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冻损梯度对承压混凝土应力-应变关系的影响 被引量:1
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作者 刘西光 雷永洁 +2 位作者 周佳丽 牛荻涛 刘俊 《建筑材料学报》 EI CAS CSCD 北大核心 2023年第10期1054-1061,共8页
对不同冻融损伤程度的混凝土圆环体试件进行了试验研究.结果表明:当相对冻融深度小于临界值时,混凝土的峰值应力、峰值应变均呈线性退化,超过临界值后则保持稳定;当冻融循环次数由100次增加到200次时,相对冻融深度临界值由0.5增大到0.8... 对不同冻融损伤程度的混凝土圆环体试件进行了试验研究.结果表明:当相对冻融深度小于临界值时,混凝土的峰值应力、峰值应变均呈线性退化,超过临界值后则保持稳定;当冻融循环次数由100次增加到200次时,相对冻融深度临界值由0.5增大到0.8;基于应变等价性假说和统计损伤理论,建立了不同冻融损伤程度下承压混凝土的应力-应变关系模型. 展开更多
关键词 冻融损伤 承压混凝土 本构关系 损伤梯度
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钢梁埋入混凝土墙节点承压破坏的弯剪相关性研究(之二) 被引量:1
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作者 余琼 许志远 赵兴庄 《四川建筑科学研究》 北大核心 2015年第3期5-9,共5页
改进已有钢梁埋入混凝土墙节点的力学分析模型,考虑了嵌入I型钢梁上下翼缘间混凝土对钢梁上下翼缘的压应力作用,给出节点的混凝土构件承压破坏的弯剪相关曲线和公式,并进行试验验证,为超静定组合节点内力分析提供理论依据。通过ABAQUS... 改进已有钢梁埋入混凝土墙节点的力学分析模型,考虑了嵌入I型钢梁上下翼缘间混凝土对钢梁上下翼缘的压应力作用,给出节点的混凝土构件承压破坏的弯剪相关曲线和公式,并进行试验验证,为超静定组合节点内力分析提供理论依据。通过ABAQUS有限元分析,提出最大有效埋入深度概念,给出了混凝土有效承压宽度的建议值,分析了上翼缘与下翼缘前受压区合力的比值kf、下翼缘与上翼缘后受压区合力的比值kb的变化趋势,并给出了kf、kb的建议值,为节点内力准确分析打下基础。 展开更多
关键词 混凝土承压破坏 弯剪相关性 有效埋入深度 有效承压宽度
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钢梁埋入混凝土墙节点承压破坏的弯剪相关性研究(之一) 被引量:1
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作者 余琼 许志远 赵兴庄 《四川建筑科学研究》 北大核心 2015年第2期9-13,共5页
改进已有钢梁埋入混凝土墙节点的力学分析模型,考虑了嵌入I型钢梁上下翼缘间混凝土对钢梁上下翼缘的压应力作用,给出节点的混凝土构件承压破坏的弯剪相关曲线和公式,并进行试验验证,为超静定组合节点内力分析提供理论依据。通过ABAQUS... 改进已有钢梁埋入混凝土墙节点的力学分析模型,考虑了嵌入I型钢梁上下翼缘间混凝土对钢梁上下翼缘的压应力作用,给出节点的混凝土构件承压破坏的弯剪相关曲线和公式,并进行试验验证,为超静定组合节点内力分析提供理论依据。通过ABAQUS有限元分析,提出最大有效埋入深度概念,给出了混凝土有效承压宽度的建议值,分析了上翼缘与下翼缘前受压区合力的比值kf、下翼缘与上翼缘后受压区合力的比值kb的变化趋势,并给出了的kf、kb建议值,为准确分析节点内力打下基础。 展开更多
关键词 混凝土承压破坏 弯剪相关性 有效埋入深度 有效承压宽度
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刚性桩复合地基载荷试验的应用研究
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作者 罗建彬 《江西建材》 2016年第19期95-96,100,共3页
本文结合某小区的工程实例,讨论采用钢筋混凝土板实现刚性桩复合地基载荷试验所需解决的几个问题,并分析试验过程中的一些影响因素,提出了刚性桩复合地基载荷试验的一些建议。
关键词 钢筋混凝土承压 刚性桩复合地基 载荷试验
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Unified bearing capacity model of confined concrete column subjected to axial compression 被引量:2
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作者 于峰 牛荻涛 《Journal of Harbin Institute of Technology(New Series)》 EI CAS 2009年第5期638-642,共5页
To better study the behavior of confined concrete, this paper presents the basic hypothesis of uhimate equilibrium of confined concrete and the unified yield criteria of confining material. Based on the static equilib... To better study the behavior of confined concrete, this paper presents the basic hypothesis of uhimate equilibrium of confined concrete and the unified yield criteria of confining material. Based on the static equilibrium condition and yield criteria of components, a unified bearing capacity model of confined concrete column is proposed, and a simplified calculating equation of the model is also given. The model captures the character of confined concrete column. Effects of the confinement effect ratio, the lateral confinement ratio, unconfined concrete strength and the properties of confining material on the bearing capacity of confined concrete column are carefully considered. The model may be applicable to the calculation of bearing capacity of steel-confined concrete, concrete filled steel tube and FRP-confined concrete. The predictions of the model agree well with test data. 展开更多
关键词 confined concrete: bearing caoacity: FRP: concrete filled steel tube: reinforced concrete
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Influence of Hydrostatic Pressure on Compressive Strength of Self-consolidating Concrete
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作者 Elzbieta Horszczaruk Piotr Brzozowski +1 位作者 Grzegorz Adamczewski Tomasz Rudnicki 《Journal of Civil Engineering and Architecture》 2014年第12期1549-1555,共7页
The design of unique chamber, in which the SCUWC (self-consolidating underwater concrete) can be tested under the impact of the hydrostatic pressure from 0.1 MPa to 0.5 MPa, is presented in the paper. The results of... The design of unique chamber, in which the SCUWC (self-consolidating underwater concrete) can be tested under the impact of the hydrostatic pressure from 0.1 MPa to 0.5 MPa, is presented in the paper. The results of the preliminary tests of the effect of the hydrostatic pressure on the compressive strength of SCUWC were shown. The impact of the hydrostatic pressure on the compressive strength values of test specimens has been confirmed. There has been an increase in the strength of the specimens taken from the upper parts of the concrete samples. As it can be seen from the preliminary research, the differences in compressive strength are related to the differences that occur in the size and distribution of air voids in the samples taken from upper and lower parts of the test specimens. On the basis of the carried out investigations of the compressive strength, it can be concluded that the hydrostatic pressure has a favorable effect on the compressive strength of the tested specimens of SCUWC. Increase of the compressive strength is observed mostly in the upper layers of the samples. Preliminary analysis of the quantity and distribution of air pores in the samples of concrete subjected to pressure 0.5 MPa confirms the positive impact of the hydrostatic pressure on the layers close to the surface indicated by the absence of large air voids above 1,500μm and by reducing the quantity of air pores of size above 300μm. 展开更多
关键词 Compressive strength hydrostatic pressure self-consolidating concrete underwater concrete air voids.
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Bearing capacity of concrete filled bidirectional FRP tube subjected to axial compression
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作者 于峰 牛荻涛 《Journal of Harbin Institute of Technology(New Series)》 EI CAS 2010年第1期145-148,共4页
External confinement by fiber reinforced polymer (FRP) is an efficient technique to increase the bearing capacity and ductility of concrete. To better study the mechanical behavior of bidirectional FRP confined concre... External confinement by fiber reinforced polymer (FRP) is an efficient technique to increase the bearing capacity and ductility of concrete. To better study the mechanical behavior of bidirectional FRP confined concrete, the yield criterion of bidirectional FRP is presented based on the static equilibrium condition in this paper, and a model for calculating the bearing capacity of bidirectional FRP confined concrete is established. The model can capture the character of bidirectional FRP confined concrete. Effects of the confinement effect coefficient, the unconfined concrete strength and the material properties of FRP on bearing capacity are analyzed. Results show that each parameter has different effects on the bearing capacity of bidirectional FRP confined concrete. 展开更多
关键词 fiber reinforced polymer confined concrete bearing capacity column ultimate equilibrium condition
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