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PARAMETERS CONTROLLING STRENGTH OF INDUSTRIAL WASTE-LIME AMENDED SOIL

机译:工业废石灰改良土壤的参数控制强度

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References(19) Cited-By(1) Unconfined compression tests and suction measurements were carried out in the present work on sandy specimens with distinct Class F fly ash amounts, lime contents, porosities and curing periods to assess key parameters controlling strength of fly ash-lime amended soil. A special effort has been allocated in order to develop a dosage methodology for fly ash-lime improved soils based in a rational criterion, as it exists in the concrete technology where the water/cement ratio plays a fundamental role in the assessment of the target strength. The results show that the unconfined compressive strength (UCS) increased linearly with the amount of lime for soil-fly ash-lime mixtures at all curing time periods studied. A power function fits better the relation UCS-porosity for soil-fly ash-lime mixtures. The bigger the amount of fly ash and the curing time, the larger the UCS for any given porosity and lime content. Finally, the porosity/volumetric lime content ratio, in which volumetric lime content is adjusted by a coefficient (in this case a unique value-0.12-was found for all soil-fly ash-lime mixtures and all curing periods studied) to end in single correlations for each curing period, show to be a good parameter in the evaluation of the unconfined compressive strength of the soil studied (UCS varies non-linearly with the porosity/volumetric lime content ratio in the case of fly ash-lime addition).
机译:参考文献(19)被引(1)在目前的工作中对含F类粉煤灰量,石灰含量,孔隙率和固化时间不同的沙样进行了无边压缩试验和吸力测量,以评估控制粉煤灰强度的关键参数。 -石灰改良土壤。为了在合理的标准基础上开发粉煤灰-石灰改良土壤的剂量方法,已经付出了特殊的努力,因为混凝土技术中存在水灰比在评估目标强度方面起着基本作用的具体技术。 。结果表明,在研究的所有固化时间段内,无限制抗压强度(UCS)随石灰量的增加而线性增加。幂函数更适合土壤-粉煤灰-石灰混合物的UCS-孔隙率关系。飞灰量和固化时间越大,对于任何给定的孔隙度和石灰含量,UCS越大。最后,孔隙度/体积石灰含量比通过系数(在这种情况下,对于所有的粉煤灰-石灰混合物和所研究的所有养护期均得出独特的值-0.12)进行调整,直至最终在评估所研究土壤的无侧限抗压强度时,每个固化周期的单一相关性显示出很好的参数(在添加粉煤灰的情况下,UCS与孔隙度/体积石灰含量比呈非线性变化)。

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