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Seismic Behaviour of Beam-Column Joints of Precast and Partial Steel Reinforced Concrete 被引量:1
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作者 Wanpeng Cheng Licheng Wang +1 位作者 Yupu Song Jun Wang 《Journal of Harbin Institute of Technology(New Series)》 EI CAS 2015年第2期108-117,共10页
A beam-column joint of precast and partial steel reinforced concrete( PPSRC) is proposed for precast reinforced concrete frames. The PPSRC consists of partial steel and reinforced concrete. The partial steel is locate... A beam-column joint of precast and partial steel reinforced concrete( PPSRC) is proposed for precast reinforced concrete frames. The PPSRC consists of partial steel and reinforced concrete. The partial steel is located in the core joint region and the connections between concrete members. This paper presents an experimental study of a series of PPSRC specimens. These specimens are tested under low cyclic loading.Experimental results demonstrate that the bearing capacity of the PPSRC specimens is 3 times that of the ordinary reinforced concrete( RC) beam-column joints. The strength and stiffness degradation rates are slower compared with that of the RC beam-column joints. In addition,the strength of the core joint region and the connections is higher than other parts of the PPSRC specimens. Beam failure occurs firstly for the PPSRC specimens,followed by column failure and connections failure. The failure of the core joint region occurs finally.Test results show that the seismic performance of the PPSRC is better than that of the ordinary RC beam-column joints. 展开更多
关键词 preeast and partial steel reinforced concrete (PPSRC) beam-column joints low cyclic test hysteretic curve degradations of strength and stiffness DUCTILITY
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Seismic performance of steel reinforced ultra high-strength concrete composite frame joints 被引量:6
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作者 Yan Changwang Jia Jinqing 《Earthquake Engineering and Engineering Vibration》 SCIE EI CSCD 2010年第3期439-448,共10页
To investigate the seismic performance of a composite frame comprised of steel reinforced ultra high-strength concrete (SRUHSC) columns and steel reinforced concrete (SRC) beams, six interior frame joint specimens... To investigate the seismic performance of a composite frame comprised of steel reinforced ultra high-strength concrete (SRUHSC) columns and steel reinforced concrete (SRC) beams, six interior frame joint specimens were designed and tested under low cyclically lateral load. The effects of the axial load ratio and volumetric stirrup ratio were studied on the characteristics of the frame joint performance including crack pattern, failure mode, ductility, energy dissipation capacity, strength degradation and rigidity degradation. It was found that all joint specimens behaved in a ductile manner with flexural-shear failure in the joint core region while plastic hinges appeared at the beam ends. The ductility and energy absorption capacity of joints increased as the axial load ratio decreased and the volumetric stirIup ratio increased. The displacement ductility coefficient and equivalent damping coefficient of the joints fell between the corresponding coefficients of the steel reinforced concrete (SRC) frame joint and RC frame joint. The axial load ratio and volumetric stirrup ratio have less influence on the strength degradation and more influence on the stiffness degradation. The stiffness of the joint degrades more significantly for a low volumetric stirrup ratio and high axial load ratio. The characteristics obtained from the SRUHSC composite frame joint specimens with better seismic performance may be a useful reference in future engineering applications. 展开更多
关键词 cyclical test axial load ratio volumetric stirrup ratio DUCTILITY strength degradation stiffness degradation steel reinforced ultra high strength concrete beam-column joint
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Strength&Conduct of Reinforced Concrete Corner Joint under Negative Moment Effect
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作者 Rasha A Waheeb 《Journal of Architectural Environment & Structural Engineering Research》 2021年第4期10-17,共8页
The aim of our study is to reveal the effect of steel reinforcement details,tensile steel reinforcement ratio,compressed reinforcing steel ratio,reinforcing steel size,corner joint shape on the strength of reinforced ... The aim of our study is to reveal the effect of steel reinforcement details,tensile steel reinforcement ratio,compressed reinforcing steel ratio,reinforcing steel size,corner joint shape on the strength of reinforced concrete Fc'and delve into it for the most accurate details and concrete connections about the behavior and resistance of the corner joint of reinforced concrete,Depending on the available studies and sources in addition to our study,we concluded that each of these effects had a clear role in the behavior and resistance of the corner joint of reinforced concrete under the influence of the negative moment and yield stress.A study of the types of faults that can be reinforced angle joints obtains details and conditions of crushing that are almost identical for all types of steel reinforcement details and the basic requirements for the acceptable behavior of reinforced concrete joints in the installations and the efficiency of the joint and this may help us to prepare for disasters,whether natural or other,as happens with tremors The floor and failure that may occur due to wrong designs or old buildings and the possibility of using those connections to treat those joints and sections in reinforced or unarmed concrete facilities to preserve the safety of humans and buildings from sudden disasters and reduce and reduce risks,as well as qualitative control over the production of concrete connections and sections free from defects to the extreme. 展开更多
关键词 concrete design Strength materials reinforced corner joint Structure
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基于CTM和Beam-Column Joint Element的梁柱节点核心区抗剪仿真
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作者 唐智强 黄世涛 马健 《土木工程与管理学报》 北大核心 2020年第3期116-122,共7页
为研究基于CTM和Beam-Column Joint Element单元的钢筋混凝土梁柱节点核心区抗震仿真计算,本文先分析了CTM的计算原理和局限性,并对原计算模型进行调整;之后通过试验数据验证了调整前后模型的正确性,并通过参数分析得出调整前后CTM在不... 为研究基于CTM和Beam-Column Joint Element单元的钢筋混凝土梁柱节点核心区抗震仿真计算,本文先分析了CTM的计算原理和局限性,并对原计算模型进行调整;之后通过试验数据验证了调整前后模型的正确性,并通过参数分析得出调整前后CTM在不同参数下核心区抗剪强度的变化规律;最后通过对比理论计算与试验下核心区抗剪强度变化规律,证明调整后模型更为准确。 展开更多
关键词 钢筋混凝土梁柱节点 CTM 梁柱节点单元 OPENSEES
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Rapid Repair of Earthquake Damaged RC Interior Beam-wide Column Joints and Beam-wall Joints Using FRP Composites 被引量:1
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作者 LI Bing LIM Chee Leong 《四川大学学报(工程科学版)》 EI CAS CSCD 北大核心 2009年第3期258-265,共8页
This paper studies the seismic performance of FRP-strengthened RC interior non-seismically detailed beam-wide columns and beam-wall joints after limited seismic damage.Four eccentric and concentric beam-wide column jo... This paper studies the seismic performance of FRP-strengthened RC interior non-seismically detailed beam-wide columns and beam-wall joints after limited seismic damage.Four eccentric and concentric beam-wide column joints and two beam-wall joints,initially damaged in a previous study,were repaired and tested under constant axial loads(0.1fc′Ag and 0.35fc′Ag) and lateral cyclic loading.The rapid repair technique developed,aimed to restore the original strength and to provide minimum drift capacity.The repair schemes were characterized by the use of:(a) epoxy injections and polymer modified cementitious mortar to seal the cracks and replace spalled concrete;and(b) glass(GFRP) and carbon(CFRP) sheets to enhance the joint performance.The FRP sheets were effectively prevented against possible debonding through the use of fiber anchors.Comparison between responses of specimens before and after repair clearly indicated reasonable restoration in strength,drift capacity,stiffness and cumulative energy dissipation capacity.All specimens failed with delamination of FRP sheets at beam-column joint interfaces.The rapid repair technique developed in this study is recommended for mass upgrading or repair of earthquake damaged beam-column joints. 展开更多
关键词 FRP 建筑物 抗震设计 抗震结构
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RC框架结构梁柱节点的轴力变化规律及加载制度
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作者 杨红 王子炎 蒋惠 《土木与环境工程学报(中英文)》 北大核心 2026年第1期127-141,共15页
钢筋混凝土(RC)梁柱节点的抗震性能一般是基于定轴力加载试验获得。由于缺乏有依据的变轴力加载制度,仅少数RC节点抗震性能试验研究考虑了变轴力的影响,且均假定轴力按简化的线性规律变化,难以反映水平地震作用下RC框架结构梁柱节点的... 钢筋混凝土(RC)梁柱节点的抗震性能一般是基于定轴力加载试验获得。由于缺乏有依据的变轴力加载制度,仅少数RC节点抗震性能试验研究考虑了变轴力的影响,且均假定轴力按简化的线性规律变化,难以反映水平地震作用下RC框架结构梁柱节点的真实受力特征。在OpenSees平台上,通过对6个不同层数、跨度的8度0.2g区平面RC框架进行单调加载和循环往复加载有限元模拟,分析水平荷载作用下节点轴力的变化机理以及影响节点轴力变化的因素。在理论分析的基础上,经统计回归,提出与轴力变化特征相符、能考虑材料非线性受力特性的节点变轴力加载制度。结果表明,混凝土、钢筋的材料非线性是节点轴力非线性变化的根本原因,梁端纵筋受拉屈服是节点轴力变化的主要影响因素;提出的节点轴力变化幅度计算式能合理考虑节点类型、结构总层数、梁跨度、梁纵筋面积、梁截面尺寸的影响;提出的节点变轴力加载制度的骨架曲线能较好地反映节点以上各楼层梁端纵筋受拉屈服后节点轴力变化速率逐渐减慢的特点,其滞回规则能合理地考虑材料非线性受力对卸载刚度退化的影响。 展开更多
关键词 钢筋混凝土 框架结构 梁柱节点 变轴力 轴力加载制度
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新型波纹钢管型钢混凝土柱-钢梁节点抗震性能研究
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作者 方勇 李名轩 +2 位作者 王玉银 刁鸿鹏 李豪 《东南大学学报(自然科学版)》 北大核心 2026年第1期52-60,共9页
针对波纹钢管型钢混凝土柱与钢梁的连接问题,研发了一种新型节点。通过2个缩尺模型试验,分析了该新型节点的破坏模式和滞回曲线特点;建立并验证了相应的有限元分析模型,明晰了节点区圆弧板厚度、内环板开洞尺寸、内环板厚度对其破坏模... 针对波纹钢管型钢混凝土柱与钢梁的连接问题,研发了一种新型节点。通过2个缩尺模型试验,分析了该新型节点的破坏模式和滞回曲线特点;建立并验证了相应的有限元分析模型,明晰了节点区圆弧板厚度、内环板开洞尺寸、内环板厚度对其破坏模式以及抗剪承载力的影响规律;基于理论分析与有限元分析结果,提出了该新型节点的抗剪承载力计算方法。研究结果表明:所提新型节点传力明确,受力可靠,具有较好的抗震性能;为防止节点区焊缝局部撕裂、钢材发生局部屈曲,外环板应与钢梁翼缘同厚,圆弧板的径厚比不超过100;节点区内环板开洞半径应小于截面半径的40%;新型节点抗剪承载力可参考钢管约束型钢混凝土的相关计算方法。 展开更多
关键词 钢管混凝土 波纹钢管型钢混凝土 节点 抗震性能 有限元分析 抗剪承载力
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钢板混凝土墙-钢筋混凝土楼板连接节点的抗剪承载力计算方法研究
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作者 于跃 隋春光 +1 位作者 雷永旺 郭全全 《建筑结构》 北大核心 2026年第5期89-99,共11页
钢板混凝土(SC)结构作为一种兼具优良工作性能和工业化施工性能的新型组合结构,具有广泛的应用前景。而SC墙与钢筋混凝土(RC)楼板的连接节点既是结构传力的关键环节,往往又是其受力的薄弱区域。该节点抗剪工作机理尚不明确,各国设计规... 钢板混凝土(SC)结构作为一种兼具优良工作性能和工业化施工性能的新型组合结构,具有广泛的应用前景。而SC墙与钢筋混凝土(RC)楼板的连接节点既是结构传力的关键环节,往往又是其受力的薄弱区域。该节点抗剪工作机理尚不明确,各国设计规范对此节点的设计规定差异极大。系统分析了中美日规范中墙-板节点的构造方式和设计方法,深入剖析了节点的抗剪工作机理,提出了四种节点抗剪构造方案的选型原则和抗剪承载力计算方法。研究表明:中国规范GB/T 51340—2018建议的钢筋连接器与抗剪键构造既能满足节点模块化施工要求,又可满足全强度设计准则;抗剪机制上,fib规范Model Code 2010全面考虑了五种抗剪机制贡献,由于SC墙-RC楼板节点的结合面属于弱化学胶结界面,其抗剪承载力计算应忽略化学胶结力和机械咬合作用,而由界面摩擦力、纵筋销栓作用和抗剪键剪力三部分组成;基于抗剪机制分析,提出该节点的抗剪承载力计算方法,与已有试验结果对比证明,该计算方法具有较好的适用性。 展开更多
关键词 钢板混凝土墙 钢筋混凝土楼板 连接节点 抗剪键 抗剪承载力
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圆钢管混凝土柱-预应力钢筋混凝土梁混合连接节点抗震性能研究
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作者 李贝贝 刘奥 +2 位作者 王静峰 曹瑞雪 贡宏要 《建筑钢结构进展》 北大核心 2026年第1期1-9,共9页
为研究圆钢管混凝土(round concrete-filled steel tubular,RCFST)柱-预应力钢筋混凝土(prestressed reinforced concrete,PRC)梁混合连接节点的抗震性能,文中依托某高铁站候车层的RCFST柱-PRC梁大跨度结构,设计了两个缩尺比例为1∶5的... 为研究圆钢管混凝土(round concrete-filled steel tubular,RCFST)柱-预应力钢筋混凝土(prestressed reinforced concrete,PRC)梁混合连接节点的抗震性能,文中依托某高铁站候车层的RCFST柱-PRC梁大跨度结构,设计了两个缩尺比例为1∶5的混合连接节点试件,并对其开展了低周往复加载试验研究,分析了有无工字钢牛腿试件的破坏模式、延性、刚度退化和滞回耗能能力。采用ABAQUS有限元软件建立了精细化的有限元分析模型,经试验结果验证模型的有效性后,分析了轴压比、预应力水平、梁端混凝土截面含钢率及混凝土强度对混合连接节点受力性能的影响规律。结果表明:混合连接节点的破坏模式主要为与环梁交界处的主梁出现明显的塑性铰。相比无工字钢牛腿试件,有工字钢牛腿试件的滞回曲线更为饱满,且峰值荷载和延性分别提高了16.76%、5.6%,表明设置工字钢牛腿可以有效提高混合连接节点的抗震能力。轴压比、预应力水平、梁端混凝土截面含钢率和混凝土强度对混合连接节点的初始刚度无显著影响;节点承载力与轴压比呈负相关,与预应力水平、梁端混凝土截面含钢率和混凝土强度呈正相关,其中合适的预应力水平可有效提升节点的承载能力,因此,基于文中RCFST柱-PRC梁混合节点的构造形式,建议预应力水平在设计时取0.7。 展开更多
关键词 圆钢管混凝土柱 预应力钢筋混凝土梁 混合连接节点 抗震性能 低周往复加载试验 有限元分析 工字钢牛腿
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地铁盾构UHPC-RC管片接头抗弯性能足尺试验与分析
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作者 雷正辉 李永骝 +5 位作者 刘金燕 吕朋 闫虹伏 滕克勤 吴香国 陆灵威 《隧道建设(中英文)》 北大核心 2026年第2期287-300,共14页
为研究超高性能混凝土与普通混凝土组合管片在地铁联络通道开洞复杂受力条件下接头性能的差异性,对管片接头的力学行为进行系统分析。开展UHPC-RC组合管片纵缝接头足尺受力试验,研究UHPC-RC管片接头在压弯复合作用下的受力性能及其抗弯... 为研究超高性能混凝土与普通混凝土组合管片在地铁联络通道开洞复杂受力条件下接头性能的差异性,对管片接头的力学行为进行系统分析。开展UHPC-RC组合管片纵缝接头足尺受力试验,研究UHPC-RC管片接头在压弯复合作用下的受力性能及其抗弯刚度演化规律;同时开展有限元参数分析,对接头受力响应与破坏形态进行对比研究,建立拼接接头的抗弯刚度验算表达式。结果表明:1)UHPC-RC接头极限状态呈现受压破坏模式,损伤与裂缝主要集中于RC节段受压区,RC管片受压区呈现压溃并伴随斜向裂缝扩展;2)UHPC管片节段受压区仅出现细微裂缝,整体保持良好完整性;3)轴心受压荷载对接头抗弯刚度与极限承载力具有显著提升作用,但增幅随轴力提高逐渐减弱,表现出明确的“强化—饱和”特征,且UHPC节段的饱和阈值水平更高;4)混凝土强度等级由C50提升至UHC120时,接头抗弯刚度提高约15.5%。基于试验与数值模拟结果提出的UHPC-RC管片接头抗弯刚度简化计算方法可较好地预测接头刚度演化过程,为UHPC-RC组合管片纵缝接头设计与性能评估提供依据。 展开更多
关键词 盾构隧道 UHPC-RC管片接头 抗弯足尺试验 数值模拟 抗弯性能 抗弯刚度理论公式
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纤维混凝土密拼双向叠合楼板受弯性能研究
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作者 王林虎 孙传智 +2 位作者 邓继兵 程进生 仝雷 《四川轻化工大学学报(自然科学版)》 2026年第1期87-97,共11页
针对当前超高层、大跨度建筑对叠合板的需求,本文提出一种以玄武岩纤维混凝土为预制底板的密拼双向叠合板结构,通过预制底板密拼与后浇混凝土实现连接。通过3块试件的静载试验和理论分析,研究纤维混凝土对底板受力性能的影响,对比单向... 针对当前超高层、大跨度建筑对叠合板的需求,本文提出一种以玄武岩纤维混凝土为预制底板的密拼双向叠合板结构,通过预制底板密拼与后浇混凝土实现连接。通过3块试件的静载试验和理论分析,研究纤维混凝土对底板受力性能的影响,对比单向叠合板与密拼双向叠合板的破坏形态、荷载-应变关系、承载力及挠度变化。结果表明:施工阶段纤维混凝土显著提高楼承板受弯性能;使用阶段板底纤维有效限制裂缝发展,密拼双向叠合板开裂弯矩高达44 kN·m,较无纤维板大幅提升;其正截面极限承载力达264 kN·m,抗弯承载能力优于单向叠合板。钢筋桁架与后浇混凝土粘结良好,密拼接缝处钢筋有效抑制拼缝发展。提出的极限承载力计算模型,计算结果与实验数据高度吻合,可为工程设计提供依据。 展开更多
关键词 密拼双向叠合楼板 玄武岩纤维混凝土 钢筋桁架 短期刚度 ABAQUS有限元分析
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CFRP加固受损中空夹层钢管混凝土T型节点抗冲击性能数值分析
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作者 林铭轩 刘菲菲 《中国建材科技》 2026年第1期32-38,共7页
本文基于ABAQUS建立中空夹层钢管混凝土T型节点(CFDST-T)有限元模型,通过首次冲击获得受损构件,并采用CFRP包裹进行二次冲击分析,探讨其抗冲击性能提升机制。结果表明,CFRP可显著增强受损节点的抗冲击能力,且初始损伤越重,加固效果越显... 本文基于ABAQUS建立中空夹层钢管混凝土T型节点(CFDST-T)有限元模型,通过首次冲击获得受损构件,并采用CFRP包裹进行二次冲击分析,探讨其抗冲击性能提升机制。结果表明,CFRP可显著增强受损节点的抗冲击能力,且初始损伤越重,加固效果越显著。纵向(L向)包裹效果最佳,H向次之,V向较弱。随包裹厚度增加,H、V向强化作用趋于饱和,而L向表现更好。能量分析表明,CFRP主要通过抑制位移提升整体刚度,对峰值冲击力及能量吸收改善有限。最后建立综合抗冲击性能指标(ICPI),实现加固效果的量化评价。 展开更多
关键词 中空夹层钢管混凝土 CFRP加固 T型节点 冲击荷载
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钢筋混凝土叠合板研究现状分析
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作者 刘挺 卢进 +4 位作者 郭庆军 韩岗 彭泽靖 和超 张兆祥 《工程建设与设计》 2026年第3期3-6,共4页
综述了钢筋桁架混凝土叠合板、带肋叠合板、分离式拼缝构造叠合板及底部不出筋构造叠合板的研究进展与应用现状。钢筋桁架混凝土叠合板通过预制层与现浇层的有效结合,显著增强了叠合板的整体刚度和承载能力,提高了其抗剪承载力和黏结强... 综述了钢筋桁架混凝土叠合板、带肋叠合板、分离式拼缝构造叠合板及底部不出筋构造叠合板的研究进展与应用现状。钢筋桁架混凝土叠合板通过预制层与现浇层的有效结合,显著增强了叠合板的整体刚度和承载能力,提高了其抗剪承载力和黏结强度,并在学术界及工程界得到了广泛验证。带肋叠合板则通过肋形结构强化预制层与现浇层之间的黏结性能,有效解决了钢筋用量增加等问题。分离式拼缝构造叠合板通过设置附加钢筋实现剪力和弯矩的有效传递。底部不出筋构造叠合板通过附加的连接件实现板间的连接,简化了制作工艺,降低了施工成本,提高了施工便捷性,为装配式建筑提供了一种新的选择。综合分析认为,这4类叠合板在力学性能、施工效率及经济性方面既有显著优势又存在诸多尚未解决的问题。 展开更多
关键词 装配式建筑 钢筋桁架混凝土叠合板 带肋叠合板 分离式拼缝构造 底部不出筋构造
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基于深度学习和图像识别的RC框架节点表面损伤检测评估研究
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作者 杨铄 冷予冰 许清风 《建筑科学与工程学报》 北大核心 2026年第1期41-55,共15页
为提高钢筋混凝土(RC)结构表面损伤检测效率,实现RC构件表面损伤定位、精细化量测和评估的一体化,针对RC框架结构表面损伤检测场景,提出了基于深度学习和图像识别的损伤检测评估方法。基于掩码区域卷积神经网络(Mask R-CNN)模型和图像... 为提高钢筋混凝土(RC)结构表面损伤检测效率,实现RC构件表面损伤定位、精细化量测和评估的一体化,针对RC框架结构表面损伤检测场景,提出了基于深度学习和图像识别的损伤检测评估方法。基于掩码区域卷积神经网络(Mask R-CNN)模型和图像处理建立RC框架构件表面损伤检测模型;采用以往RC构件试验中的损伤和破坏照片,经裁剪和数据增强后建立包含裂缝、剥落、压碎、露筋、钢筋屈曲和钢筋断裂6种类型损伤的RC构件表面损伤数据集用以训练模型;基于三维重建所生成的构件正立面全景图以及损伤检测模型,编写可同步进行RC构件表面损伤定位和损伤几何参数分析的检测程序,并集成RC构件损伤等级划分和破坏形态判断标准,用以量化评估和判断RC构件损伤程度和破坏形态;设计制作了两个足尺RC梁柱节点试件并进行了试验,使用智能手机和小型无人机对破坏的节点试件梁进行拍照,检测构件表面损伤,以验证上述损伤检测方法的有效性。结果表明:基于智能手机拍照的检测结果好于基于无人机数字变焦拍照的检测结果;因训练样本较少,钢筋屈曲和钢筋断裂的检测精度较差;当镜头距构件表面200 mm左右时,裂缝宽度测量精度可达0.1 mm,若裂缝实测宽度大于0.5 mm,基于上述方法的裂缝宽度检测精度较高;使用检测程序分析得到的构件损伤等级(程度)和破坏形态与观测结果一致;基于深度学习和图像识别的损伤检测方法可为受损或震后RC框架构件表面损伤定量化快速检测和评估提供支撑。 展开更多
关键词 钢筋混凝土框架节点 深度学习 掩码区域卷积神经网络 表面损伤检测
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装配式混凝土结构梁柱节点钢筋深化设计研究
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作者 罗强 李园园 麻世林 《工程建设与设计》 2026年第2期14-16,共3页
针对装配式混凝土梁柱节点钢筋空间碰撞率高、施工协调性差的问题,通过融合BIM参数化建模与三维协同避让算法,提出基于多控制点的梁柱钢筋数字化设计方法。结果表明,相较于人工配筋,该方法使柱节点碰撞点和梁节点碰撞点分别减少了83%和7... 针对装配式混凝土梁柱节点钢筋空间碰撞率高、施工协调性差的问题,通过融合BIM参数化建模与三维协同避让算法,提出基于多控制点的梁柱钢筋数字化设计方法。结果表明,相较于人工配筋,该方法使柱节点碰撞点和梁节点碰撞点分别减少了83%和73%,配筋效率提升60%~90%,单节点配筋平均耗时由12.7~29.6 min缩短至1.6~6.3 min。 展开更多
关键词 混凝土 钢筋 装配式建筑 梁柱节点 深化设计
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纤维混凝土在公路桥梁伸缩缝中的力学性能试验探究
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作者 李晓峰 《中国高新科技》 2026年第2期98-100,共3页
为探究纤维混凝土在公路桥梁伸缩缝中的力学性能,选用P·O42.5普通硅酸盐水泥、石灰岩碎石、河砂等材料,采用聚丙烯纤维与钢纤维,设计了5种不同的配合比。通过强制式搅拌机制备纤维混凝土试件,并模拟公路桥梁伸缩缝实际工况养护,开... 为探究纤维混凝土在公路桥梁伸缩缝中的力学性能,选用P·O42.5普通硅酸盐水泥、石灰岩碎石、河砂等材料,采用聚丙烯纤维与钢纤维,设计了5种不同的配合比。通过强制式搅拌机制备纤维混凝土试件,并模拟公路桥梁伸缩缝实际工况养护,开展抗疲劳性能、冲击韧性试验。结果表明,双纤维掺加(聚丙烯纤维0.9kg/m^(3)、钢纤维40kg/m^(3),即H4配合比)时,两种纤维形成协同效应,显著提升了纤维混凝土的抗疲劳性能与冲击韧性,为什川黄河大桥桥梁伸缩缝的纤维混凝土应用提供了量化指导。 展开更多
关键词 纤维混凝土 公路桥梁伸缩缝 力学性能 纤维掺量
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Influence of the column-to-beam flexural strength ratio on the failure mode of beam-column connections in RC frames 被引量:2
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作者 Gong Maosheng Zuo Zhanxuan +2 位作者 Sun Jing He Riteng Zhao Yinan 《Earthquake Engineering and Engineering Vibration》 SCIE EI CSCD 2021年第2期441-452,共12页
The column-to-beam flexural strength ratio(CBFSR)has been used in many seismic codes to achieve the strong column-weak beam(SCWB)failure mode in reinforced concrete(RC)frames,in which plastic hinges appear earlier in ... The column-to-beam flexural strength ratio(CBFSR)has been used in many seismic codes to achieve the strong column-weak beam(SCWB)failure mode in reinforced concrete(RC)frames,in which plastic hinges appear earlier in beams than in columns.However,seismic investigations show that the required limit of CBFSR in seismic codes usually cannot achieve the SCWB failure mode under strong earthquakes.This study investigates the failure modes of RC frames with different CBFSRs.Nine typical three-story RC frame models with different CBFSRs are designed in accordance with Chinese seismic codes.The seismic responses and failure modes of the frames are investigated through time-history analyses using 100 ground motion records.The results show that the required limit of the CBFSR that guarantees the SCWB failure mode depends on the beam-column connection type and the seismic intensity,and different types of beam-column connections exhibit different failure modes even though they are designed with the same CBFSR.Recommended CBFSRs are proposed for achieving the designed SCWB failure mode for different types of connections in RC frames under different seismic intensities.These results may provide some reference for further revisions of the SCWB design criterion in Chinese seismic codes. 展开更多
关键词 strong column-weak beam column-to-beam flexural strength ratio reinforced concrete frame structure beam-column connection failure mode
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Influence of erosion voids and traffic loads on buried large-diameter reinforced concrete pipes
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作者 Ming Xu Dawei Shen 《Underground Space》 SCIE EI CSCD 2024年第4期120-131,共12页
Geotechnical centrifuge tests were conducted to examine the influence of invert voids and surface traffic loads on 1400 mm diameter reinforced concrete pipes buried with a shallow soil cover depth of 700 mm.Void forma... Geotechnical centrifuge tests were conducted to examine the influence of invert voids and surface traffic loads on 1400 mm diameter reinforced concrete pipes buried with a shallow soil cover depth of 700 mm.Void formation beneath the pipe was simulated during centrifuge testing.The test results revealed that before void formation,the surface load directly above the middle of the pipe caused a significant increase in not only the circumferential bending moments but also the longitudinal bending moments,the latter of which was considerable and could not be ignored.Void formation beneath the middle of the pipe led to a reduction in both the circumferential bending moments and longitudinal bending moments at all measuring positions,i.e.,crown,springline,and invert.The most significant reduction occurred at the invert,and there was even a reversal in the sign of the invert longitudinal bending moment.A comparison was made between centrifuge tests with erosion voids and surface loads at different horizontal positions,which had a marked influence even when the positions differed by half a pipe length.Joint rotation played an important role in relieving large bending moments of pipe barrels in a jointed pipeline when the void and surface load were located at the joint. 展开更多
关键词 Centrifuge test Erosion void reinforced concrete pipe Traffic loading Longitudinal bending moment joint rotation
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Study on Strengthening of RC Beam Column Joint Using Hybrid FRP Composites
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作者 A. Arul Gnanapragasam G. Chitra S. Robert Ravi 《Circuits and Systems》 2016年第10期2846-2856,共11页
Beam-Column joints are critical zones in reinforced concrete structures which are most vulnerable to earthquake forces. Hence strengthening beam-column joint is vital to save the structure and its inhabitants in case ... Beam-Column joints are critical zones in reinforced concrete structures which are most vulnerable to earthquake forces. Hence strengthening beam-column joint is vital to save the structure and its inhabitants in case of seismic forces. Numerous retrofitting works using fibre reinforced polymer (FRP) composites are being undertaken worldwide. This work aims to investigate the effectiveness of strengthening beam-column joints using natural and artificial fibres. In this study, basalt (natural fibres) as monolithic composite (BFRP) and as hybrid composite along with glass (artificial fibres) were used for strengthening of beam-column joints. Totally six specimens were prepared and tested under monotonic loading. Specimen details used were: two control specimen, two specimens for monolithic wrapping and remaining two specimens for hybrid wrapping. The test results were compared with control and rehabilitated specimens. The performance of the treated joints was studied using the following parameters: initial and ultimate cracking loads, energy absorption, deflection ductility and stiffness at ultimate. From the test results, it was found that the hybrid combination of Basalt and Glass FRPs were found to be more effective in the treatment of beam-column joints. The strong column weak beam concept was achieved by failure in beam portion which helped in preventing the catastrophic failure of the entire structure. 展开更多
关键词 FRP reinforced concrete beam-column joints Glass Fibre reinforced Polymer Basalt Fibre reinforced Polymer
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GFRP筋混凝土梁柱节点抗震性能研究 被引量:1
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作者 孙丽 郑赫展 +2 位作者 王超 沙鑫 杨泽宇 《沈阳建筑大学学报(自然科学版)》 北大核心 2025年第5期656-666,共11页
为解决因钢筋锈蚀导致的结构性能退化问题,可将耐腐蚀的GFRP筋替代钢筋应用于滨海与海岛工程中。梁柱节点作为框架结构的关键部位,其抗震性能直接决定了框架结构整体的抗震表现,因此有必要对GFRP筋混凝土梁柱节点在不同配筋率下的抗震... 为解决因钢筋锈蚀导致的结构性能退化问题,可将耐腐蚀的GFRP筋替代钢筋应用于滨海与海岛工程中。梁柱节点作为框架结构的关键部位,其抗震性能直接决定了框架结构整体的抗震表现,因此有必要对GFRP筋混凝土梁柱节点在不同配筋率下的抗震性能展开研究。笔者对4个梁柱节点进行了拟静力试验,其中包括梁内纵筋配筋率分别为0.86%、1.17%和1.52%的GFRP筋混凝土梁柱节点和配筋率为0.86%的钢筋混凝土梁柱节点,比较了GFRP筋混凝土梁柱节点与钢筋混凝土梁柱节点的变形和破坏过程,分析了配筋率和配筋种类对梁柱节点承载力、耗能能力、刚度和残余变形的影响规律。研究表明,随着配筋率的提高,GFRP筋混凝土梁柱节点的承载能力、耗能能力和残余变形逐渐提升,刚度退化速率逐渐降低;GFRP筋混凝土梁柱节点在承载力增长速率与耗能能力等方面弱于钢筋混凝土梁柱节点,但仍能满足抗震需求。GFRP筋可以有效替代钢筋应用于海洋工程中,提高配筋率可以提升GFRP筋混凝土梁柱节点的抗震性能。 展开更多
关键词 GFRP筋混凝土 梁柱节点 拟静力试验 配筋率 抗震性能
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