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Neutron Radiography Evaluation of Drying in Mortars with and without Shrinkage Reducing Admixtures

Published

Author(s)

Chiara Villani, Catherine Lucero, Dale P. Bentz, Daniel S. Hussey, David L. Jacobson, Jason Weiss

Abstract

Shrinkage Reducing Admixtures (SRAs) are increasingly being used in concrete as a method to minimize shrinkage and restrained shrinkage cracking. SRAs reduce shrinkage by decreasing the surface tension of the pore solution; however, SRAs also impact the fluid viscosity, contact angle and density. Consequently, the absorption and desorption processes of cementitious systems containing SRA are altered. This paper describes experimental measurements of drying in cementitious mortar samples with and without SRAs, focusing on three components. First, solution properties (surface tension, viscosity, and contact angle) were measured at different temperatures. Second, the vapor desorption curves were measured and the non-linear moisture diffusion coefficient was quantified at different relative humidity (degrees of saturation). Third, neutron radiography measurements were performed to visualize and quantify the effect of the presence of SRA in solution on the moisture profiles and drying front generated during the early stages of the drying process. The results will be discussed in terms of theoretical observations in an effort to place the modeling of moisture and shrinkage gradients in concrete on a more fundamental footing.
Proceedings Title
Novel Characterization Techniques and Advanced Cementitious Materials: Tribute to James J. Beaudoin
Conference Dates
October 25-29, 2014
Conference Location
Washington, DC, US
Conference Title
American Concrete Institute Fall Meeting 2014

Keywords

Shrinkage Reducing Admixtures, drying, neutron radiography, desorption isotherm, moisture, moisture gradients

Citation

Villani, C. , Lucero, C. , Bentz, D. , Hussey, D. , Jacobson, D. and Weiss, J. (2015), Neutron Radiography Evaluation of Drying in Mortars with and without Shrinkage Reducing Admixtures, Novel Characterization Techniques and Advanced Cementitious Materials: Tribute to James J. Beaudoin, Washington, DC, US, [online], https://tsapps.nist.gov/publication/get_pdf.cfm?pub_id=917766 (Accessed April 24, 2024)
Created August 2, 2015, Updated October 12, 2021