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Luigi Romano

Advanced Brush Tyre Modelling

Advanced Brush Tyre Modelling

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This book provides an in-depth understanding of tire dynamics, covering classic theory, analytical results, transient phenomena, large camber angles, and approximated theories. It is suitable for vehicle dynamics applications and offers exact solutions to the rolling contact problem.

Format: Paperback / softback
Length: 125 pages
Publication date: 28 April 2022
Publisher: Springer Nature Switzerland AG


This comprehensive book delves into the intricate world of tire dynamics, offering a deep understanding of its principles. In the first three chapters, new concepts are introduced, building upon the foundational theory. Analytical results are derived meticulously, guiding the reader step-by-step through the governing equations of the model. Transient phenomena are explained in a straightforward manner, employing the brush theory to simplify complex concepts. The analysis is extended to cover cases of large camber angles, often overlooked, ensuring a comprehensive treatment.

The principal mechanisms behind the transient generation of tire forces and moment are explored in broad terms, providing a foundational understanding. Exact solutions to the rolling contact problem are presented for simple contact geometries, offering a practical tool for analysis.

The final part of the book is dedicated to approximated theories of transient generation of tire forces and moment. Two distinct models are presented, tailored for vehicle dynamics applications. These models are compared, highlighting their strengths and weaknesses, and providing valuable insights into the complex dynamics of tires.

By encompassing a wide range of topics and presenting detailed analysis, this book serves as a valuable resource for researchers, engineers, and students interested in tire dynamics and vehicle performance. Its comprehensive nature and clear explanations make it accessible to a broad audience, fostering a deeper understanding of this crucial aspect of automotive engineering.

Weight: 232g
Dimension: 235 x 155 (mm)
ISBN-13: 9783030984342
Edition number: 1st ed. 2022

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