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Growth of Gel Microstructures between Stressed Silica Grains and its Effect on Soil Stiffening.

机译:应力硅粒之间凝胶微结构的生长及其对土壤硬度的影响。

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摘要

Laboratory tests on microscale are reported in which two amorphous silica cubes were compressed in a liquid environment, namely in solutions with different silica ion concentrations for up to four weeks. Such an arrangement represents an idealized representation of two sand grains. The grain surfaces and asperities were examined in Scanning Electron Microscope (SEM) and Atomic Force Microscope (AFM) for fractures, silica gel growth, and polymer strength. In 500ppm solution, silica gel structures a few hundred microns long appeared between stressed silica cubes. In 200ppm solution, silica deposits were found around damaged grain surfaces, while at 90ppm (below silica solubility in neutral pH), fibers a few microns in length were found growing in cube cracks. AFM pulling tests found polymers with strength in the order of 100nN and length between 50 and 100 nm. After aging, size of silica gel is in the order of 10-100 µm with intergranular strength in the order of 0.01-1 mN. We concluded that prolonged compression produced damage in grains, raising local Si ion concentration, and accelerating precipitation, polymerization and gelation of silica on grain surfaces enhancing soil strength at the microscale, hence most likely contributing to the aging phenomenon observed at the macroscale. Mica surfaces near stressed silica contacts were also found to enhance silica gel growth.
机译:据报道,在微型实验室测试中,在液体环境中将两个无定形二氧化硅立方体压缩,即在具有不同二氧化硅离子浓度的溶液中压缩长达四个星期。这样的布置代表了两个沙粒的理想化表示。在扫描电子显微镜(SEM)和原子力显微镜(AFM)中检查了晶粒的表面和粗糙度,看是否存在断裂,硅胶生长和聚合物强度。在500ppm的溶液中,受应力的二氧化硅立方体之间出现了几百微米长的硅胶结构。在200ppm的溶液中,在受损的晶粒表面周围发现了二氧化硅沉积物,而在90ppm(低于中性pH的二氧化硅溶解度)时,发现了几微米长的纤维生长在立方体裂纹中。 AFM拉力测试发现,聚合物的强度约为100nN,长度在50至100 nm之间。老化后,硅胶的尺寸为10-100μm的量级,晶间强度为0.01-1mN的量级。我们得出的结论是,长时间的压缩会在晶粒中造成破坏,提高局部Si离子浓度,并加速晶粒表面二氧化硅的沉淀,聚合和胶凝作用,从而在微观尺度上增强土壤强度,因此最有可能导致宏观尺度上的老化现象。还发现靠近应力二氧化硅接触点的云母表面可增强硅胶的生长。

著录项

  • 作者

    Guo, Rui.;

  • 作者单位

    Duke University.;

  • 授予单位 Duke University.;
  • 学科 Agriculture Soil Science.;Engineering Civil.
  • 学位 M.S.
  • 年度 2013
  • 页码 84 p.
  • 总页数 84
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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