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Physical and mechanical properties of sand stabilized by cement and natural zeolite

机译:水泥和天然沸石稳定沙子的物理和力学性能

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摘要

Loose sands are prone to lose their shear strength when being subjected to static or cyclic loads. To this end, there exist several methods to improve the mechanical properties of sands, but the most crucial and viable approach is the one with the lowest harmful environmental impact both in production and recycling processes. In this regard, zeolite as a natural pozzolanic additive offers an eco-friendly improvement in strength parameters of cemented sandy soils. Thereby, in this study, a series of unconfined compressive strength (UCS) tests are conducted to evaluate the mechanical parameters of the zeolitecemented sand. The results demonstrate a meaningful increase in the UCS of the treated sand samples for replacement of cement by zeolite at an optimum proportion of 40% in specimens with 14 and 28 days curing time. The effectiveness of the improvement process is demonstrated by the strength improvement ratio which was up to be 128% to 209% for the samples with 14 and 28 days curing time, respectively. With regard to the above results, zeolite can be introduced as a promising cement substitute in stabilization of sandy ground including backfills, roadbed, embankments, and other structural filling systems.
机译:当受到静态或循环载荷时,松散的沙子易于失去剪切强度。为此,有几种方法可以提高砂的机械性能,但最重要的和可行的方法是生产和回收过程中有害环境影响最低的方法。在这方面,沸石作为天然波兹唑烷添加剂,提供了生态友好的改善水泥砂土的强度参数。因此,在本研究中,进行一系列不包含束缚的压缩强度(UCS)测试以评估沸石砂的机械参数。结果表明,经处理的沙子样品的UCS在具有14和28天固化时间的试样中的最佳比例以最佳比例替代水泥的UCS的有意义增加。改善过程的有效性通过强度提高率分别对具有14和28天的固化时间的样品达到128%至209%。关于上述结果,沸石可以作为砂土稳定的有希望的水泥替代品,包括回填,路基,堤防和其他结构灌装系统。

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