Data underlying the research project: [FHBMicro-Fatigue Damage and Healing of Bituminous Materials: from Microscopic Mechanism towards Lifetime Extension]
DOI:10.4121/2ae8216f-a4ee-498d-ae82-546538408ea4.v1
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DOI: 10.4121/2ae8216f-a4ee-498d-ae82-546538408ea4
DOI: 10.4121/2ae8216f-a4ee-498d-ae82-546538408ea4
Datacite citation style:
Gao, Yangming (2023): Data underlying the research project: [FHBMicro-Fatigue Damage and Healing of Bituminous Materials: from Microscopic Mechanism towards Lifetime Extension]. Version 1. 4TU.ResearchData. dataset. https://doi.org/10.4121/2ae8216f-a4ee-498d-ae82-546538408ea4.v1
Other citation styles (APA, Harvard, MLA, Vancouver, Chicago, IEEE) available at Datacite
Dataset
These are datasets belonging to the research project:
FHBMicro-Fatigue Damage and Healing of Bituminous Materials: from Microscopic Mechanism towards Lifetime Extension
The dataset set contains xlsx files
A full description of these datasets can be seen in the readme.txt file.
History
- 2023-05-30 first online, published, posted
Publisher
4TU.ResearchDataFormat
*.xlsxFunding
- European Union’s Horizon 2020 research and innovation programme under the Marie Skłodowska-Curie grant agreement No 101030767.
Organizations
Delft University of Technology, Faculty of Civil Engineering & Geosciences, Department of Engineering Structures, Section of Pavement EngineeringDATA
Files (4)
- 1,019 bytesMD5:
0db3d4b1f326578eb4c72252c6d3d1d0
readme.txt - 70,670 bytesMD5:
869143ae13ddd2972f4c5e65522663bd
1_Mass density profile of oxygen molecules during diffusion-RefBit-50C.xlsx - 69,632 bytesMD5:
4c9b8f4bb4e46b8b32c202055231462c
2_Mass density profiles of oxygen molecules after 5 ns diffusion (25, 50 and 100 C).xlsx - 17,399 bytesMD5:
626958609532dc8096f9091440da12dd
3_Diffusion coefficient of oxygen molecules.xlsx -
download all files (zip)
158,720 bytes unzipped