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Download Kinematics and Dynamics of Machinery By Charles E. Wilson, J. Peter Sadler – Kinematics and Dynamics of Machinery is a comprehensive book for undergraduate mechanical engineers. The book is intended for a single semester basic course on the kinematics and dynamics of machines, helping students understand how moving parts work in tandem in machines to provide useful motion. Students will learn how to design and solve problems dealing with moving parts, linkages, cams, gears, robotic manipulators, and other mechanisms. The book covers a large number of solved and unsolved problems so students will learn how to apply the concepts, and the descriptions are lucid enough that readers will readily absorb even the advanced calculations. The book is also a useful guide to professors and lecturers looking to make the course more interactive and make students learn better.
It is a tool for professors who wish to develop the ability of students to formulate and solve problems involving linkages, cams, gears, robotic manipulators and other mechanisms. There is an emphasis on understanding and utilizing the implications of computed results. Students are expected to explore questions like “What do the results mean?” and “How can you improve the design?”.
Kinematics and Dynamics of Machinery teaches readers how to analyze the motion of machines and mechanisms. Coverage of a broad range of machines and mechanisms with practical applications given top consideration. Mechanisms and Machines. Motion in Machinery. Velocity Analysis of Mechanisms. Acceleration Analysis of Mechanisms. Cams. Spur Gears. Helical, Worm, and Bevel Gears. Drive Trains. Static-Force Analysis. Dynamic-Force Analysis. Synthesis. Introduction to Robotic Manipulators.
This Book is Shared by Mr. Nanth Kumar, EasyEngineering Team thankful to NATHA KUMAR for doing great help to Others with EasyEngineering Team.
1. Mechanisms and Machines: Basic Concepts.
2. Motion in Machinery.
3. Velocity Analysis of Planar and Spatial Mechanisms.
4. Acceleration Analysis of Planar and Spatial Mechanisms.
5. Design and Analysis of Cam and Follower Systems.
6. Spur Gears: Design and Analysis.
7. Helical, Worm, and Bevel Gears: Design and Analysis.
8. Drive Trains: Design and Analysis.
9. Static-Force Analysis.
10. Dynamic-Force Analysis.
12. Introduction to Robotic Manipulators.
Charles E. Wilson is an American Mechanical Engineer and academician currently working as a Professor at the Department of Mechanical Engineering, New Jersey Institute of Technology. A graduate of the Newark College of Engineering and New York University, he obtained his Ph.D. from Brooklyn Polytechnic Institute.
A former U.S. Air Force electronics and armament officer, Dr. Wilson also served as an engineer and consultant for a number of companies. He is a acclaimed authority on functional and design problems in vehicles, machinery, and consumer products.
J. Peter Sadler is an American academician currently working as a Professor at the Department of Mechanical Engineering, University of Kentucky. He completed his undergraduate, postgraduate and doctoral studies at the Rensselaer Polytechnic Institute.
Dr. Sadler has formerly worked at the State University of New York at Buffalo and the University of North Dakota. A registered professional engineer, he has also worked as the editor of the dynamics topics at the Journal of Mechanism and Machine Theory and the associate editor of the Journal of Applied Mechanics and Robotics.
- Publisher: Pearson
- Language: English
- ISBN-10: 0201350998
- ISBN-13: 978-0201350999
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