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Field Pullout Testing and Performance Evaluation of GFRP Soil Nails

机译:GFRP土钉的现场拉拔试验与性能评估

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摘要

Glass fiber-reinforced polymer (GFRP) materials provide practical solutions to corrosion and site-maneuvering problems for civil infrastructures using conventional steel bars as reinforcements. In this study, the feasibility of using GFRP soil nails for slope stabilization is evaluated. The GFRP soil nail system consists of a GFRP pipe installed by the double-grouting technique. Two field-scale pullout tests were performed at a slope site. Fiber Bragg grating (FBG) sensors, strain gauges, linear variable displacement transformers (LVDTs), and a load cell were used to measure axial strain distributions and pullout force-displacement relationships during testing. The pullout test results of steel soil nails at another slope site are also presented for comparison. It is proven that the load transfer mechanisms of GFRP and steel soil nails have certain difference. Based on these test results, a simplified model using a hyperbolic shear stress-strain relationship was developed to describe the pullout performance of the GFRP soil nail. A parametric study was conducted using this model to study some factors affecting the pullout behavior of GFRP soil nails, including nail diameter, shear resistance of soil-grout interface, and ratio of interface shear coefficient to the Young's modulus of the nail. The results indicate that the GFRP soil nail may exhibit excessive pullout displacement and thus a lower allowable pullout resistance than with the steel soil nail.
机译:玻璃纤维增​​强聚合物(GFRP)材料为使用常规钢筋作为增强材料的民用基础设施的腐蚀和现场操纵问题提供了实用的解决方案。在这项研究中,评估了使用GFRP土钉加固边坡的可行性。 GFRP土钉系统由通过双重灌浆技术安装的GFRP管组成。在一个斜坡现场进行了两次现场规模的拉拔试验。光纤布拉格光栅(FBG)传感器,应变仪,线性可变位移变压器(LVDT)和称重传感器用于在测试过程中测量轴向应变分布和拉拔力-位移关系。还提供了另一个土坡处的钢质土钉的拉拔试验结果,以进行比较。事实证明,GFRP与钢土钉的荷载传递机理存在一定差异。基于这些测试结果,开发了一个使用双曲线剪切应力-应变关系的简化模型来描述GFRP土钉的拔出性能。使用该模型进行了参数研究,以研究影响GFRP土钉拔出性能的一些因素,包括钉直径,土浆液界面的抗剪强度以及界面剪切系数与钉的杨氏模量之比。结果表明,与钢制土钉相比,GFRP土钉可能表现出过大的拔出位移,因此允许的抗拔性更低。

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