The Use of Plastic Bottle Fibers in the Geotechnical Improvement of Tropical Soils from the Municipality of Viçosa - Brazil

Daniely Camargos Lucarelli, H. Pitanga, Maria Esther Soares Marques, Taciano Oliveira da Silva, Darlan Miranda Nunes
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Abstract

Motivated by the environmental issues generated by the accumulation of waste from discarded plastic bottles and recognizing the utility of plastic properties in engineering, this research aimed to evaluate the application of plastic bottle fibers in the geotechnical improvement of tropical soils. In this context, the influence of quantity, roughness, and width of plastic bottle fibers on the shear strength parameters of soil- fiber mixtures, of two tropical residual soils, was analyzed. The fibers used in this study are made of Polyethylene Terephthalate (PET), generated from soft drink bottles, and added to the soil in different widths, textures, and contents. Results of the direct shear test showed higher shear strength for all soil-fiber systems compared to fiber-free mixtures. Additionally, the findings indicated that the systems with rough fibers presented better performances for clayey soil, whereas those with smooth fibers obtained better behavior for sandy soil. The cohesion results highlighted the better performance of mixtures with 0.5% fibers when compared to mixtures with 1% fibers. The enhancement of mechanical properties obtained in the studied soil-fiber systems demonstrates the potential application of these composites in geotechnical works.
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使用塑料瓶纤维改善巴西维索萨市的热带土壤土质
由于废弃塑料瓶所产生的废物堆积引发了环境问题,并认识到塑料特性在工程中的实用性,本研究旨在评估塑料瓶纤维在热带土壤岩土改良中的应用。在此背景下,研究人员分析了塑料瓶纤维的数量、粗糙度和宽度对两种热带残积土的土壤-纤维混合物剪切强度参数的影响。本研究中使用的纤维由聚对苯二甲酸乙二酯(PET)制成,来自软饮料瓶,并以不同的宽度、质地和含量添加到土壤中。直接剪切试验结果表明,与不含纤维的混合物相比,所有土壤-纤维系统的剪切强度都更高。此外,研究结果表明,含有粗糙纤维的系统在粘性土壤中表现更好,而含有光滑纤维的系统在沙质土壤中表现更好。内聚力结果表明,与含 1%纤维的混合物相比,含 0.5%纤维的混合物性能更好。所研究的土壤-纤维系统机械性能的提高表明了这些复合材料在岩土工程中的应用潜力。
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