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EVERYTHING ENGINEERS MUST KNOW ABOUT MECHANICAL SHOCK AND VIBRATION. . . IN ONE CONVENIENT REFERENCE!
Here is the classic work on shock and vibration—expanded and updated to incorporate the latest advances,theories,and materials—and the only book you'll ever need on the subject.
Written by a team of hands-on internationally recognized experts,HARRIS' SHOCK AND VIBRATION HANDBOOK logically covers three major subject areas:
* The basic theory of shock and vibration
* Measurement,testing,design,and control methodologies
* Practical applications of theory This new Fifth Edition has been completely revised to provide coverage of critical topics such as:
* Application of computers to shock and vibration problems
* Recent advances in the analysis of vibration data
* The use of composite materials
* High-intensity sound-induced vibration
* Protection againstinjuries from shock and vibration
* Design of equipment for shock and vibration environments
* And much more!
Invaluable to engineers specializing in mechanical,aeronatutical,acoustical,civil,electrical,and transportation engineering,HARRIS' SHOCK AND VIBRATION HANDBOOK is a valuable guide to the solution of shock and vibration problems.
| Preface | ||
| Ch. 1 | Introduction | 1.1 |
| Ch. 2 | Basic Vibration Theory | 2.1 |
| Ch. 3 | Vibration of a Resiliently Supported Body | 3.1 |
| Ch. 4 | Nonlinear Vibration | 4.1 |
| Ch. 5 | Self-Excited Vibration | 5.1 |
| Ch. 6 | Dynamic Vibration Absorbers and Auxiliary Mass Dampers | 6.1 |
| Ch. 7 | Vibration of Systems Having Distributed Mass and Elasticity | 7.1 |
| Ch. 8 | Transient Response to Step and Pulse Functions | 8.1 |
| Ch. 9 | Effect of Impact on Structures | 9.1 |
| Ch. 10 | Mechanical Impedance | 10.1 |
| Ch. 11 | Statistical Methods for Analyzing Vibrating Systems | 11.1 |
| Ch. 12 | Vibration Transducers | 12.1 |
| Ch. 13 | Vibration Measurement Instrumentation | 13.1 |
| Ch. 14 | Spectrum Analyzers and Their Use | 14.1 |
| Ch. 15 | Vibration Measurement Techniques | 15.1 |
| Ch. 16 | Condition Monitoring of Machinery | 16.1 |
| Ch. 17 | Strain-Gage Instrumentation | 17.1 |
| Ch. 18 | Calibration of Transducers | 18.1 |
| Ch. 19 | Vibration Standards | 19.1 |
| Ch. 20 | Test Criteria and Specifications | 20.1 |
| Ch. 21 | Modal Analysis and Testing | 21.1 |
| Ch. 22 | Concepts in Vibration Data Analysis | 22.1 |
| Ch. 23 | Concepts in Shock Data Analysis | 23.1 |
| Ch. 24 | Seismically-Induced Vibration of Structures | 24.1 |
| Ch. 25 | Vibration Testing Machines | 25.1 |
| Ch. 26 | Part I: Conventional Shock Testing Machines | 26.1 |
| Ch. 26 | Part II: Pyrotechnic Shock Testing Machines | 26.17 |
| Ch. 27 | Application of Digital Computers | 27.1 |
| Ch. 28 | Part I: Matrix Methods of Analysis | 28.1 |
| Ch. 28 | Part II: Finite Element Models | 28.27 |
| Ch. 29 | Part I: Vibration of Structures Induced by Fluid Flow | 29.1 |
| Ch. 29 | Part II: Vibration of Structures Induced by Wind | 29.21 |
| Ch. 30 | Theory of Vibration Isolation | 30.1 |
| Ch. 31 | Theory of Shock Isolation | 31.1 |
| Ch. 32 | Vibration Isolators | 32.1 |
| Ch. 33 | Selection and Application of Vibration Isolators | 33.1 |
| Ch. 34 | Engineering Properties of Rubber | 34.1 |
| Ch. 35 | Engineering Properties of Metals Used in Equipment Design | 35.1 |
| Ch. 36 | Material Damping and Slip Damping | 36.1 |
| Ch. 37 | Applied Damping Treatments | 37.1 |
| Ch. 38 | Torsional Vibration in Reciprocating and Rotating Machines | 38.1 |
| Ch. 39 | Part I: Balancing of Rotating Machinery | 39.1 |
| Ch. 39 | Part II: Vibration Induced by Shaft Misalignment | 39.37 |
| Ch. 40 | Machine-Tool Vibration | 40.1 |
| Ch. 41 | Package Engineering | 41.1 |
| Ch. 42 | Theory of Equipment Design | 42.1 |
| Ch. 43 | Practice of Equipment Design | 43.1 |
| Ch. 44 | Effects of Shock and Vibration on Humans | 44.1 |
| Index | I.1 |
Overview