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水平荷载作用下型钢再生混凝土柱受力性能非线性分析 总被引:1,自引:0,他引:1
结合低周反复荷载作用下型钢再生混凝土柱抗震性能试验,在已有的再生混凝土本构关系模型和结构非线性分析理论的基础上,采用ABAQUS有限元软件对型钢再生混凝土柱在水平荷载作用下的受力性能进行了非线性分析,获取了型钢再生混凝土柱应力分布云图和荷载-位移骨架曲线,研究了型钢再生混凝土柱的应力分布规律,主要分析了再生粗骨料取代率、轴压比、体积配箍率对型钢再生混凝土柱受力性能的影响。研究结果表明,再生粗骨料取代率对型钢再生混凝土柱的承载力及延性变形影响较小;随着轴压比的增大,型钢再生混凝土柱的延性变形降低幅度较大;提高体积配箍率对该柱的受力性能是有利的,合理设计的型钢再生混凝土柱可应用于实际工程中。 相似文献
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在17个型钢再生混凝土组合柱低周反复荷载试验研究的基础上,结合型钢再生混凝土组合柱试验位移延性系数和极限角变形,给出了满足型钢再生混凝土组合柱抗震延性要求的轴压比限值。采用大小偏心受压界限破坏理论推导了发生弯曲破坏时型钢再生混凝土组合柱的标准轴压比计算公式。在此基础上,结合抗震等级的要求,考虑体积配箍率、剪跨比对型钢再生混凝土组合柱抗震性能的影响,最终提出了不同剪跨比、不同配箍率以及不同抗震等级下型钢再生混凝土组合柱的轴压比限值。研究结果可为型钢再生混凝土组合柱的抗震设计提供参考依据。 相似文献
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为了研究低周往复荷载作用下PVA纤维增强混凝土框架柱的抗震性能,基于有限元模拟软件Open Sees,采用纤维模型对PVA纤维增强混凝土柱和普通钢筋混凝土柱在低周往复荷载作用下的受力性能进行数值模拟,从柱滞回曲线、骨架曲线、承载力、延性性能及耗能能力方面对数值模拟结果与试验结果进行对比分析,校准采用的PVA纤维增强混凝土本构模型参数。在此基础上,重点分析了PVA纤维增强混凝土柱剪跨比、轴压比等参数对其抗震性能的影响。参数分析结果表明:随着柱剪跨比的增加,位移延性系数先增后减,在剪跨比为3时达到最大,极限位移角随剪跨比的增加而增加;随着柱轴压比的增加,位移延性系数和极限位移角均减小。 相似文献
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进行了两榀预应力型钢混凝土框架和非预应力型钢混凝土框架在竖向荷载及水平低周反复荷载作用下受力与抗震性能试验研究,研究结果表明:在型钢混凝土梁中采用预应力,可以有效地控制结构裂缝宽度,改善结构的正常使用性能;梁中施加预应力没有明显改变型钢混凝土结构优良的抗震性能,预应力型钢混凝土框架低周反复加载滞回曲线饱满,抗震性能优良;在型钢混凝土梁中施加预应力,可以充分发挥型钢与混凝土等材料各自的优势。在试验研究的基础上,提出了预应力型钢混凝土框架和型钢混凝土框架的三线型恢复力模型,并利用该恢复力模型进行了预应力型钢混凝土框架和型钢混凝土框架在低周反复荷载作用下的滞回性能分析,分析结果与试验结果吻合良好。 相似文献
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为研究内嵌型钢混凝土柱在低周反复荷载作用下应变随荷载的变化情况,以长细比和轴压比为主要研究参数,对3根试件进行低周反复加载试验,重点研究了不同长细比和轴压比下柱各构件的应变变化情况。 相似文献
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型钢混凝土压弯构件抗震性能试验研究 总被引:2,自引:0,他引:2
通过对18根剪跨比为4.23的型钢混凝土柱进行低周反复荷载试验,研究型钢混凝土压弯构件的抗震性能.分析了试验构件的破坏形态、滞回曲线、骨架曲线和耗能能力,并详细探讨了轴压比和配箍率对型钢混凝土压弯构件抗震性能的影响.试验结果表明型钢混凝土压弯构件具有良好的抗震性能. 相似文献
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有限元分析可以作为试验的补充手段,模拟型钢混凝土构件的整个受力和变形过程。为了探讨轴压比和钢骨率的变化对SRC柱的延性和承载力的影响,利用有限元分析软件ABAQUS对型钢混凝土(SRC)柱的受力性能进行了非线性数值分析。为验证分析模型的合理性,首先利用已有的试验数据,建立试件的有限元模型,对试验全过程进行非线性数值模拟,通过对比荷载-位移曲线,验证有限元分析的有效性和准确性。通过建立具有不同轴压比和钢骨率的两组模型,分析了轴压比和钢骨率对构件力学性能的影响,为工程应用提供参考依据。 相似文献
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为了对钢骨混凝土组合框架结构的抗震性能进行深入研究,基于钢骨混凝土柱-钢梁组合框架低周反复荷载试验结果,采用OpenSees有限元程序对组合框架进行了非线性有限元分析,计算结果与试验结果吻合较好,表明本文所采用的材料本构关系及有限元分析模型能准确反映组合框架结构的受力性能。在此基础上研究了轴压力系数、混凝土强度等级、含钢率等对钢骨混凝土组合框架抗震性能的影响。 相似文献
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Numerical simulation of mega steel reinforced concrete columns with different steel sections
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Huanjun Jiang Yinghui Li Jianmei Zhu 《The Structural Design of Tall and Special Buildings》2017,26(1)
In recent years, the mega steel reinforced concrete (SRC) columns have been applied in super‐tall buildings. The previous research on SRC columns mainly focuses on the components with simple arrangement of encased steel, such as H‐shaped steel and cross‐shaped steel, with little attention paid to mega SRC columns that always have complicated encased steel and large steel ratio. The cyclic loading tests were carried out on scaled mega SRC column specimens with different cross‐section type of encased steel and steel ratio. The nonlinear three‐dimensional finite element and fiber element models were established respectively to simulate the inelastic behavior of mega SRC columns. The equivalent plastic strain of concrete, steel and rebar as well as the confinement effect on the concrete caused by the rebar and the steel plate were analyzed subsequently. By using the verified numerical model, the seismic behavior of specimens with different axial compression ratio was also studied. The test and analysis results indicate that the steel ratio and axial compression ratio have significant effects on the seismic performance of mega SRC columns, while the effect of cross‐section type of encased steel is not significant. Copyright © 2016 John Wiley & Sons, Ltd. 相似文献
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Hysteretic behavior and design of square tubed reinforced and steel reinforced concrete (STRC and/or STSRC) short columns 总被引:1,自引:0,他引:1
The square tubed reinforced and steel reinforced concrete (STRC and STSRC) short columns are ordinary RC and/or SRC short columns where most of the lateral reinforcement is in the form of thin-walled steel tubes. In this study, six specimens of STRC and STSRC short columns were experimentally tested under constant axial compression and cyclic lateral load to investigate the seismic performance of both kinds of structure. The main parameters were the axial load ratio and status of longitudinal reinforcement. Nonlinear 3D finite element model was developed to simulate the monotonic behavior and strength of tested specimens. The behavior and strength of extra assumed specimens were predicted using the developed FEM model. Depending on the test and analysis results, a design formula was proposed to predict the shear strength of STRC and/or STSRC short columns. 相似文献
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采用大型有限元通用软件ANSYS,对9根钢骨超高强混凝土短柱建立了有限元模型,进行了在低周反复荷载作用下的试验全过程非线性数值模拟。得出了不同配箍率,轴压比系数下结构的破坏特征,应力应变结果,裂缝情况及滞回曲线,并与试验值做对比,吻合较好。 相似文献
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Axial load behavior and strength of tubed steel reinforced-concrete (SRC) stub columns 总被引:1,自引:0,他引:1
This paper presents experimental and analytical studies on the behavior of tubed SRC stub columns subjected to axial compressive load. Fourteen circular tubed SRC (CTSRC) and fifteen square tubed SRC (STSRC) stub columns were tested to investigate the failure mode and axial loaded behavior of tubed SRC columns. The effect of diameter/width to thickness ratio of the tubes was studied. The effect of height to diameter/width ratio of the separated tubes in tubed SRC columns was studied to investigate the effect of bond and friction between tube and concrete on the behavior of tubed SRC columns. The test results indicated that tubed SRC stub columns exhibited higher axial load capacity than common SRC columns with the same volumetric steel ratio. Elastic–plastic analysis on the steel tube was employed to study the mechanism of tubed SRC stub columns subjected to axial compression. Equations for the prediction of the axial load strength of tubed SRC stub columns were also proposed based on the proposed experimental results. 相似文献
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钢骨混凝土柱的受力性能受诸多因素影响,钢骨截面延展性是其中的一个重要影响参数。本文首先定义了钢骨截面延展性系数D,以及截面模量影响因子α和约束混凝土影响因子β,用于定量描述钢骨截面延展程度;通过一组含钢率为15%的SRC柱单调压弯试验和有限元数值分析,考察了钢骨截面延展性对构件承载能力和延性性能的影响。研究表明:①高含钢率SRC柱的荷载-位移曲线变化稳定,试验现象发展平缓,承载力高,延性好;②SRC柱的承载力随截面模量因子和约束混凝土因子的增大而线性增加,承载力与截面延展性系数D有良好的线性变化关系;③试件加载后期的剩余承载力随钢骨截面延展性的提高而提高;④结合试验和数值分析结果,推导了高含钢率SRC柱的钢骨翼缘与腹板厚度比限值,并提出了若干设计建议。 相似文献
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高含钢率型钢混凝土压弯构件受力性能影响因素分析 总被引:1,自引:0,他引:1
以8个含钢率分别为13.12%和15.04%、截面尺寸为500mm×500mm的型钢混凝土柱水平拟静力加载试验为基础,分析轴压比、含钢率和配箍率对高含钢率型钢混凝土压弯构件荷载-位移骨架曲线的影响。利用有限元分析软件ABAQUS建立试验试件的非线性有限元分析模型,模拟试验骨架曲线,验证有限元分析模型的有效性。以含钢率、轴压比和配箍率为参数,对37个型钢混凝土压弯构件进行参数分析,建模时考虑了型钢和箍筋对混凝土的约束作用,分析各参数对含钢率在20%以内的型钢混凝土柱骨架曲线的影响。结果表明:随着轴压比的增大,不同含钢率试件的屈服点割线刚度、峰值荷载、极限位移和延性水平逐渐接近,高含钢率型钢混凝土柱的优势逐渐减弱;当设计轴压比小于1.2时,型钢混凝土柱试件均具有良好的延性;随着配箍率的增大,峰值荷载和峰值位移均增大,试件延性增大。 相似文献