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Cold-Weather Concreting Technology for Ground Modification

机译:寒冷天气地面改性技术

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This paper describes the application of cold-weather concreting technology to soil stabilization with cement. For concrete, the typical approach involves the use of chemical additives to depress the freezing point, accelerate the curing process and initiate other changes that allow cementitious reactions to proceed at low temperatures. Likewise, cementitious reactions are also critical to the performance of cement soil stabilization. To that end, a set of experiments was conducted to evaluate the influence of three commercially-available chemical additives on the unconfined compressive strength of a local soil stabilized with 6% cement by weight. In particular, the chemical additives were tested at three dosage levels, with strength measurements taken at 1, 7 and 28 day curing periods, and two different curing temperatures. The control (unmodified) mixture resulted in an average 7-day strength of 295 kPa (42.8 psi) when cured at -2°C (28.4 °F). For the same mixture at the same curing temperature, the average 7-day strength increased to 1318 kPa (191 psi), 1050 kPa (152 psi) and 1332 kPa (193 psi) for the Gilco, Polarset and Daraccel brand chemical additives, respectively. As tested, the incremental cost associated with using these additives varied from 8-41%, making them a viable alternative to extensive undercutting and/or geosynthetics.
机译:本文介绍了冷固结技术在水泥稳定土壤中的应用。对于混凝土,典型的方法涉及使用化学添加剂来降低凝固点,加快固化过程并引发其他变化,从而使胶结反应在低温下进行。同样,胶结反应对于水泥土稳定化的性能也至关重要。为此,进行了一组实验以评估三种市售化学添加剂对用6%水泥(按重量计)稳定的土体的无侧限抗压强度的影响。特别地,化学添加剂在三种剂量水平下进行了测试,在1、7和28天固化期以及两种不同的固化温度下进行了强度测量。当在-2°C(28.4°F)下固化时,对照(未改性)混合物的7天平均强度为295 kPa(42.8 psi)。对于在相同固化温度下的相同混合物,Gilco,Polarset和Daraccel品牌化学添加剂的7天平均强度分别提高到1318 kPa(191 psi),1050 kPa(152 psi)和1332 kPa(193 psi)。 。经测试,与使用这些添加剂相关的增量成本为8-41%,使它们成为广泛的底切和/或土工合成材料的可行替代方案。

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