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Collapsibility of metastable sand by non-conventional oedometer tests

机译:非常规渗压计测试对亚稳砂的塌陷性

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摘要

The stability of foundations soils could represent a clear and present threat for the conservation of even well preserved buildings, particularly for Architectural heritage conservation and land art heritage. A dramatic case is the presence of collapsible metastable sands as foundation soils, as it occurs in the sacral complex Valle dei Templi in Agrigento. This site listed by UNESCO, stands on a crest of a calcarenite cuesta, overlaying a layer of these sands. When the collapsible sand is dry, the structure is strong enough to bond the sand particles together. When the sand becomes wet, a de-structuration mechanism occurs and the soil's strength is compromised. This paper has a twofold aim: (1) to gain a better understanding of the kind of bonding forces between the textural components of the collapsible metastable sand and (2) to identify a proper consolidant, that could combine the compatibility of inorganic systems and the performance of polymeric materials, paying attention to the environmental issues related to this site. Soaking tests have been performed by submerging sand samples in different solvents in order to verify the role of water menisci in mechanical stability of the sand highlighting a perfect stability using a non polar solvent. Sand samples have been consolidated by using poly ethylene glycol and nanosilica. Oedometer tests on consolidated and untreated samples have been used to verify the reduction of collapse potential induced by the treatment with the proposed mixtures.
机译:地基土壤的稳定性可能对保存完好的建筑物,尤其是建筑遗产保护和土地艺术遗产,构成明显的和当前的威胁。一个引人注目的案例是存在可塌陷的亚稳砂作为基础土壤,这种情况发生在阿格里真托的complex骨复合体Valle dei Templi中。这个被联合国教科文组织列为世界遗产的遗址,坐落在钙钙长岩球冠的山顶上,覆盖着这些沙子的一层。当可塌陷的沙子干燥时,其结构强度足以将沙子颗粒粘合在一起。当沙子变湿时,就会发生解构机制,土壤的强度也会受到损害。本文有两个目的:(1)更好地理解可塌陷的亚稳砂的质地成分之间的结合力类型;(2)找出合适的固结剂,可以结合无机体系与水泥的相容性聚合材料的性能,请注意与此站点有关的环境问题。为了验证水弯液面在砂的机械稳定性中的作用,突出了使用非极性溶剂的完美稳定性,已经通过将砂样品浸入不同的溶剂中进行了浸泡测试。沙样品已通过使用聚乙二醇和纳米二氧化硅进行固结。已对合并和未处理的样品进行了里程表测试,以验证通过使用建议的混合物进行处理而引起的坍塌可能性的降低。

著录项

  • 来源
    《Granular matter》 |2019年第1期|1.1-1.11|共11页
  • 作者单位

    Univ Palermo, Dept Civil Environm Aerospatial Mat Engn, DICAM, Viale Sci,Ed 8, I-90128 Palermo, PA, Italy;

    Univ Palermo, Dept Civil Environm Aerospatial Mat Engn, DICAM, Viale Sci,Ed 8, I-90128 Palermo, PA, Italy;

    Univ Palermo, Dept Civil Environm Aerospatial Mat Engn, DICAM, Viale Sci,Ed 8, I-90128 Palermo, PA, Italy;

    Univ Palermo, Dept Civil Environm Aerospatial Mat Engn, DICAM, Viale Sci,Ed 8, I-90128 Palermo, PA, Italy;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Suction forces; Collapse potential; Metastable sand; Stabilization; PEG;

    机译:吸力;崩塌势;亚稳砂;稳定化;聚乙二醇;

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