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Adequate depth of cement penetration and cement mantle thickness is important for the durability of cemented cups.
Consequently, these experimental data were used to generate the empirical equation for predicting long term required cover depth of cement and fly ash concretes to protect against the initial corrosion of reinforcing steel in a marine environment.
The depth of cement penetration (Pd) could be derived from these measurements: Pd = Wcw – Wcp.
If possible, both depth of cement penetration and cement mantle thickness should be considered.
The depth of cement penetration and cement penetration area were similar for the two cups (Table 2).
As mentioned previously, the depth of cement penetration and cement mantle thickness were similar in both groups.
Similar(42)
To quantify the leaching development, the leaching depths of cement pastes specimens were measured after leaching for particular durations.
Firstly, micro X-ray computed tomography (X-ray CT) was used to monitor the carbonation depth evolution of cement mortar with different additions of blast furnace slag (BFS).
The results indicated that the preceding exposure to leaching increased the subsequent carbonation depth of the cement-based products.
Based on the electrochemical modification, we also predict the carbonation depth of blended cements with different slag contents.
We determined the quantitative relationship between electrochemical properties and chloride penetration depth in order to successfully predict the chloride ion penetration depth of blended cements with varying fly ash content.
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