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Reduction of the shrinkage-swelling potential with polymer nanocomposite stabilization

机译:聚合物纳米复合材料稳定剂可减少收缩膨胀潜力

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摘要

This article describes the application of using polymer stabilization to create a new hydrophobic (nanocomposite) material with swollen clay. A series of tests were performed with different polymer contents to study the effect of using polypropylene as a partial soil stabilizer and a shrinkage-swelling modifier for expansive soils. The effect of the obtained clay-polymer nanocomposites on the shear strength of swelling soils was also investigated. The tests showed that the resulting nanocomposites acted as nanofiller materials and decreased both the plasticity index and permeability. The optimum moisture content and dry density decreased relatively with increasing polymer content. The polymer inclusions significantly reduced the free swelling and swelling pressure values. In addition, the produced nanocomposites reduced the volumetric shrinkage of the expansive soils and created isotropic and compressible materials. The unconfined compressive strength of the soil increased significantly with increasing polymer content. The proposed stabilized technique increased the bearing capacity under the model footing and modified the stress settlement relationship.
机译:本文介绍了使用聚合物稳定剂来制造具有膨胀粘土的新型疏水(纳米复合材料)材料的应用。使用不同的聚合物含量进行了一系列测试,以研究使用聚丙烯作为部分土壤稳定剂和膨胀膨胀剂的收缩膨胀改性剂的效果。还研究了获得的粘土-聚合物纳米复合材料对膨胀土的剪切强度的影响。测试表明,所得纳米复合材料充当纳米填料材料,并且降低了可塑性指数和渗透性。最佳水分含量和干密度随聚合物含量的增加而相对降低。聚合物夹杂物显着降低了自由溶胀和溶胀压力值。另外,产生的纳米复合材料减少了膨胀土壤的体积收缩,并产生了各向同性和可压缩的材料。随着聚合物含量的增加,土壤的无侧限抗压强度显着增加。所提出的稳定技术增加了模型基础下的承载能力,并修改了应力沉降关系。

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