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Stress Relaxation of Grouted Entirely Large Diameter B-GFRP Soil Nail 被引量:9
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作者 李国维 倪春 +2 位作者 裴华富 葛万明 吴宏伟 《China Ocean Engineering》 SCIE EI CSCD 2013年第4期495-508,共14页
One of the potential solutions to steel-corrosion-related problems is the usage of fiber reinforced polymer (FRP) as a replacement of steel bars. In the past few decades, researchers have conducted a large number of e... One of the potential solutions to steel-corrosion-related problems is the usage of fiber reinforced polymer (FRP) as a replacement of steel bars. In the past few decades, researchers have conducted a large number of experimental and theoretical studies on the behavior of small size glass fiber reinforce polymer (GFRP) bars (diameter smaller than 20 mm). However, the behavior of large size GFRP bar is still not well understood. Particularly, few studies were conducted on the stress relaxation of grouted entirely large diameter GFRP soil nail. This paper investigates the effect of stress levels on the relaxation behavior of GFRP soil nail under sustained deformation ranging from 30% to 60% of its ultimate strain. In order to study the behavior of stress relaxation, two B-GFRP soil nail element specimens were developed and instrumented with fiber Bragg grating (FBG) strain sensors which were used to measure strains along the B-GFRP bars. The test results reveal that the behavior of stress relaxation of B-GFRP soil nail element subjected to pre-stress is significantly related to the elapsed time and the initial stress of relaxation procedure. The newly proposed model for evaluating stress relaxation ratio can substantially reflect the influences of the nature of B-GFRP bar and the property of grip body. The strain on the nail body can be redistributed automatically. Modulus reduction is not the single reason for the stress degradation. 展开更多
关键词 应力松弛率 大直径 土钉 灌浆 gfrp 纤维增强复合材料 应变传感器 光纤布拉格光栅
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GFRP筋土钉支护钉头的锚固性能
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作者 刘军 宋晔 +1 位作者 张建全 牛大伟 《土木与环境工程学报(中英文)》 CSCD 北大核心 2024年第3期94-102,共9页
土钉钉头为土钉墙整体结构中的薄弱部位,为研究土钉钉头锚固性能,以一种装配式柔性面层GFRP筋土钉墙为例,通过室内钉头锚固性能试验及三维数值模拟对外径32 mm的中空GFRP筋钉头的极限抗拉强度、钉头变形及破坏规律进行研究。研究结果表... 土钉钉头为土钉墙整体结构中的薄弱部位,为研究土钉钉头锚固性能,以一种装配式柔性面层GFRP筋土钉墙为例,通过室内钉头锚固性能试验及三维数值模拟对外径32 mm的中空GFRP筋钉头的极限抗拉强度、钉头变形及破坏规律进行研究。研究结果表明,该GFRP筋钉头极限承载力在240~290 kN之间,当螺母拧紧时螺纹副的应力主要分布在螺纹牙前3环,其中以钉头第1环螺纹牙应力集中现象尤为明显;此外,采用螺纹展开法建立钉头螺纹牙的力学模型,得出了第1环螺纹极限剪切强度与钉头极限荷载之间的关系,并通过计算得出该GFRP筋钉头极限承载力为244.54 kN,与试验结果相符。通过室内钉头锚固性能试验的脆性破坏特点,确定GFRP筋钉头安全系数在1.8~2.0之间,并判定此种GFRP筋安全荷载在125~135 kN之间。 展开更多
关键词 基坑 gfrp筋土钉 土钉墙 钉头 锚固性能
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GFRP筋土钉支护作用仿真与受力分析
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作者 金清平 姚鹏 +1 位作者 陆伟 陈智 《工程塑料应用》 CAS CSCD 北大核心 2015年第1期89-92,共4页
玻璃纤维增强塑料(GFRP)筋能替代钢筋作为土钉支护材料。以某工程基坑开挖支护为背景,利用有限元进行GFRP筋和钢筋土钉支护的仿真分析与比较。结果表明,GFRP筋的受力随着开挖深度增加呈现较平稳的增长,GFRP筋的受力增长幅度明显要小于钢... 玻璃纤维增强塑料(GFRP)筋能替代钢筋作为土钉支护材料。以某工程基坑开挖支护为背景,利用有限元进行GFRP筋和钢筋土钉支护的仿真分析与比较。结果表明,GFRP筋的受力随着开挖深度增加呈现较平稳的增长,GFRP筋的受力增长幅度明显要小于钢筋,整个施工过程中钢筋的受力比GFRP筋大。在一定埋深范围,两种材料土钉受力分布相似;GFRP筋土钉体受力分布更均匀,在埋深越大的筋体段,受开挖深度影响越大,承力变化更明显。利用仿真分析有助于研究GFRP筋土钉受力分布和作用机理。 展开更多
关键词 gfrp 土钉支护 施工 仿真
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