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Vibration Fatigue by Spectral Methods: From Structural Dynamics to Fatigue Damage – Theory and Experiments

Autor Janko Slavic, Miha Boltezar, Matjaz Mrsnik, Martin Cesnik, Jaka Javh
en Limba Engleză Paperback – 19 aug 2020
Vibration Fatigue by Spectral Methods relates the structural dynamics theory to the high-cycle vibration fatigue. The book begins with structural dynamics theory and relates the uniaxial and multiaxial vibration fatigue to the underlying structural dynamics and signal processing theory. Organized in two parts, part I gives the theoretical background and part II the selected experimental research. The time- and frequency- domain aspects of signal processing in general, related to structural dynamics and counting methods are covered in detail. It also covers all the underlying theory in structural dynamics, signal processing, uniaxial & multiaxial fatigue; including non-Gaussianity and non-stationarity. Finally, it provides the latest research on multiaxial vibration fatigue and the non-stationarity and non-Gaussianity effects.
This book is for engineers, graduate students, researchers and industry professionals working in the field of structural durability under random loading and vibrations and also those dealing with fatigue of materials and constructions.


  • Introduces generalized structural dynamics theory of multiaxial vibration fatigue
  • Maximizes understanding of structural dynamics theory in relation to frequency domain fatigue
  • Illustrates connections between experimental work and theory with case studies, cross-referencing, and parallels to accelerated vibration testing
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Specificații

ISBN-13: 9780128221907
ISBN-10: 0128221909
Pagini: 230
Ilustrații: Approx. 130 illustrations (130 in full color)
Dimensiuni: 152 x 229 mm
Greutate: 0.31 kg
Editura: ELSEVIER SCIENCE

Cuprins

1. Introduction
Part 1: Theoretical Background2. Structural Dynamics3. Signal Processing4. Experimental Modal Analysis5. Uniaxial Vibration Fatigue6. Multiaxial Vibration Fatigue7. Vibration Fatigue Analysis Using Modal Decomposition8. Identification of Non-stationary and Non-Gaussian Excitation
Part 2: Experimental Research9. Harmonic Accelerated Vibration-fatigue Testing10. Harmonic vs. Random Excitation11. Frequency Domain Methods for Fatigue Life Estimation12. Multiaxial Vibration Fatigue13. Vibration Fatigue for Non-stationary and Non-Gaussian Excitation