打包带废纤维对混凝土新拌和硬化性能的影响

IF 0.6 Q4 ENGINEERING, CIVIL
R. Djebien, Rachid Kebout, M. Belachia
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引用次数: 0

摘要

面对日益增长的建筑材料资源需求以及保护环境的严格要求和条件,研究建筑领域工业废料和副产品回收利用的所有可能性和机会已变得十分必要和重要。打包带是一种用于捆绑和运输货物和建筑材料的产品。使用后,它被视为废物。这项实验工作的目的是研究将捆扎带废料作为纤维重新用于纤维增强混凝土生产的可能性。为此,我们使用捆扎带纤维、钢纤维和聚丙烯纤维,通过体积替换(0.4%、0.8% 和 1.2%)骨料的方式,将其引入混凝土成分中,制成了三种混凝土。通过坍落度、密度和含气量测试评估了新拌混凝土的性能。硬化性能则通过抗压和抗折强度、脉冲速度、动态弹性模量和吸水率测试进行研究。结果表明,捆扎带废纤维能显著改善纤维增强混凝土的机械性能,其行为与钢纤维相似。在抗压和抗折强度方面,捆扎带纤维的最佳添加量分别为 0.4% 和 1.2%。与聚丙烯纤维相比,捆扎带纤维的效率更高,随着捆扎带纤维的增加,抗折强度也逐渐增加。研究结果还表明,随着捆扎带纤维含量的增加,纤维增强混凝土的吸水性也逐渐增加。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Effect of Strapping Straps Waste Fibers on Fresh and Hardened Properties of Concrete
Faced with the increasingly growing need for construction material resources and the strict requirements and conditions for preserving the environment, it has become necessary and relevant to study all possibilities and opportunities for the recycling and valorization of industrial waste and by-products in the construction field. Strapping straps is a product used to bundle and transport goods and construction materials. After its use, it is considered as waste. The objective of this experimental work is to study the possibility of reusing the strapping strap waste as fibers in the production of fiber-reinforced concrete. For this purpose, three families of concrete were composed using strapping strap fibers, steel fibers, and polypropylene fibers, which were introduced into a concrete composition by volumetric substitution (0.4%, 0.8% and 1.2%) of aggregates. The fresh properties were evaluated through slump, density and air content tests. Hardened properties were investigated using the compressive and flexural strengths, pulse velocity, dynamic elastic modulus, and water absorption tests. The results obtained showed that strapping strap waste fibers significantly improve the mechanical properties of fiber-reinforced concrete and have a behavior similar to that of steel fibers. The optimum rates of strapping strap fibers were 0.4% and 1.2% for compressive and flexural strengths respectively. Compared to polypropylene fibers, the strapping strap fibers were found to be more efficient and led to a gradual increase in flexural strength with an increase in the strapping strap fibers. The results obtained also showed that the increase in strapping strap fiber content gradually increased the water absorption of fiber-reinforced concrete.
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