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09-01-2009, 09:31 PM
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Rotating Machinery Vibration: From Analysis to Troubleshooting (With Diskette) (Mechanical Engineering (Marcell Dekker))
By Maurice L. Adams
* Publisher: CRC
* Number Of Pages: 354
* Publication Date: 2000-10-24
* ISBN / ASIN: 0824702581

Book Description
This work describes computer model building, sources and types of vibration, and machine vibration signal analysis. The author, Maurice L. Adams, presents case studies and troubleshooting techniques from his experience. This book comes with a software disk for analysis of general rotor vibration and rotor balancing


:
PrefaceAcknowledgmentsPt. 1 Primer on Rotor Vibration1 Vibration Concepts and Methods 12 Lateral Rotor Vibration Analysis Models 273 Torsional Rotor Vibration Analysis Models 83Pt. 2 Rotor Dynamic Analyses4 RDA Code for Lateral Rotor Vibration Analyses 1115 Bearing and Seal Rotor Dynamics 1496 Turbomachinery Impeller and Blade Effects 201Pt. 3 Monitoring and Diagnostics7 Rotor Vibration Measurement and Acquisition 2258 Vibration Severity Guidelines 2459 Signal Analysis and Identification of Vibration Causes 253Pt. 4 Troubleshooting Case Studies10 Rotor Unbalance and Critical Speed Case Studies 29111 Self-Excited Rotor Vibration Case Studies 30112 Additional Rotor Vibration Problem Cases and Topics 309Index 349







Practical Machinery Vibration Analysis and Predictive Maintenance (Practical Professional)
By Cornelius Scheffer,&nbspParesh Girdhar,

* Publisher: Newnes
* Number Of Pages: 272
* Publication Date: 2004-09-09
* ISBN / ASIN: 0750662751

Book Description:
Machinery Vibration Analysis and Predictive Maintenance provides a detailed examination of the detection, location and diagnosis of faults in rotating and reciprocating machinery using vibration analysis. The basics and underlying physics of vibration signals are first examined. The acquisition and processing of signals is then reviewed followed by a discussion of machinery fault diagnosis using vibration analysis. Hereafter the important issue of rectifying faults that have been identified using vibration analysis is covered. The book also covers the other techniques of predictive maintenance such as oil and particle analysis, ultrasound and infrared thermography. The latest approaches and equipment used together with the latest techniques in vibration analysis emerging from current research are also highlighted.


:
1. Understand the basics of vibration measurement2. Apply vibration analysis for different machinery faults3. Diagnose machinery-related problems with vibration analysis techniques
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Vibration and Shock Handbook (Mechanical Engineering)
By
* Publisher: CRC
* Number Of Pages: 1872
* Publication Date: 2005-06-27
* ISBN / ASIN: 0849315808

Book Description
Vibration and shock are ubiquitous phenomena, and a modern, practical reference for the field is overdue. This impressive new Vibration and Shock Handbook provides a thoroughly up-to-date, convenient, and authoritative reference on the techniques, tools, and data relevant to the modeling, analysis, design, instrumentation, and control of vibration, shock, noise, and acoustics. In 45 chapters contributed by professionals in current practice, the book covers both the theoretical and the practical aspects, including the use of MATLABÂ toolboxes and LabVIEWÂ tools. It provides a wealth of examples and case studies and presents all of the material in a format ideal for easy reference and recollection







Torsional Vibration of Turbo-Machinery
By Duncan Walker
* Publisher: McGraw-Hill Professional
* Number Of Pages: 189
* Publication Date: 2003-10-31
* ISBN / ASIN: 0071430377

Book Description:
Vibration, excessive noise and other dynamics-related problems that limit or prevent operation are a major manufacturing concern in airplanes, auto crankshafts, home appliances, etc. This detailed monograph provides in-depth coverage of state-of-the-art vibration analysis techniques used to prevent design and operational malfunction.

:
* Torsional vibration mathematical modeling* Forced response analysis* Vibration measurement methods and monitoring* Application case studies* SI units used throughout
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Inverse Problems in Vibration: Second Edition (Solid Mechanics and Its Applications)
By Graham M.L. Gladwell
* Publisher: Springer
* Number Of Pages: 457
* Publication Date: 2004-08-30
* ISBN / ASIN: 1402026706

About this book
In the first, 1986, edition of this book, inverse problems in vibration were interpreted strictly: problems concerning the reconstruction of a unique, undamped vibrating system, of a specified type, from specified vibratory behaviour, particularly specified natural frequencies and/or natural mode shapes.

In this new edition the scope of the book has been widened to include topics such as isospectral systems- families of systems which all exhibit some specified behaviour; applications of the concept of Toda flow; new, non-classical approaches to inverse Sturm-Liouville problems; qualitative properties of the modes of some finite element models; damage identification.

With its emphasis on analysis, on qualitative results, rather than on computation, the book will appeal to researchers in vibration theory, matrix analysis, differential and integral equations, matrix analysis, non-destructive testing, modal analysis, vibration isolation, etc.

:
1 Matrix analysis 12 Vibrations of discrete systems 193 Jacobi matrices 494 Inverse problems for Jacobi systems 635 Inverse problems for some more general systems 936 Positivity 1187 Isospectral systems 1538 The discrete vibrating beam 1859 Discrete modes and nodes 20210 Green's functions and integral equations 23111 Inversion of continuous second-order systems 28912 A miscellany of inverse problems 33513 The Euler-Bernoulli beam 36814 Continuous modes and nodes 40215 Damage identification 417
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Vibration Simulation Using MATLAB and ANSYS
By Michael R. Hatch

* Publisher: Chapman & Hall/CRC
* Number Of Pages: 654
* Publication Date: 2000-09-21
* ISBN / ASIN: 1584882050
Book Description
Incorporating the use of MATLAB to help with the solution of problems, this text explores the subject of vibration from a fairly sophisticated, mathematical point of view. With a three degree-of-freedom (DOF) system as a unifying theme, the author develops the associated equations of motion, then in each chapter includes both a closed-form solution and the MATLAB code for solving a problem. The book's unique approach makes it especially useful for engineers who lack experience with state space, and it will prove useful to both the mechanical and control engineering communities in enhancing their ability to communicate









Structural Vibration, Analysis and Damping
By C. Beards
* Publisher: Butterworth-Heinemann
* Number Of Pages: 276
* Publication Date: 1996-05-31
* ISBN / ASIN: 0340645806

Book Description:

Many structures suffer from unwanted vibrations and, although careful analysis at the design stage can minimise these, the vibration levels of many structures are excessive. In this book the entire range of methods of control, both by damping and by excitation, is described in a single volume.

Clear and concise descriptions are given of the techniques for mathematically modelling real structures so that the equations which describe the motion of such structures can be derived. This approach leads to a comprehensive discussion of the analysis of typical models of vibrating structures excited by a range of periodic and random inputs. Careful consideration is also given to the sources of excitation, both internal and external, and the effects of isolation and transmissability. A major part of the book is devoted to damping of structures and many sources of damping are considered, as are the ways of changing damping using both active and passive methods. The numerous worked examples liberally distributed throughout the text, amplify and clarify the theoretical analysis presented. Particular attention is paid to the meaning and interpretation of results, further enhancing the scope and applications of analysis. Over 80 problems are included with answers and worked solutions to most. This book provides engineering students, designers and professional engineers with a detailed insight into the principles involved in the analysis and damping of structural vibration while presenting a sound theoretical basis for further study





Vibration Fundamentals and Practice
By Clarence W. de Silva
Publisher: CRC
Number Of Pages: 976
Publication Date: 1999-12-16
ISBN / ASIN: 0849318084

Vibration: Fundamentals and Practice provides the background and techniques that allow successful design, analysis, and modification of vibration in mechanical systems. It focuses on the practical aspects of vibration-the applications and design considerations directly related to modifying vibrational behavior in mechanical devices and structures. The author presents a uniform and coherent treatment of the subject, integrating material on instrumentation, experimentation, design, and control and offering numerous case studies and worked examples. Introduces practical applications and experimental techniques in the very beginning, then uniformly integrates them throughout the book o Provides mathematics and dynamics background in appendices Includes many worked examples and case studies o Describes the industry-standard and state-of-the-art software tools for analysis and design of vibratory systems and illustrates them with examples o Offers analogies to other oscillatory systems, such as electrical and fluid systems, and contrasts these with thermal systems



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ISBN: 0582215846
Title: Introduction to Random Vibrations, Spectral and Wavelet Analysis (3rd Edition)
Author: D.E. Newland
Publisher: Prentice Hall
Publication Date: 1996-02-09
Number Of Pages: 512

This book is a substantially expanded edition of An Introduction to Random Vibrations and Spectral Analysis which now covers wavelet analysis. Basic theory is thoroughly described and illustrated, with a detailed explanation of how discrete wavelet transforms work. Computer algorithms are expalined and supported by examples and set of problems. An appendix lists 10 computer programs for calculating and displaying wavelet transforms

:
1. Introduction to Probability Distributions and Averages.2. Joint Probability Distributions, Ensemble Averages.3. Correlation.4. Fourier Analysis.5. Spectral Density.6. Excitation-Response Relations for Linear Systems.7. Transmission of Random Vibration.8. Statistics of Narrow Band Processes.9. Accuracy of Measurements.10. Digital Spectral Analysis I: Discrete Fourier Transforms.11. Digital Spectral Analysis II: Windows and Smoothing.12. The Fast Fourier Transform.13. Pseudo Random Processes.14. Application Notes.15. Multi-Dimensional Spectral Analysis.16. Response of Continuous Linear Systems to Stationary Random Excitation.17. Discrete Wavelet Analysis
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