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Bearing capacity and settlement of tire-reinforced sands

机译:轮胎增强砂的承载力和沉降

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This paper presents the beneficial use of waste tires as reinforcing material in sand from laboratory plate load tests. Treads and sidewalls of tires were combined to make the tire mat. Plate load tests were conducted to study the reinforcing effect under various conditions such as relative density, embedded depth, number of reinforced layers, size of a mat and combination type of tire segments. From the plate load test results, the effectiveness of tire mat as a reinforcing material could clearly be seen. The effects of reinforcing and settlement reduction are higher at lower sand density. The reinforced sand's bearing capacity is more than twice that of unreinforced sand. The effects were more pronounced at a cover depth of less than 0.45. The reinforcement of single layer in medium density sand was enough to reduce the settlement more than half and increase bearing capacity more than a factor of two. The combinations of both treads and sidewalls resulted in the highest bearing capacity. The bearing capacity increased steadily as the width of the mat increased up to five times the plate width and converged at just over twice the bearing capacity of unreinforced sand and remained constant thereafter.
机译:本文介绍了通过实验室板载测试将废轮胎作为增强材料在沙子中的有益用途。胎面和轮胎胎侧结合在一起制成轮胎垫。进行了板载测试,以研究在各种条件下的增强效果,例如相对密度,包埋深度,增强层的数量,垫层的尺寸以及轮胎分段的组合类型。从板载测试结果中,可以清楚地看到轮胎垫作为增强材料的有效性。在较低的砂密度下,增强和减少沉降的效果更高。增强砂的承载能力是非增强砂的两倍以上。当覆盖深度小于0.45时,效果更为明显。在中密度砂土中单层加固足以减少一半以上的沉降并增加两倍以上的承载力。胎面和胎侧的组合导致最高的承载能力。当垫子的宽度增加到板宽的五倍时,承载力稳定增加,并收敛到刚好是未增强砂土承载力的两倍,此后保持不变。

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