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首页> 外文期刊>Indian Journal of Science and Technology >Study on Behaviour of Soil with Phosphogypsum as Stabiliser
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Study on Behaviour of Soil with Phosphogypsum as Stabiliser

机译:磷石膏稳定剂在土壤中的行为研究

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Background/Objective: Civil engineering structure resting on expansive soils needs more attention since it causes undesirable engineering behavior when the soil comes in contact with water. The areas consisting of expansive soil need a proper stabilization method to solve the site problems faced by the civil engineers. Pavements constructed on such soil shows signs of damage continuously during the service life of the pavement eventually increase the maintenance costs. Stabilization of these soils is a usual practice for improving the strength. Methods: In this work an attempt was made on the utilization of Phospho Gypsum (PG) with soil by adding various percentages of 2, 4, and 6% in soils and accessed their geotechnical behaviour for different curing periods. The effects of PG treatment on the microstructure and strength improvement of compacted expansive clays are studied based on Microstuctural analysis and Unconfined Compression tests for different curing periods of 0, 14 and 28 days. Findings: UCS performed on these mixes and identified that addition of phosphogypsum attained high strength with the increasing percent of phosphogypsum in soils. From the test results, it was observed that the UCS peak stresses were increases to 162kPa and 336kPa from 75 kPa and 122 kPa for soil samples S1 and S2 at 28days of curing. X-ray Diffraction and Scanning Electron Microscopy were carried out for microlevel analysis and the results confirmed the presence of minerals and cementation nature in the treated soil. Improvement: From the experimental study, it is observed that the treatment of the expansive soil with the addition of Industrial waste material Phosphogypsum is more efficient in subgrade modification and other geotechnical applications.
机译:背景/目的:搁置在膨胀土壤上的土木工程结构需要引起更多关注,因为当土壤与水接触时会引起不良的工程行为。由膨胀土壤组成的区域需要适当的稳定方法来解决土木工程师所面临的现场问题。在这种土壤上建造的人行道在人行道使用寿命期间不断显示出损坏的迹象,最终增加了维护成本。这些土壤的稳定化是提高强度的常用方法。方法:在这项工作中,尝试通过在土壤中添加2%,4%和6%的各种百分比来在土壤中利用磷石膏(PG),并了解其在不同养护期间的岩土行为。基于微观结构分析和0、14和28天不同固化时间的无侧限压缩试验,研究了PG处理对压实膨胀粘土的微观结构和强度提高的影响。研究结果:UCS对这些混合物进行了测试,发现随着土壤中磷石膏百分比的增加,磷石膏的添加获得了高强度。从测试结果可以看出,养护28天后,土壤样品S1和S2的UCS峰值应力从75 kPa和122 kPa增加到162kPa和336kPa。 X射线衍射和扫描电子显微镜进行了微观分析,结果证实了处理过的土壤中存在矿物质和胶结性质。改进:从实验研究中可以看出,添加工业废料磷石膏处理膨胀土在路基改性和其他岩土工程应用中更为有效。

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