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Comportamento mec?¢nico de solo argiloso estabilizado com res?-duo de vidro pulverizado em moinho de alta energia e de bolas

机译:用高能磨机和球的休息粉体玻璃稳定机械力学行为

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The capital of the Amazonas State presents difficulties in the construction of pavements due to the superficial predominance of clay in its geotechnical profile. This material is unsuitable for the construction of sublayers of these urban structures. In the present study, the mechanical behavior of the Manaus-AM typical clay soil was evaluated in its natural condition and when mixed with 5% of powdered glass waste processed in two types of mills (balls and high energy) in order to improve their geotechnical properties. The natural material and its compositions was characterized in relation to their physical properties (liquidity limit, plasticity limit, grain size and compaction) and mineralogical properties, as well as the natural soil mineralogy. According to the direct shear test and the Coulomb rupture criterion, the cohesion and the internal friction angle of the clay soil were determined, as well of the soil compositions with 5% of powdered glass processed in ball mill and 5% of powdered glass processed in high-energy mill. The results showed that there was a significant improvement in the regional soil properties when glass residue is added, both physically and mechanically, with emphasis on the participation of the powdered material processed in the high-energy mill. Therefore, the powdered glass has the potential to be used as granulometric stabilizer in roadways construction, which is an environmental alternative for the disposal of such materials.
机译:由于粘土在其岩土上的肤色普及,亚马逊国家的资本呈现困难。这种材料不适合这些城市结构的子层的构建。在本研究中,在其天然条件下评估Manaus-AM典型粘土土壤的力学行为,并在两种研磨机(球和高能量)中加工5%的粉末玻璃废物时,以改善其岩土工程特性。基于其物理性质(流动性极限,塑性极限,晶粒尺寸和压实)和矿物学性质以及天然土壤矿物学,以及矿物学性质以及天然材料及其组合物。根据直接剪切试验和库仑破裂准则,确定粘土土壤的内聚力和内部摩擦角,以及在球磨机中加工5%的粉末玻璃和5%的粉末玻璃加工的土壤组合物等粘土组合物高能厂。结果表明,当在物理和机械加入玻璃残余物时,区域土壤性质存在显着改善,重点是在高能磨机中加工的粉末材料的参与。因此,粉末玻璃具有在道路结构中用作粒度稳定剂的电位,这是处理此类材料的环境替代方案。

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