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Engineering vibration

Engineering vibration (36회 대출)

자료유형
단행본
개인저자
Inman, D. J.
서명 / 저자사항
Engineering vibration / Daniel J. Inman.
발행사항
Englewood Cliffs, N.J. :   Prentice Hall,   c1994.  
형태사항
xv, 560 p. : ill. ; 25 cm. + 1 computer disk (3 1/2 in.).
ISBN
0139517731
일반주기
System requirements for computer disk (Vibration toolbox): PC; DOS; MATLAB or MATLAB student ed.; hard disk and floppy disk drive.  
서지주기
Includes bibliographical references (p. 543-544) and index.
일반주제명
Vibration.
비통제주제어
Vibration, Engineering,,
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001 000000218928
005 19981127105251.0
008 930209s1994 njua b 001 0 eng
010 ▼a 93012425
015 ▼a GB93-52864
020 ▼a 0139517731
040 ▼a DLC ▼c DLC ▼d UKM ▼d SYB
049 1 ▼l 121002577 ▼f 과학
050 0 0 ▼a TA355 ▼b .I519 1994
082 0 0 ▼a 620.3 ▼2 20
090 ▼a 620.3 ▼b I57e
100 1 ▼a Inman, D. J.
245 1 0 ▼a Engineering vibration / ▼c Daniel J. Inman.
260 ▼a Englewood Cliffs, N.J. : ▼b Prentice Hall, ▼c c1994.
300 ▼a xv, 560 p. : ▼b ill. ; ▼c 25 cm. + ▼e 1 computer disk (3 1/2 in.).
500 ▼a System requirements for computer disk (Vibration toolbox): PC; DOS; MATLAB or MATLAB student ed.; hard disk and floppy disk drive.
504 ▼a Includes bibliographical references (p. 543-544) and index.
650 0 ▼a Vibration.
653 0 ▼a Vibration ▼a Engineering

소장정보

No. 소장처 청구기호 등록번호 도서상태 반납예정일 예약 서비스
No. 1 소장처 과학도서관/Sci-Info(2층서고)/ 청구기호 620.3 I57e 등록번호 121002577 도서상태 대출가능 반납예정일 예약 서비스 B M

컨텐츠정보

저자소개

Daniel J. Inman(지은이)

c

정보제공 : Aladin

목차


CONTENTS
PREFACE = xi
1 INTRODUCTION TO VIBRATION AND THE FREE RESPONSE = 1
 1.1 Introduction to Free Vibration = 2
 1.2 Harmonic Motion = 8
 1.3 Viscous Damping = 16
 1.4 Modeling, and Energy Methods = 23
 1.5 Stiffness = 33
 1.6 Measurement = 41
 1.7 Design Considerations = 46
 1.8 Stability = 50
Problems = 53
MATLAB Vibration Tool Box = 58
Tool Box Problems = 59
2 RESPONSE TO HARMONIC EXCITATION = 60
 2.1 Harmonic Excitation of Undamped Systems = 61
 2.2 Harmonic Excitation of Damped Systems = 66
 2.3 Base Excitation = 73
 2.4 Rotating Unbalance = 79
 2.5 Alternative Representations = 83
 2.6 Measurement Devices = 87
 2.7 Coulomb Damping = 91
 2.8 Other Forms of Damping = 98
Problems = 103
MATLAB Vibration Tool Box = 109
Tool Box Problems = 110
3 GENERAL FORCED RESPONSE = 111
 3.1 Impulse Response Function = 113
 3.2 Response to an Arbitrary Input = 116
 3.3 Response to an Arbitrary Periodic Input = 122
 3.4 Transform Methods = 128
 3.5 Response to Random Inputs = 132
 3.6 Shock Spectrum = 139
 3.7 Measurement via Transfer Functions = 142
 3.8 Stability = 145
Problems = 149
MATLAB Vibration Tool Box = 155
Tool Box Problems = 155
4 MULTIPLE-DEGREE-OF-FREEDOM SYSTEMS = 157
 4.1 Two-Degree-of-Freedom Model (Undamped) = 158
 4.2 Eigenvalues and Natural Frequencies = 168
 4.3 Modal Analysis = 178
 4.4 More Than Two Degrees of Freedom = 185
 4.5 Systems with Viscous Damping = 196
 4.6 Modal Analysis of the Forced Response = 201
 4.7 Lagrange's Equations = 205
 4.8 Examples = 211
Problems = 221
MATLAB Vibration Tool Box = 230
Tool Box Problems = 231
5 DESIGN FOR VIBRATION SUPPRESSION = 233
 5.1 Acceptable Levels of Vibration = 234
 5.2 Vibration Isolation = 240
 5.3 Vibration Absorbers = 250
 5.4 Damping in Vibration Absorption = 257
 5.5 Optimization = 264
 5.6 Viscoelastic Damping Treatments = 271
 5.7 Critical Speeds of Rotating Disks = 277
 5.8 Active Vibration Suppression = 282
 5.9 Practical Isolation Design = 284
Problems = 292
MATLAB Vibration Tool Box = 302
Tool Box Problems = 302
6 DISTRIBUTED-PARAMETER SYSTEMS = 303
 6.1 Vibration of a String or Cable = 304
 6.2 Modes and Natural Frequencies = 308
 6.3 Vibration of Rods and Bars = 318
 6.4 Torsional Vibration = 323
 6.5 Bending Vibration of a Beam = 329
 6.6 Vibration of Membranes and Plates = 340
 6.7 Models of Damping = 346
 6.8 Modal Analysis and the Forced Response = 350
Problems = 358
MATLAB Vibration Tool Box = 363
Tool Box Problems = 363
7 VIBRATION TESTING AND EXPERIMENTAL MODAL ANALYSIS = 364
 7.1 Measurement Hardware = 366
 7.2 Digital Signal Processing = 370
 7.3 Random Signal Analysis in Testing = 375
 7.4 Modal Data Extraction = 378
 7.5 Model Parameter by Circle Fitting = 382
 7.6 Mode Shape Measurement = 386
 7.7 Vibration Testing for Endurance and Diagnostics = 392
Problems = 395
MATLAB Vibration Tool Box = 398
Tool Box Problems = 399
8 FINITE ELEMENT METHOD = 400
 8.1 Example: The Bar = 402
 8.2 Three-Element Bar = 408
 8.3 Beam Elements = 412
 8.4 Lumped Mass Matrices = 419
 8.5 Trusses = 421
 8.6 Model Reduction = 426
Problems = 428
MATLAB Vibration Tool Box = 435
Tool Box Problems = 435
9 COMPUTATIONAL CONSIDERATIONS = 437
 9.1 Numerical Errors = 439
 9.2 Influence Coefficients and Dunkerley's Formula = 442
 9.3 Rayleigh's Method = 449
 9.4 Matrix Iteration = 451
 9.5 Eigenvalue Problems of Vibration Analysis = 453
 9.6 Computer Codes for Matrix Computations (MATLAB) = 467
 9.7 Computer Simulation of the Time Response = 475
Problems = 482
10 NONLINEAR VIBRATION = 489
 10.1 Single-Degree-of-Freedom Phase Plots = 491
 10.2 Linearized Equations = 496
 10.3 The Pendulum = 501
 10.4 Nonlinear Damping and Averaging = 505
 10.5 Forced Response by Perturbation = 510
 10.6 Forced Response by Duffing's Method = 514
Problems = 515
MATLAB Vibration Tool Box = 518
Tool Box Problems = 519
APPENDIX A COMPLEX NUMBERS AND FUNCTIONS = 520
APPENDIX B LAPLACE TRANSFORMS = 525
APPENDIX C MATRIX BASICS = 530
APPENDIX D THE VIBRATION LITERATURE = 536
APPENDIX E LIST OF SYMBOLS = 538
REFERENCES = 543
ANSWERS TO SELECTED PROBLEMS = 545
PHOTO CREDITS = 553
INDEX = 554


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