Pullout Test Results of Geosynthetics using Granite Soil and Standard sand
Jae-Woo Ju, Jong‐Beom Park, Jang-Heung Kim, Chun Seok Song, Kyung-Jong Baek
Abstract
Jae-Woo Ju, Jong‐Beom Park, Jang-Heung Kim, Chun Seok Song, Kyung-Jong Baek
Abstract
New concept called the pullout resistance angle has been used to express the friction, cohesion and passive resistance by pullout test at geosynthetics reinforced soil. And also in order to calculate the pullout area, the distribution area method has been used, which is a method of using the curve of tensile force exerted in geogrid. The distribution area ratio showed nearly the same result in the two kind of soils, the granite soil and the standard soil. The pullout resistance angle showed the greater value than friction angle of soil in case of low confining stress of , while it showed the smaller angle than friction of soil in case of high confining stress of .
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New concept called the pullout resistance angle has been used to express the friction, cohesion and passive resistance by pullout test at geosynthetics reinforced soil. And also in order to calculate the pullout area, the distribution area method has been used, which is a method of using the curve of tensile force exerted in geogrid. The distribution area ratio showed nearly the same result in the two kind of soils, the granite soil and the standard soil. The pullout resistance angle showed the greater value than friction angle of soil in case of low confining stress of , while it showed the smaller angle than friction of soil in case of high confining stress of .
Key concepts: Geogrid, Geosynthetics, Friction angle, Geotechnical engineering, Cohesion (chemistry), Ultimate tensile strength, Geology, Soil water