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Dynamics of Machinery [electronic resource] : Theory and Applications / by Hans Dresig, Franz Holzweißig.

By: Contributor(s): Material type: TextTextPublisher: Berlin, Heidelberg : Springer Berlin Heidelberg, 2010Description: XII, 544p. 242 illus., 2 illus. in color. online resourceContent type:
  • text
Media type:
  • computer
Carrier type:
  • online resource
ISBN:
  • 9783540899402
Subject(s): Additional physical formats: Printed edition:: No titleDDC classification:
  • 620 23
LOC classification:
  • TA355
  • TA352-356
Online resources:
Contents:
Model Generation and Parameter Identification -- Dynamics of Rigid Machines -- Foundation and Vibration Isolation -- Torsional Oscillators and Longitudinal Oscillators -- Bending Oscillators -- Linear Oscillators with Multiple Degrees of Freedom -- Simple Nonlinear and Self-Excited Oscillators -- Rules for Dynamically Favorable Designs -- Relations to System Dynamics and Mechatronics.
In: Springer eBooksSummary: Dynamic loads and undesired oscillations increase with higher speed of machines. At the same time, industrial safety standards require better vibration reduction. This book covers model generation, parameter identification, balancing of mechanisms, torsional and bending vibrations, vibration isolation, and the dynamic behavior of drives and machine frames as complex systems. Typical dynamic effects, such as the gyroscopic effect, damping and absorption, shocks, resonances of higher order, nonlinear and self-excited vibrations are explained using practical examples. These include manipulators, flywheels, gears, mechanisms, motors, rotors, hammers, block foundations, presses, high speed spindles, cranes, and belts. Various design features, which influence the dynamic behavior, are described. The book includes 60 exercises with detailed solutions. The substantial benefit of this "Dynamics of Machinery" lies in the combination of theory and practical applications and the numerous descriptive examples based on real-world data. T the book addresses graduate students as well as engineers.
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Model Generation and Parameter Identification -- Dynamics of Rigid Machines -- Foundation and Vibration Isolation -- Torsional Oscillators and Longitudinal Oscillators -- Bending Oscillators -- Linear Oscillators with Multiple Degrees of Freedom -- Simple Nonlinear and Self-Excited Oscillators -- Rules for Dynamically Favorable Designs -- Relations to System Dynamics and Mechatronics.

Dynamic loads and undesired oscillations increase with higher speed of machines. At the same time, industrial safety standards require better vibration reduction. This book covers model generation, parameter identification, balancing of mechanisms, torsional and bending vibrations, vibration isolation, and the dynamic behavior of drives and machine frames as complex systems. Typical dynamic effects, such as the gyroscopic effect, damping and absorption, shocks, resonances of higher order, nonlinear and self-excited vibrations are explained using practical examples. These include manipulators, flywheels, gears, mechanisms, motors, rotors, hammers, block foundations, presses, high speed spindles, cranes, and belts. Various design features, which influence the dynamic behavior, are described. The book includes 60 exercises with detailed solutions. The substantial benefit of this "Dynamics of Machinery" lies in the combination of theory and practical applications and the numerous descriptive examples based on real-world data. T the book addresses graduate students as well as engineers.

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