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Stabilization of High Sulfate Soils with Nontraditional Additives

机译:用非传统添加剂稳定高硫酸盐土壤

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The engineering properties of base course materials play an important role in the overall stability of a pavement system. The stabilization of sulfate-rich base course materials has been a challenge using traditional calcium-based stabilizers (i.e., cement, lime, and fly-ash) because soluble sulfates present in soils can induce chemical reactions between cement or lime and residual soils, resulting in significant loss of strength and heaving. Introduced as a non-traditional stabilizer, polymer-based products have become popular due to cost efficiency, ease of application, and fast curing times. To explore the feasibility of using polymer-based products for the stabilization of high sulfate soils, a series of unconfined compression strength tests were performed. A sulfate concentration of 20,000 parts per million (ppm) was used in the laboratory testing program. As compared to the strength without soluble sulfate present in the soil, the results revealed a loss of strength in cement, and lime treated specimens but an increase of strength in polymer treated specimens.
机译:基础课程材料的工程性质在路面系统的整体稳定性中起着重要作用。富含硫酸盐的稳定剂(即水泥,石灰和粉煤灰)的稳定性是一种挑战,因为存在于土壤中存在的可溶性硫酸盐可以在水泥或石灰和残留的土壤之间诱导化学反应,产生显着丧失力量和厚度。由于成本效率,易于施用和快速固化时间,作为非传统稳定剂,基于聚合物的产品变得流行。为了探讨使用基于聚合物的产品进行高硫酸盐土壤的可行性,进行了一系列无束缚的压缩强度试验。在实验室测试程序中使用了硫酸盐浓度为每百万份(ppm)。与存在土壤中存在的不易硫酸盐的强度相比,结果显示了水泥中的强度和石灰处理的试样的损失,但在聚合物处理的标本中的强度增加。

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