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ENGINEERING VIBRATION
  • DANIEL J.INMAN 著
  • 出版社: PEARSON EDUCATION
  • ISBN:0130174483
  • 出版时间:2001
  • 标注页数:621页
  • 文件大小:83MB
  • 文件页数:636页
  • 主题词:

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图书目录

1 INTRODUCTION1

1.1 Introduction to Free Vibration2

1.2 Harmonic Motion8

1.3 Viscous Damping14

1.4 Modeling and Energy Methods23

1.5 Stiffness34

1.6 Measurement43

1.7 Design Considerations48

1.8 Stability53

1.9 Numerical Simulation of the Time Response56

1.10 Coulomb Friction and the Pendulum65

Problems77

MATLAB Engineering Vibration Toolbox87

Toolbox Problems88

2 RESPONSE TO HARMONIC EXCITATION89

2.1 Harmonic Excitation of Undamped Systems90

2.2 Harmonic Excitation of Damped Systems97

2.3 Alternative Representations106

2.4 Base Excitation112

2.5 Rotating Unbalance120

2.6 Measurement125

2.7 Other Forms of Damping129

2.8 Numerical Simulation and Design139

2.9 Nonlinear Response Properties147

Problems156

MATLAB Engineering Vibration Toolbox167

Toolbox Problems167

3 GENERAL FORCED RESPONSE168

3.1 Impulse Response Function170

3.2 Response to an Arbitrary Input177

3.3 Response to an Arbitrary Periodic Input183

3.4 Transform Methods190

3.5 Response to Random Inputs194

3.6 Shock Spectrum202

3.7 Measurement via Transfer Functions206

3.8 Stability209

3.9 Numerical Simulation of the Response213

3.10 Nonlinear Response Properties224

Problems232

MATLAB Engineering Vibration Toolbox242

Toolbox Problems242

4 MULTIPLE-DEGREE-OF-FREEDOM SYSTEMS243

4.1 Two-Degree-of-Freedom Model (Undamped)244

4.2 Eigenvalues and Natural Frequencies255

4.3 Modal Analysis267

4.4 More Than Two Degrees of Freedom275

4.5 Systems with Viscous Damping289

4.6 Modal Analysis of the Forced Response294

4.7 Lagrange’s Equations300

4.8 Examples307

4.9 Computational Eigenvalue Problems of Vibration319

4.10 Numerical Simulation of the Time Response337

Problems345

MATLAB Engineering Vibration Toolbox357

Toolbox Problems357

5 DESIGN FOR VIBRATION SUPPRESSION359

5.1 Acceptable Levels of Vibration360

5.2 Vibration Isolation366

5.3 Vibration Absorbers377

5.4 Damping in Vibration Absorption384

5.5 Optimization391

5.6 Viscoelastic Damping Treatments399

5.7 Critical Speeds of Rotating Disks404

5.8 Active Vibration Suppression410

5.9 Practical Isolation Design412

Problems420

MATLAB Engineering Vibration Toolbox430

Toolbox Problems430

6 DISTRIBUTED-PARAMETER SYSTEMS431

6.1 Vibration of a String or Cable433

6.2 Modes and Natural Frequencies436

6.3 Vibration of Rods and Bars446

6.4 Torsional Vibration452

6.5 Bending Vibration of a Beam458

6.6 Vibration of Membranes and Plates470

6.7 Models of Damping475

6.8 Modal Analysis and the Forced Response480

Problems487

MATLAB Engineering Vibration Toolbox493

Toolbox Problems493

7 VIBRATION TESTING AND EXPERIMENTAL MODAL ANALYSIS495

7.1 Measurement Hardware497

7.2 Digital Signal Processing501

7.3 Random Signal Analysis in Testing506

7.4 Modal Data Extraction509

7.5 Model Parameter by Circle Fitting513

7.6 Mode Shape Measurement517

7.7 Vibration Testing for Endurance and Diagnostics523

7.8 Operational Deflection Shape Measurement526

Problems528

MATLAB Engineering Vibration Toolbox532

Toolbox Problems532

8 FINITE ELEMENT METHOD533

8.1 Example:The Bar535

8.2 Three-Element Bar541

8.3 Beam Elements546

8.4 Lumped Mass Matrices553

8.5 Trusses556

8.6 Model Reduction560

Problems563

MATLAB Engineering Vibration Toolbox570

Toolbox Problems570

APPENDIX A COMPLEX NUMBERS AND FUNCTIONS571

APPENDIX B LAPLACE TRANSFORMS577

APPENDIX C MATRIX BASICS582

APPENDIX D THE VIBRATION LITERATURE594

APPENDIX E LIST OF SYMBOLS595

APPENDIX F INTRODUCTION TO MATLAB,MATHCAD AND MATHEMATICA600

APPENDIX G ENGINEERING VIBRATION TOOLBOX AND WEB SUPPORT601

REFERENCES603

ANSWERS TO SELECTED PROBLEMS605

INDEX611

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