Maintaining the outstanding features and practical approach that led the bestselling first edition to become a standard in both the laboratory and the classroom, this new edition remains a solid reference and instructional tool for modeling, analyzing, simulating, measuring, monitoring, testing, controlling, and designing for vibration in engineering systems. It offers a new chapter on human response to vibration, and includes LabVIEW(TM), SIMULINK®, and MATLAB® software tools. MATLAB and SIMULINK solutions have been added to the original worked examples, and a solutions manual is available with qualifying course adoptions.…mehr
Maintaining the outstanding features and practical approach that led the bestselling first edition to become a standard in both the laboratory and the classroom, this new edition remains a solid reference and instructional tool for modeling, analyzing, simulating, measuring, monitoring, testing, controlling, and designing for vibration in engineering systems. It offers a new chapter on human response to vibration, and includes LabVIEW(TM), SIMULINK®, and MATLAB® software tools. MATLAB and SIMULINK solutions have been added to the original worked examples, and a solutions manual is available with qualifying course adoptions.
Vibration Engineering. Time Response. Frequency Response. Vibration Signal Analysis. Modal Analysis. Distributed-Parameter Systems. Vibration Damping. Vibration Instrumentation. Signal Conditioning and Modification. Vibration Testing and Human Response. Experimental Modal Analysis. Vibration Design and Control. Appendix A: Dynamic Models and Analogies. Appendix B: Newtonian and Lagrangian Mechanics. Appendix C: Review of Linear Algebra. Appendix D: Laplace Transform. Appendix E: Digital Fourier Analysis and FFT. Appendix F: Software Tools. Appendix G: Reliability Considerations for Multi-Component Units. Index.
Vibration Engineering. Time Response. Frequency Response. Vibration Signal Analysis. Modal Analysis. Distributed-Parameter Systems. Vibration Damping. Vibration Instrumentation. Signal Conditioning and Modification. Vibration Testing and Human Response. Experimental Modal Analysis. Vibration Design and Control. Appendix A: Dynamic Models and Analogies. Appendix B: Newtonian and Lagrangian Mechanics. Appendix C: Review of Linear Algebra. Appendix D: Laplace Transform. Appendix E: Digital Fourier Analysis and FFT. Appendix F: Software Tools. Appendix G: Reliability Considerations for Multi-Component Units. Index.
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