简介:Developmentofanaluminumtorquerodforheavy-dutytrucksuspension;DevelopmentofDissolutionMethodandUnitOperationUsingVegetableOilforPlasticRecycling;Developmentofferriticstainlesssteelsheetswithexcellentdeepdrawabilityby(111}recrystallizationtexturecontrol;DevelopmentofhighmagneticperformanceP/Msoftmagneticmaterial;Developmentofhigh-strengthmagnesiumalloywire;DevelopmentofLead-freeFree-cuttingSteel;……
简介:[篇名]Alowcostroboticsmachinetendingsystem,[篇名]Anovel,newdirectinjectiontechnologyforin-linecompoundingandmoldingofLFTautomotivestructures,[篇名]Aproposalofhigherprecisionandreducingpressworkingloadinformingofhigh-tensilesteelsheetsforautomobiles,[篇名]AdvancedPlasmaNitridingforAluminumandAluminumAlloys,[篇名]Aluminumalloysheetsforautomotiveparts,[篇名]Anadvancedcastingtechnologyforrecyclingofthehigh-tensilesteelsheetpressedge,[篇名]AnalysisofBendingDeformationBehaviorduringLaserWeldinginCylindricalParts,[篇名]AnalysisofBendingDeformationBehaviorinCylindricalPartsbyCircumferentialWelding-StudyofDeformationBehaviorbyLaserWeldinginMicronorSub-MicronLevelinAutomobileParts(Report1),[篇名]ANALYSISOFDEFORMATIONBEHAVIOROFPIPEUNDERLASERWELDING,[篇名]Analysisofpolyurethanefoamingflow-Part1:applicationoffoamingdensityformulato3-Dflowanalysis,[篇名]Applicationofhydroformingsimulationondevelopmentofautomobileparts,[篇名]Applicationofintensivequenchingtechnologyforsteelparts,[篇名]Applicationofnyloncompositerecycletechnologyforautomotiveapplications,[篇名]Applicationofnyloncompositerecycletechnologytoautomotiveparts,[篇名]Applicationoftitaniumalloysforincreasingautomobileperformance。
简介:Applicationoftubehydroformingtoautomotiveparts,AppliedinvestigationofBio-Plastics,Automotiveapplicationsofmagnesiumalloys,AZ80andZC71/SiC/12pcloseddieforgingsforautomotiveapplications:technicalandeconomicassessmentofpossiblemassproduction,Burnishingversusgrindingforautomotiveparts,CAD-GuidedSensorPlanningforDimensionalInspectioninAutomotiveManufacturing。
简介:一、为什么要使用四轮定位专用调整角度零件?大家知道,车辆在出厂时其悬挂系统的定位角度(基本定位角度有7个)都是根据设计要求预先设定好的.这些定位角度共同用来保证车辆驾驶的舒适性和安全性.但是,由于车辆在售出并行驶一段时间后,这些定位角度会由于交通事故、道路坑洼不平造成的剧烈颠簸(特别是高速行驶时突然遇到不平路面)、底盘零件磨损、更换底盘零件、更换轮胎等原因而产生变化.一旦定位角度由任何一种原因产生变化,就可能产生诸如轮胎异常磨损、车辆跑偏、安全性下降、油耗增多、零件磨损加快、方向盘发沉、车辆发飘等不适症状.有些症状使车辆在高速行驶时非常危险.