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Dynamic Vibration Absorber And Optimization Technique - Sesadeba Pani - Bog

Dynamic Vibration Absorber And Optimization Techniqueaf Sesadeba Pani
Bag om Dynamic Vibration Absorber And Optimization Technique

The content of this book is to look about different types of vibration ansorber to reduce the amplitude of vibration of all types of supported beam. The best optimization technique is co-related and adopted here using FEA technique. Chapter 1: Discussed introductory part and literature survey which are used still now. chapter 2:Discussed aim and scope of this work. Chapter 3: discussed about theoretically analysis of un-damped/un-damped Parallel dual mass/ J.P. Den Hartog¿s damped dynamic vibration absorbers. etc. Along with look after tuned vibration absorbers and different possible types of model optimum parameters. Chapter 4: Presents give brief about design of dual mass vibration absorber. Chapter 5: discussed optimization of all possible models/dynamic vibration absorber using FEA technique. Chapter 6:Gives conclusion and scope of future work. Chapter 7: possible references.

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  • Sprog:
  • Engelsk
  • ISBN:
  • 9786202519656
  • Indbinding:
  • Paperback
  • Sideantal:
  • 60
  • Udgivet:
  • 1. april 2020
  • Størrelse:
  • 150x4x220 mm.
  • Vægt:
  • 107 g.
  • 1-2 uger.
  • 15. januar 2025
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Forlænget returret til d. 31. januar 2025
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Beskrivelse af Dynamic Vibration Absorber And Optimization Technique

The content of this book is to look about different types of vibration ansorber to reduce the amplitude of vibration of all types of supported beam. The best optimization technique is co-related and adopted here using FEA technique. Chapter 1: Discussed introductory part and literature survey which are used still now. chapter 2:Discussed aim and scope of this work. Chapter 3: discussed about theoretically analysis of un-damped/un-damped Parallel dual mass/ J.P. Den Hartog¿s damped dynamic vibration absorbers. etc. Along with look after tuned vibration absorbers and different possible types of model optimum parameters. Chapter 4: Presents give brief about design of dual mass vibration absorber. Chapter 5: discussed optimization of all possible models/dynamic vibration absorber using FEA technique. Chapter 6:Gives conclusion and scope of future work. Chapter 7: possible references.

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