In Situ Characterization Methodology for the Design and Analysis of Composite Pressure Vessels is popular PDF and ePub book, written by Martin Nebe in 2022-01-21, it is a fantastic choice for those who relish reading online the Technology & Engineering genre. Let's immerse ourselves in this engaging Technology & Engineering book by exploring the summary and details provided below. Remember, In Situ Characterization Methodology for the Design and Analysis of Composite Pressure Vessels can be Read Online from any device for your convenience.

In Situ Characterization Methodology for the Design and Analysis of Composite Pressure Vessels Book PDF Summary

With his work, Martin Nebe provides principal insights into the mechanical response of composite pressure vessels subjected to internal pressure. By establishing and validating an in situ characterization methodology, the vessel’s geometry, its deformation behavior and the damage evolution process under internal pressure loading become accessible. This not only permits to trace back certain phenomena related to the manufacturing of these components but also allows to verify analytical and numerical modeling strategies. The exercised correlation of predicted and experimental results delivers detailed insights into design considerations to composite pressure vessels such as the definition of stacking sequence. The transfer of knowledge to a fullscale vessel geometry, which is representative for the use in fuel cell electric vehicles underlines the industrial application of this work. By combining numerical modeling, filament winding and experimental characterization, this work provides a sound foundation for future developments in the area of composite pressure vessels used for hydrogen storage.

Detail Book of In Situ Characterization Methodology for the Design and Analysis of Composite Pressure Vessels PDF

In Situ Characterization Methodology for the Design and Analysis of Composite Pressure Vessels
  • Author : Martin Nebe
  • Release : 21 January 2022
  • Publisher : Springer Nature
  • ISBN : 9783658357979
  • Genre : Technology & Engineering
  • Total Page : 202 pages
  • Language : English
  • PDF File Size : 13,5 Mb

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