椰子纤维对砌墙砂浆性能的影响

S. Muñoz Pérez, Luigi Italo Villena Zapata, Franklin Luis Tesen Muñoz, Yan Carlos Coronel Sanchez, Carlos Eduardo Ramos
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引用次数: 0

摘要

由于砂子等石料的稀缺,人们开始探索其他可持续的砂浆材料,包括椰子纤维。这种材料在秘鲁各地区的使用干预极少,由于其强度和耐久性的特点,已被证明是砂浆制备的绝佳选择。这项研究旨在评估椰子纤维在砂浆中的应用对粘土砖砌体机械性能的影响。混合料的比例分别为 1:3、1:4 和 1:5,椰子纤维的预处理比例分别为水泥重量的 0.5%、1%、1.5% 和 2%,长度为 3 厘米。对砂浆试样进行了流动性、抗压强度和抗折强度等测试。通过抗折强度、棱柱的轴向压缩和墙体的斜向压缩,对粘土砖砌体的性能进行了评估。在添加了 0.5% 纤维的 1:3 混合物中观察到了最理想的结果,与标准砂浆相比,抗折强度显著提高了 22.6%。随后,在砌筑试验中,与标准样品相比,在 1:3 比例的砂浆中添加 0.5% 的椰子纤维,墙体的抗压强度、抗弯强度和对角线抗压强度分别提高了 3.9%、65.9% 和 3.3%。总之,添加椰子纤维可显著提高砂浆的性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Influence of coconut fiber on mortar properties in masonry walls
The scarcity of stone materials, such as sand, has led to the exploration of alternative, sustainable options for mortars, including coconut fiber. This material, with minimal intervention in various areas of Peru, has proven to be an excellent choice in mortar preparation due to its characteristics of strength and durability. The study aimed to assess the influence of coconut fiber in mortar applications on the mechanical properties of clay brick masonry. Mixes were created with ratios of 1:3, 1:4, and 1:5, incorporating coconut fiber pre-treated at percentages of 0.5%, 1%, 1.5%, and 2% relative to the weight of cement and a length of 3 cm, respectively. Tests, including fluidity, compressive strength, and flexural strength, were conducted on mortar specimens. The behavior of clay brick masonry was evaluated through flexural strength, axial compression in prisms, and diagonal compression in walls. The most favorable result was observed in the 1:3 mix with the addition of 0.5% fiber, demonstrating a remarkable 22.6% increase in flexural strength compared to standard mortar. Subsequently, in masonry tests, the addition of 0.5% coconut fiber in 1:3 ratio mortars showed increases of 3.9%, 65.9%, and 3.3% in compressive strength, flexural strength, and diagonal compression in walls, respectively, compared to the standard samples. In conclusion, the addition of coconut fiber contributes significantly to the enhancement of mortar properties.
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