简介:[篇名]Long-termtransitionofautomotivetechnologyfromviewpointof“motorfan”roadtest,[篇名]Mitigatingeffectondriverworkloadbylanetraceassist,[篇名]Modellingvehicledynamicsforvirtualexperimentation,roadtestsupportinganddynamiccontrol,[篇名]TechniqueforMeasuringDriver'sAttentionLevelbyUsingEvent-RelatedPotentials,[篇名]Theeffectofturbulenceonpeakandaveragepressuresonacardoor,[篇名]TheFirstJapaneseFCBustobeTestedontheRoad,[篇名]TheFordMotorCompanyspin-torsionalNVHtestfacility-2,[篇名]Torque-givenControlofSwitchedReluctanceMotorDriveSuitableforElectricVehicle。
简介:[篇名]ACIVILENGINEERINGMATERIALSCOURSEWAREWITHAVIRTUALLABORATORY,[篇名]Acompactsledsystemforlinearimpact,poleimpact,andsideimpacttesting,[篇名]ADynamicTestProcedureForAdhesivelyBondedComposite,[篇名]Alow-cost,high-performanceimpacttestfacility,[篇名]Amethodologyfortheidentificationofconstitutiveandcontactlawsofmetallicmaterialsunderhighstrainrates,[篇名]Amicro/macroimpacttestatcontrolledenergyforerosionandphase-transformationsimulation,[篇名]Aproactivesystemapproachtoautomotiveimpactdevelopment,[篇名]Astudyonfracturesurfaceofagedturbinerotorsteelbyfractaldimension,[篇名]AstudyonthedeterminationoffractureparametersfortherubbertoughenedpolymericmaterialswiththeinstrumentedCharpyimpacttest,[篇名]Anexaminationofthetaylorimpactproblemforexperimentsinvolvingsquareandcircularrods,[篇名]AnalysisoftestdataobtainedformCharpyVandimpacttensiletest,[篇名]Assessingthebeddingconditionsofsewerpipesusingeigenvibration,[篇名]Bucklingbehavioranalysisofarectangulartubestructurebylateralimpactload,[篇名]CHARACTERISTICEVALUATIONOFCFRPCOMPOSITESUNDERFALLINGWEIGHTIMPACTLOADING。
简介:Charpyimpacttestmodellingandlocalapproachtofracture,Comparisonofparamctricandnon-paramerricmcthocisfordetermininginjuryrish,CORRELATIONANALYSISOFAUTOMOBILECRASHRESPONSESBASEDONWAVELETDECOMPOSITIONS,Correlationstudyondifferentbumperimpacttestmethodandpredictedresults,Damagebehaiorinceramicplasma-coatedanduncoatedglasswithsteel-ballimpact。
简介:Dropimpacttest-mechanics&physicsoffailure;Drop-impactsimulationandexperimentalverificationforspindlefixationofvideoandaudiomodule;Ductile-brittletransitionevaluationofJapaneseswordandweldmetalsusingminiaturizedimpactspecimens;Dynamicbehaviorofhighpolymerswithfocusonamacrolon;DynamicJ{sub}Rcurvesof308stainlesssteelweldfrominstrumentedimpacttestofunprecrackedCharpyV-notchspecimens;Dynamicmechanicalanalysisandtougheningmechanismsofpolycarbonateand4,4'-dihydorxydiphenylcopolycarbonate;……
简介:围绕汽车的制动踏板特性展开研究,揭示了制动减速度、制动管路压力、踏板位移以及踏板力之间的变化关系。建立面向制动踏板感觉的制动系统各元件的动力学模型,并在AMESim软件中建立相应的静态/动态仿真模型,结合实车试验验证了仿真模型。基于模型研究了橡胶反作用盘刚度以及制动软管变形对踏板特性的影响。采用制动踏板感觉指数(BrakeFeelingIndex,BFI)评价体系对试验样车的制动踏板进行客观评价,并提出了优化方案。优化结果表明,通过减小制动盘与制动块之间的间隙,提高制动软管杨氏模量以及橡胶反作用盘刚度等措施,能够显著改善现有的制动踏板感觉,从而为设计出具有良好踏板感觉的制动系统奠定理论基础。
简介:赛车的设计目标是将所用轮胎的附着力极限尽可能地发挥,这需要动力、传动、悬架和转向系统的共同配合,充分了解所用轮胎的力学特性则是设计一款赛车的重要基础。Hoosier18×6—10R25B和Hoosier20.5×7—13R25B是两款FSAE领域较常用的轮胎,基于美国FSAETTC(FSAETireTestConsortium)有偿提供的轮胎试验数据,对二者的纵向力学特性进行了魔术公式拟合,并对两款轮胎在不同垂直载荷、外倾角和胎压下的纵向力学特性进行了介绍和对比。由于FSAE常用轮胎的力学特性很难获得,可以为国内各FSAE车队的赛车设计提供借鉴。