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首页> 外文期刊>Geosciences >Chemo-Mechanical Interactions in the Ettringite Induced Expansion of Sulfate-Bearing Soils
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Chemo-Mechanical Interactions in the Ettringite Induced Expansion of Sulfate-Bearing Soils

机译:Ettringite的化学机械相互作用诱导耐硫酸盐土壤的膨胀

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Expansive sulfate-bearing soils are frequently encountered in transportation and construction practices. These soils are often treated with a lime or cement stabilizer to improve the relevant qualities. However, the reaction between sulfate and alumina in soils and calcium of lime or cement can lead to the formation of ettringite, an expansive sulfate mineral resulting in soil swelling or heaving. The underlying mechanisms often involve intricate interactions between chemical processes and mechanical responses. The present study explores a chemo–mechanical approach in an attempt to quantify several mechanisms potentially responsible for the volume expansion, including the geochemical formation of ettringite, crystallization pressure, and osmosis-induced swelling. The geochemical reaction leading to ettringite formation is examined with a specific focus on the circumstances under which it may lead to volume change. The crystallization pressure developed during the ettringite formation may also play a significant role in the soil expansion and is investigated in the present study based on thermodynamic formulations, and the resulting volume expansion is simulated. The osmosis-induced swelling is studied within the context of the chemo–mechanical framework, and its kinetics is also explored. Numerical simulations are performed in the present study to examine different scenarios driven by distinct predominant mechanisms. In particular, the interplay between ettringite formation and osmosis swelling as interpreted from some recently-reported experimental studies shows that these mechanisms can all contribute to the observed expansion processes, and overall, the modeling results are consistent with the experimental findings.
机译:运输和建筑实践经常遇到膨胀硫酸盐土壤。这些土壤通常用石灰或水泥稳定剂治疗,以改善相关品质。然而,硫酸盐与氧化铝之间的反应和石灰或水泥的钙可以导致Ettringite的形成,一种膨胀的硫酸盐矿物,导致土壤膨胀或起伏。潜在机制通常涉及化学过程与机械反应之间的复杂相互作用。本研究探讨了一种化学机械方法,试图量化可能对体积膨胀有可能造成的若干机制,包括Ettringite的地球化学形成,结晶压力和渗透性肿胀。检查导致Ettringite形成的地球化学反应,采用特定关注其导致体积变化的情况。在Ettringite形成期间产生的结晶压力也可能在土壤膨胀中发挥重要作用,并且在基于热力学制剂的本研究中研究,并模拟所得体积膨胀。在化疗机械框架的背景下研究了渗透性肿胀,还探讨了其动力学。在本研究中进行数值模拟,以检查通过不同主要机制驱动的不同情景。特别地,从一些最近报道的实验研究中解释的Ettringite形成和渗透溶胀之间的相互作用表明,这些机制都可以促进观察到的膨胀过程,总体而言,建模结果与实验结果一致。

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