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Mechanical Behaviour of Reinforced Sand with Natural Curauá Fibers through Full Scale Direct Shear Tests

机译:通过全规模直接剪切试验通过全尺寸直接剪切试验加筋砂的力学行为

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摘要

Inclusion of natural fibers (sisal, curauá, coco fiber and others) for soil improvement has been the study object in diverse geotechnical areas and it is a topic of growing interest, within the research area of new geotechnical materials. The state of the art in this subject highlights excellent results as soil strength parameters improve and post-cracking strength (toughness) increase. Soil reinforcement technique with fibers is established in the technology of composite materials, this being a combination of two or more materials presenting properties that the component materials do not possess on their own. The aim of this paper is to study the mechanical behaviour of sand-fiber composite by inserting natural curauá fibers into a sandy matrix, with different fiber contents. The fibers were randomly distributed in the soil mass. The experimental program included physical and mechanical characterization of the composites, using full-scale direct shear tests, with samples measuring 30 x 30 cm and 15 cm high. Direct shear tests were carried out using fibers with 25 mm length and 0.5 and 0.75% fiber content (relative to the soil dry weight). The specimens also presented a relative density of 50% and moisture content of 10%. It was sought to establish a pattern behaviour so that the addition of curauá fiber influence can be explained, thus, comparing with the sandy soil shear strength parameters. Inclusion of natural curauá fibers as soil reinforcement presented satisfactory results, as an increase in the soil shear strength parameters was observed when compared with sandy soil results.
机译:将天然纤维(Sisal,Curauá,可可纤维和其他)用于土壤改善一直是不同地岩土地区的研究对象,并且在新的岩土材料的研究领域内,它是一种日益增长的兴趣。本课题的最先进突出了优异的结果,因为土壤强度参数提高和开裂后强度(韧性)增加。在复合材料技术中建立了具有纤维的土壤增强技术,这是两种或多种材料的组合,其具有组件材料不具备的性质。本文的目的是通过将天然Curauá纤维插入含有不同的纤维内容物中,研究砂纤维复合材料的力学行为。纤维随机分布在土壤质量中。实验程序包括复合材料的物理和机械表征,使用全尺寸的直接剪切测试,样品测量30×30cm和15cm高。使用具有25mm长度的纤维和0.5%和0.75%纤维含量(相对于土壤干重)进行直接剪切试验。标本还呈现了50%和含水量为10%的相对密度。寻求建立一种模式行为,以便可以解释加入Curauá纤维的影响,因此与砂土剪切强度参数相比。将天然的Curauá纤维作为土壤强化呈现令人满意的结果,随着与砂土结果相比,观察到土壤剪切强度参数的增加。

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