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Bearing capacity of a square model footing on sand reinforced with shredded tire - An experimental investigation

机译:碎轮胎加固的沙子上方形模型基础的承载力-试验研究。

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Recycling rubber from waste tires has become one of the major challenges worldwide. The use of waste tires in geotechnical applications may be feasible as an alternative way to consume the huge stockpile of scrap tire, with a better understanding of the behavior of rubber-soil mixture. The objective of this study was to investigate the feasibility of using rubber shreds, randomly distributed into the soil, as soil reinforcement beneath the footing. A series of laboratory tests were conducted to obtain the bearing capacity of a square footing rested on shredded rubber-reinforced soil. The results show that the efficiency of rubber reinforcement was increased by addition of rubber content, the thickness of rubber-reinforced soil layer and the soil cap thickness up to the optimum values of these parameters, after that, with a further increase in each of these parameters, the bearing capacity decreases. For the optimum value of rubber content of 5% at footing settlement level of 5%, the maximum improvement in bearing capacity of rubber-reinforced bed was obtained as 2.68 times of the unreinforced bed. This value of improvement was achieved using the optimum thickness of reinforced layer of 0.5 times of footing width and the optimum thickness of soil cap of 0.25 times of footing width. The findings strongly suggest the use of rubber shreds obtained from non-reusable tires as a viable alternative way for improving the soil behavior, particularly when environmental interest is considered.
机译:从废轮胎中回收橡胶已成为世界范围内的主要挑战之一。在土力工程应用中使用废轮胎作为消耗大量废轮胎的替代方法可能是可行的,同时可以更好地了解橡胶-土壤混合物的行为。这项研究的目的是研究使用随机分布在土壤中的橡胶碎片作为立足点下方的土壤加固的可行性。进行了一系列的实验室测试,以获取搁置在切碎的橡胶增强土壤上的平方英尺的承载力。结果表明,通过增加橡胶含量,橡胶增强的土层厚度和土层盖厚度达到这些参数的最佳值,橡胶增强效率得以提高,此后,每一项的进一步增加参数,承载能力降低。对于在基础沉降为5%的情况下橡胶含量的最佳值为5%的情况,橡胶增强床的承载能力得到了最大的提高,是未增强床的2.68倍。该改进值是通过使用0.5倍基脚宽度的最佳加固层厚度和0.25倍基脚宽度的土层最佳厚度来实现的。这些发现强烈建议使用从不可重复使用的轮胎获得的橡胶碎片作为改善土壤行为的可行替代方法,尤其是考虑到环境利益时。

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