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Experimental Evaluation of Engineering Properties of GFRP Screw Anchors for Anchoring Applications

机译:用于锚固应用的GFRP螺旋锚的工程性能的实验评估

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Steel screw anchors (SSAs) have been widely used in geotechnical engineering practice because they are simple in structure and easy to design and construct. The main disadvantage of SSAs is that they rust quickly and are not found to be suitable for permanent structures, unless adequate corrosion protection measures are provided. Anchors made of glass fiber-reinforced plastic (GFRP) are corrosion-resistant material that are light in weight with a higher tensile resistance in comparison with SSAs. For this reason, GFRP anchors have been found to be a good substitute for SSAs during the last two decades. In this paper, details of a newly developed GFRP screw anchor (GFRP-SA) with respect to the physicomechanical, tensile, and creep properties along with its performance both in the laboratory and in field conditions are provided. A specially developed machine that facilitates quick installation of the GFRP-SA is also briefly introduced. In addition, two full-scale field tests that were undertaken to study in situ long-term performance of the GFRP-SAs for anchoring soil slopes (1) in an expansive soil, and (2) in a compacted subgrade soil are presented and discussed. Furthermore, the average pullout resistances of the GFRP-SAs were also determined from field tests. The results of the field studies suggest that GFRP-SAs can be installed with relative ease and they provide adequate resistance against shallow landslide slope failures. The study presented in this paper is encouraging for the use of GFRP-SAs in conventional geotechnical engineering practice for stabilizing slopes in different types of soils.
机译:钢螺钉锚(SSA)由于其结构简单,易于设计和构造而被广泛用于岩土工程实践中。 SSA的主要缺点是,它们会快速生锈,并且除非提供足够的腐蚀防护措施,否则它们不适用于永久性结构。由玻璃纤维增​​强塑料(GFRP)制成的锚是耐腐蚀的材料,与SSA相比,重量轻且具有更高的抗拉强度。因此,在过去的二十年中,发现GFRP锚可以很好地替代SSA。在本文中,详细介绍了新开发的GFRP螺丝锚(GFRP-SA)的物理力学,拉伸和蠕变特性,以及在实验室和现场条件下的性能。还简要介绍了专门开发的有助于快速安装GFRP-SA的机器。另外,提出并讨论了两个全面的现场试验,以研究GFRP-SA在锚固膨胀土中的斜坡(1)和压实路基土(2)的长期性能。 。此外,还通过现场测试确定了GFRP-SA的平均抗拉强度。现场研究的结果表明,可以相对轻松地安装GFRP-SA,并且它们对浅层滑坡的破坏具有足够的抵抗力。本文提出的研究对于在常规岩土工程实践中使用GFRP-SA来稳定不同类型土壤中的边坡是令人鼓舞的。

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