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Expanded polystyrene (EPS) geofoam: preliminary characteristic evaluation

机译:膨胀聚苯乙烯(EPS)地理泡沫:初步特征评价

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Expanded polystyrene (EPS) geofoam is a fascinating area in the field of geotechnical engineering and its service life is comparable to other construction materials. It can be used for backfilling embankments and highways both vertical and sloped sides. Moreover, it has been used as a compressible inclusion behind retaining walls, above pipelines, tunnels or culverts and below slabs or beams at a foundation. In the present study, an attempt has been made to comprehend the behavior of EPS geofoam using different laboratory tests such as water absorption test, compressive strength test, flexural strength test and triaxial test. The shear strength behavior of EPS geofoam was examined through a series of triaxial tests conducted for confining pressure of 50, 100 and 150 kPa. The tests have been carried out on EPS geofoam samples of three different densities, 12, 15 and 20 kg/m~3. The behavior of EPS geofoam in compression is a function of density, strain rate and sample size. The higher density of EPS geofoam develops high compressive strength and the size of prismatic specimen of EPS geofoam affects the modulus values. The flexural strength of EPS geofoam increases with the increase in density. Higher density test specimen failed at lower deformation due to increase in the stiffness with an increase in density. The triaxial test results indicated that the cohesion and angle of internal friction of EPS geofoam increase with an increase in density. However, the cohesion is found to be the major parameter which contributes the shear strength of EPS geofoam. The water absorption capacity of EPS geofoam was found very less and also decreased with an increase in density.
机译:膨胀的聚苯乙烯(EPS)Geofoam是岩土工程领域的迷人区域,其使用寿命与其他建筑材料相当。它可用于回填堤防和高速公路垂直和倾斜的侧面。此外,它已被用作挡板后面的可压缩包裹物,管道,隧道或涵洞,在基础上的板条或梁下方。在本研究中,已经尝试使用水吸收试验,抗压强度试验,抗弯强度试验和三轴试验来理解EPS Geofoam的行为。通过针对50,100和150kPa的限制压力进行的一系列三轴试验检查EPS Geofoam的剪切强度行为。已经在3种不同密度,12,15和20kg / m〜3的EPS Geofoam样品上进行了测试。 EPS Geofoam在压缩中的行为是密度,应变率和样本大小的函数。 EPS Geofoam的较高密度发展高抗压强度,EPS Geofoam的棱柱样本的尺寸影响模量值。 EPS Geofoam的弯曲强度随着密度的增加而增加。由于密度增加,较高的密度试样由于刚度而导致的较低变形。三轴试验结果表明,EPS Geofoam的内部摩擦内部摩擦的凝聚力和角度随着密度的增加而增加。然而,发现凝聚力是有助于EPS Geofoam的剪切强度的主要参数。 EPS Geofoam的吸水能力非常少,并且随着密度的增加也降低。

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