Code underlying the MSc. thesis: Limiting microcracks and hydrogen permeability in thermoplastic composites for LH2 storage
doi:10.4121/4303d493-d687-4ded-981b-b1714619097a.v1
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doi: 10.4121/4303d493-d687-4ded-981b-b1714619097a
doi: 10.4121/4303d493-d687-4ded-981b-b1714619097a
Datacite citation style:
van der Helm, Jens; Singh Brar, Arshdeep (2024): Code underlying the MSc. thesis: Limiting microcracks and hydrogen permeability in thermoplastic composites for LH2 storage. Version 1. 4TU.ResearchData. dataset. https://doi.org/10.4121/4303d493-d687-4ded-981b-b1714619097a.v1
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Dataset
As part of an MSc thesis there is researched how microcracking and hydrogen permeability for thermoplastic composites under tensile loading at deep cryogenic conditions can be limited to a predefined level in order to fulfill the requirements for long-life, vacuum-insulated composite liquid hydrogen tanks for civil aviation. As part of this research, there is made use of this XFEM-SCZM model that simulates the materials' mechanical behaviour by creating matrix cracks and delamination. It does so by using Python scripting for Abaqus.
history
- 2024-03-26 first online, published, posted
publisher
4TU.ResearchData
format
*.py, *.cae
references
organizations
TU Delft, Faculty of Aerospace Engineering
DATA
files (3)
- 4,941 bytesMD5:
2f11754084ecb5a7895cbdd384536ba0
README_code.md - 29,608 bytesMD5:
c3b4930e352a18d8d010e46ff9bc551e
Clean_integrated model.py - 11,357 bytesMD5:
86d3f3a95c324c9479bd8986968f4327
LICENSE.txt -
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