Direct Gear Design, 2nd Edition

Title: Direct Gear Design, 2nd Edition
Author: Alexander L. Kapelevich
ISBN: 0367774569 / 9780367774561
Format: Soft Cover
Pages: 364
Publisher: CRC Press
Year: 2023
Availability: 2 to 3 weeks

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The updated and improved second edition of Direct Gear Design details a nonstandard gear design approach that makes it possible to significantly improve gear drive performance. Providing engineers with gear design solutions beyond standard limits, this book delivers engineers with practical and innovative solutions to optimize gearing technologies.

The majority of modern gears are over-standardized, not allowing gear design engineers to see possible gear design solutions outside of standard limits. The book explores opportunities to improve and optimize gears beyond these limitations. The method of Direct Gear Design has been proven to maximise gear drive performance, increase transmission load capacity and efficiency, and reduce size and weight. Discussing the use of gears made from powder metal and plastic, the book surveys gear manufacture and makes use of extensive references to encourage further exploration of gear design innovation. Additionally, the book provides an overview of manufacturing technologies and traditional gear design, as well as covering topics such as asymmetric gears, tolerance selection and measurement methods of custom gears.

Written accessibly, with a focus on practical examples, this fully updated edition will serve as a guidebook for all professionals exploring high-performance gearing system technologies.

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Preface

Chapter 1 : Historical Overview
Chapter 2 : Macrogeometry of Involute Gears
Chapter 3 : Area of Existence of Involute Gears
Chapter 4 : Involute Gearing Limits
Chapter 5 : Gear Geometry Optimization
Chapter 6 : Stress Analysis and Rating
Chapter 7 : Plastic and Powder Metal Gear Design Specifics
Chapter 8 : Tolerancing and Tolerance Analysis
Chapter 9 : Gear Manufacturing Essentials
Chapter 10 : Traditional vs Direct Gear Design®
Chapter 11 : Direct Gear Design® Applications

Epilogue
References
Index