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2024 | OriginalPaper | Buchkapitel

Field Investigation of Concrete Blocks with Different ASR Reactive Aggregate Types with and Without Surface Hydrophobic Impregnation

verfasst von : K. K. Hansen, B. Grelk, R. Kofoed, J. B. Mørk

Erschienen in: Proceedings of the 17th International Conference on Alkali-Aggregate Reaction in Concrete

Verlag: Springer Nature Switzerland

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Abstract

Previous field investigation of concrete blocks with different ASR reactive aggregate types with and without surface hydrophobic silane impregnation in the period 2018–2023 has shown promising results. The aggregate in some of the first series of test is fast reactive as they contain a high amount (5–6 vol %) of porous calcareous opaline flint (silicified limestone). Over a period of more than 5 years, moisture content (RH) has been continuously measured inside the concrete cubes and registered whether the concrete has developed harmful expansions and/or visible cracks. These measurements have now been continued for more than 5.5 years on the exposure field on the Technical University of Denmark (DTU) near Copenhagen, Denmark.

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Literatur
1.
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2.
Zurück zum Zitat Larsen, L.V., et al.: Controlling ASR in concrete by surface treatment – field performance investigation. In: 16th International Conference on Alkali Aggregate Reaction in Concrete (2021) Larsen, L.V., et al.: Controlling ASR in concrete by surface treatment – field performance investigation. In: 16th International Conference on Alkali Aggregate Reaction in Concrete (2021)
3.
Zurück zum Zitat Fournier, B., Bérubé, M.A.: Alkali-aggregate reaction in concrete: a review of basic concepts and engineering implications. Canadian J. Civil Eng. 27 (2000) Fournier, B., Bérubé, M.A.: Alkali-aggregate reaction in concrete: a review of basic concepts and engineering implications. Canadian J. Civil Eng. 27 (2000)
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Zurück zum Zitat Deschenes, R., Waidner, M., Hale, W.M.: Mitigation of Alkali-Silica reaction in concrete pavements by silane treatment. In: 15th International Conference on Alkali-Aggregate Reaction, 15ICAAR2016, vol. 113 (2016) Deschenes, R., Waidner, M., Hale, W.M.: Mitigation of Alkali-Silica reaction in concrete pavements by silane treatment. In: 15th International Conference on Alkali-Aggregate Reaction, 15ICAAR2016, vol. 113 (2016)
6.
Zurück zum Zitat Thomas, M.D.A., Folliard, K.J., Fournier, B., Rivard, P., Drimalas, T.: Methods for Evaluating and Treating ASR-Affected Structures: Results of Field Application and Demonstration Projects, Vol. I: Summary of Findings and Recommendations. FHWA Office of Pavement Technology, Washington, DC, USA (2013) Thomas, M.D.A., Folliard, K.J., Fournier, B., Rivard, P., Drimalas, T.: Methods for Evaluating and Treating ASR-Affected Structures: Results of Field Application and Demonstration Projects, Vol. I: Summary of Findings and Recommendations. FHWA Office of Pavement Technology, Washington, DC, USA (2013)
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Zurück zum Zitat Olusola, D.O., et al.: Alkali-silica reactions: literature review on the influence of moisture and temperature and the knowledge gap. Materials 2024, 17 (2023) Olusola, D.O., et al.: Alkali-silica reactions: literature review on the influence of moisture and temperature and the knowledge gap. Materials 2024, 17 (2023)
8.
Zurück zum Zitat Mørk, J.B., Hansen, K.K., Grelk, B., Brøndum, A.B.: DTU concrete prism test method - DTU CPT. An assessment of a “new” accelerated test method for alkali silica reactions in concrete for both fast reactive and slow reactive coarse aggregates. In: The 17th International Conference on Alkali-Concrete Reaction (ICAAR 2024) (2024) Mørk, J.B., Hansen, K.K., Grelk, B., Brøndum, A.B.: DTU concrete prism test method - DTU CPT. An assessment of a “new” accelerated test method for alkali silica reactions in concrete for both fast reactive and slow reactive coarse aggregates. In: The 17th International Conference on Alkali-Concrete Reaction (ICAAR 2024) (2024)
Metadaten
Titel
Field Investigation of Concrete Blocks with Different ASR Reactive Aggregate Types with and Without Surface Hydrophobic Impregnation
verfasst von
K. K. Hansen
B. Grelk
R. Kofoed
J. B. Mørk
Copyright-Jahr
2024
DOI
https://doi.org/10.1007/978-3-031-59419-9_64