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首页> 外文期刊>Environmental Earth Sciences >Long-term behavior of lime-stabilized kaolinite clay
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Long-term behavior of lime-stabilized kaolinite clay

机译:石灰稳定的高岭石粘土的长期行为

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Clay soils create many problems for highway construction and they have to be replaced or improved by stabilization for satisfactory performance. Lime stabilization is a well-established technique to improve the performance of clays. Cementitious minerals form upon mixing of clay with lime causing an improvement in strength and durability. In the study, the changes in the microfabric of long-term cured lime-stabilized kaolinite clay using X-ray diffraction pattern, scanning electron microscope and unconfined compressive strength (UCS) is presented. Unconfined compression test samples at two different lime contents (4 and 12% by weight) were prepared and cured in a humidity room for long time curing. The UCS of pure kaolinite was originally 125 kPa, which increased to 1,015 kPa after 1 month and to 2,640 kPa (21 times the initial value) after 10 years for cured lime-stabilized kaolinite samples. Similar long-term strength increases were also observed for stabilized kaolinite with 12% lime. Calcium aluminate silicate hydrate minerals were detected in the structure of the kaolinite. This suggests pozzolanic reactions with lime stabilization may continue in the long-term for up to 10 years.
机译:粘土会给公路建设带来许多问题,必须通过稳定化来替代或改善粘土才能获得令人满意的性能。石灰稳定化是改善粘土性能的成熟技术。粘土和石灰混合后会形成胶结矿物,从而提高强度和耐久性。在研究中,利用X射线衍射图谱,扫描电子显微镜和无侧限抗压强度(UCS),提出了长期固化的石灰稳定的高岭土粘土微结构的变化。制备了两种不同的石灰含量(分别为4和12%重量)的无侧限压缩测试样品,并在湿度室中进行了固化,以进行长时间固化。纯高岭石的UCS最初为125 kPa,经过1个月的固化石灰稳定高岭石样品,其UCS在1个月后增加到1,015 kPa,在10年后增加到2,640 kPa(初始值的21倍)。对于含12%石灰的稳定高岭石,也观察到了类似的长期强度增加。在高岭石的结构中检测到铝酸钙硅酸盐水合物矿物。这表明石灰稳定的火山灰反应可能长期持续长达10年。

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