水力学混凝土的力学行为研究:从塑料瓶中添加纤维和微颗粒水力学混凝土的力学行为研究:从塑料瓶中添加纤维和微颗粒

S. O. Olarte Buritica
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引用次数: 0

摘要

为了减少对环境的影响,提高混凝土的机械性能,代表骨料、水泥和水之间的最佳附着力,在水工混凝土的配制中使用可回收材料目前正在蓬勃发展。本工作的目的是评价加入尼龙纤维和PET塑料瓶微粒的水工混凝土的力学性能。砂浆或试样在新鲜状态下进行了物理性能评估,并对其抗压缩和抗弯曲拉伸性能进行了硬化,制备了6种剂量的砂浆或试样:对照混合料和设计纤维混合料。为了进行试验,使用了一台Amsler通用试验机,其标称容量为3万公斤,分辨率为10公斤,并根据ISO 376进行了分析校准。结果表明,28天的抗弯强度提高了80% (c)、75% (d)、80% (e)和95% (f),压缩强度与对照试样相比,所有样品的强度都提高了80%。结果表明,掺加PET纤维的水工混凝土性能优于普通混凝土,所研究的水工混凝土的性能比对照混凝土有所提高。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Study of the mechanical behavior of hydraulic concrete: Addition of fibers and microparticles from plastic bottles Estudio del comportamiento mecánico del concreto hidráulico: Adición de fibras y micro partículas de botellas plásticas
The use of recyclable materials in the elaboration of hydraulic concrete is currently booming in order to reduce environmental impacts and improve the mechanical properties of concrete, representing optimal adhesion between aggregates, cement and water. The objective of this work was to evaluate the mechanical behavior of hydraulic concrete with the addition of nylon fibers and microparticles of PET plastic bottles. The mortars or specimens had their physical properties evaluated in fresh state and hardened their resistance to compression and flexural tensile, for these 6 dosages were made: a control mixture and others with designed fibers. For the execution of the tests, an Amsler universal testing machine with a nominal capacity of 30,000 kilograms and a resolution of 10 kg, calibrated for analysis in accordance with ISO 376, was used. It was evidenced that the flexural strength improved by 80% (c), 75% (d), 80% (e) and 95% (f) at 28 days, for compression an 80% increase in strength was evidenced in all samples with respect to the control specimen. It was concluded that the performance of hydraulic concrete with the addition of PET fibers was better than conventional concrete, the properties of the studied specimens improve with respect to the control specimen.
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