Estudio experimental de las propiedades mecánicas del hormigón simple y reforzado con fibras bajo carga monotónica

Tecnia Pub Date : 2022-08-08 DOI:10.21754/tecnia.v32i2.1411
Roy Reyna Salazar, Cristiam's Jesús Santos Acco, Carlos Alberto Acuña Asenjo
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Abstract

Concrete is one of the main building materials in Peru and worldwide, the study of its mechanical properties and concrete mix elaboration have been extensively developed over time. In the last years, new ways of elaboration with different materials have been searched, in order to improve its mechanical properties, including the fiber reinforced concrete. The study of its strain-stress mechanical properties of fiber reinforced concrete under monotonic load is the objective of this investigation, based on experimental tests performed in 90 samples, taking into account the influence of many factors, such as: Compression strength design, sample section geometry (square or circular section), slenderness (height/depth ratio), and the comparison of the reinforced concrete with its equivalent plain concrete in terms of mix design. From the experimental results, the use of fiber reinforcement increases the deformation capacity of the concrete under monotonic compression, but its resistance is not improved significantly. On the other hand, square section specimens have a higher deformation capacity for slenderness 1:2 and 1:3 in comparison with circular section specimens.
简单混凝土和纤维增强混凝土在单调荷载下力学性能的实验研究
混凝土是秘鲁和世界范围内的主要建筑材料之一,随着时间的推移,对其力学性能和混凝土配合比的研究得到了广泛的发展。在过去的几年里,为了改善其力学性能,人们探索了用不同材料进行加工的新方法,包括纤维增强混凝土。本研究的目的是研究纤维增强混凝土在单调荷载下的应变-应力力学性能,基于90个试样的试验试验,考虑了许多因素的影响,如:抗压强度设计,试样截面几何形状(方形或圆形截面),长细比(高/深比),以及钢筋混凝土与同等素混凝土在配合比设计方面的比较。从试验结果来看,纤维增强材料的使用提高了混凝土在单调压缩下的变形能力,但其抗压能力没有明显提高。另一方面,在1:2和1:3的长细比下,方形截面试件比圆形截面试件具有更高的变形能力。
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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16 weeks
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