1.

Record Nr.

UNINA9910986130303321

Autore

Li Quankun

Titolo

Frequency Domain Nonlinear Vibration Features for Fault Diagnosis in Complex Structures / / by Quankun Li, Xingjian Jing

Pubbl/distr/stampa

Singapore : , : Springer Nature Singapore : , : Imprint : Springer, , 2025

ISBN

9789819617029

Edizione

[1st ed. 2025.]

Descrizione fisica

1 online resource (393 pages)

Altri autori (Persone)

JingXingjian

Disciplina

620.3

Soggetti

Multibody systems

Vibration

Mechanics, Applied

Statics

Aerospace engineering

Astronautics

Engines

Railroad engineering

Multibody Systems and Mechanical Vibrations

Mechanical Statics and Structures

Aerospace Technology and Astronautics

Engine Technology

Rail Vehicles

Lingua di pubblicazione

Inglese

Formato

Materiale a stampa

Livello bibliografico

Monografia

Nota di contenuto

Introduction -- Representation of Complex Structures with the Volterra Series -- Utilising Properties of SOOS TFs to Virtual Beam-like Structures -- A Novel Method based on SOOS TFs and Local Tuning Approach -- An Improved Method based on SOOS TFs for Ring-type Structures -- A Systematic Method based on SOOS TFs for Various Types of Faults -- A Novel OS@DF TF-based Method for Open Beam-type Structures -- A Novel OS@DF TF-based Method for Closed Ring-type Structures -- A Novel OS@DF TF-based Method for Simple Grid-type Structures -- An Integrated OS@DF TF-based Method for Union-type Structures -- One Extended OS@DF TF-based Method for Rotor-



type Structures -- Summary and Overview.

Sommario/riassunto

This book provides a comprehensive introduction to recent advances in frequency domain nonlinear vibration features utilized for fault diagnosis in complex structures in the field of mechanical, civil, aeronautical and aerospace engineering. It illustrates their basic principles, advantages, drawbacks and applications in detail through theoretical analysis and simulation/experimental study. This book focuses on frequency domain nonlinear vibration features and its main contents can be classified into two parts according to the introduced features. One is about features based on the SOOS (second-order output spectrum), and the other is about features based on the OS@DF (output spectrum at the double frequency or the second harmonic frequency). Complex structures in this book include satellites, aeroengines, bridges, pipelines, frames, etc., and corresponding multiple degree-of-freedom (MDOF) models include chain-type, beam-type, ring-like, grid-like, unit-like and rotating models. Detailed theoretical analysis and case demonstration help undergraduates, graduates and researchers have a systematical learning process and understand basic dynamic characteristics of complex structures more thoroughly. Then, some models, methods and results in this book can be a valid reference for the design, optimization and iteration of next-generation complex structures. On the other hand, this book provides a totally new inspiration for fault diagnosis methods combined with artificial intelligence and machine learning algorithms since frequency domain nonlinear vibration features introduced in this book are more sensitive and effective to faults.