利用多级加载评估用沥青乳液稳定的土壤的力学行为

A. S. de Medeiros, M. H. Sant’Anna Cardoso, M. A. V. Da Silva
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引用次数: 0

摘要

本研究的目的是评估使用沥青乳液的石油沥青混凝土稳定土在多级加载下的机械响应(弹性和塑性)。为了增强沥青膜与土壤颗粒的粘附力,稳定土壤经过了七天的风干固化。通过使用直径压缩法进行间接拉伸强度试验来确定剂量。在确定了最佳用量(2% 乳化液)后,在此用量的基础上添加和去除 0.5% 的沥青乳液。因此,用浓度分别为 1.5%、2% 和 2.5% 的缓凝阳离子沥青乳液制作了三个试样。然后对这些试样进行了多级加载下的排水三轴试验,使用了 5 种不同的应力对,总循环次数达 50,000 次。通过分析总变形和永久变形曲线所定义的区域,可以研究塑性和弹性响应、这些区域之间的比例关系,以及土壤和稳定土壤在一次试验中弹性和塑性区域的增加情况,从而提供更准确的解释。在测量到的变形方面,随着偏差应力在每个加载循环中的增加,与天然土壤(对照组)相比,稳定样品的塑性变形有所增加。此外,还观察到弹性区域成比例增加,这表明沥青的添加降低了土壤的刚度,但提供了稳定前所没有的内聚力。Doi: 10.28991/CEJ-2024-010-01-02 全文:PDF
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Evaluation of the Mechanical Behavior of Soil Stabilized with Asphalt Emulsion Using Multi-Stage Loading
The objective of this research was to assess the mechanical response (resilient and plastic) of soil stabilized with petroleum asphalt concrete using asphalt emulsion under multi-stage loading. To enhance the adhesion of the asphalt film to the soil grains, the stabilized soil underwent air-drying curing for seven days. Dosage was conducted through the indirect tensile strength test using diametral compression. With the optimum content determined in the dosage (2% emulsion), additions and removals of 0.5% asphalt emulsion from this content were performed. Consequently, three specimens were molded with concentrations of 1.5%, 2%, and 2.5% of slow-setting cationic asphalt emulsion. These specimens were then subjected to drained triaxial tests under multi-stage loading, using 5 different stress pairs, totaling 50,000 cycles. Analyzing the regions defined by the total and permanent deformation curves allowed studying the plastic and elastic response, the proportionality between these regions, and the increase in elastic and plastic regions of the soil and stabilized soil in a single test, providing a more accurate interpretation. Regarding the measured deformations, as the deviator stress was increased with each loading cycle, the stabilized samples exhibited an increase in plastic deformations compared to the natural soil (control). It was also observed a proportional increase in the resilient region, indicating that the addition of asphalt made the soil less rigid but provided cohesion that was absent before stabilization. Doi: 10.28991/CEJ-2024-010-01-02 Full Text: PDF
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