简介:[篇名]Automatedtuningofanenginemanagementunitforanautomotiveengine,[篇名]AutomotiveSignalFaultDiagnostics-PartI:SignalFaultAnalysis,SignalSegmentation,FeatureExtractionandQuasi-OptimalFeatureSelection,[篇名]Automotivetribologyoverviewofcurrentadvancesandchallengesforthefuture,[篇名]CamshaftrollerchaindriveWithreducedmeshingimpactnoiselevels,[篇名]CombatingAutomotiveEngineValveRecession,[篇名]Comparisonofreliabilityenhancementtestsforelectronicequipment,[篇名]Competitivesurfaceinteractionsofcriticaladditiveswithpistonring/cylinderlinearcomponentsunderlubricatedbreaking-inconditions,[篇名]Component-baseddistributedcontrolsystemsforautomotivemanufacturingmachinerydevelopedundertheforesightvehicleprogram,[篇名]Compressionratioinfluenceonmaximumloadofanaturalgas-fueledHCCIengine,[篇名]Computerizedanalysisoffuelsystemsperformancedynamics,[篇名]ConceptsforthecontrolofboostpressureandEGR-rateforaheavydutyengine,[篇名]Conditionmonitoringforacarengineusinghigherordertimefrequencymethod,[篇名]DesignandevaluationoftheELEVATEtwo-strokeautomotiveengine,[篇名]DevelopmentofacheepcreepresistantMg-Al-Zn-Si-basealloy,[篇名]Developmentofanozzle-foulingtestforadditiveratinginheavy-dutyDIdieselengines。
简介:EvaluationoftranscriticalCO{sub}2usinganautomotivecompressorinapackaged-unitarymilitaryECU;Exhaustmanifolddesignforacarenginebasedonenginecyclesimulation;ExhaustparticlenumberandsizedistributionswithconventionalandFischer-Tropschdieselfuels;Finiteelementacousticanalysisofanengineexhaustshieldbysequentiallycoupledmethod;FueladditiveandblendingapproachestoreducingNO{sub}xemissionsfrombiodiesel;HigherOrderTime-FrequencyAnalysisasaToolforHealthMonitoring;Howmodemengineoilscanimpactonemissionreduction;……
简介:Developmentofcombinedsiliconplatenozzles,DevelopmentofEDBMSundercomputersupportedcooperativeworkenvironment,DevelopmentofMineDetectionSix-LeggedWalkingRobotCOMET-Ⅲ,DevelopmentoftheapplicationoftheautomotiveenginetechnologytotheV6four-strokeoutboardmotor,Developmentofthermalfatigueresistantausteniticcastalloysforhigh-temperatureengineexhaustgassystems,Dieselengineelectricturbocompoundtechnology。
简介:上面级姿控发动机常常无条件采取主动温控,喷注管是发动机低温可靠工作的薄弱环节,其低温工作可靠性问题被列为全箭可靠性研究专题之一.基于能量守恒原理,提出推力室毛细喷注管和集合器、喷注板、支架等主要部件在真空深冷环境中耦合传热的物理模型和数学方程,并据此求得一台10N单组元发动机的典型降温规律.计算结果与发动机地面宾空低温模拟试验数据作了比对,两者较为一致.以推力室降温计算结果为推进剂流动降温计算的热边界条件,计算推进剂(单推三)在流过喷注管过程中的降温规律,做出喷注管内推进剂会不会结冰的判定,为姿控发动机的热控设计提供了可靠依据.
简介:本专利涉及的发动机油组分包括:(1)润滑油基础油:(2)油溶性的有机钼盐化合物,钼含量150~3000ppm而且无硫;(3)含硫添加剂,硫含量200~4000ppm;(4)含有≥1%的油溶性硼酸盐,硼含量20~300ppm;(5)钛酸盐,钛含量20~3000ppm;(6)有机磺酸盐0.03%~4%(wt);(7)硫酸盐灰分含量为0.02%~1.2%(wt)的有机酸金属盐;(8)磷含量小于0.08%(wt)的二烷基硫代磷酸盐;(9)0.1%~3.0%(wt)的酚型抗氧剂。含硫添加剂可以是硫化油,也可以是硫化酯,还可以是含硫原子≥3%的聚硫化合物以及含硫原子≥3%的噻重氮化合物。该产品具有优异的抗摩擦性能。