Mechanical Properties of Concrete Slabs Reinforced with Recycled Steel Fibers from Post-Consumer Tires in Bogotá, Colombia

J. Carrillo, C. Diaz
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引用次数: 4

Abstract

Millions of post-consumer tires are not adequately disposed of each year, and thus, are producing an enormous environmental problem in the world. This environmental impact may be reduced when assessing this material as an alternative reinforcement for concrete. It is widely known that the toughness of steel fiber-reinforced concrete is suitably assessed by energy absorption tests on slabs. The purpose of this paper is to show and discuss the results of a research aimed at assessing the mechanical response of concrete slabs reinforced with recycled steel fibers from post-consumer tires in Bogotá, Colombia. The testing program of the study comprised 31 axial compression tests on cylinders, and 15 bending tests on concrete slabs reinforced with nominal dosages of 15, 30, and 60 kg/m3 of industrial steel fibers or recycled fibers obtained from post-consumer tires. Based on the measured response, preliminary design equations are proposed to estimate the mechanical properties of concrete reinforced with recycled steel fibers.
哥伦比亚波哥大用废旧轮胎回收钢纤维加固混凝土板的力学性能
每年数以百万计的消费后轮胎没有得到充分处理,因此,在世界上产生了一个巨大的环境问题。当评估这种材料作为混凝土的替代钢筋时,这种环境影响可能会减少。钢板吸能试验是评价钢纤维混凝土韧性的较好方法。本文的目的是展示和讨论一项研究的结果,该研究旨在评估哥伦比亚波哥大用消费后轮胎回收的钢纤维加固混凝土板的机械反应。本研究的试验项目包括31次钢瓶轴向压缩试验和15次混凝土板弯曲试验,这些混凝土板的标称剂量分别为15、30和60 kg/m3的工业钢纤维或从消费后轮胎中获得的回收纤维。基于实测响应,提出了预估再生钢纤维增强混凝土力学性能的初步设计方程。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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