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钢筋混凝土结构小比例尺模型的相似性研究 被引量:14
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作者 孟庆利 黄思凝 郭迅 《世界地震工程》 CSCD 北大核心 2008年第4期1-6,共6页
本文针对钢筋混凝土小比例尺模型,提出了考虑不同材料(混凝土和配筋)间相似性协调问题的一种新型设计方法,即通过调整配筋率、配箍率或者截面有效高度(h0)、箍筋间距等,对微粒混凝土和配筋的相似性协调进行考虑,并且通过构件试验、振动... 本文针对钢筋混凝土小比例尺模型,提出了考虑不同材料(混凝土和配筋)间相似性协调问题的一种新型设计方法,即通过调整配筋率、配箍率或者截面有效高度(h0)、箍筋间距等,对微粒混凝土和配筋的相似性协调进行考虑,并且通过构件试验、振动台实验和数值模拟来研究其可行性、有效性,而且通过相似偏差分析可知:相似性协调模型能很好地模拟原型结构弹塑性性态。 展开更多
关键词 钢筋混凝土结构小比例尺模型 振动台实验 相似性协调
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钢筋混凝土结构在近场脉冲型地震作用下的试验分析 被引量:7
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作者 唐玉红 张敏政 戴君武 《世界地震工程》 CSCD 北大核心 2007年第3期41-46,共6页
选择了集集地震中三条含有大脉冲的脉冲型近场地震记录,并截取其加速度峰值所在的脉冲及相邻两个脉冲部分形成新的记录,将其作为地震输入,对两个完全相同的钢筋混凝土模型进行振动台台模拟试验,对试验结果进行了分析,比较两个模型的宏... 选择了集集地震中三条含有大脉冲的脉冲型近场地震记录,并截取其加速度峰值所在的脉冲及相邻两个脉冲部分形成新的记录,将其作为地震输入,对两个完全相同的钢筋混凝土模型进行振动台台模拟试验,对试验结果进行了分析,比较两个模型的宏观破坏、模态、顶层位移,得出近场脉冲型地震动会引起钢筋混凝土结构严重的破坏,截取的主震脉冲时程对结构的影响效应在一定程度上完全可以等同于整幅地震动时程。 展开更多
关键词 钢筋混凝土结构模型 近场脉冲地震动 振动台模拟试验
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紧密堆积混凝土配合比模型及其技术路线 被引量:3
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作者 千鹤茂 张萍 +1 位作者 单咏 周云麟 《混凝土》 CAS CSCD 北大核心 2008年第7期117-119,123,共4页
提高混凝土等级节能、节材成为一种发展趋势,而混凝土等级愈高,节约水泥的潜力愈大。从集料最紧密堆积、耐久性和孔结构,水泥石-粗集料高黏接强度诸方面整合其最佳结构模型。进一步通过试验,综合原材料择优、集料级配,"双掺"... 提高混凝土等级节能、节材成为一种发展趋势,而混凝土等级愈高,节约水泥的潜力愈大。从集料最紧密堆积、耐久性和孔结构,水泥石-粗集料高黏接强度诸方面整合其最佳结构模型。进一步通过试验,综合原材料择优、集料级配,"双掺"技术,掺合料强度激发剂,水泥强度富余系数利用等因素,确定实现上述目标的技术路线,以便于工艺过程实施。 展开更多
关键词 混凝土结构模型 最紧密堆积 “双掺”技术 激发剂
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Experimental study on bond behavior between BFRP bars and seawater sea-sand concrete 被引量:5
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作者 SU Xun YIN Shi-ping +1 位作者 ZHAO Ying-de HUA Yun-tao 《Journal of Central South University》 SCIE EI CAS CSCD 2021年第7期2193-2205,共13页
Combining fiber reinforced polymer(FRP)with seawater sea-sand concrete(SSC)can solve the shortage of river sand that will be used for marine engineering construction.The bond performance of BFRP bars and SSC specimens... Combining fiber reinforced polymer(FRP)with seawater sea-sand concrete(SSC)can solve the shortage of river sand that will be used for marine engineering construction.The bond performance of BFRP bars and SSC specimens is researched by pull-out test in this paper.The effects of the parameters,such as bar type,bar diameter,concrete type and stirrup restraint,are considered.It is beneficial to the bonding performance by the reduction of bar diameter.The utilization of seawater sea-sand has a low influence on the bond properties of concrete.The bond strength of BFRP is slightly lower than the steel rebar,but the difference is relatively small.The failure mode of the specimen can be changed and the interfacial bond stress can be improved by stirrups restraint.The bond-slip curves of BFRP ribbed rebar include micro slip stage,slip stage,descent stage and residual stage.The bond stress shows the cycle attenuation pattern of sine in the residual stage.In addition,the bond-slip model of BFRP and SSC is obtained according to the experimental results and related literature,while the predicted curve is also consistent well with the measured curve. 展开更多
关键词 basalt fiber-reinforced polymer(BFRP) seawater sea-sand concrete(SSC) bond-slip curve constitutive model
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Comparison on construction of strut-and-tie models for reinforced concrete deep beams 被引量:2
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作者 仇一颗 刘霞 《Journal of Central South University》 SCIE EI CAS 2011年第5期1685-1692,共8页
With consideration of the differences between concrete and steel,three solutions using genetic evolutionary structural optimization algorithm were presented to automatically develop optimal strut-and-tie model for dee... With consideration of the differences between concrete and steel,three solutions using genetic evolutionary structural optimization algorithm were presented to automatically develop optimal strut-and-tie model for deep beams.In the finite element analysis of the first method,the concrete and steel rebar are modeled by a plane element and a bar element,respectively.In the second method,the concrete and steel are assigned to two different plane elements,whereas in the third method only one kind of plane element is used with no consideration of the differences of the two materials.A simply supported beam under two point loads was presented as an example to verify the validity of the three proposed methods.The results indicates that all the three methods can generate optimal strut-and-tie models and the third algorithm has powerful capability in searching more optimal results with less computational effort.The effectiveness of the proposed algorithm III has also been demonstrated by other two examples. 展开更多
关键词 reinforced concrete deep beam topology optimization strut-and-tie model genetic evolutionary structural optimization
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Analytic model of non-uniform corrosion induced cracking of reinforced concrete structure 被引量:4
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作者 张小刚 王学志 +1 位作者 卢朝辉 邢锋 《Journal of Central South University》 SCIE EI CAS 2011年第3期940-945,共6页
In order to perfectly reflect the dynamic corrosion of reinforced concrete (RC) cover in practical engineering,an analytic model of non-uniform corrosion induced cracking was presented based on the elastic-plastic fra... In order to perfectly reflect the dynamic corrosion of reinforced concrete (RC) cover in practical engineering,an analytic model of non-uniform corrosion induced cracking was presented based on the elastic-plastic fracture mechanics theory.Comparisons with the published experimental data show that the predictions given by the present model are in good agreement with the results both for natural exposed experiments and short-time indoor tests (the best difference is about 2.7%).Also it obviously provides much better precision than those models under the assumption of uniform corrosion (the maximal improved precision is about 48%).Therefore,it is pointed out that the so-called uniform corrosion models to describe the cover cracking of RC should be adopted cautiously.Finally,the influences of thickness of local rusty layer around the reinforcing steel bar on the critical corrosion-induced crack indexes were investigated.It is found that the thickness of local rusty layer has great effect on the critical mass loss of reinforcing steel,threshold expansion pressure,and time to cover cracking.For local rusty layer thickness with a size of a=0.5 mm,the time to cover cracking will increase by about one times when a/b (a,semi-minor axis;b,semi-major axis) changes from 0.1 to 1 mm. 展开更多
关键词 reinforced concrete non-uniform corrosion induced cracking dynamic cracking local rusty layer stress intensity factor
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