Torsional Vibration of Turbo-Machinery
Step 1. Download Adobe Digital Editions Both PC and Mac users will need to download Adobe Digital Editions to access their eBook. You can download Adobe Digital Editions at Adobe's website here.
Step 2. Register an Adobe ID if you do not already have one. (This step is optional, but allows you to open the file on multiple devices) Visit account.Adobe.com to register your Adobe account.
Step 3: Authorize Adobe Digital Editions using your Adobe ID. In Adobe Digital Editions, go to the Help menu. Choose “Authorize Computer.”
Step 4: Open your file with Adobe Digital Editions. Once you’ve linked your Adobe Digital Editions with your Adobe ID, you should be able to access your eBook on any device which supports Adobe Digital Editions and is authorized with your ID. If your eBook does not open in Adobe Digital Editions upon download, please contact customer service
Chapter 1. IntroductionChapter 2. Definitions and UnitsChapter 3. Rotating Machinery Torsional CharacteristicsChapter 4. Torsional Damping CharacteristicsChapter 5. Torsional Vibration Mathematical Modeling Chapter 6. Torsional Vibration Finite ElementsChapter 7. Torsional Natural Frequencies and Mode ShapesChapter 8. Forced Response AnalysisChapter 9. Application Case StudiesChapter 10. Torsional FatigueChapter 11. Machine Torsional Vibration Design RulesChapter 12. Machine Design Modification StrategiesChapter 13. Torsional Vibration Measurement Methods & MonitoringAPPENDIX A: MATHEMATICAL MODEL FOR A GEARED SYSTEMAPPENDIX B: MATHEMATICAL DERIVATION OF TORSION PARAMETERSAPPENDIX C: INTRODUCTION TO VIBRATION ANALYSISAPPENDIX D: INTRODUCTION TO MATRIX ALGEBRAAPPENDIX E: TORSIONAL VIBRATION COMPUTER PROGRAM LISTINGREFERENCESINDEX
Chapter 3. Rotating Machinery Torsional CharacteristicsChapter 4. Torsional Damping CharacteristicsChapter 5. Torsional Vibration Mathematical Modeling Chapter 6. Torsional Vibration Finite ElementsChapter 7. Torsional Natural Frequencies and Mode ShapesChapter 8. Forced Response AnalysisChapter 9. Application Case StudiesChapter 10. Torsional FatigueChapter 11. Machine Torsional Vibration Design RulesChapter 12. Machine Design Modification StrategiesChapter 13. Torsional Vibration Measurement Methods & MonitoringAPPENDIX A: MATHEMATICAL MODEL FOR A GEARED SYSTEMAPPENDIX B: MATHEMATICAL DERIVATION OF TORSION PARAMETERSAPPENDIX C: INTRODUCTION TO VIBRATION ANALYSISAPPENDIX D: INTRODUCTION TO MATRIX ALGEBRAAPPENDIX E: TORSIONAL VIBRATION COMPUTER PROGRAM LISTINGREFERENCESINDEX
Chapter 5. Torsional Vibration Mathematical Modeling Chapter 6. Torsional Vibration Finite ElementsChapter 7. Torsional Natural Frequencies and Mode ShapesChapter 8. Forced Response AnalysisChapter 9. Application Case StudiesChapter 10. Torsional FatigueChapter 11. Machine Torsional Vibration Design RulesChapter 12. Machine Design Modification StrategiesChapter 13. Torsional Vibration Measurement Methods & MonitoringAPPENDIX A: MATHEMATICAL MODEL FOR A GEARED SYSTEMAPPENDIX B: MATHEMATICAL DERIVATION OF TORSION PARAMETERSAPPENDIX C: INTRODUCTION TO VIBRATION ANALYSISAPPENDIX D: INTRODUCTION TO MATRIX ALGEBRAAPPENDIX E: TORSIONAL VIBRATION COMPUTER PROGRAM LISTINGREFERENCESINDEX
Chapter 7. Torsional Natural Frequencies and Mode ShapesChapter 8. Forced Response AnalysisChapter 9. Application Case StudiesChapter 10. Torsional FatigueChapter 11. Machine Torsional Vibration Design RulesChapter 12. Machine Design Modification StrategiesChapter 13. Torsional Vibration Measurement Methods & MonitoringAPPENDIX A: MATHEMATICAL MODEL FOR A GEARED SYSTEMAPPENDIX B: MATHEMATICAL DERIVATION OF TORSION PARAMETERSAPPENDIX C: INTRODUCTION TO VIBRATION ANALYSISAPPENDIX D: INTRODUCTION TO MATRIX ALGEBRAAPPENDIX E: TORSIONAL VIBRATION COMPUTER PROGRAM LISTINGREFERENCESINDEX
Chapter 9. Application Case StudiesChapter 10. Torsional FatigueChapter 11. Machine Torsional Vibration Design RulesChapter 12. Machine Design Modification StrategiesChapter 13. Torsional Vibration Measurement Methods & MonitoringAPPENDIX A: MATHEMATICAL MODEL FOR A GEARED SYSTEMAPPENDIX B: MATHEMATICAL DERIVATION OF TORSION PARAMETERSAPPENDIX C: INTRODUCTION TO VIBRATION ANALYSISAPPENDIX D: INTRODUCTION TO MATRIX ALGEBRAAPPENDIX E: TORSIONAL VIBRATION COMPUTER PROGRAM LISTINGREFERENCESINDEX
Chapter 11. Machine Torsional Vibration Design RulesChapter 12. Machine Design Modification StrategiesChapter 13. Torsional Vibration Measurement Methods & MonitoringAPPENDIX A: MATHEMATICAL MODEL FOR A GEARED SYSTEMAPPENDIX B: MATHEMATICAL DERIVATION OF TORSION PARAMETERSAPPENDIX C: INTRODUCTION TO VIBRATION ANALYSISAPPENDIX D: INTRODUCTION TO MATRIX ALGEBRAAPPENDIX E: TORSIONAL VIBRATION COMPUTER PROGRAM LISTINGREFERENCESINDEX
Chapter 13. Torsional Vibration Measurement Methods & MonitoringAPPENDIX A: MATHEMATICAL MODEL FOR A GEARED SYSTEMAPPENDIX B: MATHEMATICAL DERIVATION OF TORSION PARAMETERSAPPENDIX C: INTRODUCTION TO VIBRATION ANALYSISAPPENDIX D: INTRODUCTION TO MATRIX ALGEBRAAPPENDIX E: TORSIONAL VIBRATION COMPUTER PROGRAM LISTINGREFERENCESINDEX
APPENDIX B: MATHEMATICAL DERIVATION OF TORSION PARAMETERSAPPENDIX C: INTRODUCTION TO VIBRATION ANALYSISAPPENDIX D: INTRODUCTION TO MATRIX ALGEBRAAPPENDIX E: TORSIONAL VIBRATION COMPUTER PROGRAM LISTINGREFERENCESINDEX
APPENDIX D: INTRODUCTION TO MATRIX ALGEBRAAPPENDIX E: TORSIONAL VIBRATION COMPUTER PROGRAM LISTINGREFERENCESINDEX
REFERENCESINDEX
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