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1.
为合理反映钢筋锈蚀后黏结滑移性能劣化对钢筋混凝土(RC)结构抗震性能的影响,在既有黏结应力分布模式的基础上,推导得到钢筋应力-滑移关系,进而通过分析锈蚀对混凝土与钢筋界面黏结滑移机理的影响,建立考虑钢筋锈蚀损伤的黏结滑移本构模型。基于已有拉拔试验结果,与仅考虑纵筋锈蚀率影响的Cheng模型进行对比,验证所建模型的合理性与准确性。基于OpenSees有限元平台,采用纤维梁柱单元和零长度截面单元串联的方式,将所建钢筋黏结滑移模型嵌套于零长度截面单元的钢筋本构中,建立可考虑黏黏结滑移的锈蚀损伤纤维梁柱模型,并通过6根锈蚀RC柱拟静力试验结果验证模型的准确性,结果发现所提考虑黏结滑移的锈蚀RC纤维梁柱模型计算所得滞回曲线与试验滞回曲线吻合良好,累计耗能最大误差不超过15%。此外,通过参数分析研究影响锈蚀钢筋滑移量的因素,结果表明屈服滑移量与极限滑移量随体积配箍率的增大而明显减小,随混凝土保护层与钢筋直径之比(c/d)增大而变化的幅度较小。  相似文献   

2.
对锈蚀钢筋混凝土柱的抗震性能进行了试验研究,分析锈蚀试件的破坏过程和破坏特点,重点研究了柱纵筋锈蚀率和轴压比对锈蚀钢筋混凝土柱受力性能的影响。在试验研究基础上,对反复荷载作用下钢筋混凝土柱的分析模型进行修正,建立了锈蚀钢筋混凝土柱的压-剪-弯交互作用分析模型,应用改进斜压场理论、传统截面分析法对锈蚀钢筋混凝土柱的受剪机理、受弯机理进行分析,通过锈蚀压弯构件轴向应变的变形协调将受弯模型和受剪模型结合,最终计算获得锈蚀钢筋混凝土柱的承载能力和极限变形,并通过12根锈蚀钢筋混凝土柱的试验结果对建议分析模型进行了验证。研究结果表明:锈蚀钢筋混凝土柱承载能力试验值与计算值之比的平均值为1.107,方差0.010,吻合较好;锈蚀试件按建议分析模型计算得到的极限变形与试验数据接近,平均值为0.873,方差0.051。因此,建议模型可分析水平反复荷载作用下锈蚀钢筋混凝土柱的极限变形和承载能力。  相似文献   

3.
采用有限元软件ABAQUS,以锈蚀率(0%、5%、10%、15%和20%)为变量,对5根钢筋混凝土柱的力学性能进行了数值模拟,研究各试件的滞回性能、骨架曲线、延性及耗能能力,分析钢筋锈蚀率对承载力、延性、耗能和塑性铰转动能力的影响。研究结果表明:模拟分析得到的锈蚀钢筋混凝土柱的强度和变形与试验结果吻合较好,建立的有限元模型可用于锈蚀钢筋混凝土柱的力学性能分析;混凝土开裂前,锈蚀构件的力学性能基本与未锈蚀构件相同,混凝土开裂后,构件的承载力、屈服荷载、极限位移、延性等均随钢筋锈蚀率的增大而降低;轻度锈蚀构件的滞回性能和破坏形式与未锈蚀构件类似,随着钢筋锈蚀率逐渐增大,滞回环的饱满程度降低,“捏拢”现象严重,滞回曲线由“弓形”逐渐发展成“反S形”,耗能能力降低,破坏形式趋于脆性破坏,位移延性系数、平均耗能系数等指标逐渐下降。  相似文献   

4.
通过5根无箍筋和7根有箍筋矩形截面钢筋混凝土框架柱试验,研究加载角度不同时,低周往复斜向水平荷载作用下,矩形截面框架柱双向受剪的破坏机理和计算方法.结果表明,可以近似用椭圆方程描述无箍筋矩形截面框架柱双向受剪承载力的相关关系,并且框架柱截面长边和短边方向的箍筋应力彼此独立.根据上述分析,引入混凝土抗剪强度折减系数,计算低周往复水平荷载作用下矩形截面框架柱双向受剪承载力.试验值与计算结果的对比表明该公式可行,且具有95%以上的可靠性.同时,考虑受剪承载力抗震调整系数,给出了考虑地震作用时矩形截面框架柱双向受剪承载力建议的简化算法公式.  相似文献   

5.
本文提出了一种反复荷载下混凝土材料的本构模型,该模型采用平面应力状态下的弥散正交裂缝假设,钢筋采用弥散假设,并考虑了屈服、应变硬化、循环卸载与再加载规则等因素。该本构模型与其他模型相比,具有简便有效的优点。在此基础上,本文采用八结点平面应力单元建立了钢筋混凝土核心筒体非线性有限元分析模型,并对试验模型进行了非线性分析,计算结果与试验结果吻合较好。  相似文献   

6.
为了研究圆钢管超高性能混凝土(Ultra-high performance concrete-filled steel tube, UHPCFST)组合柱的抗震性能,文中采用OpenSees对圆UHPCFST组合柱在低周往复荷载作用下的响应进行分析。首先,选用3种不同的圆钢管约束UHPC本构模型,并通过与文献试验结果进行对比验证其有效性后,对圆UHPCFST组合柱的抗震性能进行含钢率及轴压比2个参数的影响分析。与文献试验结果对比表明,UHPC采用LU本构计算参数所建立的模型可很好地模拟低周往复荷载作用下圆UHPCFST组合柱的荷载-位移骨架曲线及滞回性能。参数分析发现:含钢率由3.31%增大到27.75%(钢管壁厚由2 mm增大到18 mm)时,组合柱的水平承载能力提高了2.6倍,延性提高2.5倍;轴压比由0.1提高到0.9时,组合柱的极限承载能力降低了24.45%,延性急剧下降(78.3%);当柱的含钢率在9.75%~20.49%范围内(钢管壁厚在6~13 mm内),轴压比在0.1~0.3之间时,圆UHPCFST组合柱在地震作用下表现出良好的抗震性能,承载力能力明显无降低,延性与变形...  相似文献   

7.
王斌  吕斌  郑山锁 《地震工程学报》2019,41(5):1177-1185
为研究地震作用下损伤累积对型钢高强混凝土框架节点抗震性能的影响,基于5榀型钢高强混凝土框架节点低周反复加载试验结果,分析节点构件损伤累积过程及其对刚度和强度的影响。从材料自身损伤入手,通过引入刚度影响系数考虑循环荷载作用下混凝土的单边效应,对Faria-Oliver本构模型进行改进,进而建立适应于型钢混凝土结构的材料损伤累积本构模型。同时基于该模型采用ANSYS分析软件对地震作用下的型钢高强混凝土框架节点进行数值分析,并与试验结果进行对比分析。结果表明:采用本文建立的材料损伤累积本构模型能较好地反映地震作用下型钢高强混凝土框架节点的损伤特性。在此基础上,进一步分析构件轴压比、配箍率、配钢率等设计参数对型钢高强混凝土框架节点抗震性能的影响。研究成果可为该类结构构件的抗震设计提供理论和技术支撑。  相似文献   

8.
锈蚀钢筋混凝土压弯构件恢复力模型研究   总被引:3,自引:0,他引:3  
根据目前已有试验资料和理论分析,结合钢筋锈蚀引起结构破坏形态的改变,综合考虑结构各种耐久性损伤因素,并对箍筋锈蚀进行修正,提出了锈蚀钢筋混凝土压弯构件基于地震损伤的恢复力模型的确定方法.通过与现有试验进行对比分析,表明模型描绘的骨架曲线与试验结果总体吻合较好,模型计算的滞回曲线所描述的现象与试验一致,该恢复力模型可在损伤钢筋混凝土结构地震反应分析中采用.  相似文献   

9.
为研究加固后锈蚀箍筋约束混凝土柱的抗震性能,设计16个钢筋混凝土矩形柱,对加速锈蚀后的试件采用外包钢及CFRP、GFRP材料进行加固处理,随后开展低周往复荷载试验,以研究不同加固材料、不同加固包裹方式、不同黏结材料等因素对锈蚀箍筋约束混凝土柱滞回曲线、骨架曲线、刚度衰减、延性性能及耗能能力等抗震性能指标的影响。研究结果表明:(1)与未锈蚀柱相比,加固后的箍筋锈蚀柱以弯剪破坏为主,CFRP加固试件较GFRP加固试件具有更高的承载力,但破坏时延性不如GFRP加固试件;(2)外包钢加固试件、CFRP加固试件、GFRP加固试件的耗能能力较未锈蚀试件分别增大222.3%、123.9%、98.5%,延性系数也相应增大45.3%、22.3%、25.6%。总之,外包钢加固对箍筋锈蚀柱抗震性能的提升最大,CFRP加固次之,但优于GFRP加固;整包加固优于环包加固;环氧树脂胶黏结略优于水泥基灌浆料黏结。  相似文献   

10.
应用Open SEES有限元软件计算圆钢管混凝土短柱的轴压承载力-应变关系曲线。由于钢管和混凝土之间相互作用的机理,分别采用Mander混凝土本构模型和根据套箍系数修正Mander混凝土本构模型,计算结果与实验结果吻合较好。应用此材料本构模拟圆钢管高强混凝土短柱并讨论不同参数的影响。结果表明:基于试验的Open SEES建模方式与模型参数选取合理;圆钢管高强混凝土与普通混凝土的力学性能差异大;增大核心混凝土的强度、钢材的套箍系数和屈服强度都可以提高构件的极限承载力。  相似文献   

11.

In addition to the normal service loadings, engineering structures may be subjected to occasional loadings such as earthquakes, which may cause severe destruction. When the steel rebar is corroded, the damage could be more serious. To investigate the seismic performance of corroded RC columns, a three-dimensional mesoscale finite element model was established. In this approach, concrete was considered as a three-phase composite composed of aggregate, mortar matrix and interfacial transition zone (ITZ). The nonlinear spring were used to describe the bond slip between steel and concrete. The degradation of the material properties of the steel rebar and cover concrete as well as the bonding performance due to corrosion were taken into account. The rationality of the developed numerical analysis model was verified by the good agreement between the numerical results and the available experimental observation. On this basis, the effect of corrosion level, axial force ratio and shear-span ratio on the seismic performance of corroded RC columns, including lateral bearing capacity, ductility, and energy consumption, were explored and discussed. The simulation results indicate that the mesoscopic method can consider the heterogeneity of concrete, to more realistically and reasonably reflect the destruction process of structures.

  相似文献   

12.
随着服役时间的增长,侵蚀环境下钢筋混凝土框架节点因钢筋发生不同程度的锈蚀而造成承载性能下降,严重影响建筑结构的安全使用。本文在已有钢筋混凝土框架节点抗剪强度理论模型的基础上,考虑钢筋锈蚀对框架节点受力性能的影响,建立锈蚀钢筋混凝土框架中节点受剪承载力计算公式。通过11组锈蚀钢筋混凝土节点试验数据,对建议理论模型进行验证。研究结果表明,锈蚀钢筋混凝土节点受剪承载力试验值与理论计算值之比的平均值为0.951,方差为0.075,二者吻合较好,本文建议的计算方法可用于锈蚀钢筋混凝土框架中节点承载力分析。  相似文献   

13.
The paper describes the development of a mathematical model to predict the flexural response of reinforced concrete beams to severe cyclic loading. The model is constructed with the aid of System Identification, which permits the coefficients in it to be so tuned as to replicate with the maximum possible accuracy the results of physical experiments. The uniaxial constitutive behaviour of the concrete and steel are considered separately, and they are then combined through a bond-slip relationship to form a global model for the composite material. The cyclic stress-strain law for the steel proves to be critical to the overall accuracy, and a suitable formulation is developed for it. Comparisons between observed and predicted behaviour are presented, both for the steel alone and for the composite material.  相似文献   

14.
为探讨高强钢筋增强UHPC-NC组合柱抗震性能,基于大型有限元程序ABAQUS,结合UHPC、NC和高强钢筋材料本构关系,校准损伤塑性模型中相关参数,建立高强钢筋增强UHPC-NC组合柱抗震有限元模型。通过与3个NC柱和3个UHPC柱拟静力试验结果对比,验证分析模型的有效性。在此基础上,进一步探讨轴压比、纵筋直径、纵筋强度、箍筋间距和UHPC高度等敏感参数对高强钢筋增强UHPC-NC组合柱抗震性能的影响。结果表明,高强钢筋增强UHPC-NC组合柱位移延性系数随轴压比、纵筋直径和箍筋间距的增大而降低,随纵筋强度和UHPC高度的增加表现出先增大后逐渐平缓的趋势,合适的UHPC替换高度能充分发挥高强钢筋和UHPC材料特性并取得良好的经济性。  相似文献   

15.
核心型钢混凝土柱的轴压比限值试验研究   总被引:2,自引:0,他引:2  
基于界限破坏时的内力平衡条件,推导了核心型钢混凝土柱轴压比限值的理论计算公式,计算分析了配钢率、混凝土强度等级、柱截面尺寸等因素对核心型钢混凝土柱轴压比限值的影响。进行了5个1/2比例模型柱试件的低周反复加载试验,验证了配置核心型钢对提高混凝土柱的抗震性能和轴压比限值的有效性。计算和试验结果表明,在混凝土柱中配置一定数量的核心型钢,可以有效提高轴压比限值。本文建议的方法可以较为合理地确定核心型钢混凝土柱的轴压比限值,供工程实践参考。  相似文献   

16.
This paper focuses on analyzing the nonlinear seismic response of high‐arch dams with cantilever reinforcement strengthening. A modified embedded‐steel model is presented to evaluate the effects of the strengthening measure on alleviating the extension and opening of cracks under strong earthquakes. By stiffening reinforced steel, this model can easily consider the steel–concrete interaction for lightly reinforced concrete (RC) members without the need of dividing them into RC and plain concrete zones. The new tensile constitutive relations of reinforced steel are derived from the load–deformation relationship of RC members in direct tension. This model has been implemented in the finite element code and its applicability is verified by two numerical simulations for RC tests. Subsequently, numerical analyses for a 210‐m high‐arch dam (Dagangshan arch dam) are conducted with and without the presence of cantilever reinforcement. Numerical results show that reinforcement strengthening can reduce the nonlinear response of the arch dam, e.g. joint opening and crest displacement, and limit the extension and opening width of concrete cracks. Copyright © 2008 John Wiley & Sons, Ltd.  相似文献   

17.
In this paper, a fiber beam-column element considering flexure–shear interaction and bond-slip effect is developed for cyclic analysis of reinforced concrete (RC) structures. The element is based on conventional displacement-based Timoshenko beam theory, where the transverse shear deformation is included, and adopts the fiber model to describe the section force–deformation behavior. In the fiber model, shear deformation is assumed to be uniformly distributed along the section and is only resisted by concrete, thus the multi-dimensional concrete damage model is used for concrete fibers and therefore flexure–shear interaction is reflected naturally at the material level. Meanwhile, to account for the significant bond-slip effect at critical regions, the anchorage slip of bars at these regions is analytically derived. Then it is used to modify the uniaxial stress–strain model for steel fibers by assuming that the total strain can be treated as the sum of the bar deformation and anchorage slip, therefore the bond-slip effect is implicitly but simply represented. To validate the proposed element, a series of RC member and structure tests under cyclic loading are simulated. The results indicate that the proposed element can predict cyclic responses of RC structures, and can be used as a reliable tool for analysis of RC structures.  相似文献   

18.
型钢高强混凝土柱抗震性能的试验研究   总被引:5,自引:3,他引:5  
通过14根型钢高强混凝土柱的低周反复加载试验,得到了型钢高强混凝土柱在压、弯、剪共同作用下的主要破坏形态,并探讨了剪跨比、配箍率、混凝土强度对型钢高强混凝土柱滞回曲线、耗能能力以及延性的影响。试验结果表明,型钢高强混凝土柱具有抵御二次地震作用的能力,其抗震性能优于钢筋混凝土柱。  相似文献   

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