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Use of Nanomaterials in the Stabilization of Expansive Soils into a Road Real-Scale Application

机译:纳米材料在膨胀土稳定到道路实尺度应用中的稳定下

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摘要

Stabilization is a traditional strategy used to improve soils with the main objective of ensuring that this base is compliant with the technical specifications required for the subsequent development of different infrastructures. This study proposes the use of commercial nanomaterials, based on a solution of silicates, to improve the technical characteristics and bearing capacity of the expansive soil. A physical–chemical property study was carried out on the additive nanomaterial. Subsequently, different mixtures of expansive soil, selected soil and artificial gravel with quicklime and commercial nanomaterials were developed to evaluate the improvement obtained by the use of nanomaterials in the technical characteristics of the soil. Compressive strength and the Californian Bearing Ratio index were considerably increased. A full-scale study was carried out in which the nanomaterial product was applied to two different sections of stabilized road compared to a control section. The results obtained showed that the use of nanomaterial led to the possibility of reducing the control section by 30 cm, thus achieving less use of quicklime and a mechanical means for preparing the road section. The use of commercial nanomaterial improved the behavior of the stabilized sub-base layer. Through life cycle assessment, this study has shown that the use of nanomaterials reduces the environmental impact associated with soil stabilization.
机译:稳定化是一种传统的策略,用于改善土壤的主要目标,即确保该基础符合随后开发不同基础设施所需的技术规范。本研究提出了基于硅酸盐溶液的商业纳米材料的使用,以改善膨胀土的技术特性和承载力。在添加剂纳米材料上进行物理化学性质研究。随后,开发了具有Questlime和商业纳米材料的不同混合物,选择的土壤和人造砾石,以评估通过在土壤技术特征中使用纳米材料而获得的改善。抗压强度和加州轴承比指数大大增加。进行了全规模的研究,其中纳米材料与对照部分相比将纳米材料应用于两种不同的稳定道路。所得到的结果表明,使用纳米材料的使用导致将控制部分减少30厘米,从而实现了较少的使用方法和用于制备道路截面的机械装置。商业纳米材料的使用改善了稳定的子碱层的行为。通过生命周期评估,本研究表明,纳米材料的使用降低了与土壤稳定相关的环境影响。

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