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Development of vibration based method
Details
Due to highly competitive global markets, the breakdown of gas turbine is the single biggest operating parameters in terms of production loss, repair cost, and safety. Blade failure is regarded as one of the most critical problems on gas turbine and always causes critical failure. Consequently, the early faults detection of blade damage becomes more attractive to many developers to improve the inspection technique and minimize such critical downtimes. The research presented in this dissertation is based on theoretical modelling used to develop vibration based techniques to distinguish combined faults of crack and support looseness in a cantilever beam, representing a turbine blade. There are three vibration based methods studied in this work, which comprise of modal analysis, response analysis, and spectrum analysis. All of them are simulated by the Finite Element (FE) modelling and analysis incorporating with simplified crack model, which gives good accuracy at few low frequency modes, to validate each method through similar algorithms. The study on a cantilever beam model in each method consists of four conditions; no fault, root looseness fault, crack fault, and combined faults.
Autorentext
I have 10 years working experience in Maintenance and reliability functions that covers the areas of mechanical engineering, maintenance execution of critical machines, shutdown management, failure root cause analysis, project commissioning and start up, contract management, reliability engineering and asset reliability and integrity management.
Weitere Informationen
- Allgemeine Informationen
- GTIN 09783846585955
- Auflage Aufl.
- Sprache Englisch
- Genre Maschinenbau
- Anzahl Seiten 112
- Größe H220mm x B150mm x T8mm
- Jahr 2016
- EAN 9783846585955
- Format Kartonierter Einband
- ISBN 3846585955
- Veröffentlichung 01.07.2016
- Titel Development of vibration based method
- Autor Krissanapong Wongsawarng , Jyoti Sinha
- Untertitel to distinguish support looseness and crack on a cantilever beam
- Gewicht 185g
- Herausgeber LAP Lambert Academic Publishing