简介:本书主要涉及作者多年来所从事的飞行器和重大装备电气液伺服控制基础理论和应用技术的最新研究成果。内容包括:飞行器和重大装备的极限环境,如极端温度(极端高温、极端低温)、振动、冲击和离心加速度;航空液压油、航天煤油、生物质能油电液伺服机构;流体伺服控制元器件,如电液伺服阀、喷嘴挡板阀、射流管伺服阀、气动伺服阀、电液伺服作动器的基本原理;电液伺服控制理论;极端温度下的电液伺服阀基础理论和流场;振动、冲击环境下电液伺服阀基础理论和分析实例;离心加速度环境下电液伺服阀数学模型和分析实例;电液伺服阀优化设计方法;带补偿节流器的电液伺服阀新结构.
简介:DevelopmentStatusofWidebandInterNetworkingengineeringtestandDemonstrationSatellite(WINDS);DevelopmentstatusofWINDS(WidebandlnterNetworkingengineeringtestandDemonstrationSatellite);Dynamicdriving/brakingforcedistributioninelectricvehicleswithindependentlydrivenfourwheels;EnvironmentalstresscrackingofthermoformedABSininnercaseofrefrigerator;ExplosionofanABSpressurizedairline……
简介:RuntimeadaptationofUMTSservicestoavailableresources;Self-learningfuzzysliding-modecontrolforantilockbrakingsystems;Simulatedandexperimentalstudyofhydraulicanti-lockbrakingsystemusingsliding-modePWMcontrol;Slidingmodecontrolonelectro-mechanicalsystems;SMBblockcopolymers,orthepowerofnanostructuration;ThestudyofthestictionfreemagneticrecordingheadwithDLCpad-theoptimizationofDLCpadandABSdesign
简介:AStudyonChemicalResistanceofPC/ABSAlloyforInstrumentPanel;Astudyonsafetydesignprocedureforautomotiveactivesafetysystem;Anti-lockbrakesystemcontrolforbusesbasedonfuzzylogicandasliding-modeobserver;ApplicationofFuzzyControlAlgorithmsforElectricVehicleAntilockBraking/TractionControlSystems;CompatibilizationofNYLON6nanocomposites/ABSblendsusingfunctionalizedmetallocenepolyolefinelastomer……
简介:基于计算流体力学(CFD)方法,采用UG作为阀体的CAD工具,将三维实体导入Gambit实现网格划分,采用Fluent对阀进行流场计算,得到阀的流场特性,反馈指导阀体设计,优化阀的结构。此项研究对于直接驱动伺服阀CAD/CAE一体化设计具有较强的工程应用价值,加快了直接驱动伺服阀的研制过程。