添加欧鼠李纤维对砂浆机械性能和体积稳定性的影响

Fibers Pub Date : 2024-01-30 DOI:10.3390/fib12020014
Jamal M. Khatib, R. Ramadan, H. Ghanem, A. Elkordi
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引用次数: 1

摘要

在这项研究中,调查的重点是木葭纤维(PA)对砂浆机械性能和体积稳定性的影响。共使用了四种混合物,其中本地采购的 PA 纤维含量从 0.5% 到 2%(按体积计算)不等。测试包括抗折强度、抗压强度、化学收缩、干燥收缩、自生收缩和膨胀。结果表明,使用 PA 纤维会导致抗压和抗折强度降低。然而,固化 3 天后,与对照样品相比,1% PA 纤维的抗折强度增加了 7% 至 21%。此外,添加 2% 的 PA 纤维可有效缓解灰泥样品的尺寸稳定性。当 PA 纤维的添加量增加时,砂浆样品的化学收缩、自生收缩和干燥收缩以及膨胀率都会逐渐降低。在 180 天时,含有 2% PA 纤维的混合物的化学收缩、自生收缩、干燥收缩和膨胀率分别降低了 37%、19%、15% 和 20%。此外,还提出了一个双曲线模型来预测长度变化随时间的变化。此外,还观察到化学收缩与其他长度变化参数之间存在密切关系。因此,环保型 PA 纤维的使用证明了其在建筑应用中显著提高砂浆耐久性的潜力。
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 Adding Phragmites-Australis Fiber on the Mechanical Properties and Volume Stability of Mortar
In this research, the investigation focuses on the influence of Phragmites-Australis (PA) fibers on the mechanical properties and volume stability of mortar. A total of four mixtures were employed with varying amounts of locally sourced PA fibers ranging from 0.5% to 2% (by volume). Testing includes flexural strength, compressive strength, chemical shrinkage, drying shrinkage, autogenous shrinkage, and expansion. The findings show that the use of PA fibers caused a reduction in compressive and flexural strength. However, beyond 3 days of curing, an increase in flexural strength ranging from 7 to 21% was observed at 1% PA fiber compared to the control sample. Furthermore, the addition of PA fibers up to 2% effectively mitigates the dimensional stability of mortar samples. A gradual decrease in chemical, autogenous, and drying shrinkage as well as expansion occurs in mortar samples when % of PA fibers increases. At 180 days, this reduction was 37, 19, 15 and 20% in chemical shrinkage, autogenous shrinkage, drying shrinkage, and expansion, respectively, for a mix containing 2% PA fiber. Additionally, a hyperbolic model is proposed to predict the variation of length change with time. Also, a strong relationship is observed between chemical shrinkage and other length change parameters. Consequently, the environmentally friendly utilization of PA fibers demonstrates its potential to significantly enhance mortar durability in construction applications.
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