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首页> 外文期刊>Mathematical Problems in Engineering: Theory, Methods and Applications >Pullout Behavior of GFRP Anti-Floating Anchor Based on the FBG Sensor Technology
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Pullout Behavior of GFRP Anti-Floating Anchor Based on the FBG Sensor Technology

机译:基于FBG传感器技术的GFRP防浮锚的拉出行为

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摘要

Building anti-floating anchors have been increasingly used in recent years, but conventional steel anchors under service conditions are easily subjected to chemical erosion. Glass fiber reinforcement polymer (GFRP) is a promising solution to this problem. In this study, field pullout tests were conducted on three full instrumented GFRP anti-floating anchors in weathered granite. Specifically, the GFRP anchors during pultrusion were innovatively embedded with bare fiber Bragg grating (FBG) sensors to monitor the axial force distribution along depth. It was found that the embedded FBG could reliably monitor the axial force distribution of GFRP anchors. The ultimate pullout force of a GFRP anchor with diameter of 28 mm and anchorage length of 5 m was up to 400 kN. The GFRP anchor yielded at 0.8 m underground. Force distribution and field photos at failure indicated shear failure occurred at the anchor/bolt interface at the end of the tests. The feasibility of the GFRP anti-floating anchor was also verified in civil engineering. Finally, an elastic mechanical model and Mindlin’s displacement solution are used to get distribution functions of axial force and shear stress along the depth, and the results accord with the test results.
机译:近年来,建设防浮锚已经越来越多地使用,但在服务条件下的常规钢锚容易受到化学侵蚀。玻璃纤维增​​强聚合物(GFRP)是对此问题的有希望的解决方案。在这项研究中,在风化花岗岩中的三个完整仪表GFRP防浮锚上进行了现场拉出试验。具体地,挤压期间的GFRP锚固嵌入裸露的光纤布拉格光栅(FBG)传感器,以沿着深度监测轴向力分布。发现嵌入式FBG可以可靠地监测GFRP锚的轴力分布。 GFRP锚的最终拉伸力直径为28毫米,锚固长度为5米,高达400 kN。 GFRP锚在地下0.8米。故障的强制分布和现场照片指示剪切失败发生在测试结束时的锚/螺栓接口处。在土木工程中还核实了GFRP防浮锚的可行性。最后,使用弹性机械模型和思维’ S位移解决方案用于沿着深度的轴向力和剪切应力的分布函数,结果符合测试结果。

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