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首页> 外文期刊>Materia >Efeito da adi?§?£o de res?-duos da constru?§?£o e demoli?§?£o (RCD) nas propriedades hidromec?¢nicas de um solo areno-argiloso
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Efeito da adi?§?£o de res?-duos da constru?§?£o e demoli?§?£o (RCD) nas propriedades hidromec?¢nicas de um solo areno-argiloso

机译:构建体和拆除(RCD)的资源添加资源的效果在阿烯粘土的冲水质性质中

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摘要

As the production of solid waste resulting from human actions, such as Construction and Demolition Waste (CDW), has continually increased, proper disposal of these materials has become critically important, because when improperly disposed, they degrade the environment and contribute to the proliferation of disease vectors. The construction industry has also faced difficulties in searching for areas with soils suitable for use in engineering projects, leading to efforts to improve soils having unsatisfactory characteristics. This study aims to analyze the influence of recycled CDW aggregates on the hydromechanical properties of clay-sand soil at different substitution levels (10, 20, and 30%). To achieve this, the materials used were submitted to a variety of laboratory tests: physical characterization, normal Proctor energy compaction, microstructural characterization, direct shear, and permeability of the compacted samples under optimum compaction conditions. The results show that for the soil used, the addition of recycled CDW aggregate reduces its fine fractions and plasticity, interferes minimally in the real specific weight, decreases the optimal humidity by up to 2%, with a low variation of the apparent dry specific weight, keeps within the range of values for the resistance parameters, and increase in the hydraulic coefficient of the soil by more than 13 times. The differences in hydraulic behavior can be explained by observed changes in the microstructure of the samples.
机译:由于人类行为产生的固体废物,如建筑和拆迁废物(CDW),已经不断增加,适当处理这些材料已经变得严重重要,因为当不正确地处置时,它们会降低环境并有助于增殖疾病载体。建筑业在寻找适合工程项目的土壤的地区也面临困难,从而努力改善具有不令人满意的特征的土壤。本研究旨在分析再生CDW聚集体对不同取代水平(10,20和30%)的粘土砂土的流体力学性能的影响。为此,所使用的材料被提交到各种实验室测试:在最佳压制条件下,物理表征,正常的标准器能量压实,微结构表征,直接剪切和压实样品的渗透性。结果表明,对于所使用的土壤,加入再循环的CDW聚集体降低了其细分分数和可塑性,在真实的比重下显微地干扰,最佳湿度降低至2%,具有明显的干特异性的低变化,保持在电阻参数的值范围内,并将土壤的液压系数增加超过13倍。液压行为的差异可以通过观察样本的微观结构的变化来解释。

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