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碳纤维材料在国道312线桥梁加固工程中的应用 被引量:1
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作者 李霞 《甘肃科技》 2011年第15期100-101,共2页
以国道312线五里砂沟桥的加固工程为实例,阐述了五里砂沟桥采用碳纤维材料加固桥梁的工作原理及其技术工艺,展望了碳纤维材料在桥梁加固工程上的发展空间。
关键词 碳纤维桥梁 加固 应用
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碳纤维布在国道310线桥梁加固工程中的应用
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作者 张晓燕 《科技视界》 2013年第20期171-172,共2页
粘贴碳纤维布加固混凝土结构技术是一项新型、简便、有效的混凝土加固技术。该技术充分应用了碳纤维增强复合材料所特有的高比强度、高比模量、耐腐蚀、抗疲劳及施工简便等许多优点,为混凝土桥梁加固技术注入新的活力。现通过对国道310... 粘贴碳纤维布加固混凝土结构技术是一项新型、简便、有效的混凝土加固技术。该技术充分应用了碳纤维增强复合材料所特有的高比强度、高比模量、耐腐蚀、抗疲劳及施工简便等许多优点,为混凝土桥梁加固技术注入新的活力。现通过对国道310线东岔连接线东岔旧桥的加固工程实例,阐述了东岔连接线东岔旧桥采用碳纤维材料加固桥梁工作原理及其技术工艺,展望了碳纤维材料在桥梁上的发展空间。 展开更多
关键词 碳纤维桥梁 加固 应用 施工工艺
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碳纤维加固混凝土梁数值模拟与性能研究 被引量:5
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作者 韩燕 陈永强 方芳 《公路工程》 北大核心 2016年第6期103-106,120,共5页
碳纤维加固桥梁方法已经越来越多的应用到实际工程中,从实验及理论两个角度出发研究碳纤维加固梁的具体加固效果。首先分析了国内碳纤维加固材料以及粘结剂力学性能,然后设计并进行了5根碳纤维加固钢筋混凝土梁实验,得到碳纤维加固梁的... 碳纤维加固桥梁方法已经越来越多的应用到实际工程中,从实验及理论两个角度出发研究碳纤维加固梁的具体加固效果。首先分析了国内碳纤维加固材料以及粘结剂力学性能,然后设计并进行了5根碳纤维加固钢筋混凝土梁实验,得到碳纤维加固梁的极限承载力及跨中挠度变化实验值;从理论角度给出了碳纤维加固梁的截面承载力以及跨中挠度计算公式,结合ANSYS15.0软件进行数值模拟,通过理论与实验对比证明了数值模拟的实用性,通过不同试验梁加固效果对比得出结论:加设一层碳纤维布使梁的极限承载力提高了23%,加设两层碳纤维布使梁极限承载力提高了31%。 展开更多
关键词 纤维加固桥梁 纤维 数值模拟 极限承载力
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宁波市通途路2#桥试验检测与加固
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作者 朱凤艳 顾若飞 《交通标准化》 2005年第2期97-99,共3页
通途路原设计荷载为汽-超20、挂车-100,要拓宽、改建成设计荷载为城-A级。由于车辆荷载及桥面铺装等静荷载的增加,需对旧桥进行检测及加固,以保证改扩建后其性能满足设计要求。
关键词 桥梁检测 静力荷栽试验 桥梁抗裂性 耐久性评定 纤维加固桥梁
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Strengthening of Concrete Box Girder Bridges under Close-in Detonations 被引量:1
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作者 Ahmed Ibrahim Hani Salim 《Journal of Civil Engineering and Architecture》 2012年第6期699-706,共8页
The response of a bridge superstructure under blast loading might depend largely on the extent of the local damage experienced due to close-in explosion threats. This paper investigates the local and structural respon... The response of a bridge superstructure under blast loading might depend largely on the extent of the local damage experienced due to close-in explosion threats. This paper investigates the local and structural response of box girder bridge decks strengthened using CFRP (carbon fiber reinforced polymers) under close-in detonations. Due to the lack of experimental research on this topic, the study is conducted using the explicit finite element computer program LS-DY-NA. The numerical study will be verified using the results of strengthened reinforced concrete slabs under field detonations. The blast load was assumed to be detonated above the bridge deck. The key parameters investigated are the charge size, and the strengthening location on the deck. This paper will present the results of this investigation and provides recommendations for predicting the local damage level based on the CFRP strengthening design under blast threat. 展开更多
关键词 Pre-stressed BLAST box girder BRIDGES carbon fiber.
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Strengthening an in-service reinforcement concrete bridge with prestressed CFRP bars 被引量:3
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作者 Hai-long WANG Wei-liang JIN +1 位作者 David J. CLELAND Ai-hui ZHANG 《Journal of Zhejiang University-Science A(Applied Physics & Engineering)》 SCIE EI CAS CSCD 2009年第5期635-644,共10页
Carbon fiber reinforced polymer (CFRP) bars were prestressed for the structural strengthening of 8 T-shaped rein-forced concrete (RC) beams of a 21-year-old bridge in China. The ultimate bearing capacity of the existi... Carbon fiber reinforced polymer (CFRP) bars were prestressed for the structural strengthening of 8 T-shaped rein-forced concrete (RC) beams of a 21-year-old bridge in China. The ultimate bearing capacity of the existing bridge after retrofit was discussed on the basis of concrete structures theory. The flexural strengths of RC beams strengthened with CFRP bars were controlled by the failure of concrete in compression and a prestressing method was applied in the retrofit. The field construction processes of strengthening with CFRP bars-including grouting cracks, cutting groove, grouting epoxy and embedding CFRP bars, surface treating, banding with the U-type CFRP sheets, releasing external prestressed steel tendons-were introduced in detail. In order to evaluate the effectiveness of this strengthening method, field tests using vehicles as live load were applied before and after the retrofit. The test results of deflection and concrete strain of the T-shaped beams with and without strengthening show that the capacity of the repaired bridge, including the bending strength and stiffness, is enhanced. The measurements of crack width also indicate that this strengthening method can enhance the durability of bridges. Therefore, the proposed strengthening technology is feasible and effective. 展开更多
关键词 Carbon fiber reinforced polymer (CFRP) bar Reinforced concrete (RC) bridge Strengthening Construction pro-cedure Field test T-shaped beam
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