Utilize este identificador para referenciar este registo:
https://hdl.handle.net/1822/58463
Título: | Numerical benchmark campaign of COST Action TU1404 – microstructural modelling |
Autor(es): | Wyrzykowski, Mateusz Sanahuja, Julien Charpin, Laurent Königsberger, Markus Hellmich, Christian Pichler, Bernhard Valentini, Luca Honório, Túlio Smilauer, Vit Hajkova, Karolina Ye, Guang Gao, Peng Dunant, Cyrille Hilaire, Adrien Bishnoi, Shashank Azenha, Miguel |
Palavras-chave: | Benchmark Numerical modelling Microstructure COST TU1404 |
Data: | 2017 |
Editora: | RILEM |
Revista: | RILEM Technical Letters |
Resumo(s): | This paper presents the results of the numerical benchmark campaign on modelling of hydration and microstructure development of cementitious materials. This numerical benchmark was performed in the scope of COST Action TU1404 “Towards the next generation of standards for service life of cement‐based materials and structures”. Seven modelling groups took part in the campaign applying different models for prediction of mechanical properties (elastic moduli or compressive strength) in cement pastes and mortars. The simulations were based on published experimental data. The experimental data (both input and results used for validation) were open to the participants. The purpose of the benchmark campaign was to identify the needs of different modelsin terms of input experimental data, verify predictive potential of the models and finally to provide reference casesfor new modelsin the future. The results of the benchmark show that a relatively high scatter in the predictions can arise between different models, in particular at early ages(e.g. elastic Young’s modulus predicted at 1 d in the range 6‐20 GPa), while it reduces at later age, providing relatively good agreement with experimental data. Even though the input data was based on a single experimental dataset, the large differences between the results of the different models were found to be caused by distinct assumed properties for the individual phases at the microstructural level, mainly because of the scatter in the nanoindentation‐derived properties of the C‐S‐H phase. |
Tipo: | Artigo |
URI: | https://hdl.handle.net/1822/58463 |
DOI: | 10.21809/rilemtechlett.2017.44 |
ISSN: | 2518-0231 |
Versão da editora: | https://doi.org/10.21809/rilemtechlett.2017.44 |
Arbitragem científica: | yes |
Acesso: | Acesso restrito UMinho |
Aparece nas coleções: | ISISE - Artigos em Revistas Internacionais |
Ficheiros deste registo:
Ficheiro | Descrição | Tamanho | Formato | |
---|---|---|---|---|
[48].pdf Acesso restrito! | 338,29 kB | Adobe PDF | Ver/Abrir |