Based on the underground reinforced concrete wall of subway stations (Hangzhou, China), this paper studied the influence of a MgO expansive agent (MEA) on deformation and mechanical properties of a reinforced concrete wall. The results show that the effect of the MEA with different activities to compensate for the shrinkage of reinforced concrete walls is different. For MEA-R (60 s), because the activity is too high, its hydration rate is too fast, and many expansions occur at the plastic state of the concrete, which cannot effectively compensate for the shrinkage of concrete. For MEA-S (220 s), due to its low activity, the early hydration rate is so slow that it cannot compensate for the shrinkage, but it compensates well at the later stag...
The combined use of low heat Portland cement (LHC), MgO-based expansive agent (MEA) and shrinkage re...
The high strength and durability of high-performance concrete (HPC) may be significantly reduced by ...
The open section of the west artificial island of the Hong Kong-Zhuhai-Macao Bridge is a mass concre...
Compensation for shrinkages with three kinds of lightly burnt MgO expansive agent (LBMEA) is used in...
Uniquely, China employs MgO already contained in cement clinker or as an expansive additive to compe...
In mass concrete, shrinkage resulting from temperature drop and drying leads to cracking, which can ...
To promote the application of MgO-type expansive agents (MEAs), the expansion stresses produced by c...
Ultra-high performance concrete (UHPC) has a potential cracking risk due to its large autogenous shr...
To mitigate the shrinkage properties of ultra-high performance concrete (UHPC), MgO expansion agents...
Many underground concrete structures suffer from issues of concrete cracking due to shrinkage during...
International audienceAs shrinkage can affect the concrete durability, several solutions were design...
The expansion mechanism of magnesium oxide expansive hydraulic cement as a novel expansive hydraulic...
Magnesia (MgO) either intrinsically contained in cement clinker or prepared separately as expansive ...
In order to further promote the research and application of MgO expansion agent in concrete field, t...
This paper studies the influence of assembly unit of expansive agents (CaO and calcium sulphoalumina...
The combined use of low heat Portland cement (LHC), MgO-based expansive agent (MEA) and shrinkage re...
The high strength and durability of high-performance concrete (HPC) may be significantly reduced by ...
The open section of the west artificial island of the Hong Kong-Zhuhai-Macao Bridge is a mass concre...
Compensation for shrinkages with three kinds of lightly burnt MgO expansive agent (LBMEA) is used in...
Uniquely, China employs MgO already contained in cement clinker or as an expansive additive to compe...
In mass concrete, shrinkage resulting from temperature drop and drying leads to cracking, which can ...
To promote the application of MgO-type expansive agents (MEAs), the expansion stresses produced by c...
Ultra-high performance concrete (UHPC) has a potential cracking risk due to its large autogenous shr...
To mitigate the shrinkage properties of ultra-high performance concrete (UHPC), MgO expansion agents...
Many underground concrete structures suffer from issues of concrete cracking due to shrinkage during...
International audienceAs shrinkage can affect the concrete durability, several solutions were design...
The expansion mechanism of magnesium oxide expansive hydraulic cement as a novel expansive hydraulic...
Magnesia (MgO) either intrinsically contained in cement clinker or prepared separately as expansive ...
In order to further promote the research and application of MgO expansion agent in concrete field, t...
This paper studies the influence of assembly unit of expansive agents (CaO and calcium sulphoalumina...
The combined use of low heat Portland cement (LHC), MgO-based expansive agent (MEA) and shrinkage re...
The high strength and durability of high-performance concrete (HPC) may be significantly reduced by ...
The open section of the west artificial island of the Hong Kong-Zhuhai-Macao Bridge is a mass concre...