Research on Design and Construction of Anti-Crack Cement Stabilized Crushed Stone Based on Vibratory Compaction
Li Xie
Abstract
Li Xie
Abstract
The anti- crack cement stabilized crushed stone based on vibratory compaction is a inorganic binder which have dense skeleton,which including embedded skeleton composed of continuous gradation coarse aggregate and filled with cement and fine material. The affect of different cement dosage and pass ratio through 4.75 mm sieve on strength of the anti- crack cement stabilized crushed stone is analyzed through test,and the range of cement dosage and pass ratio through 4. 75 mm sieve has been obtained. The optimization for mixture of the anti-crack cement stabilized crushed stone based on vibratory compaction has been studied,which based on building engineering of someone provincial highway,and the key part of the construction are discussed.
A significance statement is not available in the OpenAlex record.
A contribution statement is not available in the OpenAlex record.
Method details are not available in the OpenAlex metadata.
Findings are not separately available in the OpenAlex metadata.
Limitations are not available in the OpenAlex metadata.
Application details are not available in the OpenAlex metadata.
The anti- crack cement stabilized crushed stone based on vibratory compaction is a inorganic binder which have dense skeleton,which including embedded skeleton composed of continuous gradation coarse aggregate and filled with cement and fine material. The affect of different cement dosage and pass ratio through 4.75 mm sieve on strength of the anti- crack cement stabilized crushed stone is analyzed through test,and the range of cement dosage and pass ratio through 4. 75 mm sieve has been obtained. The optimization for mixture of the anti-crack cement stabilized crushed stone based on vibratory compaction has been studied,which based on building engineering of someone provincial highway,and the key part of the construction are discussed.
Key concepts: Crushed stone, Cement, Compaction, Gradation, Materials science, Sieve (category theory), Geotechnical engineering, Aggregate (composite)