4.7 Article

Effects of SAP characteristics on internal curing of UHPC matrix

期刊

CONSTRUCTION AND BUILDING MATERIALS
卷 280, 期 -, 页码 -

出版社

ELSEVIER SCI LTD
DOI: 10.1016/j.conbuildmat.2021.122530

关键词

SAP; Internal curing; Ultra-high performance concrete; Autogenous shrinkage; Hydration

资金

  1. Ministry of Science and Technology [2018YFC0705400]
  2. Department of Science and Technology of Hunan Province [2020RC2034]
  3. Center for Infrastructure Engineering Studies (CIES) at Missouri University of Science and Technology (Missouri ST)

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The study investigated the influence of different characteristics of SAP on its performance as an internal curing agent in UHPC. It was found that the particle size, content, and pre-treatment of SAP can affect the hydration degree and autogenous shrinkage of cementitious materials.
Superabsorbent polymer (SAP) is an effective internal curing agent, and its efficiency is highly dependent on its physical and chemical characteristics. This study investigates the effect of molecular structure, size, content and pre-treatment of SAP on its performance as an internal curing agent in ultra-high performance concrete (UHPC) through the measurement of internal relative humidity, heat of hydration evolution, autogenous shrinkage, and compressive strength. Two types of SAP (ionic and non-ionic) at three contents of 0.2%, 0.4%, and 0.6% were used at the dry state. The ionic SAP was used in two sizes of 471.3 and 95.1 um to study the effect of SAP size on the efficiency of internal curing. On the other hand, selected ionic SAPs were prewetted by additional water before mixing (0.4% by mass). Results showed that non-ionic small particle size SAP exhibited a higher restraining effect on autogenous shrinkage. The incorporation of SAP can significantly increase the cumulative heat after 15 h, and thus increase the degree of hydration of cementitious materials in UHPC. However, the investigated SAP characteristics showed no significant effect on the cumulative heat of hydration within the tested period of 72 h. The addition of pre-wetted SAP increased the autogenous shrinkage and delayed the hydration, compared to the dry SAP particles with additional water. Finally, the autogenous shrinkage of UHPC was fitted with several published prediction models, and an optimized model was proposed to predict autogenous shrinkage with respect to internal relative humidity and heat of hydration. (C) 2021 Elsevier Ltd. All rights reserved.

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