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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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Flexural behavior of reinforced concrete beams with high performance fiber reinforced cementitious composites 被引量:5
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作者 SIVA Chidambaram R PANKAJ Agarwal 《Journal of Central South University》 SCIE EI CAS CSCD 2019年第9期2609-2622,共14页
This article presents an experimental study on the flexural performance of reinforced concrete(RC)beams with fiber reinforced cementitious composites(FRCC)and hybrid fiber reinforced cementitious composites(HFRCC)in t... This article presents an experimental study on the flexural performance of reinforced concrete(RC)beams with fiber reinforced cementitious composites(FRCC)and hybrid fiber reinforced cementitious composites(HFRCC)in the hinge portion.Beam specimens with moderate confinement were used in the study and tested under monotonic loading.Seven diverse types of FRCC including hybrid composites using fibers in different profiles and in different volumes are employed in this study.Companion specimens such as cylindrical specimens and prism specimens are also used to study the physical properties of composites employed.The moment?curvature,stiffness behavior,ductility,crack pattern and modified flexural damage ratio are the main factors considered in this study to observe the efficacy of the employed hybrid composites.The experimental outputs demonstrate the improved post yield behavior with less rate of stiffness degradation and better damage tolerance capacity than conventional technique. 展开更多
关键词 reinforced concrete beams fiber reinforced composites flexural behavior flexural damage ratio
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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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Stress redistribution of simply supported reinforced concrete beams under fire conditions 被引量:4
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作者 DING Fa-xing LI Zhe YU Zhi-wu 《Journal of Central South University》 SCIE EI CAS CSCD 2018年第9期2093-2106,共14页
This study presents experimental and numerical investigations of simply supported steel reinforced concrete(RC)beams under fire.The temperature field of cross sections,the vertical deflection at mid-span,and specifica... This study presents experimental and numerical investigations of simply supported steel reinforced concrete(RC)beams under fire.The temperature field of cross sections,the vertical deflection at mid-span,and specifically the axial expansion displacement at beam-ends were measured during the fire tests.A novel finite element(FE)model of a RC beam under fire was developed,in which the water loss in the heat transfer analysis and the concrete transient strain in the mechanical analysis were considered.Based on the validated FE model proposed in this study,parametric studies were conducted to investigate the effects of the beam type,the protective layer thickness,and the load ratio on the thermal and mechanical behavior of simply supported RC beams.It was found that greater fire resistance and fire performance of girder beams in comparison to secondary beams contributed to the non-structural reinforcements,which effectively compensated for the reduced tensile capacities of structural reinforcements because of the degradation of the material properties.In addition,the history of normal stress distributions of concrete under fire can be divided into three phases:expansion,stress redistribution and plateau phases. 展开更多
关键词 reinforced concrete beam transient strain fire condition parametric analysis stress redistribution
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Comparison on construction of strut-and-tie models for reinforced concrete deep beams 被引量:2
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作者 仇一颗 刘霞 《Journal of Central South University》 SCIE EI CAS 2011年第5期1685-1692,共8页
With consideration of the differences between concrete and steel,three solutions using genetic evolutionary structural optimization algorithm were presented to automatically develop optimal strut-and-tie model for dee... With consideration of the differences between concrete and steel,three solutions using genetic evolutionary structural optimization algorithm were presented to automatically develop optimal strut-and-tie model for deep beams.In the finite element analysis of the first method,the concrete and steel rebar are modeled by a plane element and a bar element,respectively.In the second method,the concrete and steel are assigned to two different plane elements,whereas in the third method only one kind of plane element is used with no consideration of the differences of the two materials.A simply supported beam under two point loads was presented as an example to verify the validity of the three proposed methods.The results indicates that all the three methods can generate optimal strut-and-tie models and the third algorithm has powerful capability in searching more optimal results with less computational effort.The effectiveness of the proposed algorithm III has also been demonstrated by other two examples. 展开更多
关键词 reinforced concrete deep beam topology optimization strut-and-tie model genetic evolutionary structural optimization
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Long term behavior of self-compacting reinforced concrete beams 被引量:1
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作者 刘小洁 余志武 蒋丽忠 《Journal of Central South University of Technology》 EI 2008年第3期423-428,共6页
Tests were carried out on 8 self-compacting reinforced concrete(SCC) beams and 4 normal reinforced concrete beams. The effects of mode of consolidation,load level,reinforcing ratio and structural type on long term beh... Tests were carried out on 8 self-compacting reinforced concrete(SCC) beams and 4 normal reinforced concrete beams. The effects of mode of consolidation,load level,reinforcing ratio and structural type on long term behavior of SCC were investigated. Under the same environmental conditions,the shrinkage-time curve of self-compacting concrete beam is very similar to that of normal concrete beam. For both self-compacting reinforced concrete beams and normal reinforced concrete beams,the rate of shrinkage at early stages is higher,the shrinkage strain at 2 months is about 60% of the maximum value at one year. The shrinkage strain of self-compacting reinforced concrete beam after one year is about 450×10-6. Creep deflection of self-compacting reinforced concrete beam decreases as the tensile reinforcing ratio increases. The deflection creep coefficient of self-compacting reinforced concrete beam after one and a half year is about 1.6,which is very close to that of normal reinforced concrete beams cast with vibration. Extra cautions considering shrinkage and creep behavior are not needed for the use of SCC in engineering practices. 展开更多
关键词 self-compacting reinforced concrete beams long term behavior SHRINKAGE creep deflection
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Effects of edge beams on mechanic behavior under lateral load in reinforced concrete hollow slab-column structure
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作者 成洁筠 杨建军 唐小弟 《Journal of Central South University》 SCIE EI CAS 2008年第S1期61-66,共6页
In order to get the formulae for calculating the equivalent frame width coefficient of reinforced concrete hollow slab-column structures with edge beam,the finite element structural program was used in the elastic ana... In order to get the formulae for calculating the equivalent frame width coefficient of reinforced concrete hollow slab-column structures with edge beam,the finite element structural program was used in the elastic analysis of reinforced concrete hollow slab-column structure with different dimensions to study internal relationship between effective beam width and the frame dimensions.In addition,the formulas for calculating the increasing coefficient of edge beam were also obtained. 展开更多
关键词 reinforced concrete HOLLOW slab-column structure edge beam equivalent frame width COEFFICIENT increasing COEFFICIENT
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Fatigue properties of special kind of reinforced concrete composite beams
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作者 胡铁明 黄承逵 陈小锋 《Journal of Central South University》 SCIE EI CAS 2010年第1期142-149,共8页
The special reinforced concrete composite beam consists of a steel fiber reinforced self-stressing concrete composite layer and a reinforced concrete T-beam, and constructional bars are set up at their bonding interfa... The special reinforced concrete composite beam consists of a steel fiber reinforced self-stressing concrete composite layer and a reinforced concrete T-beam, and constructional bars are set up at their bonding interface. Fatigue properties of the composite beam under the action of negative moment were experimentally studied. Through inverted loading mode the load-beating state of a composite beam was simulated under the action of negative moment. With the ratios of constructional bars being 0, 0.082% and 0.164% respectively as parameters, the effects of constructional bars on the properties of composite beam, such as fatigue life, crack propagation, rigidity loss as well as damage behavior of bonding interface, were studied. The mechanism of the constructional bars on the fatigue properties of the composite beams and the restriction mechanism of crack widths and rigidity loss were analyzed. The test results show that the constructional bars can enhance the shear resistance of the bonding interface between composite layer and old concrete beam and restrict expanding of steel fiber reinforced self-stressing concrete, which are beneficial to synergistic action of composite layer and old concrete beam, to reducing the stress amplitude of bars and the crack width of composite layer, and to increasing the durability and fatigue life of the composite beam. 展开更多
关键词 steel fiber reinforced self-stressing concrete composite beam constructional bar bonding interface FATIGUE
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Lagged strain of laminates in RC beams strengthened with fiber-reinforced polymer 被引量:5
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作者 贺学军 周朝阳 +1 位作者 李毅卉 徐玲 《Journal of Central South University of Technology》 EI 2007年第3期431-435,共5页
Based on the theory of concrete structure, a new expression was derived for lagged strain of fiber-reinforced polymer (FLIP) laminates in reinforced concrete (RC) beams strengthened with FRP. The influence of diff... Based on the theory of concrete structure, a new expression was derived for lagged strain of fiber-reinforced polymer (FLIP) laminates in reinforced concrete (RC) beams strengthened with FRP. The influence of different preloaded states and nonlinear stress-strain relationship of compressed concrete were both taken into account in this approach. Then a simplified expression was given by ignoring tensile resistance of concrete. Comparison of analytical predictions with experimental results indicates satisfactory accuracy of the procedures. The errors are less than 8% and 10% respectively when the tensile resistance of concrete is or not considered. While the maximum error of existing procedures is up to 60%. 展开更多
关键词 reinforced concrete beam: bonded laminates strengthening: lagged strain: nreloaded state
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基于IWOA-LSTM算法的预应力钢筋混凝土梁损伤识别 被引量:4
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作者 范旭红 章立栋 +2 位作者 杨帆 李青 郁董凯 《江苏大学学报(自然科学版)》 CAS 北大核心 2025年第1期105-112,119,共9页
为准确识别桥梁结构的损伤程度,制作了桥梁的关键构件——预应力钢筋混凝土梁,进行三点弯曲加载试验.收集了损伤破坏全过程的声发射(AE)信号,通过AE信号参数分析,将梁的损伤破坏过程划分为4个典型阶段.构建了长短时记忆神经网络(LSTM)模... 为准确识别桥梁结构的损伤程度,制作了桥梁的关键构件——预应力钢筋混凝土梁,进行三点弯曲加载试验.收集了损伤破坏全过程的声发射(AE)信号,通过AE信号参数分析,将梁的损伤破坏过程划分为4个典型阶段.构建了长短时记忆神经网络(LSTM)模型,根据经验设置LSTM模型的超参数容易导致网络陷入局部最优而影响了分类结果,提出采用Sine混沌映射和自适应权重来改进鲸鱼优化算法(WOA),对LSTM进行超参数寻优.设计了IWOA-LSTM算法模型,训练识别试验梁各损伤阶段的AE信号特征参数.定型网络结构,并识别同种工况下其他梁的AE信号.结果表明:IWOA-LSTM算法模型识别准确率均超过或接近92%,相较于普通LSTM模型,IWOA-LSTM模型识别准确率提高了约7%. 展开更多
关键词 预应力钢筋混凝土梁 声发射 损伤识别 长短时记忆神经网络 改进的鲸鱼优化算法
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混凝土非均质性对RC梁冲击响应尺度效应的影响机制
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作者 金浏 吴少雄 +2 位作者 张仁波 李健 杜修力 《含能材料》 北大核心 2025年第7期751-765,共15页
钢筋混凝土(reinforced concrete,RC)结构在服役过程中常遭受冲击荷载作用,导致其动力响应十分复杂,往往难以预测。为了系统分析混凝土非均质性这一特征对几何相似RC梁冲击响应及尺度效应的影响,基于对照分析的方法,建立了均质RC梁(Homo... 钢筋混凝土(reinforced concrete,RC)结构在服役过程中常遭受冲击荷载作用,导致其动力响应十分复杂,往往难以预测。为了系统分析混凝土非均质性这一特征对几何相似RC梁冲击响应及尺度效应的影响,基于对照分析的方法,建立了均质RC梁(Homogeneity,HMG)与两种非均质RC梁(Heterogeneity⁃Ⅰ,HTG⁃Ⅰ和Heterogeneity⁃Ⅱ,HTG⁃Ⅱ)模型。在冲击荷载作用下分别对比分析位移、冲击力及支反力响应,并进一步从损伤模式、挠度曲线及能量吸收角度探讨其尺度效应的内在机理。研究结果表明,混凝土非均质性这一特征是导致几何相似RC梁位移响应产生尺度效应的原因之一,但其对冲击力和支反力响应的影响较小。造成上述现象的内在机理可能是非均质性会引起不同的损伤路径,结合挠度曲线和能量吸收角度分析,进而发现非均质性增强了RC梁的局部响应。同时,冲击速度在3.6~7.4 m·s^(-1)内,冲击速度越大,位移响应的尺度效应会越显著。 展开更多
关键词 钢筋混凝土梁 非均质性 尺度效应 冲击荷载 损伤模式
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FRP筋/钢筋混合配筋混凝土梁冲击响应简化分析与预测
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作者 张仁波 李昕晨 +1 位作者 金浏 杜修力 《振动与冲击》 北大核心 2025年第13期44-53,共10页
针对目前试验和数值模拟方法复杂且低效的问题,研究了纤维增强聚合物(fiber-reinforced polymer,FRP)筋/钢筋混合配筋混凝土梁在冲击荷载下动态响应的简化分析与预测方法。首先,建立了混合配筋混凝土梁的动态弯-剪抗力模型;其次,基于此... 针对目前试验和数值模拟方法复杂且低效的问题,研究了纤维增强聚合物(fiber-reinforced polymer,FRP)筋/钢筋混合配筋混凝土梁在冲击荷载下动态响应的简化分析与预测方法。首先,建立了混合配筋混凝土梁的动态弯-剪抗力模型;其次,基于此模型并考虑应力波传播效应,提出了一种改进的双自由度简化分析模型来预测混合配筋混凝土简支梁的冲击响应,并验证了该模型的准确性;最后,基于量纲分析,对双自由度模型计算的120组冲击工况的结果进行回归分析,建立了混合配筋梁的峰值位移和冲击力时程曲线的经验性预测模型。结果表明,该模型的预测误差基本在20%以内,可为混合配筋混凝土梁在冲击荷载作用下的工程实践提供一种有效的简化计算方法。 展开更多
关键词 冲击荷载 纤维增强聚合物(FRP)筋 混合配筋混凝土梁 双自由度模型 设计方法
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空间网格空腹夹层板结构创新与实践最新进展
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作者 陈红鸟 杨瑛 +4 位作者 田鹏刚 周正荣 陈靖 魏艳辉 马克俭 《应用力学学报》 北大核心 2025年第1期1-20,共20页
为了解决大跨度空腹网架结构抗剪刚度不足的问题,贵州大学马克俭教授于20世纪90年代创新地提出了空腹夹层板结构。通过减小竖杆的高宽比,使之形成“超短柱”,即剪力键,利用剪力键连接上、下肋协同受力,从而使空腹夹层板结构具有较大的... 为了解决大跨度空腹网架结构抗剪刚度不足的问题,贵州大学马克俭教授于20世纪90年代创新地提出了空腹夹层板结构。通过减小竖杆的高宽比,使之形成“超短柱”,即剪力键,利用剪力键连接上、下肋协同受力,从而使空腹夹层板结构具有较大的剪切刚度,其整体力学特性介于密肋井字楼盖与空腹网架之间。系统回顾了空腹夹层板结构的发展历程,介绍了该结构的组成和分类,总结了该结构的几何和力学特点,归纳了现有的理论分析方法与技术规程、结构优势及工程应用案例,尤其是2010年以后的工程实践进展;最后,对空腹夹层板结构体系的应用前景进行展望。空腹夹层板结构具有大跨度灵活划分空间、节约层高、降低结构自重、节省建筑用材、空腹可穿越管线等诸多优势,在全国30个省(市、自治区)的实际工程应用面积已达300余万平方米,节约建设资金超过2亿元。空腹夹层板结构体系的理论及实践创新体现了新时代的科技自立自强,采用多高层大跨度空腹夹层板楼盖结构可节约土地资源,对促进我国生态文明建设有重要意义。 展开更多
关键词 钢筋混凝土 空腹夹层板 大跨度结构 多高层建筑 网格结构
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预应力UHPC加固损伤梁抗弯性能参数分析与优化布设研究
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作者 黄颖 王黎园 《辽宁工程技术大学学报(自然科学版)》 北大核心 2025年第2期202-210,共9页
为优化超高性能混凝土(UHPC)加固层布设并提升其性能,采用数值模拟及试验对比方法,分别利用无配筋UHPC、普通配筋UHPC、预应力UHPC加固损伤RC空心板梁,研究不同加固状态下梁体的受力性能及加固层厚度、长度、预应力对梁体加固效果的影... 为优化超高性能混凝土(UHPC)加固层布设并提升其性能,采用数值模拟及试验对比方法,分别利用无配筋UHPC、普通配筋UHPC、预应力UHPC加固损伤RC空心板梁,研究不同加固状态下梁体的受力性能及加固层厚度、长度、预应力对梁体加固效果的影响。研究结果表明:与普通配筋UHPC加固相比,预应力UHPC加固能改善梁体应力状态,有效地约束裂缝的发展,极大地提高被加固空心板梁的承载力和刚度,梁体的开裂载荷、屈服载荷和抗弯极限承载力均提升显著,加固防护更加高效耐久;对比分析加固层厚度、长度、预应力等参数变化,提出加固层优化建议。研究结果可为UHPC加固损伤梁体设计提供参考。 展开更多
关键词 预应力 超高性能混凝土 混凝土损伤模型 加固技术 抗弯性能 梁体
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钢板-纤维增强混凝土组合双连梁抗震性能有限元分析
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作者 田建勃 焦崧 +4 位作者 陈田宁 张书林 王梦梦 张俊发 杨海增 《自然灾害学报》 北大核心 2025年第1期190-202,共13页
连梁作为高层建筑结构体系中重要的耗能构件,要求其具有较强的抗震性能。双连梁通过提高跨高比,降低连梁内力,在地震作用下表现出良好的延性。为此,在采用双连梁的基础上考虑基体材料与钢板的影响,提出钢板-纤维增强混凝土组合双连梁,... 连梁作为高层建筑结构体系中重要的耗能构件,要求其具有较强的抗震性能。双连梁通过提高跨高比,降低连梁内力,在地震作用下表现出良好的延性。为此,在采用双连梁的基础上考虑基体材料与钢板的影响,提出钢板-纤维增强混凝土组合双连梁,并使用有限元软件对试验试件进行数值模拟,对其混凝土裂缝发展、钢板和钢筋应力、钢板沿梁跨的内力分布进行探究分析。并对钢板-纤维增强混凝土组合双连梁的跨高比、含钢率、配箍率、纵筋配筋率、纤维增强混凝土强度和连梁中间开缝间距等进行参数分析。结果表明:纵筋配筋率、含钢率、纤维增强混凝土强度和跨高比对钢板-纤维增强混凝土组合双连梁的抗震性能影响相对较大;纤维增强混凝土的使用有利于钢板性能的充分发挥;双连梁左、右梁内的受力基本相同,双连梁可以近似按左、右梁转角刚度相同进行等效。 展开更多
关键词 钢板-混凝土组合双连梁 纤维增强混凝土 抗震性能 有限元模拟 参数分析
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BFGCC加固锈蚀RC梁抗弯刚度试验研究
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作者 李杉 安俊澎 +1 位作者 卢亦焱 郑傲寒 《大连理工大学学报》 北大核心 2025年第4期407-414,共8页
通过玄武岩纤维增强复合材料(BFRP)网格增强工程水泥基复合材料(ECC)(BFGCC)加固锈蚀钢筋混凝土(RC)梁受弯性能试验,研究不同配筋率、纵筋锈蚀率和BFRP网格加固量对BFGCC加固锈蚀RC梁抗弯刚度和跨中挠度的影响.结果表明,采用BFGCC能有... 通过玄武岩纤维增强复合材料(BFRP)网格增强工程水泥基复合材料(ECC)(BFGCC)加固锈蚀钢筋混凝土(RC)梁受弯性能试验,研究不同配筋率、纵筋锈蚀率和BFRP网格加固量对BFGCC加固锈蚀RC梁抗弯刚度和跨中挠度的影响.结果表明,采用BFGCC能有效改善锈蚀RC梁裂缝分布形态,提高其抗弯刚度,减小其跨中挠度.对抗弯刚度的影响主要集中在混凝土开裂后阶段,尤其在纵筋屈服后,抗弯刚度提高程度较为显著,且提高幅度随着BFRP网格加固量的增大而增大.基于理论分析,建立了BFGCC加固锈蚀RC梁的抗弯刚度计算公式,并采用正常使用阶段的跨中挠度对计算公式进行了验证,计算值与试验值吻合良好,为BFGCC加固锈蚀RC梁抗弯刚度的计算提供了参考. 展开更多
关键词 锈蚀钢筋混凝土(RC)梁 玄武岩纤维增强复合材料(BFRP) 工程水泥基复合材料(ECC) BFRP网格增强ECC(BFGCC) 受弯性能 抗弯刚度
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后置翼墙法加固弱节点型RC框架试验研究
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作者 李曰兵 王航 +2 位作者 严琪 单良 邢爽 《振动工程学报》 北大核心 2025年第8期1889-1899,共11页
国内外震害表明,大量钢筋混凝土(RC)框架建筑梁-柱节点或柱发生严重破坏,未能形成设计期望的梁端铰破坏机制。在柱内侧增设RC翼墙,能够同时加固既有框架的柱和节点,促进梁铰机构形成,是一种简单有效的加固方式。本文制作两个1/2缩尺的... 国内外震害表明,大量钢筋混凝土(RC)框架建筑梁-柱节点或柱发生严重破坏,未能形成设计期望的梁端铰破坏机制。在柱内侧增设RC翼墙,能够同时加固既有框架的柱和节点,促进梁铰机构形成,是一种简单有效的加固方式。本文制作两个1/2缩尺的钢筋混凝土框架,并对其中一个采用后置翼墙法进行抗震加固。通过拟静力试验,研究了两试件的滞回性能、变形能力、耗能能力及破坏模式等抗震性能。结果表明,加固后框架的的刚度、承载力和耗能能力得到了显著提升,试件由节点剪切破坏转变为理想的梁屈服破坏,验证了在节点抗剪承载力严重不足的极端情况下,通过增设翼墙加固既有钢筋混凝土框架的可行性和有效性。 展开更多
关键词 钢筋混凝土 框架结构 抗震加固 后置翼墙 梁-柱节点 拟静力试验
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地铁车站双槽钢型钢混凝土转换梁抗剪承载力研究
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作者 马辉 张如一 +2 位作者 赵艳丽 王博 谢钟辉 《应用力学学报》 北大核心 2025年第4期783-791,共9页
为研究地铁车站双槽钢型钢混凝土转换梁的抗剪承载力,对该类转换梁进行了抗剪承载力试验研究,获得了该类转换梁的破坏特征、荷载-位移曲线和钢材的应变发展规律,研究了剪跨比和配钢率对转换梁抗剪承载力的影响规律。研究表明,转换梁试... 为研究地铁车站双槽钢型钢混凝土转换梁的抗剪承载力,对该类转换梁进行了抗剪承载力试验研究,获得了该类转换梁的破坏特征、荷载-位移曲线和钢材的应变发展规律,研究了剪跨比和配钢率对转换梁抗剪承载力的影响规律。研究表明,转换梁试件在集中荷载作用下主要呈现剪切破环形态,其受剪承载力主要由型钢腹板、箍筋及混凝土承担;增大型钢配钢率对增强转换梁的抗剪承载力是有利的。结合该类转换梁的受剪破坏特征,分别提出基于拉-压杆模型和叠加原理的转换梁抗剪承载力计算方法,计算表明2种方法均可以有效预测转换梁的抗剪承载能力,其结果可为该转换梁的应用提供理论参考。 展开更多
关键词 地铁车站结构 双槽钢 型钢混凝土 转换梁 抗剪承载力 计算方法
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高强钢绞线网增强工程水泥基复合材料抗弯加固损伤钢筋混凝土梁试验
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作者 李可 葛辉 +1 位作者 徐朝阳 朱俊涛 《哈尔滨工程大学学报》 北大核心 2025年第7期1388-1397,共10页
为进一步将高强钢绞线网增强工程水泥基复合材料推广应用于既有工程结构加固,本文进行了该复合材料加固损伤梁抗弯性能试验研究。考虑原梁损伤程度、高强钢绞线直径、高强钢绞线配筋率的影响,对1个对比梁和7个卸载加固损伤梁进行抗弯性... 为进一步将高强钢绞线网增强工程水泥基复合材料推广应用于既有工程结构加固,本文进行了该复合材料加固损伤梁抗弯性能试验研究。考虑原梁损伤程度、高强钢绞线直径、高强钢绞线配筋率的影响,对1个对比梁和7个卸载加固损伤梁进行抗弯性能试验。结果表明:采用该加固方法,可使加固层与原梁较好地协同工作,充分发挥高强钢绞线网增强工程水泥基复合材料的优越力学性能,从而可显著提升卸载加固损伤梁的承载力、刚度、延性、韧性以及抗裂性,明显减小裂缝宽度;相比于加固无损梁,随着损伤程度的增加,卸载加固损伤梁的受弯承载力、截面刚度、延性以及韧性均呈降低趋势,且加固层对混凝土裂缝的控制能力亦降低;适当增加纵向钢绞线配筋率,可提高加固损伤梁受弯承载力、截面刚度、延性、韧性及加固层对裂缝的约束能力;纵向钢绞线配筋率相近时,钢绞线直径越小,加固层的控裂能力越强,能更好地减小裂缝宽度。 展开更多
关键词 高强钢绞线网 工程水泥基复合材料 结构加固 四点弯曲加载试验 损伤程度影响 受弯性能 钢筋混凝土梁 试验研究
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