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STABILIZATION OF OKLAHOMA EXPANSIVE SOILS USING LIME AND CLASS C FLY ASH

机译:使用石灰和C类粉煤灰稳定俄克拉何马州膨胀土

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This study uses lime and Class C fly ash, an industrial byproduct of electric power production produced from burning lignite and subbituminous coal, to study the plasticity reduction in highly expansive natural clays from Idabel, Oklahoma. This study is important, especially in Oklahoma, because most of the native soils are highly expansive and cause seasonal damage to roadways and structures. The addition of lime or fly ash helps to arrest the shrinkage and swelling behavior of soil. Four soil samples with the same AASHTO classification (A-7-6) were used in this study to show shrinkage variability within a soil group with the addition of lime and Class C fly ash. The plasticity reduction in this study was quantified using the linear shrinkage test. It was found that soils classified within the same AASHTO group had varying shrinkage characteristics. It was also found that both lime and fly ash reduced the linear shrinkage, however, the addition of lime reduced the linear shrinkage to a greater degree than the same percentage of Class C fly ash. Even though it takes much less lime than fly ash to reduce the plasticity of a highly expansive soil, it may be less expensive to utilize fly ash, which is a waste product of electric power production. Lime also has a lower unit weight than fly ash so weight percentage results may be misleading.
机译:这项研究使用石灰和C类粉煤灰(一种由燃烧褐煤和次烟煤生产的电力生产的工业副产品)来研究俄克拉荷马州Idabel的高膨胀天然粘土的可塑性降低。这项研究非常重要,尤其是在俄克拉荷马州,因为大多数天然土壤都具有很高的膨胀性,会对道路和结构造成季节性破坏。加入石灰或粉煤灰有助于阻止土壤的收缩和膨胀行为。在这项研究中,使用了四个具有相同AASHTO分类(A-7-6)的土壤样品,以显示在添加石灰和C级粉煤灰的土壤组内的收缩率变异性。本研究中可塑性的降低是使用线性收缩试验进行量化的。发现归入同一AASHTO组的土壤具有不同的收缩特性。还发现石灰和粉煤灰均降低了线性收缩率,但是,与相同百分比的C级粉煤灰相比,加入石灰降低了线性收缩率。尽管减少飞散的土壤的可塑性所需的石灰比飞灰少得多,但利用飞灰可能会更便宜,飞灰是电力生产的废品。石灰的单位重量也比粉煤灰低,因此重量百分比结果可能会产生误导。

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