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Rubber powder-polymer combined stabilization of South Australian expansive soils

机译:橡胶粉-聚合物组合稳定南澳大利亚膨胀土

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摘要

This study examines the combined capacity of rubber powder inclusion and polymer treatment in solving the swelling problem of South Australian expansive soils. The rubber powder was incorporated into the soil at three different rubber contents (by weight) of 10%, 20% and 30%. The preliminary testing phase consisted of a series of consistency limits and free swell ratio tests, the results of which were analyzed to arrive at the optimum polymer concentration. The main test program included standard Proctor compaction, oedometer swell-compression, soil reactivity (shrink-swell index), cyclic wetting and drying, crack intensity, and micro-structure analysis by means of the scanning electron microscopy (SEM) technique. The improvement in swelling potential and swelling pressure was dependent on the rubber content, with polymer-treated mixtures holding a notable advantage over similar untreated cases. A similar dependency was also observed for the crack intensity factor and the shrink-swell index. The beneficial effects of rubber inclusion were compromised under the cyclic wetting and drying condition. However, this influence was eliminated where the rubber powder was paired with the polymer agent. A rubber inclusion of 20%, preferably paired with 0.2 g/l polymer, was suggested to effectively stabilize South Australian expansive soils.
机译:这项研究考察了橡胶粉夹杂物和聚合物处理在解决南澳大利亚膨胀土膨胀问题方面的综合能力。将橡胶粉以三种不同的橡胶含量(按重量计)10%,20%和30%掺入土壤中。初步测试阶段包括一系列稠度极限和自由溶胀比测试,分析其结果以获得最佳聚合物浓度。主要测试程序包括标准的Proctor压实,里程表溶胀压缩,土壤反应性(收缩溶胀指数),循环润湿和干燥,裂缝强度以及通过扫描电子显微镜(SEM)技术进行的微结构分析。溶胀潜力和溶胀压力的改善取决于橡胶含量,与类似的未经处理的情况相比,经聚合物处理的混合物具有明显的优势。裂纹强度因子和收缩-膨胀指数也观察到类似的依赖性。在循环润湿和干燥条件下,橡胶夹杂物的有益作用受到损害。但是,在橡胶粉与聚合物剂配对时,消除了这种影响。建议使用20%的橡胶夹杂物,最好与0.2 g / l的聚合物配对,以有效地稳定南澳大利亚膨胀土。

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