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Novel Topologies for Active Vibration Management in Flexible Rotors

Novel Topologies for Active Vibration Management in Flexible Rotors. Supervisors Patrick KEOGH Necip SAHINKAYA. Researcher Chris LUSTY. University of Bath. Introduction. Vibration is a major consideration in the design of rotating machinery

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Novel Topologies for Active Vibration Management in Flexible Rotors

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  1. Novel Topologies for Active Vibration Management in Flexible Rotors Supervisors Patrick KEOGH Necip SAHINKAYA Researcher Chris LUSTY University of Bath UKACC PhD Presentation Showcase

  2. Introduction • Vibration is a major consideration in the design of rotating machinery • This is especially the case where high speed rotation is involved • Improving the ability to handle vibrations opens up new possibilities in machine design UKACC PhD Presentation Showcase

  3. The Problem • Excessive vibration at certain “critical speeds” can lead to machine damage / failure • Critical speeds are a function of rotor properties • Look to alter rotor properties in such a way as to shift critical speeds UKACC PhD Presentation Showcase

  4. The Problem • A preferable vibration response is shown here: UKACC PhD Presentation Showcase

  5. The Proposed Solution • The solution is conceptually inspired by tuned mass damping UKACC PhD Presentation Showcase

  6. The Proposed Solution • A practical rig has been designed to test the merit of the idea UKACC PhD Presentation Showcase

  7. The Proposed Solution • A practical rig has been designed to test the merit of the idea UKACC PhD Presentation Showcase

  8. Conclusion or summary or future work • A novel topology has been proposed to reduced vibration amplitudes in flexible rotors • It has been shown to be promising by FE analysis • A rig has been designed to practically test the idea • The rig is designed to be progressive, enabling increasingly complex testing to explore the scope of the idea UKACC PhD Presentation Showcase

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