材料科学
聚丙烯
凝聚力(化学)
膨胀性粘土
复合材料
阿太堡极限
直剪试验
可塑性
玻璃纤维
抗剪强度(土壤)
岩土工程
剪切(地质)
土壤水分
含水量
环境科学
地质学
土壤科学
化学
有机化学
作者
Joao Rodriguez Machuca,Oscar Pusari Quispe,Gary Durán Ramírez,Carlos Mario Fernández Díaz
标识
DOI:10.1109/coniiti51147.2020.9240273
摘要
In this article, the geotechnical behavior of the reinforced soil is studied through additions of polypropylene fiber and recycled glass powder, this in order to obtain a homogeneously reinforced soil matrix to reduce possible structural failures, differential settlements and increase capacity bearing. The sample used was classified as a clay soil with low plasticity (CL) and with moderately expansive characteristics, based on the values of the Liquid Limit, Plastic Limit and Plasticity Index. The effect of the 1% polypropylene fiber and different amounts of recycled glass powder (0%, 4%, 5%, 6.5%), with respect to dry weight is analyzed in this soil. The purpose of varying the quantity of these materials is to find a trend of the strength parameters and obtain the optimal percentages that provides improvements in geotechnical behavior. Modified Proctor and Direct Shear tests were carried out, this latter to obtain the shear strength parameters of the mixtures and compare them with the clay soil. Finally, the optimal result for soil improvement was the mixture made by 1% polypropylene fiber and 4% glass powder, which achieved an increase of the angle of friction and cohesion.
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