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Flexural Performance of UHPC-Reinforced Concrete T-Beams:Experimental and Numerical Investigations 被引量:2
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作者 Guangqing Xiao Xilong Chen +2 位作者 Lihai Xu Feilong Kuang Shaohua He 《Structural Durability & Health Monitoring》 2025年第5期1167-1181,共15页
This study investigates the flexural performance of ultra-high performance concrete(UHPC)in reinforced concrete T-beams,focusing on the effects of interfacial treatments.Three concrete T-beam specimens were fabricated... This study investigates the flexural performance of ultra-high performance concrete(UHPC)in reinforced concrete T-beams,focusing on the effects of interfacial treatments.Three concrete T-beam specimens were fabricated and tested:a control beam(RC-T),a UHPC-reinforced beam with a chiseled interface(UN-C-50F),and a UHPC-reinforced beam featuring both a chiseled interface and anchored steel rebars(UN-CS-50F).The test results indicated that both chiseling and the incorporation of anchored rebars effectively created a synergistic combination between the concrete T-beam and the UHPC reinforcement layer,with the UN-CS-50F exhibiting the highest flexural resistance.The cracking load and ultimate load of UN-CS-50F were 221.5%and 40.8%,respectively,higher than those of the RC-T.Finite element(FE)models were developed to provide further insights into the behavior of the UHPCreinforced T-beams,showing a maximumdeviation of just 8%when validated against experimental data.A parametric analysis varied the height,thickness,andmaterial strength of the UHPC reinforcement layer based on the validated FE model,revealing that increasing the UHPC layer thickness from 30 to 50 mm improved the ultimate resistance by 20%while reducing the UHPC reinforcement height from 440 to 300 mm led to a 10%decrease in bending resistance.The interfacial anchoring rebars significantly reduced crack propagation and enhanced stress redistribution,highlighting the importance of strengthening interfacial bonds and optimizing geometric parameters ofUHPCfor improved T-beam performance.These findings offer valuable insights for the design and retrofitting of UHPC-reinforced bridge girders. 展开更多
关键词 UHPC thin layer t-beam REINFORCEMENT bending performance numerical simulation
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Life-Cycle Bearing Capacity for Pre-Stressed T-beams Based on Full-Scale Destructive Test
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作者 Yushan Ye Tao Gao +4 位作者 Liankun Wang Junjie Ma Yingchun Cai Heng Liu Xiaoge Liu 《Structural Durability & Health Monitoring》 EI 2025年第1期145-166,共22页
To investigate the evolution of load-bearing characteristics of pre-stressed beams throughout their service life and to provide a basis for accurately assessing the actual working state of damaged pre-stressed concret... To investigate the evolution of load-bearing characteristics of pre-stressed beams throughout their service life and to provide a basis for accurately assessing the actual working state of damaged pre-stressed concrete T-beams,destructive tests were conducted on full-scale pre-stressed concrete beams.Based on the measurement and ana-lysis of beam deflection,strain,and crack development under various loading levels during the research tests,combined with the verification coefficient indicators specified in the codes,the verification coefficients of bridges at different stages of damage can be examined.The results indicate that the T-beams experience complete,incom-plete linear,and non-linear stages during the destructive test process.In the complete linear elastic stage,both the deflection and bottom strain verification coefficients comply with the specifications,indicating a good structural load-bearing capacity no longer adheres to the code’s requirements.In the non-linear stage,both coefficients exhi-bit a sharp increase,resulting in a further decrease in the structure’s load-bearing capacity.According to the pro-visions of the current code,the beam can be in the incomplete linear stage when both values fall within the code’s specified range.The strain verification coefficient sourced from the compression zone at the bottom of theflange is not recommended for assessing the bridge’s load-bearing capacity. 展开更多
关键词 Pre-stressed t-beams whole process destructive test bearing capacity verification coefficient
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Investigation on Shear Performance of Concrete T-Beam Bridge Strengthened Using UHPC
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作者 Zhiyong Wan Guozhang Luo +3 位作者 Pailin Fang Menghui Ji Zhizhao Ou Shaohua He 《Structural Durability & Health Monitoring》 2025年第5期1327-1341,共15页
This investigation examines the shear performance of concrete T-beams reinforced with thin layers of ultra-high performance concrete(UHPC)through an approach that integrates experimental evaluation,numerical simulatio... This investigation examines the shear performance of concrete T-beams reinforced with thin layers of ultra-high performance concrete(UHPC)through an approach that integrates experimental evaluation,numerical simulation,and practical project verification.The research is based on a real bridge,and in accordance with the similarity principle,three reduced-scale T-beams with varying UHPC thicknesses were fabricated and tested to examine their failure modes and shear behaviors.A finite element model was created to enhance understanding of how UHPC reinforces these structures,while also considering the effects of material strength and arrangement.In addition to the laboratory tests,the actual bridge was analyzed to assess the effectiveness of the proposed strengthening technique.Results indicated that concrete T-beams strengthened with 30 mm-thick layers of UHPC had significant improvements,including a 491%increase in shear stiffness,a 23.15%rise in ultimate resistance,and a 155%enhancement in deformability compared to unreinforced T-beams.Furthermore,these improvements continued to increase with the application of thicker UHPC layers.Using 120MPa-grade UHPC with a thickness of 50mmand an A-type arrangement ensured that the dynamic and static performance of the T-beambridge met established code requirements.This research highlights the potential of UHPC thin layers in effectively reinforcing concrete beams for enhanced shear performance. 展开更多
关键词 t-beam UHPC thin-layer bridge strengthening shear performance numerical simulation
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Performance Evaluation of Damaged T-Beam Bridges with External Prestressing Reinforcement Based on Natural Frequencies
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作者 Menghui Hao Shanshan Zhou +4 位作者 Yongchao Han Zhanwei Zhu Qiang Yang Panxu Sun Jiajun Fan 《Structural Durability & Health Monitoring》 2025年第2期399-415,共17页
As an evaluation index,the natural frequency has the advantages of easy acquisition and quantitative evaluation.In this paper,the natural frequency is used to evaluate the performance of external cable reinforced brid... As an evaluation index,the natural frequency has the advantages of easy acquisition and quantitative evaluation.In this paper,the natural frequency is used to evaluate the performance of external cable reinforced bridges.Numerical examples show that compared with the natural frequencies of first-order modes,the natural frequencies of higher-order modes are more sensitive and can reflect the damage situation and external cable reinforcement effect of T-beam bridges.For damaged bridges,as the damage to the T-beam increases,the natural frequency value of the bridge gradually decreases.When the degree of local damage to the beam reaches 60%,the amplitude of natural frequency change exceeds 10%for the first time.The natural frequencies of the firstorder vibration mode and higher-order vibration mode can be selected as indexes for different degrees of the damaged T-beam bridges.For damaged bridges reinforced with external cables,the traditional natural frequency of the first-order vibration mode cannot be used as the index,which is insensitive to changes in prestress of the external cable.Some natural frequencies of higher-order vibration modes can be selected as indexes,which can reflect the reinforcement effect of externally prestressed damaged T-beam bridges,and its numerical value increases with the increase of external prestressed cable force. 展开更多
关键词 Performance evaluation natural frequency t-beam bridge DAMAGE external cable reinforcement
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Study on Seismic Performance of Continuous T-Beam Bridge—Kulungou Bridge
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作者 Jiuqing Zhou Daming Lin +2 位作者 Leifa Li Guanghui Zhang Shumao Qiu 《Structural Durability & Health Monitoring》 2025年第3期705-729,共25页
The objective of this research is to assess the seismic behavior of the continuous T-beam bridge located at Kulungou in Xinjiang.In addition to traditional static and modal analyses,this study introduces a novel appro... The objective of this research is to assess the seismic behavior of the continuous T-beam bridge located at Kulungou in Xinjiang.In addition to traditional static and modal analyses,this study introduces a novel approach by comprehensively examining the performance of the bridge during construction stages,under ultimate load capacities and seismic load.Compliance with regulatory standards is verified by the static analysis,which also yields a thorough comprehension of stress distribution across various stages of construction.By unveiling the initial 100 vibration modes,the modal analysis has significantly enhanced our comprehension and established a robust basis for the ensuing seismic analysis.A distinctive aspect of this research is its comprehensive exploration of the bridge’s seismic behavior under E1 and E2 earthquake excitations.Under E1 earthquake excitation,the response spectrum analysis confirms the adequacy of the bridge piers’strength according to seismic design criteria,whereas the time-history analysis conducted under E2 ground motion reveals the bridge’s robust resistance to strong earthquakes.This study also undertakes a comparative assessment of the seismic behavior of the bridge,contrasting its performance with lead-rubber bearings against that with high-damping rubber bearings.According to the study’s findings,both types of bearings demonstrate their efficacy in mitigating seismic responses,thereby emphasizing their potential as innovative approaches to enhance the resilience of bridges.A notable contribution of this research lies in its assessment of seismic performance indicators,namely hysteresis curves,backbone curves,and ductility coefficients,utilizing Pushover analysis.By conducting a thorough evaluation,a more profound insight into the seismic performance of bridge piers is gained.In conclusion,the study explores how earthquake wave intensity and aftershocks affect the seismic response of bridge piers,showing a substantial increase in seismic response with intensifying wave magnitude and the potential for aftershocks to aggravate damage to compromised structures.The importance of incorporating these factors in the seismic design and retrofitting of bridges is underscored by these discoveries.This study,in its entirety,proposes a fresh and comprehensive methodology to assess the seismic performance of continuous T-beam bridges,furnishing valuable perspectives and innovative remedies to augment the seismic resilience of bridges in earthquake-prone zones. 展开更多
关键词 Continuous t-beam bridge seismic performance finite element model earthquake response analysis
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Stiffness Degradation Characteristics Destructive Testing and Finite-Element Analysis of Prestressed Concrete T-Beam
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作者 Chengquan Wang Yonggang Shen +2 位作者 Yun Zou Tianqi Li Xiaoping Feng 《Computer Modeling in Engineering & Sciences》 SCIE EI 2018年第1期75-93,共19页
The failure behavior of the precast prestressed concrete T girder was investigated by destructive test and finite-element analysis,and the mid-span deflection,girder stiffness and the variation of the cross section st... The failure behavior of the precast prestressed concrete T girder was investigated by destructive test and finite-element analysis,and the mid-span deflection,girder stiffness and the variation of the cross section strain in the loading process were obtained,and the mechanical properties,mechanical behavior,elastic and plastic behavior and ultimate bearing capacity of T girder with large span were revealed.Furthermore,the relationship between the beam stiffness degradation,the neutral axis in cross-section,steel yielding and concrete cracking are investigated and analyzed.A method was proposed to predict the residual bearing capacity of a bridge based on the variation of the position of the cross section strain distribution and the section neutral axis,which provided a theoretical basis for predicting the stiffness detection and carrying capacity assessment of prestressed concrete beam. 展开更多
关键词 PRESTRESSED concrete t-beam destructive testing FINITE-ELEMENT STIFFNESS plane-section ASSUMPTION
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Strengthening of RC T-beams with Shear Deficiencies Using GFRP Strips
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作者 Kishor Chandra Panda Sriman Kumar Bhattacharyya Sudhirkumar V. Barai 《Journal of Civil Engineering and Architecture》 2011年第1期56-67,共12页
The shear performance, modes of failure, and strain analysis of simply supported reinforced concrete (RC) T-beams, externally strengthened in shear using epoxy bonded glass fiber reinforced polymer (GFRP) strips a... The shear performance, modes of failure, and strain analysis of simply supported reinforced concrete (RC) T-beams, externally strengthened in shear using epoxy bonded glass fiber reinforced polymer (GFRP) strips are focused in the present paper. Six RC T-beams of 2.5 m span without shear reinforcement are cast. Three beams are used as control specimens and rest three beams are strengthened in shear with GFRP strips in U-shape, side bonded at 45° and 90° to the longitudinal axis of the beam. All the beams are tested in a Universal Testing Machine. The test results demonstrate the feasibility of using an externally applied, epoxy-bonded GFRP strips to restore or increase the shear strength of RC T-beams. It is also observed that the RC T-beams strengthened by diagonal side strips outperformed those strengthened with vertical side strips. 展开更多
关键词 Reinforced concrete (RC) glass fiber-reinforced polymer (GFRP) shear strength t-beams.
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Analysis of the Construction Quality Defects and Solutions Affecting the Effective Stress under the Anchor of Precast T-beam
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作者 YANG Jiansong 《外文科技期刊数据库(文摘版)工程技术》 2021年第7期479-483,共8页
In recent years, prestressed concrete members are widely used in bridge beam and slab members because of its advantages of good tensile properties of steel strand and scientific and reasonable stress of members.In the... In recent years, prestressed concrete members are widely used in bridge beam and slab members because of its advantages of good tensile properties of steel strand and scientific and reasonable stress of members.In the construction of small span bridges in Fujian, Chongqing, Sichuan, Yunnan and other southern provinces, post tensioned precast prestressed T-beams are widely used in engineering practice. The construction method has been very mature, with obvious economic and social benefits.Precast prestressed T-beam is to offset all or part of the tensile stress due to external load by pre stressing the flexural concrete members by tensioning steel strand, so as to enhance the bearing capacity of precast T-beam. The pre stressing is transformed into the stress under the anchor through jack, anchorage, clip, etc., and applied to the precast members, which is an important guarantee for the quality of precast members. In engineering practice, due to the deformation of anchorage, elastic compression and shrinkage creep of concrete, relaxation of prestressed tendons, construction quality defects and other factors, tensile stress loss will be caused, resulting in insufficient effective stress under the anchor. It directly affects the bearing capacity and durability of precast T-beam. Based on the construction practice of prestressed tension of precast T-beam in capacity expansion project of Chongqing Changsha expressway, this paper finds out and lists the construction quality defects that affect the effective stress under the anchor of precast T-beam, and summarizes some construction quality control measures to solve the prestress loss under the anchor. 展开更多
关键词 influence precast t-beam effective stress under anchor factor SOLUTIONS
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铁路简支T梁技术发展与创新研究
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作者 孙宗磊 张世基 +1 位作者 陈海涛 鄢玉胜 《铁道标准设计》 北大核心 2026年第3期1-7,39,共8页
铁路简支T梁作为我国铁路桥梁体系中的经典结构形式,其发展历程深刻反映我国铁路建设的技术演进与需求变迁,经历从经济实用型向高性能、全生命周期优化的技术演进。通过梳理铁路T梁的发展历程,分析其在不同历史阶段的技术特点及标准化... 铁路简支T梁作为我国铁路桥梁体系中的经典结构形式,其发展历程深刻反映我国铁路建设的技术演进与需求变迁,经历从经济实用型向高性能、全生命周期优化的技术演进。通过梳理铁路T梁的发展历程,分析其在不同历史阶段的技术特点及标准化进程。针对传统T梁在运营过程中附属设施运维工作量大、全寿命周期维护成本高的问题,提出“整体桥面”简支T梁的设计理念。通过对比分析无声屏障和有声屏障两种整体桥面简支T梁的技术特点、施工难度、工程造价及适用条件,研究腹板间距、腹板厚度、横隔板数量等关键构造参数,提出针对不同工程场景的优化建议。针对特殊环境下T梁的混凝土施工与养护难题,提出整孔预制T梁的结构型式。研究表明:基于整体桥面理念的简支T梁技术,可在保持T梁运输与架设灵活优势的前提下,显著提升桥面系耐久性与运维经济性,是传统铁路T梁向绿色化、智能化和全寿命管理阶段演进的重要方向;整孔预制T梁的结构型式,解决了现场二次浇筑混凝土施工和养护困难的问题,可作为特殊复杂环境下的一种梁型选择。 展开更多
关键词 铁路桥梁 简支T梁 整体桥面 整孔预制 结构优化 全寿命周期
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智慧梁场在京港澳高速公路湖北北段改扩建工程中的应用创新
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作者 黄威 周陈婴 《黑龙江交通科技》 2026年第1期38-42,共5页
为推动公路预制梁从“传统建造”向“智能制造”转型升级,总结京港澳高速湖北北段改扩建工程中适配智慧梁场智能建造的设计经验,以及提升预制梁质量与生产效率的工艺工法。从设计角度论述了调整预制T梁通用图以满足智慧梁场“标准化、... 为推动公路预制梁从“传统建造”向“智能制造”转型升级,总结京港澳高速湖北北段改扩建工程中适配智慧梁场智能建造的设计经验,以及提升预制梁质量与生产效率的工艺工法。从设计角度论述了调整预制T梁通用图以满足智慧梁场“标准化、工厂化、自动化”的要求。实际投产后的结果表明:在优化设计通用图和施工工艺工法后,智慧梁场与传统梁场相比:(1)占地节约率约10%;(2)制梁台座节约率约54%;(3)可全天候封闭生产,不受天气影响,相同时间内的产能提升约25%,预制梁质量更加稳定可控;(4)T梁实现零报废,钢筋损耗率降低约15%。 展开更多
关键词 桥涵设计 智慧梁场 预制T梁 通用图 标准化
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跨海T形梁极端波浪荷载分布特征及其参数敏感性研究
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作者 王佳佳 蔡宗润 +5 位作者 陈效坤 肖莉丽 许昕 余夕 夏梦琪 高瑞泽 《中国海洋大学学报(自然科学版)》 北大核心 2026年第4期124-137,共14页
为厘清极端波浪作用下近海区域桥梁主梁的受荷特征,本文利用室内造波水槽开展了缩尺比为1∶20的物理模型试验,研究不同试验水深、造波速度和淹没系数等因素组合工况条件下T形梁水平波浪力、竖向波浪力和倾覆力矩的时程曲线及峰值特性。... 为厘清极端波浪作用下近海区域桥梁主梁的受荷特征,本文利用室内造波水槽开展了缩尺比为1∶20的物理模型试验,研究不同试验水深、造波速度和淹没系数等因素组合工况条件下T形梁水平波浪力、竖向波浪力和倾覆力矩的时程曲线及峰值特性。随后,基于试验数据,针对上述3种因素对T形梁波浪荷载特性进行参数敏感性分析。研究得出以下结论:T形梁波浪力受水深影响显著,随着淹没深度的增加,峰值时刻的竖向波浪力先减小后增大,且力方向由向上变为向下;峰值时刻的水平波浪力变化趋势与竖向波浪力保持一致,但方向不变;倾覆力矩的变化趋势为先增加后减小,且在半淹没状态下的峰值最大;针对未淹没状态下的T形梁,其顶板下面板受竖向波浪力较大,而顶板上面板受到反向竖向波浪力较大,波浪先达到的两根梁主要承受较大的水平波浪力与反向水平力;对于全淹没状态下的T形梁,模型两侧梁承受较大的正向水平力,而迎浪侧第二根梁承受了大部分反向水平波浪力;考虑3种影响因素的参数敏感性分析结果表明,T形梁波浪荷载受波速与淹没系数影响显著,受波高影响,波浪荷载变化较为复杂,未呈现出明显的规律性。本文研究了跨海T形梁极端波浪荷载分布与作用特性,探讨了T形梁所受波浪力及倾覆力矩的主要影响因素,研究成果可为跨海桥梁的结构安全设计提供有益的参考依据。 展开更多
关键词 跨海T形梁 极端波浪 受力特性 物理模型试验 波浪荷载分布 参数敏感性
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Effectiveness of external prestressing in enhancing the non-ductile hanger failure mechanism in reinforced concrete inverted T-beams
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作者 Ahmed M.ATTA Reda N.BEHIRY Mohammed I.HARAZ 《Frontiers of Structural and Civil Engineering》 SCIE EI CSCD 2024年第7期1050-1065,共16页
Recently,inverted T-beams have been used in reinforced concrete(RC)bridges to support transverse precast stringers.Inverted T-beams,contrary to practice with conventional beams,are loaded on the flanges upper surface.... Recently,inverted T-beams have been used in reinforced concrete(RC)bridges to support transverse precast stringers.Inverted T-beams,contrary to practice with conventional beams,are loaded on the flanges upper surface.This loading configuration causes hanger failure due to the generation of vertical tensile stresses near the bottom of the web.The key purpose of this study is to investigate the efficiency of vertical external prestressing stainless-steel bars in mitigating non-ductile hanger failure in reinforced concrete inverted T-beams.An experimental study on six inverted-T beams,including two un-strengthened specimens,was carried out.The study showed that the value of the prestressing level had a considerable impact on the performance of hanger mechanism in relation to crack pattern,ultimate loads,cracking behavior,load-deflection,strains,and ductility.The experimental results indicated that the suggested method for strengthening inverted T-beams had efficacy in reducing the seriousness of the non-ductile hanger failure and resulted in a strength increase of up to 53% when compared to that of the un-strengthened specimen.Additionally,two analytical models for estimating the hanger capacity and the average crack width of the strengthened RC inverted T-beams were proposed.The models that were proposed exhibited a high degree of agreement with the experimental results. 展开更多
关键词 RC bridges inverted t-beams strengthening hanger failure external prestressing
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Ultimate load analysis of pretensioned inverted T-beams with circular web openings
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作者 Hock Tian CHENG Bashar SMOHAMMED Kamal Nasharuddin MUSTAPHA 《Frontiers of Structural and Civil Engineering》 SCIE EI 2009年第3期262-271,共10页
The provision of transverse openings in floor beams to facilitate the passage of utility pipes and service ducts not only results in a more systematic layout of pipes and ducts,it also translates into substantial econ... The provision of transverse openings in floor beams to facilitate the passage of utility pipes and service ducts not only results in a more systematic layout of pipes and ducts,it also translates into substantial economic savings in the construction of a multi-storey building.In this paper,ultimate load analysis of statically loaded simply supported pretensioned inverted T-beams with circular web openings is presented.Major findings relevant to ultimate load analysis of pretensioned beams with circular web openings are summarized.An attempt has been made to answer the frequently asked questions related to ultimate load analysis on multiple circular web open-ings.It has been shown that the analysis method for pretensioned beams with multiple large circular web openings can be further simplified without sacrificing rationality. 展开更多
关键词 pretensioned inverted t-beam web opening
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30 m后张法预应力正交T梁混凝土质量控制技术
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作者 杨忠 《中国厨卫》 2026年第2期106-108,共3页
预应力混凝土T梁具备良好的力学特性,其制造简单、整体刚度大、抗扭性好、结构稳定、受力明确以及接头方便等特点在公路工程建设中得到广泛应用。基于此,文章重点分析了30 m后张法预应力正交T梁的混凝土质量控制技术,以供相关工作人员... 预应力混凝土T梁具备良好的力学特性,其制造简单、整体刚度大、抗扭性好、结构稳定、受力明确以及接头方便等特点在公路工程建设中得到广泛应用。基于此,文章重点分析了30 m后张法预应力正交T梁的混凝土质量控制技术,以供相关工作人员参考。 展开更多
关键词 混凝土 外观质量 T梁
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预制T梁桥面系整体化层混凝土裂缝控制及耐久性提升工艺
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作者 吴威 周无悔 叶茂森 《工程技术研究》 2026年第2期135-137,共3页
为解决预制T梁桥面系整体化层混凝土裂缝控制及耐久性不足的问题,以安徽省某跨河大桥为例,对裂缝的影响因素及控制技术进行研究,提出优化混凝土配合比、应用智能张拉压浆技术等综合措施。研究结果表明,该综合措施使整体化层无害微裂缝率... 为解决预制T梁桥面系整体化层混凝土裂缝控制及耐久性不足的问题,以安徽省某跨河大桥为例,对裂缝的影响因素及控制技术进行研究,提出优化混凝土配合比、应用智能张拉压浆技术等综合措施。研究结果表明,该综合措施使整体化层无害微裂缝率≤5%,结构密实度和耐久性得到显著提升。研究成果可为类似桥梁工程建设提供参考。 展开更多
关键词 预制T梁 桥面系 整体化层 混凝土裂缝
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机制砂混凝土预制构件早期开裂风险分析与控制技术
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作者 高利远 《粘接》 2026年第4期1036-1039,共4页
公路桥梁预制T梁用机制砂混凝土早期开裂问题;是当前工程实践中的突出问题。机制砂混凝土级配、颗粒形貌不同于天然砂混凝土;预制T梁生产与养护阶段易出现早期裂缝;直接威胁结构耐久性与承载能力。本研究结合预制T梁构造特征及施工流程... 公路桥梁预制T梁用机制砂混凝土早期开裂问题;是当前工程实践中的突出问题。机制砂混凝土级配、颗粒形貌不同于天然砂混凝土;预制T梁生产与养护阶段易出现早期裂缝;直接威胁结构耐久性与承载能力。本研究结合预制T梁构造特征及施工流程;综合理论分析、试验研究与工程实践;构建了针对性控制技术体系。结果表明;优化机制砂级配、匹配胶凝材料体系并改进施工养护工艺;可显著降低开裂风险;为预制T梁质量提升提供可靠技术支撑;相关成果已经实践验证。 展开更多
关键词 机制砂混凝土 公路桥梁 预制T梁 早期开裂 控制技术
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T梁与变截面连续箱梁组合桥梁结构设计方法
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作者 梅继洲 刘传奇 陈伟 《建筑机械》 2026年第3期207-210,共4页
T梁与变截面连续箱梁组合桥梁结构凭借在经济性、建筑美学及结构受力等方面的综合优势,在许多地方广泛应用。这种桥梁结构体系将T梁简便施工的特性与变截面连续箱梁优良的跨越能力结合起来,能够有效满足复杂地形条件下桥梁建设的实际需... T梁与变截面连续箱梁组合桥梁结构凭借在经济性、建筑美学及结构受力等方面的综合优势,在许多地方广泛应用。这种桥梁结构体系将T梁简便施工的特性与变截面连续箱梁优良的跨越能力结合起来,能够有效满足复杂地形条件下桥梁建设的实际需求。文章针对组合桥梁结构在跨径布置与截面设计等方面存在的关键技术问题,深入研究结构选型原理、受力特征及设计方法。研究结果显示,合理的跨径与墩高匹配关系、科学的截面参数配置,以及恰当的预应力布置方案,是确保该类桥梁结构安全性能的重要保障。 展开更多
关键词 T梁 变截面连续箱梁 组合桥梁 结构设计 预应力配置
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改扩建空心板不同计算方法与不同拓宽桥型受力分析
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作者 程毅 《工程技术研究》 2026年第2期21-23,共3页
以汕昆高速公路某空心板改扩建桥梁为例,应用空间有限元模拟方法,对单梁和梁格计算方法、“空心板+矮T梁”“空心板+小箱梁”受力性能进行研究,分析了不同计算方法、不同拓宽桥型对旧桥受力性能的影响。分析结果表明,单梁模型更保守,对... 以汕昆高速公路某空心板改扩建桥梁为例,应用空间有限元模拟方法,对单梁和梁格计算方法、“空心板+矮T梁”“空心板+小箱梁”受力性能进行研究,分析了不同计算方法、不同拓宽桥型对旧桥受力性能的影响。分析结果表明,单梁模型更保守,对结构更有利,但梁格模型更接近实际受力情形。空心板采用铰缝连接,横向联系较弱,两种拓宽桥型对远离拼宽侧旧桥荷载效应的影响较小。小箱梁桥型拼宽侧空心板边梁、中梁弯矩荷载比矮T梁桥型分别小10%、16%;剪力荷载比采用矮T梁桥型分别小6%、11%。 展开更多
关键词 改扩建桥梁 简支空心板 矮T梁 小箱梁 荷载效应
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落石冲击下预应力简支T梁桥有限元分析
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作者 董文龙 林帆 《哈尔滨商业大学学报(自然科学版)》 2026年第2期186-194,共9页
预应力混凝土T梁桥广泛用于山区,然而落石活动会显著提升桥梁在其整个使用寿命期间发生结构损坏的风险.基于经过验证的有限元建模方法,研究一座30 m跨度多梁预应力混凝土T型梁桥在垂直落石冲击下的力学性能.采用数值方法分析动态载荷条... 预应力混凝土T梁桥广泛用于山区,然而落石活动会显著提升桥梁在其整个使用寿命期间发生结构损坏的风险.基于经过验证的有限元建模方法,研究一座30 m跨度多梁预应力混凝土T型梁桥在垂直落石冲击下的力学性能.采用数值方法分析动态载荷条件下的结构响应和失效机制.结果表明,直接受冲击区域呈现弯曲-剪切复合破坏,相邻梁体则表现为弯扭耦合损伤;与中梁相比较,边梁因受约束较弱,残余位移更大;与跨中段相比,四分之一跨位置的桥梁损坏的概率更高;在相同的冲击能量条件下,冲击半径参数是加剧结构损伤的关键因素.基于上述研究成果,为加速山区落石灾后的应急决策、减少经济损失、增强山区交通网络韧性提供了理论基础. 展开更多
关键词 预应力简支T梁桥 落石冲击 弯曲-剪切失效 数值模拟 有限元分析
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后张法矮T型梁预应力张拉损失机理分析——以某地危桥改造项目为例
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作者 周平江 《现代工程科技》 2026年第1期28-31,共4页
以鄂州市农村公路桥梁消危改造项目为背景,研究了该项目中广泛应用的16 m后张法矮T型梁预应力张拉损失。由于设计图纸仅提供摩阻相关参数μ与k,并未限定波纹管类型,通过现场试验,对塑料波纹管与金属波纹管的摩阻损失在实际工况下的差异... 以鄂州市农村公路桥梁消危改造项目为背景,研究了该项目中广泛应用的16 m后张法矮T型梁预应力张拉损失。由于设计图纸仅提供摩阻相关参数μ与k,并未限定波纹管类型,通过现场试验,对塑料波纹管与金属波纹管的摩阻损失在实际工况下的差异进行分析。试验采用传感器测量主动端与被动端张拉力,通过多组试件及线性回归分析,实测得出塑料波纹管摩阻损失较小,接近设计值;金属波纹管摩阻损失明显偏大,若在施工中采用金属波纹管,建议适当超张拉1.5%~2%以补偿摩阻损失。提出应加强预应力管道施工控制,并建议在大批量预应力梁施工前进行现场试验,优化μ、k参数。 展开更多
关键词 后张法矮T梁 管道摩阻力损失 预应力张拉
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