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Mechanical Characterization of Rhecktophyllum Camerunense (RC) Fiber Reinforced Concrete
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作者 Jean Calvin Bidoung Nicolas Stéphane Nyobe +1 位作者 Mey Mahamat Imar Lucien Meva’a 《Journal of Materials Science and Chemical Engineering》 2023年第8期20-32,共22页
This work presents the development and mechanical characterization of a concrete reinforced with plant fiber extracted from Rhecktophyllum Camerunense (RC), a plant found in the regions of Center and South Cameroon. A... This work presents the development and mechanical characterization of a concrete reinforced with plant fiber extracted from Rhecktophyllum Camerunense (RC), a plant found in the regions of Center and South Cameroon. A comparative study between ordinary concrete and concrete reinforced with RC fiber at different percentages (0.1%, 0.2% and 0.3%) was carried out. The mechanical characterization of the material consisted in studying the flexural, compressive and splitting tensile strength by using cylindrical specimens of dimensions 160 × 320 in accordance with standards EN 12390-3 and EN 12390-6. The study of the mechanical properties was completed by the three-point bending test using prismatic test specimens of dimension 40 × 40 × 160 made according to the EN 196 standard. It emerges from this work that the addition of RC fiber improves the mechanical properties of concrete up to 0.2% with a peak at 0.1% of fiber corresponding to respective increases of 9%, 16% and 6% of the values of mechanical resistance to compression, flexion and tension after 28 days. From 0.3% of fiber, the values of the mechanical characteristics of the composite drop to values lower than those of ordinary concrete. The density reduction rate at 28 days is about 10% compared to the mass of ordinary concrete. These results allow us to conclude that the RC fiber could be valorized for the production of lightweight concrete. 展开更多
关键词 reinforced concrete rc Fiber Mechanical Properties Lightweight concrete
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Mechanical Characterization of Rhecktophyllum Camerunense (RC) Fiber Reinforced Concrete
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作者 Jean Calvin Bidoung Nicolas Stéphane Nyobe +1 位作者 Mey Mahamat Imar Lucien Meva’a 《Journal of Modern Physics》 2023年第8期20-32,共10页
This work presents the development and mechanical characterization of a concrete reinforced with plant fiber extracted from Rhecktophyllum Camerunense (RC), a plant found in the regions of Center and South Cameroon. A... This work presents the development and mechanical characterization of a concrete reinforced with plant fiber extracted from Rhecktophyllum Camerunense (RC), a plant found in the regions of Center and South Cameroon. A comparative study between ordinary concrete and concrete reinforced with RC fiber at different percentages (0.1%, 0.2% and 0.3%) was carried out. The mechanical characterization of the material consisted in studying the flexural, compressive and splitting tensile strength by using cylindrical specimens of dimensions 160 × 320 in accordance with standards EN 12390-3 and EN 12390-6. The study of the mechanical properties was completed by the three-point bending test using prismatic test specimens of dimension 40 × 40 × 160 made according to the EN 196 standard. It emerges from this work that the addition of RC fiber improves the mechanical properties of concrete up to 0.2% with a peak at 0.1% of fiber corresponding to respective increases of 9%, 16% and 6% of the values of mechanical resistance to compression, flexion and tension after 28 days. From 0.3% of fiber, the values of the mechanical characteristics of the composite drop to values lower than those of ordinary concrete. The density reduction rate at 28 days is about 10% compared to the mass of ordinary concrete. These results allow us to conclude that the RC fiber could be valorized for the production of lightweight concrete. 展开更多
关键词 reinforced concrete rc Fiber Mechanical Properties Lightweight concrete
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Improved Mechanical Properties of Textile Reinforced Concrete Thin Plate 被引量:5
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作者 尹世平 徐世烺 LI Hedong 《Journal of Wuhan University of Technology(Materials Science)》 SCIE EI CAS 2013年第1期92-98,共7页
Textile reinforced concrete (TRC) is especially suitable for the thin-walled and light-weight structural elements with a high load-bearing capacity. For this thin element, the concrete cover thickness is an importan... Textile reinforced concrete (TRC) is especially suitable for the thin-walled and light-weight structural elements with a high load-bearing capacity. For this thin element, the concrete cover thickness is an important factor in affecting the mechanical and anti-crack performance. Therefore, the influences of the surface treatment of the textile and mixing polypropylene fiber into the concrete on the properties of the components with different cover thickness were experimentally studied with four-point bending tests. The experimental results show that for the components with the same cover thickness, sticking sand on epoxy resin-impregnated textile and adding short fiber into the concrete are helpful to improve their mechanical performance. The 2-3 mm cover thickness is enough to meet the anchorage requirements of the reinforcement fiber and the component has good crack pattern and mechanical behavior at this condition. Comparison between the calculated and the experimental Values of flexural capacity reveals satisfactory agreement. Finally, based on the calculation model of the crack spacing of reinforced concrete structures, the crack extension of this thin-wall component was qualitatively analyzed and the same results with the experimental were obtained. 展开更多
关键词 textile reinforced concrete thin plate cover thickness mechanical performance cracking mechanism
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Finite Element Analysis of Reinforced Concrete Plate Impacted by Block
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作者 LUO Xiaoyang Pascal PERROTIN YAN Quansheng 《Transactions of Tianjin University》 EI CAS 2006年第B09期117-121,共5页
A new concept of structurally dissipating rock-shed (SDR) was developed by the lab of Tonello IC and LOCIE-ESIGEC (France). To decide the dimension of the plate used in SDR, an ANSYS model which could simulate the imp... A new concept of structurally dissipating rock-shed (SDR) was developed by the lab of Tonello IC and LOCIE-ESIGEC (France). To decide the dimension of the plate used in SDR, an ANSYS model which could simulate the impact of rock in the centre of the plate was established by Fabien Delhomme. By using this model, some finite element analyses are carried out in the present paper. Firstly, a plate impacted by a block is numerically simulated, the numerical results obtained from different mesh sizes are compared and the accuracy of the finite element model is verified. Then, the dynamic response of the plate impacted at the boundary and in the medium part is computed. By analyzing the stress in rebar, the most dangerous region of impact of plate was found. For a rectangular plate, the most dangerous region is at the corner of the plate when a block drops in. Finally, the whole deformation process of the plate under dropping block was simulated and a simplified definition (effect zone) to describe the deformation process in different positions of plate was given. From this study, it is found that the impact only affects heavily within the effect zone. 展开更多
关键词 rock-sheds reinforced concrete plate impact ANSYS post-processing
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纤维织物增强高延性混凝土加固RC短柱抗剪性能试验研究 被引量:2
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作者 邓明科 雷恒 +2 位作者 张雨顺 郭莉英 张伟 《湖南大学学报(自然科学版)》 EI CAS CSCD 北大核心 2024年第1期79-89,共11页
为研究纤维织物增强高延性混凝土(TR-HDC)加固钢筋混凝土短柱的抗剪性能,设计了6根钢筋混凝土柱,包括2个对比柱和4个TR-HDC加固柱.通过低周反复荷载试验,对比分析剪跨比、纤维织物层数对试件破坏形态、变形、承载力和耗能能力的影响.结... 为研究纤维织物增强高延性混凝土(TR-HDC)加固钢筋混凝土短柱的抗剪性能,设计了6根钢筋混凝土柱,包括2个对比柱和4个TR-HDC加固柱.通过低周反复荷载试验,对比分析剪跨比、纤维织物层数对试件破坏形态、变形、承载力和耗能能力的影响.结果表明:采用TR-HDC加固钢筋混凝土短柱,可显著提高其抗剪承载力;TR-HDC与原混凝土柱协同工作性能良好,加固后的混凝土柱的变形、承载力和耗能能力明显提高;增加纤维织物的层数对钢筋混凝土短柱的抗剪承载力提高幅度较小,但可大幅增强柱的耗能和变形能力;剪跨比较大时,更有利于发挥TR-HDC加固材料的力学性能.基于桁架-拱模型,提出TR-HDC加固钢筋混凝土短柱的抗剪承载力计算方法,计算结果较准确. 展开更多
关键词 低周反复荷载 纤维织物增强高延性混凝土 加固 rc短柱 抗剪承载力
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附设黏滞阻尼器的RC框架结构抗震韧性评估
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作者 张皓 阮鹏飞 +1 位作者 李宏男 侯世伟 《振动与冲击》 EI CSCD 北大核心 2024年第14期172-179,210,共9页
为研究黏滞阻尼器对钢筋混凝土(reinforced concrete,RC)框架结构抗震韧性影响,基于增量动力时程分析方法,对附设黏滞阻尼器的RC框架结构开展抗震韧性能力评估。结合FEMA P-58以及我国抗震韧性评价标准,将主要受损构件的修复费用、修复... 为研究黏滞阻尼器对钢筋混凝土(reinforced concrete,RC)框架结构抗震韧性影响,基于增量动力时程分析方法,对附设黏滞阻尼器的RC框架结构开展抗震韧性能力评估。结合FEMA P-58以及我国抗震韧性评价标准,将主要受损构件的修复费用、修复时间曲线以及易损性信息按实际情况进行相应修正,并对无控结构和有控结构的修复费用、修复时间和人员伤亡等主要抗震韧性指标进行对比分析,明确了黏滞阻尼器对RC框架结构抗震韧性的影响。研究表明,在RC框架结构中适当设置黏滞阻尼器不仅能够减小结构地震响应、降低结构破坏概率,还能有效提升结构抗震韧性。 展开更多
关键词 钢筋混凝土(rc)框架结构 黏滞阻尼器 增量动力时程分析 抗震韧性
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功能可恢复RCS混合框架结构研究进展
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作者 刘阳 钟沛杰 +3 位作者 门进杰 陈云 刘小娟 黄玉佳 《华侨大学学报(自然科学版)》 CAS 2024年第2期121-135,共15页
钢筋混凝土柱-钢梁(RCS)混合框架结构以其结合了混凝土优异的抗压性能及钢材优异的抗弯性能而受到广泛关注,而可恢复功能结构以其震后快速恢复使用功能的能力,也成为地震工程界研究的新热点。功能可恢复RCS混合框架结构可以在弯矩较大... 钢筋混凝土柱-钢梁(RCS)混合框架结构以其结合了混凝土优异的抗压性能及钢材优异的抗弯性能而受到广泛关注,而可恢复功能结构以其震后快速恢复使用功能的能力,也成为地震工程界研究的新热点。功能可恢复RCS混合框架结构可以在弯矩较大的梁端和柱脚部位设置可更换构件,实现结构的功能可恢复能力。文中简述了近年来功能可恢复RCS混合框架结构研究进展,重点关注各类型功能可恢复钢梁、功能可恢复摇摆柱脚的构造研究,介绍了功能可恢复RCS混合框架结构性能分析研究进展。最后,对功能可恢复RCS混合框架结构仍需深入研究的问题进行了展望。 展开更多
关键词 钢筋混凝土柱-钢梁(rcS)混合框架结构 可恢复功能 防震结构 钢板阻尼器 柱脚 梁柱节点
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CFRP板纵向加固RC柱在水平低周循环荷载下的力学性能研究与应用
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作者 强旭红 陈岩松 +1 位作者 姜旭 谭成 《湖南大学学报(自然科学版)》 EI CAS CSCD 北大核心 2024年第7期148-163,共16页
开发了一种纵向粘贴CFRP(Carbon Fiber Reinforced Polymer,碳纤维增强复合材料)板的RC(Reinforced Concrete,钢筋混凝土)柱抗弯加固系统,该加固系统由纵向粘贴在柱表面的预制CFRP板和防止柱底CFRP板脱粘的混凝土加厚层组成.为研究纵向... 开发了一种纵向粘贴CFRP(Carbon Fiber Reinforced Polymer,碳纤维增强复合材料)板的RC(Reinforced Concrete,钢筋混凝土)柱抗弯加固系统,该加固系统由纵向粘贴在柱表面的预制CFRP板和防止柱底CFRP板脱粘的混凝土加厚层组成.为研究纵向粘贴CFRP板对RC柱的抗弯性能影响,设计并开展了5根足尺矩形RC柱的水平低周循环加载试验.研究结果表明:粘贴CFRP板加固能有效延缓柱的开裂;柱的破坏模式得到明显改善;相较于未加固柱子,粘贴1层CFRP板和2层CFRP板加固的RC柱极限承载力分别提高了15.1%和17.4%;加固后柱的抗弯承载力和刚度得到提高,但增加CFRP板的层数对极限强度和刚度没有显著影响,反而会降低柱的延性,相较于仅采用增大柱底截面的方式加固的对照柱,粘贴1层CFRP板和2层CFRP板加固的试验柱的延性系数分别降低16.2%和35.1%;试验过程中,由于柱与基础节点承载力的限制,CFRP的最大应变仅达到极限应变的24%,抗拉强度未得到充分发挥.该加固方法已在某医院加固工程中得到应用,跟踪研究表明,加固后柱子的抗弯承载力有明显提升,加固方法得到工程业界的认可. 展开更多
关键词 钢筋混凝土柱 抗弯加固 水平低周循环加载 碳纤维增强复合材料板 纵向粘贴
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低预应力CFRP板加固RC梁模型试验研究
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作者 常丁 庞立 雷涛 《公路工程》 2024年第3期36-41,共6页
为研究低预应力CFRP加固RC梁的力学性能,设计进行了CFRP加固方法的对比模型梁试验。通过对直接粘贴、机械张拉粘贴锚固成为低应力CFRP板及粘贴加热伸长后回缩成为低预应力CFRP板这3种方法,将同规格的CFRP板粘贴在混凝土试验梁表面,通过... 为研究低预应力CFRP加固RC梁的力学性能,设计进行了CFRP加固方法的对比模型梁试验。通过对直接粘贴、机械张拉粘贴锚固成为低应力CFRP板及粘贴加热伸长后回缩成为低预应力CFRP板这3种方法,将同规格的CFRP板粘贴在混凝土试验梁表面,通过分级加载试验,获得不同施工方法的CFRP板加固后开裂荷载、极限荷载、裂缝发展及荷载-挠度曲线等。试验结果表明:3种施工方法下进行机械张拉低预应力CFRP板加固对原梁抗剪承载力性能提高较大。在正常使用阶段,机械张拉低预应力CFRP板加固梁和加热张拉低预应力CFRP板加固梁出现斜裂缝的荷载等级高于直接粘贴CFRP加固梁出现斜裂缝的荷载等级。机械张拉低预应力CFRP板加固梁和加热张拉低预应力CFRP板加固梁产生的裂缝宽度小于直接粘贴CFRP板加固梁产生的裂缝宽度。相对最明显的是机械张拉低预应力CFRP板,裂缝一直维持在较低水平。粘贴锚固的低预应力CFRP加固方式操作相对简单,可应用于桥梁维修或拆除前临时加固工程等。 展开更多
关键词 低预应力 CFRP板 钢筋混凝土梁 力学性能
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UHPC-RC节段组合梁的抗弯性能分析 被引量:3
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作者 严靖 陈亮 黄润钺 《合肥工业大学学报(自然科学版)》 CAS 北大核心 2024年第2期207-213,共7页
为研究低预应力度条件下,不同节段接缝的超高性能混凝土-钢筋混凝土(ultra-high performance concrete-reinforced concrete,UHPC-RC)组合梁的抗弯性能,文章基于ABAQUS有限元软件,建立UHPC-RC节段组合梁的基准有限元模型,并利用已有的... 为研究低预应力度条件下,不同节段接缝的超高性能混凝土-钢筋混凝土(ultra-high performance concrete-reinforced concrete,UHPC-RC)组合梁的抗弯性能,文章基于ABAQUS有限元软件,建立UHPC-RC节段组合梁的基准有限元模型,并利用已有的试验数据验证该模型的合理性。节段接缝分别为平面干接缝、平面胶接缝、齿键干接缝和齿键胶接缝,在基准有限元模型的基础上,进一步研究节段接缝类型对组合梁抗弯性能的影响。研究发现,在四点受弯加载方式下,接缝的几何特征(平面或齿键)对组合梁的极限荷载和开裂荷载影响较小,环氧树脂胶的使用对组合梁的抗弯性能影响较大。 展开更多
关键词 桥梁工程 超高性能混凝土-钢筋混凝土(UHPC-rc) 节段组合梁 节段接缝 ABAQUS有限元软件 cohesive behavior模型
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BFRP模壳不排水加固RC墩柱恢复力模型
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作者 张景杭 夏樟华 +3 位作者 姜绍飞 洪俊贤 朱朴 范千 《振动与冲击》 EI CSCD 北大核心 2024年第16期192-203,共12页
为研究玄武岩纤维增强聚合物(basalt fiber reinforced polymer, BFRP)模壳不排水加固钢筋混凝土(reinforced concrete, RC)墩柱抗震恢复力模型,在拟静力试验基础上,采用OpenSees有限元软件对模壳加固墩柱进行数值分析,主要研究参数为... 为研究玄武岩纤维增强聚合物(basalt fiber reinforced polymer, BFRP)模壳不排水加固钢筋混凝土(reinforced concrete, RC)墩柱抗震恢复力模型,在拟静力试验基础上,采用OpenSees有限元软件对模壳加固墩柱进行数值分析,主要研究参数为填充层混凝土强度、模壳厚度、加固高度、轴压比。研究表明:填充层混凝土强度等级越高,墩柱抗震性能有所增强,但C40以上的填充层混凝土强度等级墩柱的抗震性能较为接近;模壳加固厚度较大墩柱的抗震性能优于厚度较小墩柱;当模壳加固高度较高时,墩柱的抗震性能较好,当加固高度大于2~3倍原墩柱塑性铰高度时,抗震性能提升效果趋于稳定;轴压比越大,墩柱的刚度退化较快,不利延性发展。后通过数据回归分析,建立了BFRP模壳加固RC墩柱恢复力模型,对比可知,恢复力模型与试验曲线拟合较好,能有效反映加固墩柱的滞回性能,可为此类结构的抗震性能分析提供参考。 展开更多
关键词 玄武岩纤维增强聚合物(BFRP)模壳 不排水加固 钢筋混凝土(rc)墩柱 有限元 参数分析 恢复力模型
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Dynamic responses of reinforced concrete beams under double-endinitiated close-in explosion 被引量:4
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作者 Bin Rao Li Chen +3 位作者 Qin Fang Jian Hong Zhong-xian Liu Heng-bo Xiang 《Defence Technology(防务技术)》 SCIE EI CAS CSCD 2018年第5期527-539,共13页
The reinforced concrete(RC) structural component might suffer a great damage under close-in explosion.Different from distant explosions, blast loads generated by the close-in explosion are non-uniformly distributed on... The reinforced concrete(RC) structural component might suffer a great damage under close-in explosion.Different from distant explosions, blast loads generated by the close-in explosion are non-uniformly distributed on the structural component and may cause both local and structural failure. In this study,an experimental study was conducted to investigate the dynamic responses of RC beams under doubleend-initiated close-in explosions. The experimental results show that the distribution of blast loads generated by the double-end-initiated explosion is much more non-uniform than those generated by single-point detonation, which is caused by the self-Mach-reflection effects. A 3 D finite element model was developed and validated in LS-DYNA by employing the modified K&C model. Intensive numerical calculations were conducted to study the influences of the initiation way, scaled distance and longitudinal reinforcement ratio on the dynamic responses and failure modes of RC beams. Numerical results show that the RC beam suffers greater damage as the cylindrical explosive is detonated at its double ends than the scenario in which the cylindrical explosive is detonated at its central point. RC beams mainly suffer flexural failure and flexure-shear failure under the double-end close-in explosion, and the failure modes of RC beams change from the flexural damage to flexure-shear damage as the scaled distance or the longitudinal reinforcement ratio decreases. The direct shear failure mode is not usually observed in the double-end-initiated explosion, since the intense blast loads is basically concentrated in the midspan of RC beam, which is due to self-Mach-reflection enhancement. 展开更多
关键词 reinforced concrete(rc)beam Close-in explosion Failure mode Dynamic response Double-end-initiation
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截面尺寸和箍筋对RC短柱抗震性能的影响
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作者 王作虎 侯宪淼 +2 位作者 金浏 董振华 邵明哲 《振动与冲击》 EI CSCD 北大核心 2024年第21期71-79,共9页
为了研究钢筋混凝土(reinforced concrete,RC)短柱的抗震性能,通过低周反复破坏试验对其抗震性能的尺寸效应进行了分析。试验主要考虑了截面尺寸和箍筋形式的影响,RC短柱的截面分别设计为200 mm×200 mm、400 mm×400 m和600 mm... 为了研究钢筋混凝土(reinforced concrete,RC)短柱的抗震性能,通过低周反复破坏试验对其抗震性能的尺寸效应进行了分析。试验主要考虑了截面尺寸和箍筋形式的影响,RC短柱的截面分别设计为200 mm×200 mm、400 mm×400 m和600 mm×600 mm,箍筋主要分为普通方形箍筋和井字箍筋。结果表明:配有普通方箍筋的RC短柱均表现出斜拉破坏特征,脆性破坏特征明显,而配有井字箍筋较大尺寸的RC短柱(边长为400 mm和600 mm)为剪压破坏;随着RC短柱截面边长的增加,其名义抗剪强度、延性和平均耗能系数均逐渐减小,并且配有井字箍筋的RC短柱相对于配有普通方形箍筋的短柱,其减小的速率逐渐变小。通过考虑截面尺寸和箍筋的影响作用,提出了修正的RC短柱的抗剪承载计算模型,并建立了考虑尺寸效应的RC短柱恢复力模型,计算结果与试验结果较吻合。 展开更多
关键词 钢筋混凝土(rc)短柱 配箍形式 抗震性能 尺寸效应 恢复力模型
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Experimental study on ductility improvement of reinforced concrete rectangular Columns retrofitted with a new fiber reinforced plastics method 被引量:1
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作者 刘涛 冯伟 +1 位作者 张智梅 欧阳煜 《Journal of Shanghai University(English Edition)》 CAS 2008年第1期7-14,共8页
Reinforced concrete (RC) columns lacking adequately detailed transverse reinforcement do not possess the necessary ductility to dissipate seismic energy during a major earthquake without severe strength degradation.... Reinforced concrete (RC) columns lacking adequately detailed transverse reinforcement do not possess the necessary ductility to dissipate seismic energy during a major earthquake without severe strength degradation. In this paper, a new retrofit method, which utilized fiber-reinforced plastics (FRP) confinement mechanism and anchorage of embedded bars, was developed aiming to retrofit non-ductile large RC rectangular columns to prevent the damage of the plastic hinges. Carbon FRP (CFRP) sheets and glass FRP (GFRP) bars were used in this test, and five scaled RC columns were tested to examine the function of this new method for improving the ductility of columns. Responses of columns were examined before and after being retrofitted. Test results indicate that this new composite method can be very effective to improve the anti-seismic behavior of non-ductile RC columns compared with normal CFRP sheets retrofitted column. 展开更多
关键词 seismic behavior RETROFIT reinforced concrete rc rectangular column DUCTILITY fiber-reinforced plastics (FRP)
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Experimental study on mechanical property of stiffening-ribbed-hollow-pipe cast-in place reinforced concrete girderless floor 被引量:4
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作者 YANG Wei-jun ZHANG Zhen-hao LIU Chen-wei 《Journal of Civil Engineering and Architecture》 2009年第3期59-69,共11页
Stiffening-ribbed-hollow-pipe cast-in place reinforced concrete girderless floor is a new-style hollow girderless floor system. Model experimental researches of simply-supported floor and four-corners bearing floor ha... Stiffening-ribbed-hollow-pipe cast-in place reinforced concrete girderless floor is a new-style hollow girderless floor system. Model experimental researches of simply-supported floor and four-corners bearing floor have been done on this new kind of floor system in this paper. The experiment results show that the floor system has good mechanical property such as high bearing capacity, big rigidity and good tensility. A theoretical method is presented in this paper that the stiffening-ribbed-hollow-pipe girderless floor can be analyzed by being converted equivalently to orthotropic solid slab. It is indicated that the method is correct and reasonable according to the contrast between theoretical calculated results and experimental measured results. The theoretical results coincide with the measured results well. 展开更多
关键词 stiffening ribbed hollow pipe cast-in place reinforced concrete girderless floor experiment analogous orthotropic plate RIGIDITY
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Achievements of Truss Models for Reinforced Concrete Structures 被引量:2
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作者 P. G. Papadopoulos H. Xenidis +3 位作者 P. Lazaridis A. Diamantopoulos P. Lambrou Y. Arethas 《Open Journal of Civil Engineering》 2012年第3期125-131,共7页
Achievements are presented for truss models of RC structures developed in previous years: 1. Two constitutive models, biaxial and triaxial, are based on regular trusses, with bars obeying nonlinear uniaxial σ-ε laws... Achievements are presented for truss models of RC structures developed in previous years: 1. Two constitutive models, biaxial and triaxial, are based on regular trusses, with bars obeying nonlinear uniaxial σ-ε laws of material under simulation;both models have been compared with test results and show a dependence of Poisson ratio on curvature of σ-ε law. 2. A truss finite element has been used in the nonlinear static and dynamic analysis of plane RC frames;it has been compared with test results and describes, in a simple way, the formation of plastic hinges. 3. Thanks to the very simple geometry of a truss, the equilibrium equations can be easily written and the stiffness matrix can be easily updated, both with respect to the deformed truss, within each step of a static incremental loading or within each time step of a dynamic analysis, so that to take into account geometric nonlinearities. So the confinement of a RC column is interpreted as a structural stability effect of concrete. And a significant role of the transverse reinforcement is revealed, that of preventing, by its close spacing and sufficient amount, the buckling of inner longitudinal concrete struts, which would lead to a global instability of the RC column. 4. The proposed truss model is statically indeterminate, so it exhibits some features, which are not met by the “strut-and-tie” model. 展开更多
关键词 reinforced concrete Structure TRUSS Model CONSTITUTIVE Law Material and Geometric NONLINEARITIES concrete Cracking Reinforcement Yield concrete ULTIMATE Compressive Strength Plastic HINGE rc Column Confinement Buckling of Inner concrete Struts Global Instability
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纤维编织网增强混凝土(TRC)加固锈蚀RC柱研究进展
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作者 赵永胜 刘荣浩 张峰 《四川建材》 2024年第6期1-2,共2页
钢筋混凝土柱是混凝土结构中最重要的承重构件及抗侧力构件,尤其是滨海环境的混凝土结构,长期处于氯盐环境中的钢筋混凝土柱很容易出现外部混凝土性能劣化、内部钢筋锈蚀等问题。如不进行加固修复处理,将危及整个结构的安全。纤维网增... 钢筋混凝土柱是混凝土结构中最重要的承重构件及抗侧力构件,尤其是滨海环境的混凝土结构,长期处于氯盐环境中的钢筋混凝土柱很容易出现外部混凝土性能劣化、内部钢筋锈蚀等问题。如不进行加固修复处理,将危及整个结构的安全。纤维网增强混凝土(TRC)作为一种新型纤维增强复合材料,应用于锈蚀钢筋混凝土柱的加固,不仅能够提高锈蚀钢筋混凝土柱的力学性能,而且能够有效阻止氯离子对构件的进一步侵蚀。对现阶段TRC加固锈蚀钢筋混凝土柱研究现状进行梳理,介绍了TRC加固锈蚀钢筋混凝土柱的受压性能和低周反复加载下的抗震性能,并提出了后续研究亟待解决的问题。 展开更多
关键词 纤维网增强混凝土(Trc) 锈蚀rc 受压性能 抗震性能
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Progressive collapse resisting capacity of reinforced concrete load bearing wall structures 被引量:1
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作者 Alireza Rahai Alireza Shahin Farzad Hatami 《Journal of Central South University》 SCIE EI CAS CSCD 2015年第7期2730-2738,共9页
Reinforced concrete(RC) load bearing wall is widely used in high-rise and mid-rise buildings. Due to the number of walls in plan and reduction in lateral force portion, this system is not only stronger against earthqu... Reinforced concrete(RC) load bearing wall is widely used in high-rise and mid-rise buildings. Due to the number of walls in plan and reduction in lateral force portion, this system is not only stronger against earthquakes, but also more economical. The effect of progressive collapse caused by removal of load bearing elements, in various positions in plan and stories of the RC load bearing wall system was evaluated by nonlinear dynamic and static analyses. For this purpose, three-dimensional model of 10-story structure was selected. The analysis results indicated stability, strength and stiffness of the RC load-bearing wall system against progressive collapse. It was observed that the most critical condition for removal of load bearing walls was the instantaneous removal of the surrounding walls located at the corners of the building where the sections of the load bearing elements were changed. In this case, the maximum vertical displacement was limited to 6.3 mm and the structure failed after applying the load of 10 times the axial load bored by removed elements. Comparison between the results of the nonlinear dynamic and static analyses demonstrated that the "load factor" parameter was a reasonable criterion to evaluate the progressive collapse potential of the structure. 展开更多
关键词 reinforced concreterc load bearing wall structure progressive collapse fiber sections nonlinear analysis load factor method
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RCS刚接节点组合加固有限元模拟分析
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作者 杨健铿 吴加杰 《广东建材》 2024年第7期78-81,共4页
为了研究经过预埋式外包钢板-增大截面加固后柱贯通型RCS节点的承载能力和受力机理,结合实际工程,通过有限元软件ABAQUS对钢箍板-增大截面加固体系进行模拟计算,分析了钢箍板-增大截面加固体系核心区在作为刚接节点与铰接节点两种工况... 为了研究经过预埋式外包钢板-增大截面加固后柱贯通型RCS节点的承载能力和受力机理,结合实际工程,通过有限元软件ABAQUS对钢箍板-增大截面加固体系进行模拟计算,分析了钢箍板-增大截面加固体系核心区在作为刚接节点与铰接节点两种工况的设计荷载作用下,各部分结构的应力分布、损伤情况和节点转角。计算结果表明,在两种设计工况的作用下,各部分结构均处于弹性阶段,距离屈服强度还有较大盈余,混凝土结构局部出现损伤。 展开更多
关键词 柱贯通型 钢筋混凝土柱-钢梁(rcS) 柱加固 有限元分析
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RC刚架拱桥的板桁组合加固及动力特性 被引量:2
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作者 谢肖礼 勾文鑫 +1 位作者 庞木林 邱辰 《华南理工大学学报(自然科学版)》 EI CAS CSCD 北大核心 2023年第4期31-43,共13页
钢筋混凝土(RC)刚架拱桥常见的加固方法大多属于局部加强而非整体改造,因此对于改善结构受力性能的作用极其有限,难以满足我国现阶段公路交通荷载日益增大的需求。针对以上问题,文中首先提出了一种新型加固方法——板桁组合加固法,该加... 钢筋混凝土(RC)刚架拱桥常见的加固方法大多属于局部加强而非整体改造,因此对于改善结构受力性能的作用极其有限,难以满足我国现阶段公路交通荷载日益增大的需求。针对以上问题,文中首先提出了一种新型加固方法——板桁组合加固法,该加固方法在主梁两侧架设钢桁架,通过植筋、焊接、铺设钢筋网和浇筑混凝土等措施使钢桁架与主梁牢固连接,形成板桁组合结构,从而使结构受力从主梁受力体系转变成板桁组合受力体系,实现对结构受力的优化;然后,利用该方法对某刚架拱桥进行加固改造,通过有限元仿真模拟与桥梁动载试验,对该新型加固方法的有效性和实用性进行验证。结果表明:加固后结构自振频率有效提高;竖向刚度和承载力显著增大;结构一阶面内竖弯频率理论值较加固前提高80.5%,公路-I级荷载作用下加固后结构下挠值较加固前减小56.8%,混凝土构件应力水平较加固前减小10.9%~69.8%;该加固方法对结构的动力特性具有改善作用,加固后结构的竖向振动效应小于加固前且实测冲击系数远小于现行规范值,结构动力性能良好。 展开更多
关键词 钢筋混凝土 刚架拱桥 板桁组合加固法 动载试验 自振频率 竖向刚度 冲击系数
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