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Numerical and Experimental Study on Vibration Control of Marine Diesel Engin Using MR Dampers

ACKNOWLEDGEMENTS第4-5页
ABSTRACT第5-6页
CHAPTER 1 INTRODUCTION第7-12页
CHAPTER 2.0 PROPERTIES OF MAGNETORHEOLOGICAL FLUIDS第12-24页
    2.1 Magnetorheological Fluids第12-14页
    2.2 Magnetic Materials for MR fluids第14-15页
    2.3 Properties of Commercial MR Fluids第15-16页
    2.4 Rheology of Magnetorheologieal(MR) Fluids第16-17页
    2.5 MR Devices and MR Fluid Dampers第17-18页
    2.6 Semi-Active Control Systems第18-21页
    2.7 Advantages of MR Fluids as Compared to ER Fluids第21-23页
    2.8 Conclusion第23-24页
CHAPTER 3.0 VIBRATION CONTROL STRATEGIES第24-35页
    3.1 Active Vibration Control第24-25页
    3.2 Semi-active Control第25-27页
    3.3 Categories of Control第27-33页
    3.4 PID Controllers第33页
    3.5 Conclusion第33-35页
CHAPTER 4.0 NUMERICAL SIMULATIONS OF THE FOUNDATION第35-74页
    4.1 Engine Excitations第35-37页
    4.2 Theoretical Analysis of the Foundation第37-39页
    4.3 Wire Rope Spring第39-45页
    4.4 MR Damper Characteristics第45-50页
    4.5 Desired Vibration Exciter Characteristics第50-51页
    4.6 Modeling of the Foundation第51-54页
    4.7 Numerical Simulations of the Foundation第54-63页
    4.8 Parametric Study of the Foundation with MR Dampers第63-68页
    4.9 Control Simulations第68-73页
    4.10 Conclusion第73-74页
CHAPTER 5 EXPERIMENTAL SET UP AND RESULTS FOR VIBRATION RESPONSE第74-116页
    5.1 Experimental Set Up第74-80页
    5.2 Data Acquisition and Processing第80-87页
    5.3 Analysis of Dynamic Performance of the Foundation第87-90页
    5.4 Transmissibility Analysis第90-95页
    5.5 Effect of Mass of the Model第95-97页
    5.6 Effect of Excitation Force第97-99页
    5.7 Modal Analysis第99-101页
    5.8 Shock Testing of the Foundation第101-102页
    5.9 Theoretical Modeling第102-104页
    5.10 Experimental Set up for Shock Testing第104-106页
    5.11 Shock Input第106-108页
    5.12 Experimental Results第108-110页
    5.13 Vibration Control第110-115页
    5.14 Conclusion第115-116页
CHAPTER 6.0 COMPARISON OF NUMERICAL AND EXPERIMENTAL RESULTS第116-121页
    6.1 Discussion of the Results第118-121页
CHAPTER 7.0 CONCLUSION AND RECOMMENDATIONS第121-127页
    7.1 Conclusion第121-122页
    7.2 Recommendations第122-124页
    7.3 PROPOSED MODEL第124-127页
References第127-136页
Published Papers第136页

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