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Material Properies of Intermediate Materials between Concrete and Gravelly Soil
Abstract Compaction and strength properties of cement-mixed well-graded gravel are studied. Such materials can also be considered as a kind of concrete materials which has much lower cement contents than usual. New concepts on material properties related to their mixture ratio of cement, gravel (aggregate) and water, as well as their compaction density, are proposed, unifying the concepts of geotechnical engineering and concrete engineering. For materials with higher cement contents, the compaction curve becomes flat, with lower maximum compaction density, and higher optimum water contents. The triaxial compressive strength are clearly affected by the dry density, as well as the cement contents.
Material Properies of Intermediate Materials between Concrete and Gravelly Soil
Abstract Compaction and strength properties of cement-mixed well-graded gravel are studied. Such materials can also be considered as a kind of concrete materials which has much lower cement contents than usual. New concepts on material properties related to their mixture ratio of cement, gravel (aggregate) and water, as well as their compaction density, are proposed, unifying the concepts of geotechnical engineering and concrete engineering. For materials with higher cement contents, the compaction curve becomes flat, with lower maximum compaction density, and higher optimum water contents. The triaxial compressive strength are clearly affected by the dry density, as well as the cement contents.
Material Properies of Intermediate Materials between Concrete and Gravelly Soil
Uchimura, Taro (Autor:in) / Kuramochi, Yuko (Autor:in) / Thai, Bach Thuan (Autor:in)
01.01.2007
6 pages
Aufsatz/Kapitel (Buch)
Elektronische Ressource
Englisch
Cement Content , Geotechnical Engineering , Mixture Ratio , Concrete Aggregate , Optimum Water Content Physics , Soft and Granular Matter, Complex Fluids and Microfluidics , Continuum Mechanics and Mechanics of Materials , Building Materials , Geoengineering, Foundations, Hydraulics , Numerical and Computational Physics
Material Properties of Itermediate Materials Between Concrete and Gravelly Soil
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