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Detecting the Water-soluble Chloride Distribution of Cement Paste in a High-precision Way
Published on: November 21, 2017
Study on the Mechanical Properties and Binding Behavior of Chloride in Cement Paste Under Premixed High Concentration
Aiqin Wang1,2, Xixian Du1,2, Gang Li1,2
1College of Water Conservancy & Architectural Engineering, Shihezi University, Shihezi 832000, China.
Abstract:
Chloride erodes steel bars through concrete pores, seriously affecting the durability of reinforced concrete structures. Improving the binding ability to chloride is an important measure. We explored the effects of W/C, curing age, and premixed Cl- concentration on the compressive strength and Cl- binding capacity in cement pastes. The results indicate that a premixed 5% concentration of Cl- can improve the compressive strength, whereas an excessive Cl- negatively impacts the mechanical properties. The total Cl- content in cement pastes is a crucial factor that influences the binding ability of Cl-. When the total Cl- content is within 2% (i.e., the premixed Cl- concentration is 5%), the cement paste has a strong binding ability of Cl-. W/C and curing age indirectly affect the binding ability by affecting the total Cl- content. Furthermore, with the increase in content of Cl-, the adsorption content of Cl- by C-S-H increased, while the proportion of Cl- bound by Fs to the total bound Cl- initially declines and then tends to stabilize. It is worth noting that a premixed concentration of 5% is a "safety limit" for cement paste, but for reinforced concrete, the presence of free Cl- above normative thresholds should not be underestimated.
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