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Application of LRB isolation technology in continuous girder bridges
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作者 刘文静 李黎 叶昆 《Journal of Southeast University(English Edition)》 EI CAS 2011年第2期196-200,共5页
This paper summarizes the superiority of lead-rubber beating (LRB) continuous girder bridges. The research method for isolation performance is discussed when pile-soil interaction is considered. By the finite elemen... This paper summarizes the superiority of lead-rubber beating (LRB) continuous girder bridges. The research method for isolation performance is discussed when pile-soil interaction is considered. By the finite element method and self-compiling program, a systematic study of the reliability of LRB continuous girder bridges is given by the use of different indicators, including the riding comfort of the LRB system, the pounding and dynamic stability when the LRB system is subjected to seismic excitations, and the reliability of the LRB system when subjected to other common horizontal loads. The results show that the LRB system has obvious advantages over the traditional continuous girder structure. The LRB isolation effect remains good even when pile-soil interaction is considered; the vertical rigidity of the LRB guarantees desirable riding comfort. The LRB demonstrates good reliability when subjected to the effects of braking, wind loads and temperature. However, it is also pointed out that the pounding of the LRB system subjected to earthquakes must be avoided, and the dynamic stability may be reduced when the LRB system has higher piers and generates a larger displacement in a strong earthquake. Useful advice and guidance are proposed for engineering application. 展开更多
关键词 lead-robber bearing LRB)- isolation technology continuous girder bridge
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Study of the seismic performance of expansion double spherical seismic isolation bearings for continuous girder bridges 被引量:11
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作者 Peng, Tianbo Yu, Xuntao +1 位作者 Wang, Zhennan Han, Lei 《Earthquake Engineering and Engineering Vibration》 SCIE EI CSCD 2012年第2期163-172,共10页
The development of an expansion double spherical seismic isolation (DSSI) bearing by modifying the fixed DSSI bearing is described in this paper. The expansion DSSI bearing is characterized by its good energy dissipat... The development of an expansion double spherical seismic isolation (DSSI) bearing by modifying the fixed DSSI bearing is described in this paper. The expansion DSSI bearing is characterized by its good energy dissipation and horizontal displacement capacity and has been successfully integrated into the seismic design of several important engineering projects in China. It is envisioned to be used as a substitute for ordinary expansion bearings in continuous girder bridges to distribute the longitudinal earthquake action among all the piers. Its development, configuration and working mechanism are introduced first. The test method and the seismic performance of an expansion DSSI bearing are then briefly described. A theoretical analysis followed by a numerical analysis for an actual four-span continuous girder bridge are provided as an example, and it is concluded that the expansion DSSI bearing can be integrated into the seismic design of continuous girder bridges. 展开更多
关键词 double spherical seismic isolation (DSSI) bearing seismic isolation seismic performance continuous girder bridge
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Refined analysis and construction parameter calculation for full-span erection of the continuous steel box girder bridge with long cantilevers 被引量:6
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作者 Jin-feng WANG Tian-mei WU +2 位作者 Jiang-tao ZHANG Hua-wei XIANG Rong-qiao XU 《Journal of Zhejiang University-Science A(Applied Physics & Engineering)》 SCIE EI CAS CSCD 2020年第4期268-279,共12页
To accurately control the full-span erection of continuous steel box girder bridges with complex cross-sections and long cantilevers, both the augmented finite element method(A-FEM) and the degenerated plate elements ... To accurately control the full-span erection of continuous steel box girder bridges with complex cross-sections and long cantilevers, both the augmented finite element method(A-FEM) and the degenerated plate elements are adopted in this paper. The entire construction process is simulated by the A-FEM with the mesh-separation-based approximation technique, while the degenerated plate elements are constructed based on 3D isoparametric elements, making it suitable for analysis of a thin-walled structure. This method significantly improves computational efficiency by avoiding numerous degrees of freedom(DoFs) when analyzing complex structures. With characteristics of the full-span erection technology, the end-face angle of adjacent girder segments, the preset distance of girder segments from the design position, and the temperature difference are selected as control parameters, and they are calculated through the structural response of each construction stage. Engineering practice shows that the calculation accuracy of A-FEM is verified by field-measured results. It can be applied rapidly and effectively to evaluate the matching state of girder segments and the stress state of bearings as well as the thermal effect during full-span erection. 展开更多
关键词 continuous steel box girder bridges Full-span erection Augmented finite element method(A-FEM) Construction control Construction parameter calculation
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Numerical Simulation for Progressive Collapse of Continuous Girder Bridge Subjected to Ship Impact 被引量:3
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作者 田力 黄飞 《Transactions of Tianjin University》 EI CAS 2014年第4期250-256,共7页
The three-stage simulation method based on LS-DYNA was introduced in this study to simulate the progressive collapse of a continuous girder bridge after a ship-bridge collision. The pile-soil dynamic interaction and t... The three-stage simulation method based on LS-DYNA was introduced in this study to simulate the progressive collapse of a continuous girder bridge after a ship-bridge collision. The pile-soil dynamic interaction and the initial stress and deformation of the whole bridge before the collision were considered. By analyzing the damage, deformation, stress distribution and collapse process of the whole bridge, the results show that the displacement response of the cap beam lags behind the pile cap. The response order of the whole bridge's components depends on their distances from the collision region. The plastic deformation of soil around piles has a positive effect on delaying the further increase in the displacement of piles. The impacted pier's losing stability and its superstructure's excessive deformation are the main reasons leading to the progressive collapse of the continuous girder bridge. 展开更多
关键词 numerical simulation progressive collapse ship-bridge collision continuous girder bridge pile-soil interaction
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Dynamic finite element model updating of prestressed concrete continuous box-girder bridge 被引量:6
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作者 Lin Xiankun Zhang Lingmi +1 位作者 Guo Qintao Zhang Yufeng 《Earthquake Engineering and Engineering Vibration》 SCIE EI CSCD 2009年第3期399-407,共9页
The dynamic finite element model (FEM) of a prestressed concrete continuous box-girder bridge, called the Tongyang Canal Bridge, is built and updated based on the results of ambient vibration testing (AVT) using a... The dynamic finite element model (FEM) of a prestressed concrete continuous box-girder bridge, called the Tongyang Canal Bridge, is built and updated based on the results of ambient vibration testing (AVT) using a real-coded accelerating genetic algorithm (RAGA). The objective functions are defined based on natural frequency and modal assurance criterion (MAC) metrics to evaluate the updated FEM. Two objective functions are defined to fully account for the relative errors and standard deviations of the natural frequencies and MAC between the AVT results and the updated FEM predictions. The dynamically updated FEM of the bridge can better represent its structural dynamics and serve as a baseline in long-term health monitoring, condition assessment and damage identification over the service life of the bridge . 展开更多
关键词 prestressed concrete continuous box-girder bridge field ambient vibration testing dynamic characteristics model updating accelerating genetic algorithm objective function
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Overview of Design and Construction Points Analysis for the Rotating Continuous Girder Bridge
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作者 Shuxue Zhang 《Journal of Architectural Research and Development》 2023年第5期86-94,共9页
With the advancement of the economy,the construction of roads and bridges has assumed a crucial role in the development of China’s highway transportation system.The interplay between the design and construction techn... With the advancement of the economy,the construction of roads and bridges has assumed a crucial role in the development of China’s highway transportation system.The interplay between the design and construction technologies of road bridges is pivotal,as it directly impacts the subsequent operation and maintenance phases.Although the design and construction techniques for continuous girder transitions have been progressively improving,challenges still persist.This paper takes the example of the continuous girder design for the T-structure(75 m+75 m)of the Xintai Highway Crossing Yanzhou-Shijiusuo Railway Separation Interchange Project and delves into an analysis of the structural design calculations for the bridge transition,the transition structure’s design,and critical considerations during construction.The findings presented here can serve as a valuable reference for similar project designs. 展开更多
关键词 Bridge design continuous girder Transformer bridge
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Temporary Bearing Method in Construction of Continuous Beam Bridge Erected as Simply-Supported Beam 被引量:1
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作者 Mehadi Hassan Rabby Zhipei Guo Miaoqiang Huang 《Open Journal of Civil Engineering》 2018年第4期473-477,共5页
The present practice in Bangladesh for erection of girders is placing the girder directly on the bearing pad and joining the adjacent two spans in deck slab level by adopting expansion joints, as the bridges are prese... The present practice in Bangladesh for erection of girders is placing the girder directly on the bearing pad and joining the adjacent two spans in deck slab level by adopting expansion joints, as the bridges are presently designed as simply-supported beam bridge. The main disadvantage of this type of bridges is that, the seismic resistance is weak, and under the external force beyond the design range, the bridges are more likely to fall in danger because of failure in girders. Also they have expansion joints for each span, which affects the comfort of driving and the overall integrity of the bridge deck is poor [1]. Therefore, design and construction of the bridges have been revised to establish continuity between girders of two adjacent spans and transform the bridge as simply supported continuous beam bridge [2]. Temporary bearing (sandbox) method is proposed in this paper to solve the system transformation of continuous beam bridges. Design of the temporary bearing is very simple and can be manufactured at site. This method has been proved in construction of Arial Kha Bridge and can be applied for other similar bridges in Bangladesh. 展开更多
关键词 TEMPORARY Bearing Simply SUPPORTED SPAN Simply SUPPORTED continuous girder Expansion Joints CAST-IN-SITU girder Joint Section
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Research on Construction Process of Steel Box Girder Bridge and Its Stress Analysis
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作者 ChengKANG 《International Journal of Technology Management》 2015年第3期104-106,共3页
The paper introduce the construction method of large segment hosting and its difficulty, and drawing up corresponding liner and stress monitoring plan. The paper gives the calculation method of shear area for such a b... The paper introduce the construction method of large segment hosting and its difficulty, and drawing up corresponding liner and stress monitoring plan. The paper gives the calculation method of shear area for such a big cantilever thin-walled steel box girder section, namely the shear coefficient computation theory of Professor Hu Haichang, and the use of this shear area perfect beam element model, structure model and the experiment prove that the shell model is more consistent, given a certain reference for similar section project. 展开更多
关键词 Construction control Long-span Steel box continuous girder Large segment hosting
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Discussion on Application of Construction Technology of Cast-in-Place Box Girder
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作者 ZHANG Qi 《外文科技期刊数据库(文摘版)工程技术》 2021年第4期774-786,共13页
Combined with the construction of prestressed continuous box girder of Bailongjiang super large bridge in Xiazongjiaba of WJSJ2 contract section of G8513 Pingliang to Mianyang national expressway and Wudu to Jiuzhaigo... Combined with the construction of prestressed continuous box girder of Bailongjiang super large bridge in Xiazongjiaba of WJSJ2 contract section of G8513 Pingliang to Mianyang national expressway and Wudu to Jiuzhaigou (Ganchuan boundary), this paper analyzed the application of prestressed continuous box girder support formwork design, concrete pouring technology, prestressed steel tendon tension sequence and vacuum assisted grouting technology. 展开更多
关键词 prestressed continuous box girder bracket formwork tension vacuum grouting application of constr
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杭州湾跨海铁路大桥引桥80 m预制混凝土箱梁水化热分析及裂缝控制研究 被引量:1
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作者 贾卫中 蔡金标 +1 位作者 王天羽 贺拥超 《桥梁建设》 北大核心 2025年第3期1-10,共10页
杭州湾跨海铁路大桥引桥为(60+n×80+60)m长联预应力混凝土等高连续梁桥,全桥共10联,最长联3080 m,混凝土箱梁采用整孔预制架设、先简支后连续的方法施工。为分析大跨箱梁预制阶段混凝土水化热特性,降低混凝土开裂风险,在首片80 m... 杭州湾跨海铁路大桥引桥为(60+n×80+60)m长联预应力混凝土等高连续梁桥,全桥共10联,最长联3080 m,混凝土箱梁采用整孔预制架设、先简支后连续的方法施工。为分析大跨箱梁预制阶段混凝土水化热特性,降低混凝土开裂风险,在首片80 m混凝土箱梁预制阶段,对其端部、跨中截面混凝土温度和应变进行连续监测,采用MIDAS FEA软件模拟箱梁施工过程,进行水化热数值分析,并从混凝土入模温度、养护措施和预应力初张拉方面进行水化热温度裂缝控制研究。结果表明:截面局部尺寸越大,水化热峰值温度越高,混凝土表面应力越大;端部节段高温区域主要集中在腹板芯部,跨中附近节段高温区域主要集中在腹板和顶板交界处;端部节段在混凝土浇筑后30~70 h时段存在开裂风险;提高混凝土入模温度,混凝土表面应力峰值减小,可降低混凝土开裂风险,建议混凝土入模温度满足规范要求的小于30℃即可;提高箱梁内腔风速,可加快降温速率,对尽早拆除芯模、提前进行预应力初张拉有利,建议箱梁内腔风速为1~4 m/s;预应力初张拉可提高箱梁混凝土早期抗裂性能,有效降低箱梁混凝土开裂风险。 展开更多
关键词 高速铁路桥 连续梁桥 预制混凝土箱梁 水化热 温度裂缝 温度场 应力场 有限元法
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悬臂施工连续梁桥摩擦摆支座减隔震特征研究 被引量:3
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作者 聂利英 潘子坚 +1 位作者 邵云澜 韩刘 《武汉理工大学学报(交通科学与工程版)》 2025年第1期95-101,共7页
文中以某悬臂施工连续梁桥为背景研究纵向摩擦摆支座减隔震特征.基于有限元分析,探讨支座主要影响参数、主墩与边墩墩底弯矩随支座摩擦系数变化规律相反的特点及机理.结果表明:摩擦系数是摩擦摆支座耗能减震主要控制参数;主墩与边墩减... 文中以某悬臂施工连续梁桥为背景研究纵向摩擦摆支座减隔震特征.基于有限元分析,探讨支座主要影响参数、主墩与边墩墩底弯矩随支座摩擦系数变化规律相反的特点及机理.结果表明:摩擦系数是摩擦摆支座耗能减震主要控制参数;主墩与边墩减震耗能机理不同,主墩是通过支座摩擦力对上部梁体惯性力起隔震作用,边墩是上部梁体通过摩擦摆支座耗能抑制边墩自振.结合现行规范B类桥梁两阶段设计,展示该桥型摩擦摆支座下边墩控制设计的现象,并明确主、边墩各自的设计思路. 展开更多
关键词 悬臂施工连续梁桥 摩擦摆支座 减隔震特征 边墩控制设计
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上承式拱形变高钢桁组合连续梁施工关键技术
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作者 朱云萍 胡杰 涂满明 《世界桥梁》 北大核心 2025年第3期26-32,共7页
延崇高速砖楼特大桥主桥采用(65+120+65) m上承式拱形变高钢桁组合连续梁,双幅分离,分别位于平面圆曲线、缓和曲线及直线段上,平面以直代曲、桥面超高及超高过渡变化使得钢结构和桥面系异常复杂,且钢桁梁杆件种类和数量繁多、空间结构... 延崇高速砖楼特大桥主桥采用(65+120+65) m上承式拱形变高钢桁组合连续梁,双幅分离,分别位于平面圆曲线、缓和曲线及直线段上,平面以直代曲、桥面超高及超高过渡变化使得钢结构和桥面系异常复杂,且钢桁梁杆件种类和数量繁多、空间结构复杂。主梁施工采用双幅共用塔吊+履带吊悬拼方案,经济适用性强,解决了山区施工条件受限难题;主墩处采用托架+倒T形立柱精调系统,确保平、纵面曲线连续钢桁梁悬拼起始节间安装精度,以及双悬臂架设安全性;杆件连接时利用标准冲钉控制杆件形位,通过控制安装拱度和桥面轴线实现高精度线形控制;采用Z形托架辅助边跨上墩,通过边跨压重、合龙口斜角对拉技术确保合龙段快速精确安装,完成结构体系转换;采用吊架法施工桥面悬臂现浇段混凝土,实现平面曲线线形和桥面超高过渡需求。 展开更多
关键词 钢桁组合连续梁 悬臂拼装 托架 精调系统 线形控制 体系转换 吊架法 施工技术
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艰险山区混凝土连续梁桥施工风险评价
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作者 郝伟 王昕 《自然灾害学报》 北大核心 2025年第5期215-225,共11页
为了合理地评价艰险山区混凝土连续梁桥施工风险,根据艰险山区复杂环境特点和连续梁桥施工特性,从环境因素、施工技术因素、人员管理因素及材料设备因素出发,建立艰险山区混凝土连续梁桥施工风险评价指标体系。构建基于拉格朗日乘子法... 为了合理地评价艰险山区混凝土连续梁桥施工风险,根据艰险山区复杂环境特点和连续梁桥施工特性,从环境因素、施工技术因素、人员管理因素及材料设备因素出发,建立艰险山区混凝土连续梁桥施工风险评价指标体系。构建基于拉格朗日乘子法组合赋权-二维云模型的桥梁施工风险评价模型,运用拉格朗日乘子法对主、客观权重进行组合为评价指标赋权,以风险发生概率和风险造成损伤这2个维度来构建二维云风险评价模型,最后以天水市南北两山郭家河大桥为例,运用该模型进行施工风险评估,通过MATLAB软件进行综合评价云图绘制,得到风险评估结果为中度风险,并基于贴近度的计算验证风险评价结果的可靠性,为艰险山区桥梁施工风险的预防和控制提供了参考依据。 展开更多
关键词 艰险山区 连续梁桥 施工风险评价 组合赋权 二维云模型
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设计荷载下中小跨径连续梁桥负弯矩冲击系数计算模式
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作者 周勇军 薛宇欣 +4 位作者 杨小刚 范凯翔 焦晨凯 赵煜 王业路 《交通运输工程学报》 北大核心 2025年第1期263-273,共11页
为明确中小跨径连续梁桥在设计荷载作用下的负弯矩冲击系数,采用理论推导和数值仿真相结合的方法开展了中小跨径连续梁桥负弯矩冲击系数研究。根据欧拉-伯努利梁理论推导了两等跨连续梁在多个移动集中力作用下负弯矩冲击系数的解析表达... 为明确中小跨径连续梁桥在设计荷载作用下的负弯矩冲击系数,采用理论推导和数值仿真相结合的方法开展了中小跨径连续梁桥负弯矩冲击系数研究。根据欧拉-伯努利梁理论推导了两等跨连续梁在多个移动集中力作用下负弯矩冲击系数的解析表达式,以不同标准跨径连续梁桥为研究对象,选用空间三轴车辆模型,基于负弯矩截面荷载效应相等原理,将设计车道荷载等效为准设计状态的重车荷载谱;采用ANSYS软件建立了车辆-桥梁耦合数值仿真振动分析模型,开展了桥梁频率、桥面不平整度和车辆行驶速度对负弯矩冲击系数影响的显著性分析;通过大量的数值仿真结果进行了统计,以桥梁结构频率为自变量,以桥面不平整度为分项标准,提出了负弯矩冲击系数计算模式及其建议取值,并与国内外规范值展开对比分析。研究结果表明:跨径相同但跨数不同的中小跨径连续梁桥的负弯矩冲击系数最大相差38%;随着桥面不平整度等级的降低,负弯矩冲击系数逐渐增大,B级和C级桥面不平整度的负弯矩冲击系数平均值分别为A级对应平均值的2.07倍和4.15倍;车辆行驶速度对负弯矩冲击系数有较大影响,但并未表现出显著规律;在B级和C级桥面不平整度时,各国规范均不同程度地低估了负弯矩冲击系数,建议中小跨径连续梁桥负弯矩冲击系数设计值取为0.335。 展开更多
关键词 桥梁工程 中小跨径连续梁桥 车-桥耦合振动 负弯矩冲击系数 准设计状态 计算模式
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新型钢-混组合梁负弯矩区抗弯承载力研究
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作者 赵秋 叶俊宇 张皓 《交通运输工程学报》 北大核心 2025年第5期356-367,共12页
为解决传统简支转连续组合梁桥负弯矩区处混凝土桥面板易开裂的问题,提出了一种在主梁翼缘增设开孔钢板的新型构造形式;通过静力试验与有限元模拟相结合的方法,系统研究了该类新型结构形式负弯矩区的受力行为与其裂缝发展规律,并基于试... 为解决传统简支转连续组合梁桥负弯矩区处混凝土桥面板易开裂的问题,提出了一种在主梁翼缘增设开孔钢板的新型构造形式;通过静力试验与有限元模拟相结合的方法,系统研究了该类新型结构形式负弯矩区的受力行为与其裂缝发展规律,并基于试验结果与参数分析数据,建立了相应的抗弯承载力计算方法,提出了针对该新型结构简支转连续组合梁中支座截面的抗弯承载力计算公式。试验结果表明:相较于普通构件,开孔钢板构件的极限承载力提高了71%;在相同荷载作用下,开孔钢板构件的跨中滑移小于普通构件,且外荷载卸载时跨中滑移出现了一定量的回缩,表明开孔钢板在一定程度上提高了结构的延性;在负弯矩加载过程中,开孔钢板构件的裂缝发展速率相较于普通构件较缓,且裂缝数量较少;通过对比理论与试验结果可知,该计算公式可用于预测开孔钢板简支转连续组合梁的极限承载能力;开孔钢板能在很大程度上改善组合梁负弯矩区的极限承载力和抗裂能力,并在一定程度上能提升结构的延性。此项研究能为未来相关构造的设计提供参考。 展开更多
关键词 桥梁工程 简支转连续组合梁 模型试验 抗弯承载力 开孔钢板 负弯矩区
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预应力连续箱梁体内体外组合预应力加固技术研究
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作者 宋重阳 付星燃 +1 位作者 高洪波 胡承泽 《中外公路》 2025年第2期187-193,共7页
为解决某预应力混凝土现浇连续箱梁桥第2跨底板横向开裂及整体刚度下降的病害问题,该文通过病害成因分析,建立了考虑截面刚度折减与预应力损失的有限元损伤模型,结合包络设计的原则,合理确定了加固新增预应力度,提出了“整联腹板外包新... 为解决某预应力混凝土现浇连续箱梁桥第2跨底板横向开裂及整体刚度下降的病害问题,该文通过病害成因分析,建立了考虑截面刚度折减与预应力损失的有限元损伤模型,结合包络设计的原则,合理确定了加固新增预应力度,提出了“整联腹板外包新增体内长束、第2跨底板新增局部体外短束”的体内体外组合预应力加固方案。施工监控和加固前、后荷载试验结果表明:该加固方式恢复了预压应力储备,提高了整体刚度,加固效果良好。体内体外组合预应力加固技术具有有效改善应力状况、提高结构整体刚度、适应性广等优点,可为其他同类工程的加固提供参考。 展开更多
关键词 预应力连续箱梁 底板裂缝 刚度折减 体内体外预应力加固 损伤模型 荷载试验
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大跨长联PC连续梁桥支座预偏量分析
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作者 张军锋 李廷垚 +2 位作者 裴昊 李杰 祝闯 《水利与建筑工程学报》 2025年第5期74-81,共8页
为探究大跨长联PC连续梁桥施工时滑动支座预偏量的影响因素及设置原则,以一座代表性工程为例,结合施工过程的有限元计算,分析合龙束预应力张拉、混凝土收缩徐变及温度作用对支座偏移量的影响,并给出全桥合龙过程中预应力和温度变化引起... 为探究大跨长联PC连续梁桥施工时滑动支座预偏量的影响因素及设置原则,以一座代表性工程为例,结合施工过程的有限元计算,分析合龙束预应力张拉、混凝土收缩徐变及温度作用对支座偏移量的影响,并给出全桥合龙过程中预应力和温度变化引起的支座偏移量计算公式。研究结果表明:从边跨向中跨顺序合龙时,合龙束预应力和徐变效应是引起支座偏移的主要因素,均可占到支座偏移量的30%~50%,收缩效应约占20%,这三者对各墩的支座偏移均表现为外侧桥墩大而内侧小,且均向桥梁中心偏移;合龙顺序对预应力效应引起的支座偏移影响较大而对收缩和徐变效应没有影响,先部分小合龙再整体大合龙的方案可有效降低预应力效应引起的支座偏移;相比其他因素,温度效应引起的支座偏移一般较小,且受合龙温度变化和合龙顺序的影响,其对各墩的影响规律较为复杂;考虑支座预偏时,应考虑其全部预应力效应;对于收缩和徐变效应,可统一取5年的发展时间;对于温度效应,则需根据施工进度安排进行预估。 展开更多
关键词 大跨长联连续梁桥 支座预偏量 合龙束预应力张拉 混凝土收缩 混凝土徐变 温度作用
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拉压不同模量连续箱梁弯曲性能分析
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作者 李斌 尹萱洋 周欣珩 《湖南理工学院学报(自然科学版)》 2025年第1期28-36,共9页
连续箱梁具有良好的结构性能,在桥梁建设中获得广泛的应用.目前对箱梁抗弯性能的研究主要基于拉压弹性模量相同理论,这与材料在受拉和受压的力学状态下分别呈现出不同弹性性质的实际不符,得到的内力及应力应变等结果必然存在偏差.基于... 连续箱梁具有良好的结构性能,在桥梁建设中获得广泛的应用.目前对箱梁抗弯性能的研究主要基于拉压弹性模量相同理论,这与材料在受拉和受压的力学状态下分别呈现出不同弹性性质的实际不符,得到的内力及应力应变等结果必然存在偏差.基于拉压不同模量理论,充分考虑材料拉压弹性模量不同所导致的中性层位置、受压区高度以及反弯点位置改变等的影响,采用传递矩阵法对连续箱梁的应力、应变、挠度等进行分析.计算结果表明,简支箱梁和连续箱梁的中性轴位置、应力、位移均随材料拉压弹性模量比的变化而变化. 展开更多
关键词 拉压不同模量 连续箱梁 传递矩阵法 弯曲性能
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沁伊高速黄河特大桥主桥主梁方案比选及设计关键技术
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作者 王健 闫生龙 +1 位作者 宋松林 王翰哲 《桥梁建设》 北大核心 2025年第1期139-145,共7页
沁伊高速黄河特大桥主桥为(85+25×100)m连续组合梁桥,为选取合适的主梁形式,结合项目建设条件,选取工字钢-混组合梁、整体钢-混组合箱梁及双边箱组合梁方案进行对比。从结构整体性、桥面板局部受力、施工便捷性、工程经济性、运营... 沁伊高速黄河特大桥主桥为(85+25×100)m连续组合梁桥,为选取合适的主梁形式,结合项目建设条件,选取工字钢-混组合梁、整体钢-混组合箱梁及双边箱组合梁方案进行对比。从结构整体性、桥面板局部受力、施工便捷性、工程经济性、运营维修养护及景观效果等角度综合考虑,最终选用整体钢-混组合箱梁方案。主桥主梁采用混凝土桥面板+斜腹板槽形钢主梁组成的箱形等截面组合梁。主梁总高4.8 m,宽16.5 m,其中钢梁高4.5 m,桥面板厚0.28 m。采用优化钢梁上翼缘宽厚比、控制高腹板稳定性、改善桥面板多体系受力和采取负弯矩区桥面板防裂措施等多项设计关键技术,保证了主梁承载力、腹板稳定性、桥面板耐久性以及结构经济性。结构受力分析结果表明:钢梁抗弯(剪)承载力、桥面板承载力、裂缝宽度和腹板稳定性等均满足规范要求。 展开更多
关键词 连续梁桥 组合梁 槽形钢主梁 腹板稳定 防裂措施 方案比选 桥梁设计
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大跨连续梁桥锌铝芯GFRP高阻尼橡胶支座减隔震性能研究 被引量:1
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作者 王江飞 梁春雨 +2 位作者 缪锋阳 徐建国 齐万帅 《桥梁建设》 北大核心 2025年第2期25-33,共9页
针对地震中大跨连续梁桥主梁的惯性力较大,现有隔震支座无法满足其抗震需求的问题,提出一种适用于该类型桥梁的Zn-22%Al芯玻璃纤维增强板高阻尼橡胶支座(ZA-GFRPHDR支座),开展该支座的拟静力试验,分析其基本力学性能。以某黄河特大桥为... 针对地震中大跨连续梁桥主梁的惯性力较大,现有隔震支座无法满足其抗震需求的问题,提出一种适用于该类型桥梁的Zn-22%Al芯玻璃纤维增强板高阻尼橡胶支座(ZA-GFRPHDR支座),开展该支座的拟静力试验,分析其基本力学性能。以某黄河特大桥为背景,建立采用该支座的大桥有限元模型,分析不同场地类别地震波作用下桥梁关键部位的地震响应,并与采用盆式橡胶支座的桥梁地震响应进行对比。结果表明:相较盆式橡胶支座,ZA-GFRPHDR支座能显著降低桥梁地震响应,竖向和水平力学性能稳定,滞回性能优秀,其减隔震性能随地震动强度增大而提升;在Ⅰ类、Ⅱ类和Ⅲ类场地中,ZA-GFRPHDR支座对桥梁的减隔震作用较强。 展开更多
关键词 大跨连续梁桥 ZA-GFRPHDR支座 拟静力试验 地震波 力学性能 地震响应 有限元法
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