Stephen P.Radzevich
Theory of Gearing: Kinematics, Geometry, and Synthesis
Theory of Gearing: Kinematics, Geometry, and Synthesis
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- More about Theory of Gearing: Kinematics, Geometry, and Synthesis
This book provides detailed information on optimal gear design, manufacture, and performance, with cutting-edge research on gear design since the previous edition. It also discusses approximate gearing and algorithms for gear design and performance, aiding the reader in designing noiseless gears with the highest possible power density at the lowest possible manufacturing costs.
Format: Hardback
Length: 1154 pages
Publication date: 29 November 2022
Publisher: Taylor & Francis Ltd
Here is the rephrased text:
Gear design is a complex and critical aspect of mechanical engineering, as it plays a vital role in the performance and efficiency of various machines and systems. In this comprehensive textbook, we delve into the rigorous scientific theory behind optimal gear design, manufacture, and performance.
The book begins by introducing the fundamental principles of gear design, including tooth profiles, contact patterns, and material selection. It then discusses cutting-edge research on gear design, enabling engineers to cost-effectively make efficient and sustainable gears. Approximate gearing, along with algorithms for gear design and performance, is also covered in detail.
One of the key chapters in the book focuses on designing noiseless gears, which feature the highest possible power density at the lowest possible manufacturing costs. The author discusses various techniques and methodologies for achieving noiseless gear performance, including finite element analysis, modal analysis, and experimental testing.
Throughout the textbook, real-world examples and case studies are used to illustrate the practical applications of gear design principles. These examples help the reader to understand the challenges and complexities involved in gear design and to apply the theoretical knowledge to real-world scenarios.
In conclusion, this textbook is an essential resource for mechanical engineers, students, and professionals involved in gear design. It provides a comprehensive and up-to-date coverage of the theory, research, and practical aspects of gear design, enabling engineers to create high-performance and cost-effective gears for a wide range of applications.
Gear design is a complex and critical aspect of mechanical engineering, as it plays a vital role in the performance and efficiency of various machines and systems. In this comprehensive textbook, we delve into the rigorous scientific theory behind optimal gear design, manufacture, and performance.
The book begins by introducing the fundamental principles of gear design, including tooth profiles, contact patterns, and material selection. It then discusses cutting-edge research on gear design, enabling engineers to cost-effectively make efficient and sustainable gears.
Approximate gearing, along with algorithms for gear design and performance, is also covered in detail.
One of the key chapters in the book focuses on designing noiseless gears, which feature the highest possible power density at the lowest possible manufacturing costs.
The author discusses various techniques and methodologies for achieving noiseless gear performance, including finite element analysis, modal analysis, and experimental testing.
Throughout the textbook, real-world examples and case studies are used to illustrate the practical applications of gear design principles. These examples help the reader to understand the challenges and complexities involved in gear design and to apply the theoretical knowledge to real-world scenarios.
In conclusion, this textbook is an essential resource for mechanical engineers, students, and professionals involved in gear design. It provides a comprehensive and up-to-date coverage of the theory, research, and practical aspects of gear design, enabling engineers to create high-performance and cost-effective gears for a wide range of applications.
Weight: 2370g
Dimension: 254 x 178 (mm)
ISBN-13: 9781032318578
Edition number: 3 ed
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