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首页> 外文期刊>MATEC Web of Conferences >Effect of Wood Fiber on the Strength of Calcareous Sand Rapidly Seeped by Colloidal Silica
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Effect of Wood Fiber on the Strength of Calcareous Sand Rapidly Seeped by Colloidal Silica

机译:木纤维对胶态二氧化硅快速渗透的钙质砂强度的影响

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摘要

Silica nano-particles are suspended in the colloidal silica and can be induced to gradually gel after the PH value changes. Thus colloidal silica can be utilized to rapidly seep through loose calcareous sand, and the silicon gel is gradually formed to bond sand particles. However, based on observation by scanning electron microscope(SEM), there are a lot of microcracks in the silica gel, which reduces the strength of the sand-gel composite. Therefore, in order to suppress crack growth, wood fibers are dispersed in the colloidal silica which still can seep through calcareous sand. 18 silicon-gel stabilized sand samples were prepared for tri-axial tests, where the concentration of colloidal silica is 20%, and wood fiber concentrations are 0%, 0.01%, 0.02%, 0.03%, 0.04%, 0.05%, respectively. The results show that:(1) there exists an optimum ratio of wood fiber to colloidal silica, that is, as the concentration of wood fiber increases, the strength represented by the peak value of deviator stress rises first and then falls; (2) there are opposite trends between the two strength parameters, internal friction angle and cohesion, that is, when the wood fiber concentration is 0.04%, the cohesion reaches the maximum value and the internal friction angle reaches the minimum value; (3) The photos by SEM show that, there are wood fibers on the inner wall of the crack in the silica gel, which may reduce the extent of crack propagation and contribute to the strength of stabilized sand samples.
机译:二氧化硅纳米颗粒悬浮在胶态二氧化硅中,可以在PH值变化后被诱导逐渐凝胶化。因此,胶体二氧化硅可用于迅速渗漏通过疏松的钙质砂,并且逐渐形成硅胶以结合砂粒。然而,基于扫描电子显微镜(SEM)的观察,硅胶中存在许多微裂纹,这降低了沙凝胶复合材料的强度。因此,为了抑制裂纹的生长,木纤维分散在仍然可以透过钙质砂渗入的胶态二氧化硅中。制备了18个硅凝胶稳定砂样品进行三轴测试,其中胶体二氧化硅的浓度为20%,木纤维的浓度分别为0%,0.01%,0.02%,0.03%,0.04%,0.05%。结果表明:(1)木纤维与胶态二氧化硅存在最佳比例,即随着木纤维浓度的增加,偏应力峰值所代表的强度先升高后降低。 (2)内摩擦角和内聚力这两个强度参数之间存在相反的趋势,即当木纤维浓度为0.04%时,内聚力达到最大值,内摩擦角达到最小值。 (3)扫描电镜照片表明,硅胶裂纹内壁上存在木纤维,可减少裂纹扩展的程度,并有助于稳定砂样的强度。

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