玻璃纤维刷毛与双轴土工格栅加固方脚的性能

El-Sayed A. El-Kasaby, M. Awwad, Mohab Roshdy, A. A. Abo-Shark
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引用次数: 1

摘要

本文研究了双轴土工格栅对玻璃纤维增强混凝土(GFRC)方形基础受弯性能的影响。进行了5个钢筋混凝土方脚在区域荷载作用下直至破坏的试验研究。考虑的变量是土工格栅层数和纵向钢筋的百分比。各种参数,包括挠度,在每个阶段的荷载,刚度,延性,能量吸收,裂纹模式,以及应变在钢,混凝土和土工格栅,进行了分析和比较。结果表明,将土工格栅层作为加固技术与GFRC结合,可以显著提高基础的抗弯性能,改善裂缝形态。基础中使用的土工格栅层数大大增加了每个阶段的载荷。此外,还建立了一个经验方程,以建立作用在基础上的力矩与土工格栅加筋抗拉强度之间的相关性。经验证据表明,GFRC土工格栅加筋基础的抗强度显著提高,超过了钢筋和普通混凝土配合比的基础。该研究为土工结构的设计和施工提供了有价值的见解,突出了双轴土工格栅在增强GFRC基础抗弯性能方面的优势。
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Behavior of Square Footings Reinforced with Glass Fiber Bristles and Biaxial Geogrid
This study investigates the influence of biaxial geogrids on the flexural behavior of square footing foundations reinforced with glass fiber reinforced concrete (GFRC). Experimental research is conducted, involving the testing of five reinforced concrete square footings under area loading until failure. The variables considered are the number of geogrid layers and the percentage of longitudinal reinforcement. Various parameters including deflection, loads at each stage, stiffness, ductility, energy absorption, crack patterns, as well as strains in steel, concrete, and geogrid, are analyzed and compared. The results reveal that incorporating geogrid layers as a reinforcement technique with GFRC significantly enhances the flexural behavior of the footings and improves cracking patterns. The number of geogrid layers used in the footings substantially increases the loads at each stage. Furthermore, an empirical equation is developed to establish a correlation between the moment acting on the footings and the tensile strength of geogrid reinforcement. The empirical evidence demonstrates a substantial improvement in the strength resistance of geogrid-reinforced footings with GFRC, surpassing those reinforced with steel and normal concrete mix. This research contributes valuable insights for the design and construction of earth structures, highlighting the advantages of biaxial geogrids in reinforcing GFRC footings with enhanced flexural performance.
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