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Polymer physics and superplasticizers
A scaling law approach has been presented which captures the conformation behavior of superplasticizers both in solution and on the adsorbed state. Data from the literature has provided a check on the radius of gyration in solution and the surface occupied by each polymer at the saturation plateau. This has been completed by atomic force measurements that have confirmed that the model correctly captures the molecular structure effect on the polymer layer thickness and the resulting effect on steric hindrance. This represents an important step in understanding the quantitative behavior of superplasticizers.
Polymer physics and superplasticizers
A scaling law approach has been presented which captures the conformation behavior of superplasticizers both in solution and on the adsorbed state. Data from the literature has provided a check on the radius of gyration in solution and the surface occupied by each polymer at the saturation plateau. This has been completed by atomic force measurements that have confirmed that the model correctly captures the molecular structure effect on the polymer layer thickness and the resulting effect on steric hindrance. This represents an important step in understanding the quantitative behavior of superplasticizers.
Polymer physics and superplasticizers
Polymerphysik und Superplastifizierer
Flatt, R.J. (author) / Schober, I. (author) / Raphael, E. (author) / Lesniewska, E. (author) / Plassard, C. (author)
2009
10 Seiten, 8 Bilder, 25 Quellen
Conference paper
English
SP-262-8 Polymer Physics and Superplasticizers
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