期刊文献+
共找到2篇文章
< 1 >
每页显示 20 50 100
Geotechnical Identification and Classification of Soils as Flexible Pavement Subgrade of the Section Fongo Tongo-Melong
1
作者 François Ngapgue Willy Chance Guimezap Kenou +2 位作者 jules hermann keyangue tchouata Vladimir Willianov Keubou Tatapzia Yannick Mbeuteu Mbakop 《Journal of Geoscience and Environment Protection》 2020年第11期183-200,共18页
The present study is inscribed within the framework of the geotechnical characterization of the soils of the Santchou plain, their classification for employment as pavement subgrade, various identification tests were ... The present study is inscribed within the framework of the geotechnical characterization of the soils of the Santchou plain, their classification for employment as pavement subgrade, various identification tests were carried out on the samples. The results obtained showed that with a wide range of different grain sizes, the studied soils showed low content in clay grains and dominance of either sand grains or silt grains, this can be explaining how most of these soil are poorly graded. According to the USDA textural classification, the grain size distribution of these soils makes them to be classified as Silty Loam types to Sandy Loam types. Despite of their organic matter content which is less than 10%, according to their respective methylene blue values, the soils studied along the section should be mainly loamy soil of medium plasticity to clayed soil, therefore showing a sensibility of its behavior to variation of water content. That last one is confirmed by the consistency parameters of these soils which show intermediate plasticity to highly plastic. Also, the bearing capacity proposed by these soils at their respective optimum dry densities is relatively small, although most of these experimental CBR values of the studied soils are more important than the ones prescribed by the AASHTO Classification system for A5, A6, and A7 types, and the French Highway Earthworks Manual Classifications system (GTR) for the corresponding A2 and A3 types. 展开更多
关键词 Soil Classification Liquid Limit Natural Water Content Plasticity Index Methylene Blue Value Optimum Moisture Content California Bearing Ratio
下载PDF
Evaluation of the Effect of Lime Content on the California Bearing Ratio of Silty Soils: Case of Fombap District
2
作者 Willy Chance Guimezap Kenou François Ngapgue +2 位作者 jules hermann keyangue tchouata Vladimir Willianov Keubou Tatapzia Walter Jovic Kenou Jogo 《Open Journal of Geology》 2020年第11期1059-1071,共13页
The present study is inscribed within the framework of the amelioration of the soils of the Santchou plain for employment as pavement subgrade. The bearing capacity proposed by these soils at their respective optimum ... The present study is inscribed within the framework of the amelioration of the soils of the Santchou plain for employment as pavement subgrade. The bearing capacity proposed by these soils at their respective optimum dry densities is relatively small, although most of these experimental California Bearing Ratio (CBR) values of the studied soils are more important than the ones prescribed by the American Association of State Highway and Transportation Officials Classification system (AASHTO) for A5, A6, and A7 types. The stabilization of this soils with lime has been chosen to improve the bearing capacity and by association, their resilient modulus. The results of this study show that the increase of lime content is not proportional with the increase of the expected mechanical performances. In fact, the literature explains that when the lime content arrives at an optimum, the mechanical parameters no longer increase, but decrease significantly. After this optimum, the soil stabilization no longer shows advantages in the increase of geo-mechanical properties of soils. 展开更多
关键词 Soil Classification Lime Content California Bearing Ratio Soil Stabilization SUBGRADE
下载PDF
上一页 1 下一页 到第
使用帮助 返回顶部