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Flexural behaviors of steel reinforced ECC/concrete composite beams 被引量:8
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作者 董洛廷 潘金龙 +1 位作者 袁方 梁坚凝 《Journal of Southeast University(English Edition)》 EI CAS 2012年第2期195-202,共8页
An engineered cementitious composite (ECC) is introduced to partially substitute concrete in the tension zone of a reinforced concrete beam to form an ECC/reinforced concrete (RC) composite beam, which can increas... An engineered cementitious composite (ECC) is introduced to partially substitute concrete in the tension zone of a reinforced concrete beam to form an ECC/reinforced concrete (RC) composite beam, which can increase the ductility and crack resisting ability of the beam. Based on the assumption of the plane remaining plane and the simplified constitutive models of materials, the stress and strain distributions along the depth of the composite beam in different loading stages are comprehensively investigated to obtain calculation methods of the load-carrying capacities for different stages. Also, a simplified formula for the ultimate load carrying capacity is proposed according to the Chinese code for the design of concrete structures. The relationship between the moment and curvature for the composite beam is also proposed together with a simplified calculation method for ductility of the ECC/RC composite beam. Finally, the calculation method is demonstrated with the test results of a composite beam. Comparison results show that the calculation results have good consistency with the test results, proving that the proposed calculation methods are reliable with a certain theoretical significance and reference value. 展开更多
关键词 engineered cementitious composites (ECC) reinforced concrete composite beam flexural properties load carrying capacity
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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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Experimental Research on Shear Behavior of Reinforced Concrete Composite Beams Under Uniformly Distributed Load
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作者 ZHAO Shunbo Ass. Prof., North China Institute of Water Conservancy and Hydroelectric Power, Zhengzhou 450045, P. R. China. 《China Ocean Engineering》 SCIE EI 1998年第4期467-476,共10页
An experimental program was carried out to study the shear behavior of the reinforced concrete composite beam (RCCB) subjected to two-phase uniformly distributed load. A total of 12 reinforced concrete composite beams... An experimental program was carried out to study the shear behavior of the reinforced concrete composite beam (RCCB) subjected to two-phase uniformly distributed load. A total of 12 reinforced concrete composite beams were tested: 10 of them were the RCCB subjected to two-phase uniformly distributed load, the other 2 were the comparative reinforced concrete beams cast at the same time as the RCCB subjected to one-phase uniformly distributed load. The interface of precast unit and recast concrete was natural and rough. The test range of the main composite factors: the ratio of precast section depth to composite section depth was from 0.35 to 0.65, the ratio of first-phase load moment to precast section ultimate bearing moment was from 0.25 to 0.65. Based on the test results, the stresses of the longitudinal reinforcements and stirrups, the load-bearing properties of the interface, the crack state and the failure characteristics of the RCCB under uniformly distributed load are discussed. The effects of the stirrups, the concrete strength and the composite factors on the shear resistance of the RCCB are analyzed, and the method for evaluating the shear resistance of the RCCB is proposed. 展开更多
关键词 reinforced concrete composite beam shear resistance composite factor mechanism of failure
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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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Fatigue tests of composite beam by steel fiber reinforced self-stressing concrete in the hogging bending
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作者 胡铁明 黄承逵 +1 位作者 梁振宇 陈小锋 《Journal of Shanghai University(English Edition)》 CAS 2010年第6期430-436,共7页
Through the experiments of 7 T-section composite beams, steel fiber reinforced self-stressing concrete (SFRSC) as the composite beam in the composite layer was studied under the hogging bending. The tests simulated ... Through the experiments of 7 T-section composite beams, steel fiber reinforced self-stressing concrete (SFRSC) as the composite beam in the composite layer was studied under the hogging bending. The tests simulated composite layer tensile strain under the hogging bending of inverted loading composite beams, giving the relationship under the different fatigue stress ratios between fatigue cycles and steel bar’s stress range, crack width, stiffness loss and damage, etc., in composite layer. This article established fatigue life equation, and analyzed SFRSC reinforced mechanism to crack width and stiffness loss. The results show that SFRSC as the composite beam concrete has excellent properties of crack resistance and tensile, can reinforce the fatigue crack width and stiffness loss of composite beams, and improve the durability and in normal use of composite beams in the hogging bending zone. 展开更多
关键词 steel fiber reinforced self-stressing concrete (SFRSC) composite beam hogging bending FATIGUE
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Experimental and analytical study on seismic behavior of steel-concrete multienergy dissipation composite shear walls 被引量:5
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作者 Dong Hongying Cao Wanlin +2 位作者 Wu Haipeng Qiao Qiyun Yu Chuanpeng 《Earthquake Engineering and Engineering Vibration》 SCIE EI CSCD 2015年第1期125-139,共15页
In this paper, a steel-concrete multi-energy dissipation composite shear wall, comprised of steel-reinforced concrete (SRC) columns, steel plate (SP) deep beams, a concrete wall and energy dissipation strips, is p... In this paper, a steel-concrete multi-energy dissipation composite shear wall, comprised of steel-reinforced concrete (SRC) columns, steel plate (SP) deep beams, a concrete wall and energy dissipation strips, is proposed. In order to study the multi-energy dissipation behavior and restorability after an earthquake, two stages of low cyclic loading tests were carded out on ten test specimens. In the first stage, test on five specimens with different number of SP deep beams was carried out, and the test lasted until the displacement drift reached 2%. In the second stage, thin SPs were welded to both sides of the five specimens tested in the first stage, and the same test was carried out on the repaired specimens (designated as new specimens). The load-bearing capacity, stiffness, ductility, hysteretic behavior and failure characteristics were analyzed for both stages and the results are discussed herein. Extrapolating from these results, strength calculation models and formulas are proposed herein and simulations using ABAQUS carried out, they show good agreement with the test results. The study demonstrates that SRC columns, SP deep beams, concrete wall and energy dissipation strips cooperate well and play an important role in energy dissipation. In addition, this study shows that the shear wall has good recoverability after an earthquake, and that the welding of thin SP's to repair a deformed wall is a practicable technique. 展开更多
关键词 steel reinforced concrete steel plate deep beam multi energy dissipation composite shear wall seismic behavior
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Experimental study and analysis on fatigue stiffness of RC beams strengthened with CFRP and steel plate 被引量:13
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作者 卢亦焱 胡玲 +1 位作者 李杉 王康昊 《Journal of Central South University》 SCIE EI CAS CSCD 2016年第3期701-707,共7页
The objective of this work is to investigate the fatigue behavior of reinforced concrete(RC) beams strengthened with externally bonded carbon fiber reinforced polymer(CFRP) and steel plate. An experimental investigati... The objective of this work is to investigate the fatigue behavior of reinforced concrete(RC) beams strengthened with externally bonded carbon fiber reinforced polymer(CFRP) and steel plate. An experimental investigation and theoretical analysis were made on the law of deflection development and stiffness degradation, as well as the influence of fatigue load ranges. Test results indicate that the law of three-stage change under fatigue loading is followed by both midspan deflection and permanent deflection, which also have positive correlation with fatigue load amplitude. Fatigue stiffness of composite strengthened beams degrades gradually with the increasing of number of cycles. Based on the experimental results, a theoretical model by effective moment of inertia method is developed for calculating the sectional stiffness of such composite strengthened beams under fatigue loading, and the calculated results are in good agreement with the experimental results. 展开更多
关键词 carbon fiber reinforced polymer steel plate composite strengthening technique reinforced concrete beams fatigue stiffness
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CFRP-PCPs复合筋加固钢-混组合梁负弯矩区抗裂试验与理论计算 被引量:1
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作者 邓宇 凌道远 倪淼 《复合材料科学与工程》 CAS 北大核心 2024年第5期66-75,共10页
为解决钢-混组合梁负弯矩区混凝土板易开裂而造成刚度减弱的行业难题,以预制的CFRP-PCPs(carbon fibre reinforced polymer-prestressed concrete prisms)复合筋作为中支座的腹筋,并以复合筋的数量、预应力张拉水平和截面尺寸为主要参... 为解决钢-混组合梁负弯矩区混凝土板易开裂而造成刚度减弱的行业难题,以预制的CFRP-PCPs(carbon fibre reinforced polymer-prestressed concrete prisms)复合筋作为中支座的腹筋,并以复合筋的数量、预应力张拉水平和截面尺寸为主要参数设计制作了五根复合筋钢-混组合连续梁和一根普通组合连续梁,研究其在单跨单点荷载下负弯矩区的抗裂性能。结果表明:复合筋能显著增强中支座截面刚度,对负弯矩区的裂缝控制能力提升显著;与普通组合梁相比,复合筋梁的开裂荷载提高近30%,裂缝数量与裂缝宽度减少近50%;复合筋面积是提高裂缝控制能力的主要因素,预应力水平和截面尺寸对开裂荷载的影响较弱;复合筋的开裂荷载与预应力水平、面积正相关,其中预应力水平是影响复合筋效用时长的关键因素。基于现有理论和试验数据,本文提出CFRP-PCPs复合筋钢-混组合梁负弯矩区开裂荷载和复合筋的开裂荷载计算公式,计算结果与试验值较为吻合,可为复合筋在钢-混组合梁桥实际工程中应用提供参考。 展开更多
关键词 CFRP-PCPs复合筋 钢-混组合梁 负弯矩区 抗裂性能 复合材料
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装配式型钢混凝土叠合框架梁连接节点构造设置与安全分析 被引量:2
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作者 林琳 《佳木斯大学学报(自然科学版)》 CAS 2024年第1期111-114,共4页
住房和城乡建设部印发《“十四五”建筑业发展规划》提出大力发展装配式建筑、推动生产和施工智能化升级的主要任务。而国内目前采用的预制叠合框架梁存在着跨度大自重大吊装成本高、预制梁柱节点位置易发生钢筋碰撞吊装定位难度大等问... 住房和城乡建设部印发《“十四五”建筑业发展规划》提出大力发展装配式建筑、推动生产和施工智能化升级的主要任务。而国内目前采用的预制叠合框架梁存在着跨度大自重大吊装成本高、预制梁柱节点位置易发生钢筋碰撞吊装定位难度大等问题,限制了装配式建筑结构的发展。结合实际工程项目,提出一种新型的装配式型钢混凝土叠合框架梁,并对该叠合梁的构造设置、连接方式及安全性进行分析,从而为装配式框架结构、框架—剪力墙结构等装配式建筑中框架梁的深化设计提供一种新的拆分方案。 展开更多
关键词 装配式建筑 型钢混凝土结构 叠合框架梁 构造设置 安全性分析
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GFRP型材-混凝土组合梁受弯性能分析
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作者 王仪 姚子豪 +3 位作者 张志文 姜景 张素康 葛文杰 《建筑结构》 北大核心 2024年第23期120-126,57,共8页
为了研究玻璃钢纤维(GFRP)型材-混凝土组合梁的受弯性能,采用有限元分析软件ABAQUS建立其数值模型并进行模拟分析。对混凝土采用塑性损伤模型,并考虑了GFRP型材的各向异性的特征,连接界面采用牵引-分离模型来模拟GFRP型材与混凝土的粘结... 为了研究玻璃钢纤维(GFRP)型材-混凝土组合梁的受弯性能,采用有限元分析软件ABAQUS建立其数值模型并进行模拟分析。对混凝土采用塑性损伤模型,并考虑了GFRP型材的各向异性的特征,连接界面采用牵引-分离模型来模拟GFRP型材与混凝土的粘结-滑移行为。试验结果验证了模拟分析的正确性。此外,进行了参数扩展分析,研究了混凝土板截面尺寸、GFRP型材截面尺寸(腹板高度和腹板、翼缘板厚度)对GFRP型材-混凝土组合梁受弯性能的影响。结果表明:剪力键间距为100mm的组合梁的极限承载力比间距为150、200mm的试件分别高21.4%和30.7%。FRP剪力键可有效提高抗剪性能,改善界面粘结性能。混凝土截面高宽比超过1.2时,组合梁破坏模式从受弯破坏向剥离破坏转变。合理设计组合梁截面尺寸可以有效地提高组合梁的极限抗弯承载力、最大挠度和拟延性特征,在力学性能和工程造价之间取得良好的平衡。 展开更多
关键词 玻璃钢纤维型材-混凝土组合梁 受弯性能 粘结-滑移行为 牵引-分离模型
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NC–UHPC组合梁抗冲击性能的数值研究 被引量:2
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作者 伍敏 黄于倩 +2 位作者 潘仁胜 金浏 杜修力 《工程科学学报》 EI CSCD 北大核心 2024年第2期354-364,共11页
超高性能混凝土(UHPC)材料已成为极具前景的高性能材料,并在冲击和爆炸等防护工程领域中取得了良好的效果.对于普通钢筋混凝土(NC)梁在受到冲击荷载时较易发生局部冲剪破坏,而纯UHPC梁虽可改善其冲击性能,但高昂的造价限制了其进一步的... 超高性能混凝土(UHPC)材料已成为极具前景的高性能材料,并在冲击和爆炸等防护工程领域中取得了良好的效果.对于普通钢筋混凝土(NC)梁在受到冲击荷载时较易发生局部冲剪破坏,而纯UHPC梁虽可改善其冲击性能,但高昂的造价限制了其进一步的应用.为了实现结构抗冲击性能和经济的平衡,提出UHPC局部替换和包裹的方案改善钢筋混凝土梁的抗冲击性能.本文设计了NC梁、UHPC梁和NC–UHPC组合梁等不同的研究工况,然后对比分析各个试件的抗冲击性能.结果表明:相比普通钢筋混凝土梁,UHPC局部替换方案可以有效的避免梁的局部冲剪破坏,而UHPC包裹在冲击荷载下梁的破坏模式由冲剪破坏转变为弯曲破坏,两种方案均可有效的减少梁跨中的峰值位移和残余位移;UHPC局部替换相较于包裹方案,梁的跨中峰值位移和残余位移较小,且具有更高的跨中承载能力,在实际过程中建议UHPC局部替换长度取大于2倍梁高以避免局部冲剪破坏. 展开更多
关键词 超高性能混凝土 普通钢筋混凝土 组合梁 冲击荷载 冲剪破坏 弯曲破坏
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UHPC-RC节段组合梁的抗弯性能分析 被引量:3
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作者 严靖 陈亮 黄润钺 《合肥工业大学学报(自然科学版)》 CAS 北大核心 2024年第2期207-213,共7页
为研究低预应力度条件下,不同节段接缝的超高性能混凝土-钢筋混凝土(ultra-high performance concrete-reinforced concrete,UHPC-RC)组合梁的抗弯性能,文章基于ABAQUS有限元软件,建立UHPC-RC节段组合梁的基准有限元模型,并利用已有的... 为研究低预应力度条件下,不同节段接缝的超高性能混凝土-钢筋混凝土(ultra-high performance concrete-reinforced concrete,UHPC-RC)组合梁的抗弯性能,文章基于ABAQUS有限元软件,建立UHPC-RC节段组合梁的基准有限元模型,并利用已有的试验数据验证该模型的合理性。节段接缝分别为平面干接缝、平面胶接缝、齿键干接缝和齿键胶接缝,在基准有限元模型的基础上,进一步研究节段接缝类型对组合梁抗弯性能的影响。研究发现,在四点受弯加载方式下,接缝的几何特征(平面或齿键)对组合梁的极限荷载和开裂荷载影响较小,环氧树脂胶的使用对组合梁的抗弯性能影响较大。 展开更多
关键词 桥梁工程 超高性能混凝土-钢筋混凝土(UHPC-RC) 节段组合梁 节段接缝 ABAQUS有限元软件 cohesive behavior模型
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某超高层项目钢管混凝土组合柱应用 被引量:4
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作者 程向东 唐笑一 +3 位作者 王明 吴联定 卫江华 伏贤哲 《建筑结构》 北大核心 2024年第4期104-109,共6页
某超高层项目荷载较大,导致框架柱截面较大,严重影响建筑空间使用。采用钢管混凝土组合柱,和型钢混凝土柱相比,标准层每根柱节约建筑有效使用面积1.5~1.8m^(2),结构主体成本节约近1000万元。提出了对钢管进行开孔的梁柱节点做法并分析... 某超高层项目荷载较大,导致框架柱截面较大,严重影响建筑空间使用。采用钢管混凝土组合柱,和型钢混凝土柱相比,标准层每根柱节约建筑有效使用面积1.5~1.8m^(2),结构主体成本节约近1000万元。提出了对钢管进行开孔的梁柱节点做法并分析五种不同节点方案,采用大型通用有限元软件ABAQUS进行仿真分析,充分考虑框架梁对节点的约束作用,得到五种节点方案的极限承载力及钢管的最大应力,结果表明采用钢管开孔的梁柱节点做法可行,并得到最合理的开孔形式;分别对7种不同箍筋形式进行受力性能分析,并考虑实际施工因素,得到最为合理的箍筋设置形式。 展开更多
关键词 超高层结构 钢管混凝土组合柱 型钢混凝土柱 套箍指标 轴压比 梁柱节点
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钢管混凝土叠合柱-钢筋混凝土梁节点抗震性能
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作者 杨航东 《华北地震科学》 2024年第3期26-34,共9页
为研究钢管混凝土叠合柱-钢筋混凝土(RC)梁节点的抗震性能,以某地铁车站钢管混凝土柱为原型,基于等效刚度方法,将钢管混凝土叠合柱与钢管混凝土柱进行刚度等效计算,通过pushover得到其抗弯刚度,探究钢管混凝土柱与钢管混凝土叠合柱的力... 为研究钢管混凝土叠合柱-钢筋混凝土(RC)梁节点的抗震性能,以某地铁车站钢管混凝土柱为原型,基于等效刚度方法,将钢管混凝土叠合柱与钢管混凝土柱进行刚度等效计算,通过pushover得到其抗弯刚度,探究钢管混凝土柱与钢管混凝土叠合柱的力学性能;采用ABAQUS建立钢管混凝土柱-RC梁节点和钢管混凝土叠合柱-RC梁节点模型,通过既有文献试验数据验证节点模型的准确性,对两种节点的滞回特性、骨架曲线退化、刚度以及延性进行对比分析。结果表明:小轴压比作用下,钢管混凝土柱节点的耗能能力、滞回性能以及极限荷载都要优于钢管混凝土叠合柱节点;随着轴压比的增大,两者差别较小,在0.9轴压比时,钢管混凝土叠合柱节点的抗震性能优于钢管混凝土柱节点,采用钢管混凝土叠合柱-RC梁节点替换钢管混凝土柱-RC梁节点不会造成结构抗震性能的明显下降。 展开更多
关键词 抗震性能 数值计算 钢管混凝土叠合柱 钢筋混凝土梁 节点
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大跨度斜拱曲梁多重组合桥梁原理和应用实践
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作者 宁平华 杨燎原 胡会勇 《城市道桥与防洪》 2024年第11期9-12,M0004,共5页
以广州市海心桥为例,阐述大跨度斜拱曲梁多重组合结构设计原理、构造特点和关键技术。其中钢-混凝土组合空间拱肋、UHPC包裹钢箱混凝土组合拱肋、劲性骨架组合承台、型钢混凝土组合抗推桩和骑跨式组合桥台等创新构造均满足了使用、景观... 以广州市海心桥为例,阐述大跨度斜拱曲梁多重组合结构设计原理、构造特点和关键技术。其中钢-混凝土组合空间拱肋、UHPC包裹钢箱混凝土组合拱肋、劲性骨架组合承台、型钢混凝土组合抗推桩和骑跨式组合桥台等创新构造均满足了使用、景观、受力和耐久性等需要。通过分析比较和实践应用,验证了多重组合具有较好的力学特性和使用性能,使该桥成为目前世界上跨度最大、桥面最宽的斜拱曲梁跨江景观人行桥。 展开更多
关键词 斜拱曲梁 UHPC包裹钢箱混凝土拱肋 劲性骨架组合承台 骑跨式组合桥台 型钢混凝土组合抗推桩
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碳纤维增强复合材料加固钢筋混凝土梁的抗弯承载力预测
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作者 戴周阳 唐守靖 《江苏建材》 2024年第6期124-126,共3页
为解决当前碳纤维增强复合材料加固钢筋混凝土梁抗弯承载力预测模型不统一、计算过程烦琐、预测结果精度有限等问题,文章结合桥梁工程和机器学习两个领域,基于已有文献的实验数据,构建、对比了不同机器算法下的预测模型结果,以期为碳纤... 为解决当前碳纤维增强复合材料加固钢筋混凝土梁抗弯承载力预测模型不统一、计算过程烦琐、预测结果精度有限等问题,文章结合桥梁工程和机器学习两个领域,基于已有文献的实验数据,构建、对比了不同机器算法下的预测模型结果,以期为碳纤维增强复合材料加固钢筋混凝土梁的抗弯承载力预测提供一个统一的计算模型,助力我国桥梁工程行业的高质量发展。 展开更多
关键词 桥梁工程 碳纤维增强复合材料 钢筋混凝土梁 抗弯承载力 机器学习
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钢混组合梁截面形式优化研究
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作者 叶梦雨 《工程建设(维泽科技)》 2024年第2期149-152,共4页
组合梁桥是指采用剪力连接件将抗拉性能好的钢材构件与抗压性能好的钢筋混凝土结构结合成组合截面工作的一种复合式结构。近年来,随着组合梁技术的不断发展,其使用范围已扩展到连续梁桥、拱桥和斜拉桥等多种复杂体系。组合梁中的钢梁部... 组合梁桥是指采用剪力连接件将抗拉性能好的钢材构件与抗压性能好的钢筋混凝土结构结合成组合截面工作的一种复合式结构。近年来,随着组合梁技术的不断发展,其使用范围已扩展到连续梁桥、拱桥和斜拉桥等多种复杂体系。组合梁中的钢梁部分也由早先单一的钢板梁拓宽到钢箱梁、钢槽梁和钢桁梁,组合梁的截面形式也由工字形发展到箱型、倒梯形甚至三角形[1]。当主梁截面采用多根单梁组成多箱室截面时,不同的截面形式造成单梁之间横向联系方式和混凝土桥面板施工方法大不相同。本文研究同等跨径、同等宽度条件下某省两条高速公路主线桥钢混组合梁截面形式由钢箱梁优化为钢槽梁后各方面性能指标,为今后的项目建设提供依据和参考. 展开更多
关键词 钢混组合梁 钢箱梁 钢槽梁 截面优化
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矩形钢管柱下伸地下室层的节点设计研究
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作者 叶李平 吴雪健 林翔宇 《福建建设科技》 2024年第1期107-109,121,共4页
介绍了两种钢结构中矩形钢管混凝土柱下伸地下室时于地下室顶板处钢柱与钢筋混凝土梁连接的节点做法。根据工程实际情况对规范和标准图集做法提出优化方案,并提出相应具体的设计措施。通过钢筋拉拔试验验证该节点的焊接可靠性,为相关工... 介绍了两种钢结构中矩形钢管混凝土柱下伸地下室时于地下室顶板处钢柱与钢筋混凝土梁连接的节点做法。根据工程实际情况对规范和标准图集做法提出优化方案,并提出相应具体的设计措施。通过钢筋拉拔试验验证该节点的焊接可靠性,为相关工程设计提供理论依据和实践经验。 展开更多
关键词 型钢混凝土组合结构 梁柱连接节点 优化设计
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钢筋混凝土梁与型钢混凝土柱连接关键技术研发 被引量:6
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作者 李智斌 赵杰 +3 位作者 张涛 邵康节 冯大斌 赵基达 《施工技术》 CAS 北大核心 2014年第3期1-3,共3页
型钢混凝土组合结构中,钢筋混凝土梁与型钢混凝土柱的连接问题,传统的设计和施工工艺存在操作不便,质量较难控制等问题。提出可焊型套筒和可焊调节型套筒两种新型的钢筋机械连接装置,详细介绍了其开发和施工技术。实践证明,该施工工艺合... 型钢混凝土组合结构中,钢筋混凝土梁与型钢混凝土柱的连接问题,传统的设计和施工工艺存在操作不便,质量较难控制等问题。提出可焊型套筒和可焊调节型套筒两种新型的钢筋机械连接装置,详细介绍了其开发和施工技术。实践证明,该施工工艺合理,大大方便了施工,并能有效控制施工质量。 展开更多
关键词 混凝土 型钢混凝土组合结构 型钢混凝土柱 钢筋混凝土梁 连接
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钢板-混凝土组合加固带损伤钢筋混凝土T梁的抗弯性能试验 被引量:21
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作者 王春生 高珊 +1 位作者 任腾先 徐岳 《建筑科学与工程学报》 CAS 2010年第3期94-101,共8页
为了研究钢板-混凝土组合加固钢筋混凝土T梁在静载作用下的抗弯性能,对带损伤的2片混凝土T梁组合加固后进行了抗弯承载力试验,得到了构件破坏时的极限抗弯承载力以及受力特性,揭示了钢板-混凝土组合加固钢筋混凝土T梁的弯曲破坏机理;建... 为了研究钢板-混凝土组合加固钢筋混凝土T梁在静载作用下的抗弯性能,对带损伤的2片混凝土T梁组合加固后进行了抗弯承载力试验,得到了构件破坏时的极限抗弯承载力以及受力特性,揭示了钢板-混凝土组合加固钢筋混凝土T梁的弯曲破坏机理;建立了钢板-混凝土组合加固钢筋混凝土T梁的有限元模型,并进行了非线性静力计算。结果表明:考虑材料非线性的静力计算结果与试验结果吻合良好;采用塑性分析方法建立的试验梁极限抗弯承载力简化计算公式的计算结果与试验结果吻合良好。 展开更多
关键词 桥梁工程 钢板-混凝土组合加固 钢筋混凝土T梁 抗弯承载力 损伤
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