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Effect of waste tire cord reinforcement on unconfined compressive strength of lime stabilized clayey soil under freeze-thaw condition

机译:冻融条件下废旧轮胎帘线增强对石灰稳定黏土土壤无侧限抗压强度的影响

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摘要

Mechanical properties of fine grained soils, which are subjected to freeze-thaw condition, often change considerably, so when these soils are used as a part of a structure or as an infrastructure, determining a proper solution is necessary. In this paper, stabilization and fiber reinforcement are simultaneously examined as a soil modification method. A series of unconfined compression tests was carried out to investigate the effects of tire cord waste products on mechanical characteristics of a lime stabilized and unstabilized clayey soil subjected to freezing and thawing cycles. Several specimens were prepared at three percentages of lime (i.e. 0%, 4%, and 8%) and four percentages of discrete short nylon fiber (i.e. 0%, 0.5%, 1%, and 1.5%) by weight of dry soil. The samples were saturated and exposed to one up to three freeze-thaw cycles before testing. The results indicated that the compressive strength and stress-strain behavior of specimens depend considerably on the amounts of both fiber and lime. For stabilized specimens, the reinforcement effect of fiber was more than unstabilized ones and also, by inclusion of fiber, 4% lime stabilized specimens indicated more strength in comparison to the untreated and 8% lime stabilized specimens. Furthermore, the contribution of fiber in the strength of samples increased as the number of freeze-thaw cycles was increased.
机译:经受冻融条件的细粒土壤的机械性能通常会发生很大变化,因此当这些土壤用作结构的一部分或用作基础结构时,必须确定适当的解决方案。在本文中,同时研究了稳定和纤维增强作为土壤改良方法。进行了一系列的无限制压缩试验,以研究轮胎帘线废品对经过冻融循环的石灰稳定和不稳定的黏土的机械特性的影响。制备了几个样品,分别占干土重量的3%的石灰(即0%,4%和8%)和4%的离散尼龙短纤维(即0%,0.5%,1%和1.5%)。在测试之前,将样品浸透并进行多达三个的冻融循环。结果表明,样品的抗压强度和应力-应变行为在很大程度上取决于纤维和石灰的量。对于稳定的试样,纤维的增强作用比未稳定的试样强。此外,通过包含纤维,与未处理的和8%的石灰稳定的试样相比,4%的石灰稳定的试样显示出更高的强度。此外,随着冻融循环次数的增加,纤维对样品强度的贡献也增加。

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