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Desiccation cracking behavior of polypropylene fiber-reinforced clayey soil

机译:聚丙烯纤维增强黏性土的干燥开裂行为

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Improvement of the crack resistance of clayey soils by fiber reinforcement was investigated using initially saturated and fiber-reinforced soil specimens subjected to desiccation. An image-processing technique was used to quantitatively describe the effect of fiber addition on the geometrical and morphological characteristics of crack patterns. The results show that the soil desiccation cracking behavior was significantly influenced by fiber inclusion: the crack resistance was significantly improved and the amount of desiccation cracks was significantly reduced by fiber addition. Generally, the surface crack ratio (surface of cracks to total surface), number of clods, average length and width of cracks, and crack network connectivity decreased with increasing fiber content, while the average area of clods, number of nodes per unit area, number of crack segments per unit area, crack density, and specimen integrity increased. During crack propagation, the surface crack ratio increased with decreasing water content and finally reached stabilization. Comparison between the surface crack ratio of the natural soil specimen and that of the fiber-reinforced soil specimen showed that the former was always higher than the latter. The fiber length was found to have an insignificant effect on the soil desiccation cracking behavior.
机译:研究了通过纤维增强对黏性土壤的抗裂性的改进,方法是使用最初饱和且纤维增强的土壤样品进行干燥处理。图像处理技术用于定量描述纤维添加对裂纹图案的几何和形态特征的影响。结果表明,纤维夹杂对土壤干燥开裂行为有显着影响:添加纤维后,抗裂性显着提高,干燥开裂量明显减少。通常,随着纤维含量的增加,表面裂缝比率(裂缝表面与总表面的比率),凝块数,裂缝的平均长度和宽度以及裂缝网络的连通性会降低,而凝块的平均面积,每单位面积的结点数,每单位面积的裂纹片段数量,裂纹密度和试样完整性增加。在裂纹扩展过程中,表面裂纹率随水含量的降低而增加,并最终达到稳定。天然土试样和纤维增强土试样的表面开裂率的比较表明,前者总是高于后者。发现纤维长度对土壤干燥开裂行为没有显着影响。

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