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Vehicle Dynamics: Theory and Application

Autor Reza N. Jazar
en Limba Engleză Paperback – aug 2018
This intermediate textbook is appropriate for students in vehicle dynamics courses, in their last year of undergraduate study or their first year of graduate study. It is also appropriate for mechanical engineers, automotive engineers, and researchers in the area of vehicle dynamics for continuing education or as a reference. It addresses fundamental and advanced topics, and a basic knowledge of kinematics and dynamics, as well as numerical methods, is expected.
The contents are kept at a theoretical-practical level, with a strong emphasis on application. This third edition has been reduced by 25%, to allow for coverage over one semester, as opposed to the previous edition that needed two semesters for coverage. The textbook is composed of four parts:
  • Vehicle Motion: covers tire dynamics, forward vehicle dynamics, and driveline dynamics
  • Vehicle Kinematics: covers applied kinematics, applied mechanisms, steering dynamics, and suspension mechanisms
  • Vehicle Dynamics: covers applied dynamics, vehicle planar dynamics, and vehicle roll dynamics
  • Vehicle Vibration: covers applied vibrations, vehicle vibrations, and suspension optimization
Vehicle dynamics concepts are covered in detail, with a concentration on their practical uses. Also provided are related theorems and formal proofs, along with case examples. Readers appreciate the user-friendly presentation of the science and engineering of the mechanical aspects of vehicles, and learn how to analyze and optimize vehicles’ handling and ride dynamics.

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Specificații

ISBN-13: 9783319851556
ISBN-10: 3319851551
Pagini: 988
Ilustrații: XXIV, 988 p. 603 illus., 311 illus. in color.
Dimensiuni: 210 x 279 mm
Greutate: 2.59 kg
Ediția:Softcover reprint of the original 3rd ed. 2017
Editura: Springer International Publishing
Colecția Springer
Locul publicării:Cham, Switzerland

Cuprins

Tire Dynamics.- Forward Vehicle Dynamics.- Driveline Dynamics.- Applied Kinematics.- Applied Mechanisms.- Steering Dynamics.- Suspension Mechanisms.- Applied Dynamics.- Vehicle Planar Dynamics.- Vehicle Roll Dynamics.- Applied Vibrations.- Vehicle Vibrations.- Suspension Optimization.

Recenzii

Selected by Choice magazine as an Outstanding Academic Title for 2017
“This work remains one of the best organized and pedagogically sound treatments of the dynamics of vehicles available. It is well suited for a course in vehicle dynamics for upper-level undergraduate and graduate students in mechanical engineering. Summing Up: Essential. Upper-division undergraduates and above.” (A. M. Strauss, Choice, Vol. 55 (4), December, 2017)


Notă biografică

Reza N. Jazar is Professor and Head of Mechanical and Automotive Engineering at the School of Aerospace, Mechanical and Manufacturing Engineering at RMIT University in Australia.

Textul de pe ultima copertă

This intermediate textbook is appropriate for students in vehicle dynamics courses, in their last year of undergraduate study or their first year of graduate study. It is also appropriate for mechanical engineers, automotive engineers, and researchers in the area of vehicle dynamics for continuing education or as a reference. It addresses fundamental and advanced topics, and a basic knowledge of kinematics and dynamics, as well as numerical methods, is expected.
The contents are kept at a theoretical-practical level, with a strong emphasis on application. This third edition has been reduced by 25%, to allow for coverage over one semester, as opposed to the previous edition that needed two semesters for coverage. The textbook is composed of four parts:
  • Vehicle Motion: covers tire dynamics, forward vehicle dynamics, and driveline dynamics
  • Vehicle Kinematics: covers applied kinematics, applied mechanisms, steering dynamics, and  suspension mechanisms
  • Vehicle Dynamics: covers applied dynamics, vehicle planar dynamics, and vehicle roll dynamics
  • Vehicle Vibration: covers applied vibrations, vehicle vibrations, and suspension optimization
Vehicle dynamics concepts are covered in detail, with a concentration on their practical uses. Also provided are related theorems and formal proofs, along with case examples. Readers appreciate the user-friendly presentation of the science and engineering of the mechanical aspects of vehicles, and learn how to analyze and optimize vehicles’ handling and ride dynamics.


Caracteristici

Written with an emphasis on the physical meaning and application of concepts Uses a “fact-reason-application” structure: the “fact” is the main subject introduced in each section, the “reason” is the proof, and the “application” is examined in examples Covers modeling, analysis, and optimization of multi-body dynamics

Descriere

Descriere de la o altă ediție sau format:
This intermediate textbook is appropriate for students in vehicle dynamics courses, in their last year of undergraduate study or their first year of graduate study. It is also appropriate for mechanical engineers, automotive engineers, and researchers in the area of vehicle dynamics for continuing education or as a reference. It addresses fundamental and advanced topics, and a basic knowledge of kinematics and dynamics, as well as numerical methods, is expected.
The contents are kept at a theoretical-practical level, with a strong emphasis on application. This third edition has been reduced by 25%, to allow for coverage over one semester, as opposed to the previous edition that needed two semesters for coverage. The textbook is composed of four parts:
  • Vehicle Motion: covers tire dynamics, forward vehicle dynamics, and driveline dynamics
  • Vehicle Kinematics: covers applied kinematics, applied mechanisms, steering dynamics, and suspension mechanisms
  • Vehicle Dynamics: covers applied dynamics, vehicle planar dynamics, and vehicle roll dynamics
  • Vehicle Vibration: covers applied vibrations, vehicle vibrations, and suspension optimization
Vehicle dynamics concepts are covered in detail, with a concentration on their practical uses. Also provided are related theorems and formal proofs, along with case examples. Readers appreciate the user-friendly presentation of the science and engineering of the mechanical aspects of vehicles, and learn how to analyze and optimize vehicles’ handling and ride dynamics.