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Driveline systems of ground vehicles : theory and design

Author: Aleksandr Fedorovich Andreev; Viachaslau I Kabanau; V V Vant︠s︡evich
Publisher: Boca Raton : CRC Press, ©2010.
Series: Ground vehicle engineering series.
Edition/Format:   eBook : Document : EnglishView all editions and formats
Summary:
"This book presents a comprehensive analytical treatment of driveline research, design, and tests based on energyefficiency, vehicle dynamics, and operational properties requirements." "Structured to be useful to engineers of all levels of experience, university professors and graduate students, the book is based on the R & D projects conducted by the authors. It explores intriguing engineering dilemmas such as how  Read more...
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Genre/Form: Electronic books
Additional Physical Format: Print version:
Andreev, Aleksandr Fedorovich.
Driveline systems of ground vehicles.
Boca Raton : CRC Press, ©2010
(DLC) 2009030197
(OCoLC)318875283
Material Type: Document, Internet resource
Document Type: Internet Resource, Computer File
All Authors / Contributors: Aleksandr Fedorovich Andreev; Viachaslau I Kabanau; V V Vant︠s︡evich
ISBN: 9781439817285 1439817286
OCLC Number: 670725407
Description: 1 online resource (xxxiii, 758 pages) : illustrations.
Contents: Driveline Systems and Vehicle PerformanceBrief Review of Driveline Systems HistoryClassification of Driveline Systems and Power Dividing UnitsWheel Dynamics and Energy EfficiencyVehicle Energy=Fuel Efficiency and Driveline Systems DesignVehicle Performance and Driveline Systems DesignPrinciples of Driveline System Design Interwheel and Interaxle Open and Lockable DifferentialsKinematics and Dynamics of Differentials: The Gear-Ratio ConceptKinematics of a Vehicle with an Interaxle DifferentialTooth Forces in Bevel-Gear DifferentialsRobustness of DifferentialsDesign of Axle=Interwheel DifferentialsDesign of Interaxle Differentials and Transfer CasesDesigning Locking DevicesWheel Power Distribution and Vehicle PerformanceOptimal and Reasonable Differential Gear Ratios: Control Principles Automatic and Manual Positively Engaged Power-Dividing UnitsDesigns of Power-Dividing UnitsKinematic Discrepancy and Generalized Vehicle ParametersWheel Slips and Circumferential Wheel ForcesWheel Power Distributions and Vehicle Energy=Fuel EfficiencyWheel Power Distribution and Vehicle PerformanceOptimal and Reasonable Kinematic Discrepancy: Control Principles Limited Slip DifferentialsTorque Biasing and Locking PerformanceDisk Differentials without Additional LockersDisk Differentials with Cam LockersDisk Differentials with V-LockersWorm-Gear DifferentialsCam-Plunger DifferentialsTorque Sensitive DifferentialsSpeed Sensitive DifferentialsForce Fluctuations in Disk DifferentialsTractive Performance and Yaw Moment of a Drive AxleAsymmetrical Interaxle Differentials Free-Running Differentials and Viscous ClutchesDesign and Operating Principles of Free-Running DifferentialsApplications of Free-Running DifferentialsViscous Clutches: Operation and Design Aspects Combined Automated Mechanical Driveline SystemsVehicle Operational PropertiesA Method of Synthesizing Driveline Systems with Optimal PropertiesObjective Function AnalysisSynthesis of the Properties of Interwheel Power-Dividing UnitsSynthesis of Properties of Interaxle Power-Dividing UnitsSynthesis of Properties of Interwheel and Interaxle Power-Dividing Units Mechatronic Driveline SystemsSimple, Combined, and Integrated Driveline Systems-A Brief OverviewInverse Wheel Dynamics and ControlProactive Assessment of Terrain ConditionsKinematics and Dynamics of Mechanical SubsystemsDesign of Simple and Combined Driveline SystemsDesign of Integrated Driveline SystemsHybrid Driveline Systems Testing of Driveline Systems and Multiwheel Drive VehiclesLaboratory Studies of the Locking Performance of DifferentialsLaboratory Testing of Friction Clutches of DifferentialsLaboratory Tests of Differential Lubrication SystemsField and Road Tests of Wheeled Vehicles
Series Title: Ground vehicle engineering series.
Responsibility: Alexandr F. Andreev, Viachaslau I. Kabanau, Vladimir V. Vantsevich.

Abstract:

Presents analytical and experimental methods and achievements in the design of mechanical and mechatronic driveline systems, including various power dividing units, such as symmetric and  Read more...

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