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EFFECTS OF CEMENTATION ON HYDRAULIC CONDUCTIVITY AND ON MECHANICAL STRENGTH OF BINARY PACKING SYSTEMS

机译:胶结对二元包装系统液压电导率及机械强度的影响

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This paper addresses the topic soil stabilization for forest roads applications and analyzes the influence of the hydrated lime in structuring the sand fraction of an artificial soil composed of the sand fractions of two natural soils, simulating natural process of cementation of sands and using binary packing systems. The study included the following topics: (i) characterization of the mechanical strength and hydraulic conductivity of binary systems of the artificial soil; and (ii) effect of hydrated lime in structuring binary packing systems of the artificial soil. Soil samples were submitted to chemical pre-treatment, to obtain clean sand fractions from the two sandy soils with particle diameters ranging from 0.053 to 2 mm, following sieving and separation of them in twenty-two classes with maximum (D)/minimum (d) ratios varying from 5.7 to 13.4. Sequentially, binary packing specimens of the artificial soil were prepared and then stabilized with 2% of a commercial hydrated lime. Next, the specimens were submitted to permeability and quasi-static cone penetration tests, in order to determine their hydraulic conductivity and cone tip resistance. Based on the obtained results, it was concluded that: (i) in the artificial soil, an increase of D/d ratio led to an increase of cone tip resistance and decrease of hydraulic conductivity; and (ii) cementation with hydrated lime reduced the hydraulic conductivity and increased the cone tip resistance.
机译:本文涉及森林道路应用的土壤稳定主题,分析了水石石灰在构建两种天然土壤中的砂馏分中的影响,模拟了砂粘液的自然过程,并使用二元包装系统。该研究包括以下主题:(i)人造土壤二元系统的机械强度和水力传导性的表征; (ii)水合石灰在人造土的二元包装系统中的作用。将土壤样品提交给化学预处理,以获得来自两个含有0.053至2mm的颗粒直径的砂土的清洁砂馏分,在二十二个类中筛分和分离最大(d)/最小(d) )比率从5.7到13.4变化。顺序地,制备人造土的二元包装样品,然后用2%的商业水合石灰稳定。接下来,将样本提交给渗透率和准静态锥形渗透试验,以便确定其液压导电性和锥形尖端电阻。基于所得的结果,得出结论:(i)在人工土壤中,D / D比的增加导致锥形尖端电阻的增加和液压导电性降低; (ii)用水化石灰的胶结降低了液压导电性并增加了锥形尖端电阻。

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