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Design methods of headed studs for composite decks of through steel bridges in high-speed railway 被引量:1
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作者 侯文崎 叶梅新 《Journal of Central South University》 SCIE EI CAS 2011年第3期946-952,共7页
Aimed at two typical composite floor systems of through steel bridges in high speed railway,design methods of headed studs were put forward for different composite members through comparing and analyzing the structure... Aimed at two typical composite floor systems of through steel bridges in high speed railway,design methods of headed studs were put forward for different composite members through comparing and analyzing the structure,mechanical characteristics and transmission routes of deck loads.The simplified calculation models were brought out for the stud design of the longitudinal girders and transverse girders in the composite floor system of Nanjing Dashengguan Yangtze River Bridge (NDB).Studs were designed and arranged by taking the middle panel of 336 m main span for example.The results show that under deck loads,the longitudinal girders in the composite floor system of through steel bridges are in tension-bending state,longitudinal shear force on the interface is caused by both longitudinal force of "The first mechanical system" and vertical bending of "The second mechanical system",and studs can be arranged with equal space in terms of the shear force in range of 0.2d (where d is the panel length) on the top ends.Transverse girders in steel longitudinal and transverse girders-concrete slab composite deck are in compound-bending state,and out-of-plane bending has to be taken into account in the stud design.In orthotropic integral steel deck-concrete slab composite deck,out-of-plane bending of transverse girders is very small so that it can be neglected,and studs on the orthotropic integral steel deck can be arranged according to the structural requirements.The above design methods and simplified calculation models have been applied in the stud design of NDB. 展开更多
关键词 through steel bridge steel-concrete composite deck mechanical characteristics STUD design method
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Numerical investigation of temperature gradient-induced thermal stress for steel–concrete composite bridge deck in suspension bridges 被引量:7
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作者 WANG Da DENG Yang +1 位作者 LIU Yong-ming LIU Yang 《Journal of Central South University》 SCIE EI CAS CSCD 2018年第1期185-195,共11页
A3D finite element model(FEM)with realistic field measurements of temperature distributions is proposed to investigate the thermal stress variation in the steel–concrete composite bridge deck system.First,a brief lit... A3D finite element model(FEM)with realistic field measurements of temperature distributions is proposed to investigate the thermal stress variation in the steel–concrete composite bridge deck system.First,a brief literaturereview indicates that traditional thermal stress calculation in suspension bridges is based on the2D plane structure with simplified temperature profiles on bridges.Thus,a3D FEM is proposed for accurate stress analysis.The focus is on the incorporation of full field arbitrary temperature profile for the stress analysis.Following this,the effect of realistic temperature distribution on the structure is investigated in detail and an example using field measurements of Aizhai Bridge is integrated with the proposed3D FEM model.Parametric studies are used to illustrate the effect of different parameters on the thermal stress distribution in the bridge structure.Next,the discussion and comparison of the proposed methodology and simplified calculation method in the standard is given.The calculation difference and their potential impact on the structure are shown in detail.Finally,some conclusions and recommendations for future bridge analysis and design are given based on the proposed study. 展开更多
关键词 suspension bridge steel–concrete composite bridge deck vertical temperature gradient finite element method thermal stress
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Mechanical performance of shear studs and application in steel-concrete composite beams 被引量:1
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作者 朱志辉 张磊 +3 位作者 柏宇 丁发兴 刘劲 周政 《Journal of Central South University》 SCIE EI CAS CSCD 2016年第10期2676-2687,共12页
This work experimentally investigates the effects of shear stud characteristics on the interface slippage of steel-concrete composite push-out specimens. ABAQUS is used to establish a detailed 3D finite element(FE) mo... This work experimentally investigates the effects of shear stud characteristics on the interface slippage of steel-concrete composite push-out specimens. ABAQUS is used to establish a detailed 3D finite element(FE) model and analyze the behavior of push-out specimens. The modeling results are in good agreement with the experimental results. Based on parametrical analysis using the validated FE approaches, the effects of important design parameters, such as the diameter, number, length to diameter ratio, and yield strength of studs, concrete strength and steel transverse reinforcement ratio, on the load-slip relationship at the interface of composite beams are discussed. In addition, a simplified approach to model studs is developed using virtual springs with an equivalent stiffness. This approach is demonstrated to be able to predict the load-displacement response and ultimate bearing capacity of steel-concrete composite beams. The predicted results show satisfactory agreement with experimental results from the literature. 展开更多
关键词 shear studs push-out test load-slip relationship ultimate bearing capacity steel-concrete composite beams
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Feasibility of developing composite action between concrete and cold-formed steel beam
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作者 S.O.Bamaga M.Md.Tahir +6 位作者 T.C.Tan S.Mohammad N.Yahya A.L.Saleh M.Mustaffar M.H.Osman A.B.A.Rahman 《Journal of Central South University》 SCIE EI CAS 2013年第12期3689-3696,共8页
Cold-formed steel structures are steel structure products constructed from sheets or coils using cold rolling, press brake or bending brake method. These structures are extensively employed in building construction in... Cold-formed steel structures are steel structure products constructed from sheets or coils using cold rolling, press brake or bending brake method. These structures are extensively employed in building construction industry due to their light mass, ductility by economic cold forming operations, favorable strength-to-mass ratio and other factors. The utilization of cold formed steel sections with concrete as composite can hugely reduce the construction cost. However, the use of cold formed steel members in composite concrete beams has been very limited. A comprehensive review of developments in composite beam with cold formed steel sections was introduced. It was revealed that employing cold-formed steel channel section to replace reinforcement bars in conventional reinforced concrete beam results in a significant cost reduction without reducing strength capacity. The use of composite beam consisting of cold-formed steel open or close box and filled concrete could also reduce construction cost. Lighter composite girder for bridges with cold-formed steel of U section was introduced. Moreover, types of shear connectors to provide composite action between cold-formed steel beam and concrete slab were presented. However, further studies to investigate the effects of metal decking on the behavior of composite beam with cold-formed steel section and introduction of ductile shear connectors were recommended. 展开更多
关键词 cold formed steel beam composite shear connection thin-wall composite girder
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Formation of ceramic-metal composite layers on die steels by electron beam irradiation
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作者 Takahiro Akao Yuki Sakurai +2 位作者 Tetsuhiko Onda Kazutake Uehara Zhongchun Chen 《材料与冶金学报》 CAS 北大核心 2015年第2期152-158,共7页
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Experimental study on seismic behaviors of steel-concrete composite frames 被引量:2
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作者 戚菁菁 蒋丽忠 《Journal of Central South University》 SCIE EI CAS CSCD 2015年第11期4396-4413,共18页
Steel-concrete composite frames are seeing increased use in earthquake region because of their excellent structural characteristics, including high strength, stiffness, and good ductility. However, there exist gaps in... Steel-concrete composite frames are seeing increased use in earthquake region because of their excellent structural characteristics, including high strength, stiffness, and good ductility. However, there exist gaps in the knowledge of seismic behavior and the design provisions for these structures. In order to better understand the seismic behaviors of composite frame systems, eight steel-concrete composite frames were designed. These composite frames were composed of steel-concrete composite beams and concrete filled steel tube columns. The axial compression ratio of column, slenderness ratio and linear stiffness ratio of beam to column were selected as main design parameters. The low reversed cyclic loading tests of composite frame system were carried out. Based on test results, the seismic behaviors of composite frames such as failure mode, hysteresis curve, strength degradation, rigidity degradation, ductility and energy dissipation were studied. Known from the test phenomenon, the main cause of damage is the out-of-plane deformation of steel beam and the yielding destruction of column heel. The hysteretic loops of composite frame appear a spindle shape and no obvious pinch phenomenon. The results demonstrate that this type of composite frame has favorable seismic behaviors. Furthermore, the effects of design parameters on seismic behaviors were also discussed. The results of the experiment show that the different design parameter has different influence rule on seismic behaviors of composite frame. 展开更多
关键词 composite FRAME steel-CONCRETE composite beam conc
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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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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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狮子洋大桥设计风参数及主梁断面气动优化研究 被引量:1
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作者 赵林 刘鹏 +2 位作者 徐军 崔冰 崔巍 《桥梁建设》 北大核心 2025年第1期15-23,共9页
狮子洋大桥为主跨2180 m的双层桥面板桁-箱桁组合钢梁悬索桥,该桥中跨桥面高度处设计基准风速高达48.0 m/s。为确保该超大跨度悬索桥运营阶段的抗风安全性,围绕主梁气动外形优化开展多方案抗风性能比选及风致振动性能评价。结合气象站... 狮子洋大桥为主跨2180 m的双层桥面板桁-箱桁组合钢梁悬索桥,该桥中跨桥面高度处设计基准风速高达48.0 m/s。为确保该超大跨度悬索桥运营阶段的抗风安全性,围绕主梁气动外形优化开展多方案抗风性能比选及风致振动性能评价。结合气象站概率统计模型设计风速和混合气候模式设计风速,确定狮子洋大桥桥位处设计风参数;对5种主梁方案开展主梁节段模型风洞试验,进行主梁方案比选和颤振稳定性气动措施优化、不同扭转阻尼比下涡激共振稳定性评价以及台风气候模式下多模态抖振频域计算。结果表明:桥位设计基本风速取34.9 m/s;颤振稳定性方面,对5种主梁方案,上、下层桥面设置通长纵梁能显著改善主梁断面的气动稳定性,增设桥面底部中央稳定板、封闭下层桥面底部和上、下弦杆风嘴可进一步提升抑振效果;涡激共振响应方面,当扭转阻尼比达到0.32%时,扭转涡激共振基本消失;抖振响应方面,台风下主梁抖振响应显著高于《公路桥梁抗风设计规范》(JTG/T 3360-01—2018)规定的百年重现期内设计风速下抖振响应。推荐主梁方案为上、下层桥面系分别采用正交异性钢桥面板和整体式箱梁的双层桥面板桁-箱桁组合钢梁,其主梁断面可满足颤振、涡激共振和抖振的抗风安全设计要求。 展开更多
关键词 悬索桥 双层桥面板桁-箱桁组合钢梁 台风 风致振动 气动选型 风洞试验
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钢-UHPC组合梁负弯矩区抗裂性能试验研究 被引量:2
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作者 李立峰 彭浩 +2 位作者 邹德强 黄心仪 李凌霄 《建筑科学与工程学报》 北大核心 2025年第3期15-25,共11页
为解决钢-混凝土组合连续梁负弯矩区桥面板的开裂问题,提出了采用超高性能混凝土(UHPC)代替负弯矩区桥面板的部分普通混凝土(NC),利用UHPC超高的力学性能解决负弯矩区桥面板的开裂问题,对其抗裂性能进行研究;设计并完成了3片钢-UHPC组... 为解决钢-混凝土组合连续梁负弯矩区桥面板的开裂问题,提出了采用超高性能混凝土(UHPC)代替负弯矩区桥面板的部分普通混凝土(NC),利用UHPC超高的力学性能解决负弯矩区桥面板的开裂问题,对其抗裂性能进行研究;设计并完成了3片钢-UHPC组合梁负弯矩区抗裂试验,获得开裂荷载、跨中位移、裂缝宽度和应变等试验数据。结合国内外裂缝宽度计算公式,提出了简易的适用于钢-UHPC组合梁的桥面板裂缝宽度计算公式,并根据已有钢-UHPC组合梁文献的裂缝宽度试验数据,验证了提出的桥面板裂缝宽度计算公式的可靠性和适用性。结果表明:UHPC能提高组合梁负弯矩区的开裂荷载,具有抑制桥面板裂缝发展的能力,能明显提高桥面板负弯矩区的抗裂性能,有效解决负弯矩区桥面板的开裂问题;根据试验结果计算的名义应力均大于工程实际设计值,负弯矩区采用UHPC代替NC的结构具有优异的抗裂性能;建议组合梁负弯矩区UHPC纵向铺设长度宜为0.2L~0.25L(L为计算跨径),铺设厚度宜为60~70 mm。 展开更多
关键词 钢-UHPC组合梁 负弯矩区 抗裂性能 裂缝宽度
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负弯矩作用下部分充填式窄幅钢箱-UHPC组合梁刚度分析 被引量:1
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作者 莫时旭 柴龙杰 +2 位作者 郑艳 黄意均 檀新宁 《河南理工大学学报(自然科学版)》 北大核心 2025年第2期164-175,共12页
目的为研究负弯矩作用下部分充填式窄幅钢箱-UHPC(ultra-high performance concrete,UHPC)组合梁的抗弯性能,采用反向集中力对9根不同参数的试验梁进行静载试验。方法研究部分充填式窄幅钢箱-UHPC组合梁在反向集中力作用下的受力过程、... 目的为研究负弯矩作用下部分充填式窄幅钢箱-UHPC(ultra-high performance concrete,UHPC)组合梁的抗弯性能,采用反向集中力对9根不同参数的试验梁进行静载试验。方法研究部分充填式窄幅钢箱-UHPC组合梁在反向集中力作用下的受力过程、应变行为、刚度和抗裂性,明确各参数在提升试验梁力学性能方面的贡献程度,并将考虑界面滑移和翼板开裂因素的理论挠度与试验结果进行比较和验证。结果部分充填式窄幅钢箱-UHPC组合梁处于整体弹性阶段时刚度最高,翼板开裂后刚度略有下降,钢箱下翼缘局部受压屈服时,跨中翼板上形成多条贯通裂缝,极限承载力阶段,承载力未明显下降。与部分充填式窄幅钢箱-NC(ordinary concrete,NC)组合梁和窄幅钢箱-UHPC组合梁相比,随着钢纤维掺量、配筋率和相对充填高度增加,部分充填式窄幅钢箱-UHPC组合梁的极限承载力、正常使用和承载能力极限状态的最大刚度分别提高57%,25%,21%,裂缝宽度为0.05,0.10,0.20 mm时,对应的最大荷载分别提高155%,266%,100%。结论部分充填式窄幅钢箱-UHPC组合梁刚度大,抗裂性能好,承载力高。现行规范计算负弯矩作用下组合梁挠度过于保守,考虑负弯矩作用下组合梁滑移影响的有效惯性矩法计算试验梁挠度较为准确。 展开更多
关键词 部分充填式窄幅钢箱-UHPC组合梁 超高性能混凝土 负弯矩 极限承载力 裂缝宽度
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珠肇高铁西江特大桥主桥总体设计 被引量:2
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作者 王斌 《世界桥梁》 北大核心 2025年第1期15-21,共7页
珠肇高铁西江特大桥主桥为(70+148+2×435+148+70)m三塔斜拉桥,采用中塔设置固定支座、边塔设置纵向活动支座的支座体系,在中、边塔处均设置纵向液压阻尼器,辅助墩、边墩处设置E型钢阻尼器,并设置2对中塔加强索以提高桥梁刚度。主... 珠肇高铁西江特大桥主桥为(70+148+2×435+148+70)m三塔斜拉桥,采用中塔设置固定支座、边塔设置纵向活动支座的支座体系,在中、边塔处均设置纵向液压阻尼器,辅助墩、边墩处设置E型钢阻尼器,并设置2对中塔加强索以提高桥梁刚度。主梁采用钢-混组合梁,钢结构采用槽形截面,桥面板采用混凝土板,负弯矩较大的主梁区段采用顶、底板双组合截面以改善主梁应力状态。辅助墩两侧共58 m范围内钢结构与混凝土桥面板采用缓粘结剪力钉连接,桥面板采用超高性能混凝土(UHPC)+钢筋混凝土(RC)组合结构,以提高桥面板抗裂性能。采用H形桥塔,由上、中、下塔柱和上、下横梁组成,桥面以上塔高与主跨跨径比值为1/3.69,桥塔及桥墩均采用钻孔灌注桩基础;斜拉索采用双索面扇形布置,全桥设置102对平行钢丝拉索以及2对中塔加强索。该桥结构验算结果表明:桥梁具有合理的刚度、良好的轨道平顺性、气动稳定性及抗风性能,能够满足高速列车运行要求。 展开更多
关键词 铁路桥 三塔斜拉桥 钢-混凝土组合梁 中塔加强索 缓粘结剪力钉 UHPC+RC组合桥面板 桥梁设计
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工字钢外包薄层UHPC组合梁抗剪性价比分析 被引量:1
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作者 范学明 周晓鹏 +1 位作者 叶小杭 赵坤 《华南理工大学学报(自然科学版)》 北大核心 2025年第4期40-49,共10页
钢结构具有低碳环保、轻质高强和抗震性能卓越等多重优势,目前已经广泛应用在高层建筑、大跨度建筑和一些民用建筑;但是其固有的易发生屈曲、腐蚀以及成本较高等问题阻碍了钢结构的进一步应用。目前关于钢结构防屈曲和防腐蚀的措施会大... 钢结构具有低碳环保、轻质高强和抗震性能卓越等多重优势,目前已经广泛应用在高层建筑、大跨度建筑和一些民用建筑;但是其固有的易发生屈曲、腐蚀以及成本较高等问题阻碍了钢结构的进一步应用。目前关于钢结构防屈曲和防腐蚀的措施会大大提高结构的成本并对结构承载能力带来一定的负面影响。超高性能混凝土(UHPC)是一种基于最大堆积密度理论的新型纤维增强水泥基复合材料,具有较高的强度和较强的变形能力,并且在抗水渗透性、抗氯离子渗透性以及抗冻融性等耐久性方面有着优异的性能。如今UHPC已经广泛应用于各种结构的力学加固以及耐久加固之中。近期的研究工作表明,将钢结构与UHPC结合使用,可以有效地实现两者的优势互补,在发挥钢结构轻质高强优异特征的同时,极大地减缓了疲劳、腐蚀和失稳对钢结构的危害。该文研究了一种已经广泛投入使用的工字钢外包薄层UHPC新型组合梁,并通过Abaqus有限元软件进行仿真分析建立样本数据库。同时利用雷达图法提出组合梁抗剪性能和抗剪性价比综合评价指标,采用响应面-蒙特卡罗法,共设计4种响应面对组合梁腹板尺寸参数进行分析。分析结果表明,组合梁的抗剪性能与其性价比之间存在显著的正相关性。此外,随着工字钢腹板厚度的增加,抗剪性能和性价比先增加后降低,并在某一特定厚度处达到峰值。该研究对于优化工字钢外包UHPC组合梁的设计具有重要的工程意义。 展开更多
关键词 钢-UHPC组合梁 性价比 有限元仿真分析 雷达图法 响应面-蒙特卡罗法
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双向荷载下组合剪力键的剪切机理及抗剪强度计算模型
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作者 马亚飞 胡涛 +3 位作者 章拔超 周彪 王磊 张建仁 《土木与环境工程学报(中英文)》 北大核心 2025年第3期171-179,共9页
为研究双向荷载作用下组合剪力键的剪切性能,建立组合剪力键有限元模型,并结合试验进行验证;对比双向和单向推出荷载作用下组合剪力键的破坏形态,研究双向荷载与组合剪力键抗剪强度比的关系,量化混凝土强度和贯穿钢筋直径对组合剪力键... 为研究双向荷载作用下组合剪力键的剪切性能,建立组合剪力键有限元模型,并结合试验进行验证;对比双向和单向推出荷载作用下组合剪力键的破坏形态,研究双向荷载与组合剪力键抗剪强度比的关系,量化混凝土强度和贯穿钢筋直径对组合剪力键抗剪强度的影响;揭示组合剪力键的剪切破坏机理,通过多变量回归分析,建立双向荷载作用下组合剪力键抗剪强度计算模型。结果表明:侧压荷载有效抑制了混凝土横向膨胀,混凝土板出现一条纵向主裂缝和少量横向微裂纹,单向推出荷载作用下,组合剪力键因混凝土板劈裂裂缝贯通而失效;侧压荷载能增加组合剪力键抗剪强度,但混凝土强度较高且贯穿钢筋直径较大时,双向荷载效应较小,抗剪强度比仅为1.05;双向荷载作用下,抗剪强度随混凝土强度和贯穿钢筋直径的增加而显著增加。 展开更多
关键词 钢-混组合梁 剪力键 双向荷载 剪切机理 荷载-滑移
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高性能混凝土铺装层对正交异性钢桥面疲劳应力消减效应实测与量化研究
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作者 叶华文 叶杨帆 +3 位作者 黄澳 蒋成川 徐勋 段智超 《铁道学报》 北大核心 2025年第1期153-160,共8页
铺设高性能混凝土层能够显著降低正交异性钢桥面疲劳应力,从而提升其疲劳性能。依托宜宾临港公铁平层长江大桥工程,采用足尺模型疲劳试验和有限元模拟进行钢纤维混凝土层对钢桥面疲劳应力消减效应的定量分析。通过钢-混组合桥面足尺模... 铺设高性能混凝土层能够显著降低正交异性钢桥面疲劳应力,从而提升其疲劳性能。依托宜宾临港公铁平层长江大桥工程,采用足尺模型疲劳试验和有限元模拟进行钢纤维混凝土层对钢桥面疲劳应力消减效应的定量分析。通过钢-混组合桥面足尺模型静力和疲劳试验,观测钢桥面易损细节的疲劳应力和混凝土层开裂情况。根据足尺模型建立有限元模型并验证其合理性,基于有限元模型进行参数分析,探明影响钢桥面疲劳应力消减作用的关键因素。结果表明:混凝土层对钢桥面的疲劳应力消减作用主要受混凝土层和钢桥顶面刚度影响,深度不超过混凝土保护层的裂缝的不利影响可忽略。提出的疲劳应力消减作用量化公式可为正交异性钢-混组合桥面优化设计提供参考。 展开更多
关键词 正交异性钢-混组合桥面板 高性能纤维混凝土 足尺模型 疲劳应力消减作用 量化模型
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界面滑移和剪切变形对钢-UHPC组合梁长期挠度影响研究
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作者 邓继华 颜凌志 +1 位作者 周亚栋 朱平 《应用力学学报》 北大核心 2025年第4期879-888,共10页
超高性能混凝土(ultra-high performance concrete,UHPC)与普通混凝土(normal concrete,NC)较大的收缩徐变特性差异使得钢-UHPC组合梁与钢-NC组合梁的长期挠度增长明显不同。为科学合理计算钢-UHPC组合梁在长期荷载作用下的挠度,综合考... 超高性能混凝土(ultra-high performance concrete,UHPC)与普通混凝土(normal concrete,NC)较大的收缩徐变特性差异使得钢-UHPC组合梁与钢-NC组合梁的长期挠度增长明显不同。为科学合理计算钢-UHPC组合梁在长期荷载作用下的挠度,综合考虑界面滑移和剪切变形的影响,通过迭代计算钢-UHPC界面滑移,引入Timoshenko梁理论以考虑组合梁的剪切变形,采用按龄期调整的有效模量法考虑UHPC徐变特性,提出钢-UHPC组合梁长期挠度的计算方法。在对现有文献中钢-NC组合梁的实测值与计算值进行验证的基础上,再对尺寸相同的钢-UHPC梁与钢-NC梁进行对比分析研究。结果表明:若只考虑收缩徐变,钢-NC梁第500天挠度计算值相对于加载初期增大2.64倍,常温养护与高温蒸养的钢-UHPC梁挠度则分别增长31.86%与4.4%;在加载初期,滑移使计算梁挠度均增大13.35%左右,在第500天,滑移会使钢-NC梁挠度增大23.66%,使高温与常温养护的钢-UHPC梁挠度分别增大24.37%与17.78%;剪切变形造成的挠度增量会随时间增至初期的数倍,但该挠度增量远小于总挠度值,可见滑移与收缩徐变对钢-UHPC梁挠度的影响较大而剪切变形的影响较小。 展开更多
关键词 钢-UHPC组合梁 收缩徐变 界面滑移 剪切变形 长期挠度
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界面不同抗剪连接钢-UHPC组合梁的受弯性能
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作者 方志 周楚钰 +3 位作者 洪金圣 徐海波 张海兵 汪建群 《湖南大学学报(自然科学版)》 北大核心 2025年第7期61-74,共14页
为明确界面抗剪连接的不同布置对钢-超高性能混凝土(ultra-high performance concrete,UHPC)组合梁受弯性能的影响,完成了3根界面栓钉不同布置的钢-UHPC组合梁受弯性能的试验研究,提出了基于截面纤维模型的钢-UHPC组合梁受弯性能非线性... 为明确界面抗剪连接的不同布置对钢-超高性能混凝土(ultra-high performance concrete,UHPC)组合梁受弯性能的影响,完成了3根界面栓钉不同布置的钢-UHPC组合梁受弯性能的试验研究,提出了基于截面纤维模型的钢-UHPC组合梁受弯性能非线性分析方法并编制了相应计算程序且以试验结果验证了方法和程序的适用性,并用其分析了集束度和剪力连接度对钢-UHPC组合梁受弯性能的影响.结果表明:1)对于集束度γ≤0.5和γ=1的钢-UHPC组合梁,其临界剪力连接度分别为0.9和0.74;2)钢-UHPC组合梁的弹性抗弯刚度随着剪力连接度的增加而增加,随着集束度的增加而降低;3)剪力连接度对钢-UHPC组合梁的抗弯承载能力和延性系数影响显著,集束度γ=1时组合梁的延性系数明显增大,但集束度γ≤0.5时,其延性系数基本不再受集束度的影响;4)对于完全剪力连接组合梁,极限状态时界面的剪力分布随剪力连接度的增大而越趋于不均匀,但集束度对极限状态时界面的剪力分布影响较小.钢-UHPC组合梁的集束度γ不应大于0.5,剪力连接度η不宜小于1.0. 展开更多
关键词 超高性能混凝土(UHPC) 钢-UHPC组合梁 剪力连接度 集束度 受弯性能
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型钢开口肋-UHPC轻型组合桥面横向受力性能研究
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作者 邵旭东 杨川琪 +1 位作者 孙璇 邹德强 《土木工程学报》 北大核心 2025年第10期128-143,共16页
为解决正交异性钢桥面板的两大难题,提出了型钢开口肋-UHPC轻型组合桥面新结构,并首次应用于某40m宽幅钢箱梁结构中,在单索面横向20m悬臂体系下,悬臂根部区域UHPC的受力状态需重点关注。故对背景工程新型组合桥面的横向受力性能展开研究... 为解决正交异性钢桥面板的两大难题,提出了型钢开口肋-UHPC轻型组合桥面新结构,并首次应用于某40m宽幅钢箱梁结构中,在单索面横向20m悬臂体系下,悬臂根部区域UHPC的受力状态需重点关注。故对背景工程新型组合桥面的横向受力性能展开研究,进行了桥面局部模型的疲劳和静力有限元计算,开展了横向悬臂加载的组合桥面模型试验,并基于试验结果建立了试件的结构承载力计算模型,分析了桥面UHPC层的名义开裂应力。研究结果表明:计算得到的桥面各疲劳细节均满足强度要求,且UHPC层横向拉应力水平远大于纵向拉应力,表明实桥桥面设计时应以横向受力为控制条件;随着荷载的增加,悬臂根部区域UHPC层逐渐从近似轴拉状态过渡到弯拉状态,且结构整体受力并不满足平截面假定,整体刚度主要由下部钢结构提供;在不满足平截面假定这一条件下,建立的结构承载力计算模型所得计算值与试验值之比为1.001,吻合良好;计算得到的UHPC名义开裂应力与实桥最不利效应值相比,新型组合桥面结构具有1.71的安全系数。综上表明,型钢开口肋-UHPC轻型组合桥面在横向受力具有良好的受力性能,在大跨钢桥结构应用方面有较好的可行性与安全性。 展开更多
关键词 桥梁工程 型钢-UHPC组合桥面 开口肋 横向受力性能 正交异性钢桥面板
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钢-UHPC组合桥面纤维网格湿接缝静力弯曲抗裂性能研究
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作者 朱劲松 李佳凝 +1 位作者 丁婧楠 孙雅丹 《天津大学学报(自然科学与工程技术版)》 北大核心 2025年第7期751-760,共10页
针对钢-超高性能混凝土(UHPC)组合桥面在实际工程中UHPC接缝界面因基体及钢纤维不连续导致局部抗拉性能下降这一问题,提出新型纤维网格湿接缝构造.为探究该新型构造的力学性能和抗裂性能的优越性,将其与规范中的异形加强钢板湿接缝、矩... 针对钢-超高性能混凝土(UHPC)组合桥面在实际工程中UHPC接缝界面因基体及钢纤维不连续导致局部抗拉性能下降这一问题,提出新型纤维网格湿接缝构造.为探究该新型构造的力学性能和抗裂性能的优越性,将其与规范中的异形加强钢板湿接缝、矩形湿接缝、平直湿接缝进行对比分析.对上述4种湿接缝构造的组合桥面进行负弯矩静力弯曲抗裂性能试验研究和数值模拟,分析试件破坏过程、裂缝开展过程、荷载-挠度关系及应变分布.结果表明:湿接缝局部构造的改变不足以影响试件整体弯曲刚度及承载力;纤维网格湿接缝、异形加强钢板湿接缝、矩形湿接缝构造的初裂荷载相较于平直湿接缝分别提高了117.0%、57.0%和3.7%,纤维网格湿接缝抗裂性能最佳;数值分析得到4种湿接缝最大裂缝宽度分别为0.236 mm、0.275 mm、0.243 mm和0.510 mm;纤维网格湿接缝构造可有效延缓裂缝宽度的发展. 展开更多
关键词 钢-UHPC组合桥面 湿接缝 静力负弯矩试验 纤维网格 抗裂性能 有限元模拟
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CFRP不锈钢珊瑚海水混凝土T形梁受弯性能试验及承载力计算
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作者 陈宗平 黄禹铭 +2 位作者 周济 李柏均 区王生 《土木工程学报》 北大核心 2025年第9期64-85,共22页
为研究碳纤维增强聚合物(CFRP)-不锈钢海洋混凝土组合梁受弯力学性能,以腹板嵌入式外包U形不锈钢-珊瑚海水混凝土组合梁为基础,并以CFRP布粘贴层数与粘贴部位为变化参数,共制作6根组合梁,统称CFRP不锈钢珊瑚海水混凝土T形梁。进行静力... 为研究碳纤维增强聚合物(CFRP)-不锈钢海洋混凝土组合梁受弯力学性能,以腹板嵌入式外包U形不锈钢-珊瑚海水混凝土组合梁为基础,并以CFRP布粘贴层数与粘贴部位为变化参数,共制作6根组合梁,统称CFRP不锈钢珊瑚海水混凝土T形梁。进行静力加载试验,观察受力演变过程,获得各试验参数对试件受弯力学性能的影响规律。结果表明,试件表现为典型的弯曲破坏,均展现出较高水平的延展性,其中外贴2层CFRP布可使试件延性系数增长至4.98。不锈钢腹板开孔穿筋实现抗剪连接件-型钢一体化的设计方式使得所有试件满足平截面假定与全剪切连接,进而表现出优秀的协调性与整体性。随着内贴层数为1~2层,试件极限承载能力提升12.30%与30.38%,弹性刚度提升27.37%与134.54%,延性系数提升37.33%与46.67%,综上结果建议内贴CFRP布。此外,试验得出的内贴1层与外贴1层CFRP布所带来的试件极限承载能力与弹性刚度增强值,可作为准确预估粘贴多层CFRP布工况下对应力学性能影响参数的基本量。最后,简化连续强度法计算不锈钢珊瑚海水混凝土T形梁极限抗弯承载能力,建立CFRP布不同粘贴工况下试件的极限抗弯承载能力计算公式。 展开更多
关键词 不锈钢 CFRP 组合梁 受弯性能 承载力计算
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