In order to explore the effect of composite materials on the mechanical properties of coastal cement soil, cement soil samples with different iron tailings and nano silica contents were prepared, and unconfined compression and scanning electron microscope tests were carried out. The results show that: (1) The compressive strength of cement soil containing a small amount of iron tailings is improved, and the optimum content of iron tailings is 20%. (2) Nano silica can significantly improve the mechanical properties of iron tailings and cement soil (TCS). When the content of nano silica is 0.5%, 1.5%, and 2.5%, the unconfined compressive strength of nano silica- and iron tailings-modified cement soil (STCS) is 24%, 137%, and 323% higher than ...
Diatomite is a non-metallic mineral resource rich in SiO2, which can be used to modify coastal cemen...
The proper design of protective structures may start from improving the characteristics of soils. In...
In this study, effects of size and replacement content of nanosilica on physical, chemical, and micr...
An experimental program was conducted to explore the impact of nanosilica on the microstructure and ...
In the literature, studies show that nanosilica particles and artificial pozzolans possessing can im...
The present study addresses the effect of nano particles on engineering properties of residual soil ...
1st International Symposium on Construction Resources for Environmentally Sustainable Technologies, ...
An experimental study was performed to determine the effect of SiO2 nanoparticles on consistency, co...
A new nano-soil stabilizer (N-MBER, Nanometer Material Becoming Earth into Rock) material was develo...
Low bearing capacity soils may pose serious construction concerns such as reduced bearing capacity a...
In pavement, improving soil engineering properties is main purpose of cement application. It is ofte...
Low bearing capacity soils may pose serious construction concerns such as reduced bearing capacity a...
Calcareous sand is characterized by low strength, multiporosity, and high-pressure shrinkage. This o...
In this study, the effect of nano silica (NS) on the properties of cement pastes incorporated with o...
Granular soils are kinds of soils that generally contain large particles sizes that causes water to ...
Diatomite is a non-metallic mineral resource rich in SiO2, which can be used to modify coastal cemen...
The proper design of protective structures may start from improving the characteristics of soils. In...
In this study, effects of size and replacement content of nanosilica on physical, chemical, and micr...
An experimental program was conducted to explore the impact of nanosilica on the microstructure and ...
In the literature, studies show that nanosilica particles and artificial pozzolans possessing can im...
The present study addresses the effect of nano particles on engineering properties of residual soil ...
1st International Symposium on Construction Resources for Environmentally Sustainable Technologies, ...
An experimental study was performed to determine the effect of SiO2 nanoparticles on consistency, co...
A new nano-soil stabilizer (N-MBER, Nanometer Material Becoming Earth into Rock) material was develo...
Low bearing capacity soils may pose serious construction concerns such as reduced bearing capacity a...
In pavement, improving soil engineering properties is main purpose of cement application. It is ofte...
Low bearing capacity soils may pose serious construction concerns such as reduced bearing capacity a...
Calcareous sand is characterized by low strength, multiporosity, and high-pressure shrinkage. This o...
In this study, the effect of nano silica (NS) on the properties of cement pastes incorporated with o...
Granular soils are kinds of soils that generally contain large particles sizes that causes water to ...
Diatomite is a non-metallic mineral resource rich in SiO2, which can be used to modify coastal cemen...
The proper design of protective structures may start from improving the characteristics of soils. In...
In this study, effects of size and replacement content of nanosilica on physical, chemical, and micr...