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Experimental Investigation on the Swelling Behavior of Expansive Soils with EPS Geofoam Inclusion

机译:EPS Geofoam包装的膨胀土膨胀行为的实验研究

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摘要

Swelling pressure of expansive soils can impose significant threat to the infrastructure built on them. Placing of compressible inclusion material, such as expanded polystyrene (EPS) geofoam, in expansive soils can effectively reduce the swelling pressure acting on the structure. This paper describes the experimental design, results of the tests used to investigate the use of compressible EPS in the form of geofoam layer (GL), geofoam column (GC) inclusion to reduce the swell potential, and swelling pressure of expansive soils. The tests were carried out on large one-dimensional consolidation equipment which can accommodate the California bearing ratio mold. Two different EPS geofoam densities were tested on two types of soil with varying swell potential under swell-compression test. The results of the tests are compared for the soil samples with and without GL and GC inclusion. The test results demonstrate that the percentage reduction in swell and swelling pressure is increased with increasing the thickness and cross-sectional area of GL and GC inclusion in expansive soils. In addition, the optimal EPS density was determined with respect to the maximum reduction in swelling.
机译:膨胀土的膨胀压力可能对基础设施施加了重大威胁。放置可压缩包涵体,例如扩张的聚苯乙烯(EPS)Geofoam,可有效降低作用在结构上的溶胀压力。本文介绍了实验设计,测试结果用于研究使用Geofoam层(GL)的形式的可压缩eps,Geofoam柱(GC)夹杂物,以减少膨胀潜力,膨胀土的膨胀压力。测试是在大型一维固结设备上进行,该设备可容纳加州轴承比模具。在膨胀压缩试验下,在两种土壤上测试了两种不同的EPS Geofoam密度。比较测试结果,并没有GL和GC夹杂物的土壤样品。试验结果表明,随着GL的厚度和横截面积在膨胀土壤中增加,增加膨胀和溶胀压力的百分比增加。此外,相对于溶胀的最大降低确定最佳EPS密度。

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