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Modern Vibrations Primer provides up-to-date material not only on fundamental methods of analysis, but on practical applications in industry. The author develops concepts from the bottom up, devoting the first few chapters to material covered in the first few pages of most other vibrations texts. He offers step-by-step instruction for converting real-life problems into simplified models for analysis, and presents mathematics and physical reasoning side-by-side. Later chapters focus on method widely used in industry. This is a clear, highly readable text with a progressive, lecture-like…mehr

Produktbeschreibung
Modern Vibrations Primer provides up-to-date material not only on fundamental methods of analysis, but on practical applications in industry. The author develops concepts from the bottom up, devoting the first few chapters to material covered in the first few pages of most other vibrations texts. He offers step-by-step instruction for converting real-life problems into simplified models for analysis, and presents mathematics and physical reasoning side-by-side. Later chapters focus on method widely used in industry. This is a clear, highly readable text with a progressive, lecture-like presentation. TOC:Introduction.- Formulation of Translational Problems.- Formulation of Rotational Problems.- Undamped Free Vibration.- Energy Methods for Natural Frequency.- Approximations for Distributed Systems.- Periodic Force Excitation of Undamped Systems.- Unbalanced Excitation.- Rotating Shafts.- Damped Free Vibration.- Periodic Excitation of Damped Systems.- Unbalanced Excitation of Damped Systems.- Base Excitation of Damped systems.- Transients by Convolution, Transforms, and Numerical Simulation.- Shock Spectra.- Random Vibrations.- Multi-Mass Systems.- Multi-Directional Motion.- Combined Translation and Rotation.- Energy Methods.- Flexibility Formulation.- Forced Excitation.- Damped Multi-Degree-of-Freedom Systems.- Transfer Matrices.- Wave Equation.- Beams.- Nonlinear Vibrations.- Analytical Solutions.- Approximate Methods.- Nonlinear Damping.- Parametric Excitation.- Forced Solutions.- Chaotic Systems.- Autonomous Oscillations.- Flow-Induced Vibrations.- Flow-Induced Waves.- Active Control.
Autorenporträt
Peter M. Moretti