模板,也可以参照COMSOL提供的模板制作海报。AnalysisofaPermanentMagnetMotorin3DJ.A.Smith1,M.B.Smith2

1.Department(ifapplicable),Organization,City,Country.

2.Department(ifapplicable),Organization,City,Country.

1.Authorfirstinitialandlastname,“ArticleTitle”,Journal,Volume(vol.),Pagenumbers(pp.),Year.

2.Authorfirstinitialandlastname,“ArticleTitle”,Journal,Volume(vol.),Pagenumbers(pp.),Year.

3.Authorfirstinitialandlastname,“ArticleTitle”,Journal,Volume(vol.),Pagenumbers(pp.),Year.Optimizepermanentmagnet(PM)motorperformancebyunderstandingtheirfullbehavior,includingsensitivitytohightemperatures.WhilePMmotorsarevaluedfortheenergysavingsthattheyprovide,therearesomedesignlimitationstoaddress.Forexample,permanentmagnetsaresensitivetohightemperatures.Suchtemperaturescanoccurwhencurrents,particularlyeddycurrents,generateheatlosses.ThefindingsoffergreaterinsightintothebehaviorofPMmotors,particularlybycapturingtheeddycurrentlossesthatoccurwithinthemagnets.ThisinformationservesasausefulresourceforimprovingthedesignofPMmotors,andthereforethetechnologytheyhelppower.AbstractMethodologyFIGURE1.Left:Permanentmotorsector.Right:DrawingofthePMmotor.TheresultscanbeseeninFigure2,whichshowsthemagneticfluxdensityforthemotorinit’sstationarystate,thatis,theinitialconditionsforthetime-dependentsimulation.Inthisstate,thecoilcurrentiszero.Italsoshowsthemagneticfluxdensityforthemotorafterrevolvingonesectorangle.Inthisplot,theairandcoildomainsareexcludedinordertogetabetterview.ResultsFIGURE2.Left:Magneticfluxdensityfromthepermanentmagnetswithonlytherotoratrest.Right:Magneticfluxdensityafterrevolvingonesectorangle.REFERENCESTheIntriguingStressesinPipeBendsJ.A.Smith1,M.B.Smith2

1.Department(ifapplicable),Organization,City,Country.

2.Department(ifapplicable),Organization,City,Country.Thepipeisslenderwithaconstantcrosssection,soitwouldseemlikeanaturalchoicetotreatsuchastructureasabeaminasimplifiedanalysis.Thebendingmomentistheonlyloadactingonthestructure,andit’sthusconstantforanygivensectionalongtheentirebeamaxis.Themaximumstressevenoccursonthe

inside

ofthepipe.Thecrosssectionofthebendalsodeformssignificantly,and,morespecifically,itovalizeswiththemajoraxiseitherbeingorientedinthebendplaneorperpendiculartoitdependingonthedirectionofthebendingmoment.E.A.WaisandE.C.Rodabaugh,“BackgroundofSIFsandStressIndicesforMomentLoadingsofPipingComponents”,UnitedStates,2005;/biblio/841246“StressIntensificationFactors(i-Factors),FlexibilityFactors(k-Factors),andTheirDeterminationforMetallicPipingComponents”,ASME,2017;/codes-standards/find-codes-standards/b31j-stress-intensification-factors-flexibility-factors-determination-metallic-piping-components/2017/drm-enabled-pdfFormanystructuralengineers,beamtheoryisapopularanalysistool.Usingtheequationscanbebeneficialwhenconsideringstructuralbehavior,astheyareeasytoapplyandprovideusefulresults.Thisworkinvestigatesonesuchcase.Pipebendsarecommoninpipingsystems,whichtypicallytransportliquidsorgas,oftenunderhighpressure.Oneplacewhereyoumayfindalotofpipesareoiltankers.Thelabyrinthinepipingsystemscanlookprettyfascinating.Manypipingstandards(orcodes)usedforindustrialapplicationsarebasedonbeamtheorywhenitcomestothestructuralanalysis.But,aswehavealreadydiscovered,pipebendsgenerallydonotbehavelikebeams.Whendiggingintopipingstandards,youwillfindalotofinformationdedicatedtopipebends.Inparticular,pipingstandardsrecommendtoapplycorrectionfactorstothestiffnessandstressesforcurvedpipesections.(Ref.1)Introduction&GoalsMethodologyFIGURE1.Pipingsystem

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