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MODIFICATON AND RESEARCH ON BENDING RIGIDITY FORMULA OF REINFORCED CONCRETE BEAM
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作者 艾军 陈珏 +1 位作者 张丽芳 刘芳 《Transactions of Nanjing University of Aeronautics and Astronautics》 EI 2010年第4期299-305,共7页
Beam stiffness degrades with its age in service and its service performance is weakened.According to the fundamental characteristics of the reinforced concrete,the influence of stiffness degradation caused by differen... Beam stiffness degrades with its age in service and its service performance is weakened.According to the fundamental characteristics of the reinforced concrete,the influence of stiffness degradation caused by different kinds of damage is obtained.Among them,the crack is the most direct and obvious factor.Furthermore,according to the analysis of bending rigidity formula presented in current standard,an influence parameter of crack development on the stiffness degradation,i.e.,nonuniformity coefficient of tensile steel strain φ,is extracted.Average crack distance and crack depth are taken as crack statistic parameters.Based on analysis and modeling with ANSYS,the modified bending rigidity formula related to crack is obtained. 展开更多
关键词 reinforced concrete beam and girders STIFFNESS CRACK ANSYS
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Behavior of reinforced concrete beams and columns subjected to blast loading 被引量:10
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作者 Yan Liu Jun-bo Yan Feng-lei Huang 《Defence Technology(防务技术)》 SCIE EI CAS CSCD 2018年第5期550-559,共10页
In this study, the blast performance of steel reinforced concrete(RC) beams was experimentally and analytically investigated. The experiment consists of a total of 10 one-half-scale beams subjected to different levels... In this study, the blast performance of steel reinforced concrete(RC) beams was experimentally and analytically investigated. The experiment consists of a total of 10 one-half-scale beams subjected to different levels of blast loading using live explosives. The reflected pressure-time histories were recorded and different damage levels and modes were observed. The blast resilience of the damaged beams was quantified by measuring the time-dependent displacements. Experiment results show that the damage in steel reinforced concrete beams with higher explosive mass is enhanced compared with that of the beams with smaller explosive mass at the same scaled distance. Based on the experiment data, an empirical expression is developed via dimensional analysis to correct the relationship between the midspan displacement and scaled distance. Besides, a complex single degree of freedom model(SDOF)incorporating complex features of the material behavior, high strain-rate effect and the column geometry was proposed and validated by test results. 展开更多
关键词 BLAST Steel reinforced concrete beamS Dynamic response SCALING SDOF
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Dynamic responses of reinforced concrete beams under double-endinitiated close-in explosion 被引量:4
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作者 Bin Rao Li Chen +3 位作者 Qin Fang Jian Hong Zhong-xian Liu Heng-bo Xiang 《Defence Technology(防务技术)》 SCIE EI CAS CSCD 2018年第5期527-539,共13页
The reinforced concrete(RC) structural component might suffer a great damage under close-in explosion.Different from distant explosions, blast loads generated by the close-in explosion are non-uniformly distributed on... The reinforced concrete(RC) structural component might suffer a great damage under close-in explosion.Different from distant explosions, blast loads generated by the close-in explosion are non-uniformly distributed on the structural component and may cause both local and structural failure. In this study,an experimental study was conducted to investigate the dynamic responses of RC beams under doubleend-initiated close-in explosions. The experimental results show that the distribution of blast loads generated by the double-end-initiated explosion is much more non-uniform than those generated by single-point detonation, which is caused by the self-Mach-reflection effects. A 3 D finite element model was developed and validated in LS-DYNA by employing the modified K&C model. Intensive numerical calculations were conducted to study the influences of the initiation way, scaled distance and longitudinal reinforcement ratio on the dynamic responses and failure modes of RC beams. Numerical results show that the RC beam suffers greater damage as the cylindrical explosive is detonated at its double ends than the scenario in which the cylindrical explosive is detonated at its central point. RC beams mainly suffer flexural failure and flexure-shear failure under the double-end close-in explosion, and the failure modes of RC beams change from the flexural damage to flexure-shear damage as the scaled distance or the longitudinal reinforcement ratio decreases. The direct shear failure mode is not usually observed in the double-end-initiated explosion, since the intense blast loads is basically concentrated in the midspan of RC beam, which is due to self-Mach-reflection enhancement. 展开更多
关键词 reinforced concrete(RC)beam Close-in explosion Failure mode Dynamic response Double-end-initiation
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Performance of Epoxy-Repaired Corroded Reinforced Concrete Beams 被引量:1
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作者 李洪明 吴瑾 +1 位作者 王喆 尚保康 《Transactions of Nanjing University of Aeronautics and Astronautics》 EI CSCD 2015年第5期579-584,共6页
Reinforcement corrosion has a serious impact on the durability and safety of reinforced concrete structures.Six reinforced concrete(RC)beam specimens are constructed.After beam specimens are subjected to accelerated c... Reinforcement corrosion has a serious impact on the durability and safety of reinforced concrete structures.Six reinforced concrete(RC)beam specimens are constructed.After beam specimens are subjected to accelerated corrosion with the constant current,beam specimens are repaired with epoxy mortar and the flexural test of beams is investigated.Then the behaviors of repaired corroded reinforced concrete beams are evaluated.The experimental results show that cracking and ultimate loads of corroded RC beams are enhanced after being repaired.And the strain distributions measured across sections of beam specimens still obey the assumption of plane section.After being repaired,the number of cracks decreases and the crack spacing increases. 展开更多
关键词 CORROSION reinforced concrete beam epoxy mortar flexural behavior REPAIR
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Structural Behavior of Continuous Prestressed Steel Fiber Reinforced High Strength Concrete Beam 被引量:2
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作者 刘海波 向天宇 赵人达 《Journal of Southwest Jiaotong University(English Edition)》 2008年第1期37-45,共9页
The flexural behaviors of continuous fully and partially prestressed steel fiber reinforced high strength concrete beams are studied by experiment and nonlinear finite element analysis. Three levels of partial prestre... The flexural behaviors of continuous fully and partially prestressed steel fiber reinforced high strength concrete beams are studied by experiment and nonlinear finite element analysis. Three levels of partial prestress ratio (PPR) are considered, and three pairs of two-span continuous beams with box sections varying in size are designed. The major parameters involved in the study include the PPR and the fiber location. It is concluded that the prestressed high strength concrete beam exhibits satisfactory ductility; the influences of steel fiber on the crack behaviors for partially prestressed beams are not as obvious as those for fully prestressed ones; steel fibers can improve the structural stiffness after cracking for fully prestressed high strength concrete beams; the moment redistribution from mid-span to intermediate support in the first stage should be mainly considered in practical design. 展开更多
关键词 High strength concrete Steel fiber reinforced concrete Prestressed concrete Continuous beam
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Flexural rigidity evolvement laws of reinforced concrete beams strengthened with carbon fiber laminates
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作者 牛鹏志 《Journal of Chongqing University》 CAS 2007年第1期67-72,共6页
Extensive research has shown that externally bonded carbon fiber reinforced polymer (CFRP) laminates are particularly suitable for improving the fatigue behavior of reinforced concrete (RC) beams. This paper prese... Extensive research has shown that externally bonded carbon fiber reinforced polymer (CFRP) laminates are particularly suitable for improving the fatigue behavior of reinforced concrete (RC) beams. This paper presents the research on flexural ngidity evolvement laws by testing 14 simple-supported RC beams strengthened with carbon fiber laminates (CFL) under cyclic load, and 2 under monotone load as a reference. The cyclic load tests revealed the peak load applied onto the surface of a supported RC beam strengthened with CFL is linear to the logarithm of its fatigue life, and the flexural rigidity evolvement undergoes three distinct phases: a rapid decrease from the start to about 5% of the fatigue life; an even development from .5% to about 99% of the fatigue life; and a succedent rapid decrease to failure. When the ratio of fatigue "cycles to the fatigue life is within 0.0.5 to 0.99, the flexural rigidity varies linearly with the ratio. The peak load does not affect the flexural rigidity evolvement if it is not high enough to make the main reinforcements yield. The dependences of the flexural rigidity of specimens formed in the same group upon their fatigue cycles normalized by fatigue life are almost coincident. This implies the flexural rigidity may be a material parameter independent of the stress level. These relationships of flexural rigidity to fatigue cycles, and fatigue life may be able to provide some hints for fatigue design and fatigue life evaluation of RC member strengthened with CFL; nevertheless the findings still need verifying by more experiments. 展开更多
关键词 flexural rigidity carbon fiber laminate reinforced concrete beam FATIGUE
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Shear strengthening of pre-damaged reinforced concrete beams with carbon fiber reinforced polymer sheet strips
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作者 Feras ALZOUBI 《Journal of Chongqing University》 CAS 2007年第4期305-310,共6页
This paper presents the results of an experimental investigation on the response of pre-damaged reinforced concrete (RC) beam strengthened in shear using applied-epoxy unidirectional carbon fiber reinforced polymer ... This paper presents the results of an experimental investigation on the response of pre-damaged reinforced concrete (RC) beam strengthened in shear using applied-epoxy unidirectional carbon fiber reinforced polymer (CFRP) sheet. The reasearch included four test rectangular simply supported RC beams in shear capacity. One is the control beam, two RC beams are damaged to a predetermined degree from ultimate shear capacity of the control beam, and the last beam is left without pre-damaged and then strengthened with using externally bonded carbon fiber reinforced polymer to upgrade their shear capacity. We focused on the damage degree to beams during strengthening, therefore, only the beams with sidebonded CFRPs strips and horizontal anchored strips were used. The results show the feasibility of using CFRPs to restore or increase the load-carrying capacity in the shear of damaged RC beams. The failure mode of all the CFRP-strengthened beams is debonding of CFRP vertical strips. Two prediction available models in AC1-440 and fib European code were compared with the experimental results. 展开更多
关键词 reinforced concrete beam carbon fiber reinforced polymer shear strength
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Analysis model for damage of reinforced bars in RC beams under contact explosion
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作者 Chaozhi Yang Zhengxiang Huang +2 位作者 Xin Jia Wei Shang Jian Zhang 《Defence Technology(防务技术)》 SCIE EI CAS CSCD 2024年第11期104-118,共15页
The load-bearing capacity of reinforced concrete(RC) beams primarily relies on internal reinforced bars.However, limited research has been conducted on the dynamic response of these bars. To address this gap, this stu... The load-bearing capacity of reinforced concrete(RC) beams primarily relies on internal reinforced bars.However, limited research has been conducted on the dynamic response of these bars. To address this gap, this study has established an analytical model using dimensional analysis for calculating the deformation of reinforced bars within RC beams subjected to contact explosion. Comparison with experimental data reveals that the model has a relative error of 5.22%, effectively reflecting the deformation of reinforced bars. Additionally, based on this model, the study found that while concrete does influence the deformation of reinforced bars, this influence can be disregarded in comparison to the material properties of the bars themselves. The findings of this study have implications for calculating the residual load-bearing capacity of damaged RC beams, evaluating the extent of damage to RC beams after blast loading, and providing guidance for the blast-resistant design of RC structures. 展开更多
关键词 reinforced concrete beam Contact explosion reinforced bar Damage analysis Residual load-bearing capacity
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原型构件锈蚀钢筋混凝土梁承载力计算方法
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作者 刘梅梅 应宗权 +2 位作者 李嘉民 赵娟 梁梓豪 《水运工程》 2025年第2期45-50,88,共7页
为了准确评估锈蚀钢筋混凝土梁受弯承载力,以3根原型构件锈蚀钢筋混凝土梁为研究对象,进行承载力试验及仿真分析,并提出可修正规范方法的锈蚀钢筋混凝土梁受弯承载力简化计算方法。采用该方法,可以根据现场检测得到的锈蚀钢筋混凝土梁... 为了准确评估锈蚀钢筋混凝土梁受弯承载力,以3根原型构件锈蚀钢筋混凝土梁为研究对象,进行承载力试验及仿真分析,并提出可修正规范方法的锈蚀钢筋混凝土梁受弯承载力简化计算方法。采用该方法,可以根据现场检测得到的锈蚀钢筋混凝土梁构件某一根或几根钢筋截面损失率换算得到同一截面处所有钢筋的平均截面损失率,用于计算锈蚀钢筋强度利用系数,并解决了钢筋截面损失率大于10%时承载力计算不准确的问题。 展开更多
关键词 原型构件 锈蚀钢筋混凝土梁 受弯承载力 截面损失率 损伤塑性模型 广义极值分布
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纤维增强高强混凝土无腹筋梁受剪性能研究
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作者 李妍 林晓雅 《低温建筑技术》 2025年第2期14-18,33,共6页
为研究高强混凝土无腹筋梁受剪性能,文中采用ABAQUS有限元软件对6根高强混凝土无腹筋梁进行受剪模拟,对比分析剪跨比和废旧轮胎回收钢纤维掺量两个因素对结构载力的影响。结果表明随着剪跨比的增加混凝土梁的极限承载能力越来越小。根... 为研究高强混凝土无腹筋梁受剪性能,文中采用ABAQUS有限元软件对6根高强混凝土无腹筋梁进行受剪模拟,对比分析剪跨比和废旧轮胎回收钢纤维掺量两个因素对结构载力的影响。结果表明随着剪跨比的增加混凝土梁的极限承载能力越来越小。根据废旧轮胎回收钢纤维体积率的增加其极限抗剪强度也随之增大,当废旧轮胎回收钢纤维掺量达到2%时效果最佳,试件梁极限承载能力提高了14.35%。并且废旧轮胎回收钢纤维的加入有效改善了高强混凝土梁韧性,限制斜截面裂缝的产生和发展,使试件破坏时保持其完整性。依据现有混凝土结构设计规范和纤维混凝土结构技术规程对高强混凝土无腹筋受剪承载力进行计算,其结果偏于安全。 展开更多
关键词 高强混凝土 无腹筋梁 废旧轮胎回收钢纤维 受剪性能
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基于声发射的加筋混凝土梁损伤试验研究
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作者 王国清 秦禄生 +2 位作者 何兆益 周翰林 杨康 《武汉理工大学学报(交通科学与工程版)》 2025年第1期150-154,159,共6页
文中对加筋混凝土梁进行三点弯曲断裂试验与声发射试验,同时采用普通混凝土梁作为对照组;引入上升角与平均频率,分析普通混凝土小梁与加筋混凝土小梁的损伤模式;对损伤声发射信号进行傅里叶变换,分析加筋混凝土小梁损伤的频谱特征.结果... 文中对加筋混凝土梁进行三点弯曲断裂试验与声发射试验,同时采用普通混凝土梁作为对照组;引入上升角与平均频率,分析普通混凝土小梁与加筋混凝土小梁的损伤模式;对损伤声发射信号进行傅里叶变换,分析加筋混凝土小梁损伤的频谱特征.结果表明:加筋混凝土试件整体强度更高,在破坏前的声发射信号更加强烈;钢筋的加入使得试件损伤主要以剪切破坏为主;加筋混凝土小梁的损伤频谱范围较普通小梁更加集中,并且呈现多峰值主频的特征,主频幅值也更高. 展开更多
关键词 加筋混凝土梁 三点弯曲 声发射 损伤特征
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预应力碳纤维板加固混凝土梁承载性能分析
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作者 席建英 翁永峰 田树恒 《市政技术》 2025年第1期84-92,共9页
为了探究不同参数对碳纤维增强复合材料(Carbon Fiber Reinforced Polymer,CFRP)加固钢筋混凝土梁(RC梁)抗弯性能的影响,基于ABAQUS软件选择合理的混凝土、钢筋本构模型和损伤因子的计算公式,在CFRP板与混凝土界面选择cohesive接触模拟... 为了探究不同参数对碳纤维增强复合材料(Carbon Fiber Reinforced Polymer,CFRP)加固钢筋混凝土梁(RC梁)抗弯性能的影响,基于ABAQUS软件选择合理的混凝土、钢筋本构模型和损伤因子的计算公式,在CFRP板与混凝土界面选择cohesive接触模拟粘结滑移,建立了精确有效的有限元模型。对比有限元模拟值与试验值发现:各级屈服挠度和极限挠度的误差均小于2.76%,各级特征荷载值的对比误差小于6.51%,显示出良好的吻合度。以是否粘结、预应力水平、CFRP板厚度和宽度4项加固参数进行扩展模拟分析,发现粘结作用能够提高试件的抗剥离能力和承载力,但对梁体刚度的提升效果并不明显;预应力的施加能提高梁的刚度,但会降低梁的延性;增加CFRP板的宽度和厚度有助于提高试件的极限承载力和极限剥离承载力,但会降低CFRP板的利用率。 展开更多
关键词 CFRP 预应力加固 钢筋混凝土梁 承载性能 有限元分析
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某密布支撑梁影响下二线船闸闸墙施工技术
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作者 陆金伦 《广东水利水电》 2025年第2期71-75,共5页
文章对某密布支撑梁影响下大型二线船闸闸墙施工技术进行了研究,围绕结构筋处理、大型模板安装、大体积混凝土浇筑以及密布支撑梁拆除等关键施工技术进行探讨,提出相关施工建议,研究成果可为相关工程提供实践依据。
关键词 支撑梁 船闸 闸墙 钢筋混凝土 施工技术
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桥梁大悬臂盖梁加固关键技术的应用
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作者 宁雄志 《建筑技术开发》 2025年第2期114-116,共3页
为研究老旧桥梁大跨度悬臂盖梁的可靠性、安全性及耐久性,研究运用超高性能混凝土在已施工盖梁结构的基础上再浇一层超高性能混凝土施加预应力,将超高性能混凝土与预应力混凝土组合,充分发挥超高性能混凝土优良的力学性能及耐久性能优势... 为研究老旧桥梁大跨度悬臂盖梁的可靠性、安全性及耐久性,研究运用超高性能混凝土在已施工盖梁结构的基础上再浇一层超高性能混凝土施加预应力,将超高性能混凝土与预应力混凝土组合,充分发挥超高性能混凝土优良的力学性能及耐久性能优势,改善传统盖梁的加固方法,改变以往的普通混凝土结构抗拉强度低、易开裂、耐久性不足的劣势。结果表明,采用超高性能混凝土弹性模量比普通混凝土大将近60%,同时改善了加固盖梁抗弯性能,减少变形混凝土的自收缩。超高性能混凝土在加固维修方面因其优异的力学性能和可靠的耐久性,故其适用于桥梁各类维修加固领域,其在桥隧养护中具有广阔的应用前景。 展开更多
关键词 悬臂盖梁加固 超高性能混凝土 预应力技术
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T梁特殊结构部位精准强化技术研究
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作者 黄彦林 《工程建设与设计》 2025年第4期136-138,共3页
提出了一种新型的可调角度插入式振捣棒,该设备能够更好地适应变截面模板形状,实现全面振动和气泡引出。结合振捣工艺的优化,论文还强调了对混凝土原材料的严格控制,确保选择合理的砂石配比和非有害掺和料,以提升混凝土的工作性能。采... 提出了一种新型的可调角度插入式振捣棒,该设备能够更好地适应变截面模板形状,实现全面振动和气泡引出。结合振捣工艺的优化,论文还强调了对混凝土原材料的严格控制,确保选择合理的砂石配比和非有害掺和料,以提升混凝土的工作性能。采用该精准强化技术后,T梁马蹄位置的气泡数量显著减少,混凝土的密实性与整体强度得到了有效提升。 展开更多
关键词 T梁 特殊结构 气泡控制 振捣技术 混凝土密实性 精准强化技术
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型钢混凝土组合结构在地铁车站换乘节点大跨空间中的应用研究
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作者 张荣宽 赵进 《现代城市轨道交通》 2025年第3期51-57,共7页
以型钢混凝土组合结构在苏州地铁8号线相城大道站换乘节点大跨结构中的应用为依托,对型钢混凝土组合结构在地铁车站换乘节点大跨空间中的应用进行分析。首先,采用3种不同的方法进行受力计算及对比分析,得出PKPM软件计算结果最大,设计时... 以型钢混凝土组合结构在苏州地铁8号线相城大道站换乘节点大跨结构中的应用为依托,对型钢混凝土组合结构在地铁车站换乘节点大跨空间中的应用进行分析。首先,采用3种不同的方法进行受力计算及对比分析,得出PKPM软件计算结果最大,设计时建议采用PKPM软件进行校核;其次,对型钢混凝土梁柱节点的设计要点进行总结分析,得出型钢混凝土梁采用十字交叉型布置可大幅简化型钢梁柱节点的设计和施工难度;最后,对型钢混凝土组合结构在施工过程中的重难点及解决方案进行总结。相关研究可为后续类似结构类型设计及施工提供参考和借鉴。 展开更多
关键词 地铁 型钢混凝土组合结构 大跨空间 梁柱节点
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提高箱型钢柱与混凝土梁连接节点质量措施研究
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作者 梁雄杰 方文宗 +2 位作者 李佳明 何凯 刘汝华 《工程质量》 2025年第2期97-101,共5页
箱型钢柱与钢筋混凝土梁是大型公共建筑常用的结构体系,然而现有施工工艺容易在梁柱核心区产生梁纵向钢筋连接不牢及混凝土孔洞外观缺陷等质量问题。论文以一实际工程为背景对箱型钢柱与混凝土梁连接节点施工合格率进行调查研究,查找了... 箱型钢柱与钢筋混凝土梁是大型公共建筑常用的结构体系,然而现有施工工艺容易在梁柱核心区产生梁纵向钢筋连接不牢及混凝土孔洞外观缺陷等质量问题。论文以一实际工程为背景对箱型钢柱与混凝土梁连接节点施工合格率进行调查研究,查找了箱型钢柱与混凝土梁连接节点施工合格率不高的原因,提出了新型施工方法并通过在该项目中的具体实施,验证了所提方法的有效性。 展开更多
关键词 箱型钢柱-钢筋混凝土梁体系 头脑风暴法 施工质量 合格率 有效性
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Rapid Repair of Earthquake Damaged RC Interior Beam-wide Column Joints and Beam-wall Joints Using FRP Composites 被引量:1
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作者 LI Bing LIM Chee Leong 《四川大学学报(工程科学版)》 EI CAS CSCD 北大核心 2009年第3期258-265,共8页
This paper studies the seismic performance of FRP-strengthened RC interior non-seismically detailed beam-wide columns and beam-wall joints after limited seismic damage.Four eccentric and concentric beam-wide column jo... This paper studies the seismic performance of FRP-strengthened RC interior non-seismically detailed beam-wide columns and beam-wall joints after limited seismic damage.Four eccentric and concentric beam-wide column joints and two beam-wall joints,initially damaged in a previous study,were repaired and tested under constant axial loads(0.1fc′Ag and 0.35fc′Ag) and lateral cyclic loading.The rapid repair technique developed,aimed to restore the original strength and to provide minimum drift capacity.The repair schemes were characterized by the use of:(a) epoxy injections and polymer modified cementitious mortar to seal the cracks and replace spalled concrete;and(b) glass(GFRP) and carbon(CFRP) sheets to enhance the joint performance.The FRP sheets were effectively prevented against possible debonding through the use of fiber anchors.Comparison between responses of specimens before and after repair clearly indicated reasonable restoration in strength,drift capacity,stiffness and cumulative energy dissipation capacity.All specimens failed with delamination of FRP sheets at beam-column joint interfaces.The rapid repair technique developed in this study is recommended for mass upgrading or repair of earthquake damaged beam-column joints. 展开更多
关键词 FRP 建筑物 抗震设计 抗震结构
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基于Arduino的SMA丝材智能修复损伤钢筋混凝土梁试验研究 被引量:2
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作者 何初生 王文炜 +1 位作者 姜进科 张吴桐 《桥梁建设》 EI CSCD 北大核心 2024年第1期61-67,共7页
为修复钢筋混凝土梁在使用阶段中由于材料老化、裂缝开展等原因造成的损伤,提出一种基于Arduino智能平台和形状记忆合金(Shape Memory Alloy,SMA,具有形状记忆效应和超弹性特性)的智能修复控制系统,根据挠度及裂缝控制原理,设计智能修... 为修复钢筋混凝土梁在使用阶段中由于材料老化、裂缝开展等原因造成的损伤,提出一种基于Arduino智能平台和形状记忆合金(Shape Memory Alloy,SMA,具有形状记忆效应和超弹性特性)的智能修复控制系统,根据挠度及裂缝控制原理,设计智能修复控制装置。该装置由输入模块、处理模块和输出模块组成,当检测到钢筋应变超过限值时,输出模块升高SMA丝材温度对梁体进行修复。为验证该智能修复装置的修复性能,设计对比梁A(无修复装置)与试验梁B(加装智能修复控制装置),在加载过程中对试验梁B进行3次修复,对2根梁的跨中挠度、钢筋应变及裂缝宽度等进行对比分析。结果表明:破坏时试验梁B的跨中挠度、裂缝宽度均小于对比梁A,并且在3次修复中试验梁B的跨中挠度、裂缝宽度和钢筋应变最大回复率分别为31.0%、47.0%和71.5%。说明该智能修复控制装置可以监测试验梁受损情况并激发SMA材料对试验梁实施修复,实现钢筋混凝土梁的智能修复。 展开更多
关键词 钢筋混凝土梁 形状记忆合金 智能修复控制系统 回复性 跨中挠度 钢筋应变 模型试验
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CFRP加固损伤钢筋混凝土梁抗冲击性能试验研究 被引量:1
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作者 余文成 刘浪 +3 位作者 刘均利 李治 雷芸 林童 《建筑科学与工程学报》 CAS 北大核心 2024年第2期66-74,共9页
对采用碳纤维增强复合材料(CFRP)加固的不同损伤程度的钢筋混凝土梁进行落锤冲击试验,以冲击高度、加固层数为试验参数分析CFRP加固损伤试件的裂缝发展、破坏形态及抗冲击性能,并研究试件在冲击荷载下的动力性能。结果表明:试件损伤程... 对采用碳纤维增强复合材料(CFRP)加固的不同损伤程度的钢筋混凝土梁进行落锤冲击试验,以冲击高度、加固层数为试验参数分析CFRP加固损伤试件的裂缝发展、破坏形态及抗冲击性能,并研究试件在冲击荷载下的动力性能。结果表明:试件损伤程度越高,其斜向裂缝发展越密集,试件的破坏程度越严重;落锤冲击高度越高,裂缝发展越趋近于跨中局部化;当采用多层CFRP布加固损伤试件时,试件在落锤冲击作用下保持较好的完整性,仅外部混凝土粉碎掉落;随着CFRP布粘贴层数的增加,试件整体产生弯剪破坏,损伤试件加固修复后的抗冲击能力及刚度相较于完好试件得到显著提升,提升幅度为70%~72%,但增加CFRP布粘贴层数对试件的加固修复效果提升作用有限,且加固效果与抗冲击能力并非呈线性关系;基于有效应变计算的结果可知,采用CFRP布加固修复不仅仅具有加固补强的作用,同时能够在一定的程度上改善试件的整体抗冲击性能。 展开更多
关键词 CFRP 钢筋混凝土梁 加固修复 落锤冲击 动态响应 抗冲击性能
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