Schmidt-Döhl FM, Schulenberg D, Tralow F, Neubauer J, Wolf J, Ectors D (2022)
Publication Type: Conference contribution
Publication year: 2022
Publisher: Czech Technical University in Prague
Book Volume: 33
Pages Range: 539-545
Conference Proceedings Title: Acta Polytechnica CTU Proceedings
ISBN: 9788001069646
DOI: 10.14311/APP.2022.33.0539
The C-S-H-phase is the most important strength generating phase in concrete and other cementitious materials. The analysis of C-S-H is therefore an important instrument of innovations in the field of concrete and its durability and sustainability. The quantification and insights in C-S-H are hindered by the predominantly amorphous structure of C-S-H. Only the time consuming and expensive solid state nuclear magnetic resonance spectroscopy (NMR) gives a chance to get results, but is restricted to model substances. A new technique, based on the cheap and widespread infrared-spectroscopy (IR) was developed. The quantitative analysis is based on the silicon content in the different structural units of C-S-H and a calibration with natural and synthetic materials with known silicon content in these units. The technique allows to investigate specimens from real structures. Specimens with quartz or limestone aggregate can be analyzed directly. In other cases the aggregates must be separated, for example with heavy liquid separation. Tests with different mortars showed a good correspondence of measured and expected values of C-S-H concentration.
APA:
Schmidt-Döhl, F.M., Schulenberg, D., Tralow, F., Neubauer, J., Wolf, J., & Ectors, D. (2022). QUANTITATIVE ANALYSIS OF THE STRENGTH GENERATING C-S-H-PHASE IN CONCRETE BY IR-SPECTROSCOPY. In Katerina Sojkova, Petr Hajek, Ctislav Fiala (Eds.), Acta Polytechnica CTU Proceedings (pp. 539-545). Prague, CZ: Czech Technical University in Prague.
MLA:
Schmidt-Döhl, Frank Michael, et al. "QUANTITATIVE ANALYSIS OF THE STRENGTH GENERATING C-S-H-PHASE IN CONCRETE BY IR-SPECTROSCOPY." Proceedings of the fib International Conference on Concrete Sustainability 2021, ICCS 2021, Prague Ed. Katerina Sojkova, Petr Hajek, Ctislav Fiala, Czech Technical University in Prague, 2022. 539-545.
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