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Expanded Polystyrene (EPS) Geofoam Unit Cells with Fly Ash

机译:粉煤灰膨胀聚苯乙烯(EPS)土工泡沫单元

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摘要

This paper reports the engineering behavior of proposed expanded polystyrene (EPS) geofoam unit cells with fly ash inside the core of cell. EPS geofoam unit cell were prepared with four different densities of EPS geofoam material i.e. 15, 20, 22, and 30 kg/m~3 with heights 50, 75, and 100 mm. The fly ash was compacted inside the core of unit cell at its optimum moisture content in layers of 25 mm height. The compression tests were performed on proposed composite material to study the stress-strain behavior, effect of density of EPS geofoam and height of unit cell along with the failure patterns. Compressive stress-strain curves for EPS geofoam showed increase in compressive strength with increased density of material. On the other hand, EPS geofoam unit cell with fly ash showed a decrease in the compressive strength with increase in the density of EPS geofoam material. Also, increase in the height of EPS geofoam unit cell resulted in decrease in the compressive strength. For a particular height of the EPS geofoam cell, compressive strength decreases marginally with increase in the density of EPS geofoam. Different failure patterns were observed for the each height of the unit cell tested.
机译:本文报道了拟议的发泡聚苯乙烯(EPS)土工泡沫单元电池在其核心内部具有粉煤灰的工程行为。用四种不同密度的EPS土工泡沫材料制备EPS泡沫体单元,即15、20、22和30 kg / m〜3,高度分别为50、75和100 mm。粉煤灰以其最佳水分含量在25 mm高度的层中被压实在晶胞的内部。对建议的复合材料进行了压缩试验,以研究其应力-应变特性,EPS泡沫土的密度和单位面积高度的影响以及破坏模式。 EPS土工泡沫材料的压缩应力-应变曲线显示,其抗压强度随材料密度的增加而增加。另一方面,随着粉煤灰EPS密度的增加,EPS粉煤灰泡沫单胞的抗压强度降低。另外,EPS土工泡沫单元格的高度增加导致抗压强度降低。对于特定的EPS土工泡沫单元高度,其抗压强度随EPS土工泡沫密度的增加而略有下降。对于所测试的晶胞的每个高度,观察到不同的失效模式。

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