1992Journal of the Society of Materials Science JapanOpen access

Experimental Study on Strength Development Mechanism of Artificially Mixed Intermediate Soils.

Kazuhiko Nishida, Shintaro Yao, Shigeyoshi Hirata

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Abstract

In order to make clear the strength development mechanism of intermediate soils, the direct shear tests were performed on artificially mixed soils to examine the influences of soil texture and consolidation pressure. The following conclusions were obtained:(1) The shear strength characteristic of soils changes from that of sand to clay with increasing clay content and from that of clay to sand with increasing consolidation pressure.(2) From the direct shear tests, the experimental constant cσc characterizing the boundary between sand and clay was found to exist and vary with the clay content and consolidation pressure.(3) The expreimental constant cσcn characterizing the soil properties was also found.

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In order to make clear the strength development mechanism of intermediate soils, the direct shear tests were performed on artificially mixed soils to examine the influences of soil texture and consolidation pressure. The following conclusions were obtained:(1) The shear strength characteristic of soils changes from that of sand to clay with increasing clay content and from that of clay to sand with increasing consolidation pressure.(2) From the direct shear tests, the experimental constant cσc characterizing the boundary between sand and clay was found to exist and vary with the clay content and consolidation pressure.(3) The expreimental constant cσcn characterizing the soil properties was also found.

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Available abstract

In order to make clear the strength development mechanism of intermediate soils, the direct shear tests were performed on artificially mixed soils to examine the influences of soil texture and consolidation pressure. The following conclusions were obtained:(1) The shear strength characteristic of soils changes from that of sand to clay with increasing clay content and from that of clay to sand with increasing consolidation pressure.(2) From the direct shear tests, the experimental constant cσc characterizing the boundary between sand and clay was found to exist and vary with the clay content and consolidation pressure.(3) The expreimental constant cσcn characterizing the soil properties was also found.

Key concepts: Consolidation (business), Soil water, Geotechnical engineering, Geology, Direct shear test, Shear strength (soil), Shear (geology), Materials science

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