Rotor Bearing Dynamics Technology Design Guide Part Vii Balancing
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An Introduction to Machinery Analysis and Monitoring
Author | : John Steward Mitchell |
Publisher | : |
Total Pages | : 394 |
Release | : 1981 |
Genre | : Technology & Engineering |
ISBN | : |
This technology has significantly improved reliability and reduced maintenance costs for a broad range of industrial organizations' machinery analysis. For readers who are new to the benefits of on-condition or predictive maintenance, it is an excellent way to gain perspective prior to focusing on specifics of the technology and implementation.
Government Reports Annual Index
Author | : |
Publisher | : |
Total Pages | : 944 |
Release | : 1980 |
Genre | : Government reports announcements & index |
ISBN | : |
Introduction to Dynamics of Rotor-bearing Systems
Author | : Wen Jeng Chen |
Publisher | : Trafford on Demand Pub |
Total Pages | : 469 |
Release | : 2007 |
Genre | : Science |
ISBN | : 9781412051903 |
This book is written as an introduction to rotor-bearing dynamics for practicing engineers and students who are involved in rotordynamics and bearing design. The goal of this book is to provide a step-by-step approach to the understanding of fundamentals of rotor-bearing dynamics by using DyRoBeS(c) . Therefore, the emphasis of this book is on the basic principals, phenomena, modeling, and interpretation of the results. Numerous examples, from a single-degree-of-freedom system to complicated industrial rotating machinery, are employed throughout this book to illustrate these fundamental dynamic behaviors. The concepts in the text are reinforced by parametric studies and numerous illustrative examples and figures. The book begins with a brief discussion of the mathematical modeling of physical dynamic systems and an overview of the basic vibration concepts in Chapter 1. The coordinate systems and the kinematics of the rotor motion are presented in Chapter 2. A simple two-degrees-of-freedom rotor system, the Laval-Jeffcott rotor model, is utilized in Chapter 3 to demonstrate many important phenomena in rotordynamics. This simple 2DOF model provides many valuable physical insights into more practical and complicated systems. Chapter 4 discusses the rotating disk equations and rigid rotor dynamics. Chapter 5 covers the finite element formulation for a rotating shaft element. Chapter 6 deals with various types of bearings, dampers, seals and other interconnection components. All the reaction forces from these components are non-linear in nature. The concept of linearization around the static equilibrium is discussed. Chapter 7 summarizes the lateral vibration study with several practical examples. Various solution techniques and interpretation of the results are discussed. Chapter 8 is devoted to the important subject of torsional vibration. Finally, a brief description of the balancing method, influence coefficient method is presented in Chapter 9.
Fundamentals of Fluid Film Lubrication
Author | : Bernard J. Hamrock |
Publisher | : CRC Press |
Total Pages | : 747 |
Release | : 2004-03-15 |
Genre | : Technology & Engineering |
ISBN | : 1135537755 |
Specifically focusing on fluid film, hydrodynamic, and elastohydrodynamic lubrication, this edition studies the most important principles of fluid film lubrication for the correct design of bearings, gears, and rolling operations, and for the prevention of friction and wear in engineering designs. It explains various theories, procedures, and equations for improved solutions to machining challenges. Providing more than 1120 display equations and an introductory section in each chapter, Fundamentals of Fluid Film Lubrication, Second Edition facilitates the analysis of any machine element that uses fluid film lubrication and strengthens understanding of critical design concepts.