Microscopic to Macroscopic Aspects for Structural Assessment of ISR-Affected Structures—Research Outcomes of JCI-TC211A
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Publisher
Springer Nature Switzerland
Link
https://link.springer.com/content/pdf/10.1007/978-3-031-59349-9_29
Reference13 articles.
1. Takahashi, Y., et al.: A review of numerical models for the performance assessment of concrete structures affected by alkali-silica reaction. J. Adv. Conc. Tech. 21, 655–679 (2023)
2. Miura, T., Multon, S., Kawabata, Y.: Influence of the distribution of expansive sites in aggregates on microscopic damage caused by alkali-silica reaction: insights into the mechanical origin of expansion. Cem. Con. Res. 142, 106355 (2021)
3. Miura, T., Multon, S., Kawabata, Y.: Influence of the expansive sites distribution on alkali-silica reaction expansion under applied stress: crack orientation as a key factor for expansion transfer. Cem. Con. Comp. 144, 105300 (2023)
4. Hansen, S.G., Hoang, L.C.: Anisotropic compressive behavior of concrete from slabs damaged by alkali-silica reaction. Const. Build. Mat. 267, 120377 (2021)
5. Anca, C.F., Frank J.V.: Mechanical properties of alkali-silica reaction-affected concrete. ACI Mater. J. 119, 251–262 (2021). Title No. 119-M21
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