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Effect of Sisal Fiber and Polyurethane Admixture on the Strength and Mechanical Behavior of Sand

机译:剑麻纤维和聚氨酯混合物对砂强度和力学行为的影响

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摘要

One major problem related to sandy soil is its low shear strength and cohesion in engineering. Although much effort has been made to strengthen sand mass with satisfactory performances, most undertakings lack environmental considerations. Thus, a combination of natural fiber and macromolecule polymer material attempts to achieve both strength and eco-friendliness. In the present investigation, sisal fiber (SF) and water-based polyurethane (PU) were used to reinforce sand. A series of unconfined compression tests were carried out on sand specimens at different percentages of fiber contents (0.2%, 0.4%, 0.6%, and 0.8% by weight of dry sand) and polymer contents (1%, 2%, 3%, and 4% by weight of dry sand). The results showed within our test range that the unconfined compressive strength (UCS) as well as post-peak strength of specimens increase with fiber and polymer contents. The inclusion of fiber and polymer significantly improve the ductility of specimens. The effect of dry densities on UCS were studied with three proportions. It is found that a high dry density led to an increase of UCS due to an effective contact area increase. The interactions were studied by observation through scanning electron microscopy (SEM) images. The presence of water-based polyurethane has the potential to improve the interparticle cohesion of sand due to its unique network membrane structure. The fiber reinforcement benefit depends strongly on the friction, interlocking force, and bond strength at the interface.
机译:与砂土有关的一个主要问题是其在工程中的低剪切强度和内聚力。尽管已经进行了很多努力来使砂体质量达到令人满意的性能,但是大多数工作都缺乏环境方面的考虑。因此,天然纤维和高分子聚合物材料的组合试图同时获得强度和生态友好性。在本研究中,剑麻纤维(SF)和水基聚氨酯(PU)用于加固沙子。在不同纤维含量百分比(干砂的0.2%,0.4%,0.6%和0.8%)和聚合物含量(1%,2%,3%,和4%的干砂)。结果表明,在我们的测试范围内,样品的无侧限抗压强度(UCS)和峰后强度随纤维和聚合物含量的增加而增加。包含纤维和聚合物可显着提高样品的延展性。从三个方面研究了干密度对UCS的影响。发现由于有效接触面积的增加,高的干密度导致UCS的增加。通过扫描电子显微镜(SEM)图像的观察研究了相互作用。水性聚氨酯的存在由于其独特的网络膜结构而具有改善砂粒间粘结力的潜力。纤维增强的好处在很大程度上取决于摩擦,互锁力和界面处的粘结强度。

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