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It is found that the oil absorption and the linear expansion of the OSP modified hardened cement paste (MHCP) are greatly increased compared to the blank hardened cement paste (BHCP).
The main components of the material are hardened cement paste (HCP) and quartz aggregates.
In this study, strain rate effect on time-dependent deformation and mechanical properties of hardened cement pastes is investigated by performing continuous stiffness measurement (CSM).
The complexity of modelling cement-based systems is emphasized and the specific features of models for hardening and hardened cement pastes are briefly described.
It was shown that it is possible to evaluate the properties of hardened cement paste by TPM using LT-DSC.
Then the influence of nano-SiO2 particles-reinforcement on properties of hardened cement paste has been studied.
The compressive strength, ultrasonic pulse velocity, and electrical conductivity were measured as the properties of hardened cement paste.
When large amounts of Ca(OH 2 from hardened cement paste were attached to the surface of the RFAs and mixed with distilled water, alkaline ions are continuously eluted, resulting in pH values exceeding 11.5.
The significant improvement of F S model is that it incorporates the structural function of the interlayer water in C S H 'particle', and emphasizes the importance of interlayer water in the mechanical and physical properties of hardened cement.
Firstly, the microstructure of hardened cement pastes was investigated by SEM-BSE/EDX analysis.
Results show that gypsum microsphere has the ability to compensate for volume shrinkage of hardened cement.
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