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A laboratory study to address swell, shrink and strength characteristics of deep mixing treated expansive clays.

机译:一项针对深层混合处理的膨胀粘土的溶胀,收缩和强度特性的实验室研究。

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摘要

Expansive soils, in general are considered detrimental in the field of geotechnical engineering due to their susceptibility to volume change in response to seasonal moisture fluctuations. One such potential problem areas include the surface roughness in pavements overlying expansive subgrades with the zone of moisture fluctuation (active depth) extending to greater depths. Such pavements usually experience differential heave, loss of riding comfort, a reduction of pavement service life and pose high maintenance costs that are experienced sooner than anticipated. Deep stabilization methods including soil replacement, grouting, auger cast piles and drilled shafts have proven ineffective with respect to both cost and practicality aspects.; In the current research, deep soil mixing technique was proposed as a potential solution to counter the shrink swell movements of the expansive soil. The current thesis investigates a laboratory deep soil mixing procedure to stabilize medium to high PI expansive clays. Hydrated lime and Type I/II Portland cement were used as binders. Free swell, linear bar shrinkage and unconfined compressive strength tests were performed on both control and treated soils. The affect of curing period, binder dosages and proportions were studied and the results were analyzed to make recommendations for field implementation.; Results show that the treated soils exhibited a considerable reduction in linear shrinkage and free swell at all dosages and lime cement proportions. Maximum strength enhancements were noted at increasing binder dosages and cement proportions in the lime: cement ratio. Increase in curing period from 7 to 14 days has resulted in a 30% increase in the unconfined compressive strength.; Further research is recommended at different water cement ratios (0.8 and 1.3) and increased curing periods to better understand the efficacy of deep soil mixing applied to expansive clays in situ.
机译:通常,膨胀土在土工工程领域中被认为是有害的,因为膨胀土易受季节性湿度波动的影响而发生体积变化。这样的潜在问题区域之一包括铺在膨胀路基上的路面的表面粗糙度,其中水分波动区域(有效深度)扩展到更大的深度。这样的路面通常会出现不平整的起伏,行驶舒适性的损失,路面使用寿命的减少以及带来比预期更快的高维护成本。在成本和实用性方面,包括土壤置换,灌浆,螺旋钻桩和钻探井在内的深层稳定方法已被证明无效。在当前的研究中,提出了深层土壤搅拌技术作为应对膨胀土收缩胀大运动的一种潜在解决方案。本论文研究了一种用于稳定中高PI膨胀土的实验室深层土壤搅拌程序。熟石灰和I / II型波特兰水泥用作粘合剂。在对照和处理过的土壤上均进行了自由膨胀,线性钢筋收缩和无侧限抗压强度试验。研究了固化时间,粘合剂用量和比例的影响,并对结果进行了分析,为现场实施提供了建议。结果表明,在所有剂量和石灰水泥比例下,处理后的土壤线性收缩率和自由溶胀率均显着降低。在增加石灰和水泥比例中的粘结剂用量和水泥比例时,可以看到最大的强度增强。固化时间从7天增加到14天,导致无边抗压强度提高了30%。建议在不同的水灰比(0.8和1.3)和延长的养护时间下进行进一步研究,以更好地了解在膨胀土中现场应用深层土壤搅拌的效果。

著录项

  • 作者

    Bhadriraju, Venkata.;

  • 作者单位

    The University of Texas at Arlington.;

  • 授予单位 The University of Texas at Arlington.;
  • 学科 Engineering Civil.; Engineering Environmental.
  • 学位 M.S.
  • 年度 2005
  • 页码 173 p.
  • 总页数 173
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 建筑科学;环境污染及其防治;
  • 关键词

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