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The Role of Additives in Soil-Cement Subjected to Wetting-Drying Cycles

机译:添加剂在润湿干燥循环中的土壤水泥中的作用

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This study aimed to explore the use of additives in soil–cement mixtures that have undergone a wetting-drying cycle. In total, two types of soil were used, granitic and lateritic, which are widely used in road base construction in the Katingan area, Central Kalimantan, Indonesia. The cement used was the ordinary Portland type I, while the additive utilized was for commercial purposes, and predominantly contained CaCl_(2). This research was conducted by testing the optimum cement content for each soil to determine the shear strength according to Indonesian standards (i.e., minimum Unconfined Compressive Strength of 2400 kPa). The optimum cement contents of granitic and lateritic soils were deduced to be 5.5% and 5% on a dry weight basis, respectively. The utilization of 0.8% additive resulted in a 0.5% reduction in the optimum cement content of granite-like soil. The results showed that the optimum additive content for granitic soil was higher than that without supplementation, while for lateritic, no changes occurred. The advantage of using supplements, however, was more pronounced in the samples when they had been subjected to wetting–drying cycles. Additionally, at the optimum additive level, the moisture content and soil-cement loss during wetting was always lower than without supplements.
机译:本研究旨在探讨在土壤 - 水泥混合物中使用添加剂的使用,该混合物经过润湿干燥循环。总共使用两种土壤,花岗岩和外侧,广泛应用于印度尼西亚卡利马坦南部的Katingan地区的道路基础建设中。使用的水泥是普通的波特兰I型,而使用的添加剂是用于商业目的,主要含有CaCl_(2)。通过测试每种土壤的最佳水泥含量来进行该研究,以根据印度尼西亚标准来确定剪切强度(即,最小无凝结的抗压强度为2400kPa)。将花岗岩和外链土壤的最佳水泥含量分别被推导为5.5%和5%的干重。利用0.8%添加剂导致花岗岩状土壤的最佳水泥含量降低0.5%。结果表明,花岗岩土壤的最佳添加剂含量高于没有补充的含量,而对于外层,不会发生变化。然而,当它们经受润湿干燥循环时,样品中使用补充剂的优点更明显。另外,在最佳的添加剂水平下,润湿期间的水分含量和土壤 - 水泥损失总是低于没有补充剂。

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