Udvidet returret til d. 31. januar 2025

Housing Components for Autonomous Underwater Vehicles

Housing Components for Autonomous Underwater Vehiclesaf Pedro Pereira
Bag om Housing Components for Autonomous Underwater Vehicles

The present book details the development process of housing components for a wireless charging system, to be implemented in an AUV, from the concept stage to the final physical verification stage. These products were designed following a design for excellence and modular design philosophy, implementing visual scorecards to measure the success of certain design aspects. For an adequate choice of materials, the Ashby material selection method is implemented. The prototype¿s structural performance was validated via linear static finite element analysis before being outsourced for production. This prototype was further physically verified in a hyperbaric chamber. Results show that the application of FEM, together with well-defined design goals, have a very positive impact in the optimization of the housings, which would have been more time consuming and costly otherwise. Additionally, the Ashby material selection method allowed to equate the material choice, achieving the best performance for the lower cost.

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  • Sprog:
  • Engelsk
  • ISBN:
  • 9786204744254
  • Indbinding:
  • Paperback
  • Sideantal:
  • 120
  • Udgivet:
  • 15. februar 2022
  • Størrelse:
  • 150x8x220 mm.
  • Vægt:
  • 197 g.
  • BLACK WEEK
Leveringstid: 2-3 uger
Forventet levering: 14. december 2024
Forlænget returret til d. 31. januar 2025

Beskrivelse af Housing Components for Autonomous Underwater Vehicles

The present book details the development process of housing components for a wireless charging system, to be implemented in an AUV, from the concept stage to the final physical verification stage. These products were designed following a design for excellence and modular design philosophy, implementing visual scorecards to measure the success of certain design aspects. For an adequate choice of materials, the Ashby material selection method is implemented. The prototype¿s structural performance was validated via linear static finite element analysis before being outsourced for production. This prototype was further physically verified in a hyperbaric chamber. Results show that the application of FEM, together with well-defined design goals, have a very positive impact in the optimization of the housings, which would have been more time consuming and costly otherwise. Additionally, the Ashby material selection method allowed to equate the material choice, achieving the best performance for the lower cost.

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