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基于影响矩阵的桁架结构预应力损失识别方法 被引量:3
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作者 刘艳辉 张阳阳 +2 位作者 刘军校 任鹏 卓彪 《西南交通大学学报》 EI CSCD 北大核心 2019年第5期1030-1037,共8页
为计算出每束预应力钢束实时的预应力损失,依据预应力桁架结构观测变形,基于位移影响矩阵原理提出一种预应力损失识别方法.通过有限元分析,建立预应力损失值与桁架结构观测点位移值之间的关系方程,并依据极小值优化原理,获得预应力损失... 为计算出每束预应力钢束实时的预应力损失,依据预应力桁架结构观测变形,基于位移影响矩阵原理提出一种预应力损失识别方法.通过有限元分析,建立预应力损失值与桁架结构观测点位移值之间的关系方程,并依据极小值优化原理,获得预应力损失值.研究表明:当单位预应力损失取30%~50%时,得到的位移影响矩阵计算预应力损失时误差最小,约为1%~2%;三角形桁架1/4跨度和3/4跨度处位移观测点对预应力损失的敏感性最高.最后,以黔渝线上某高铁站房的大跨钢筋预应力桁架结构为例,验证了该方法的正确性. 展开更多
关键词 桁架结构 结构变形 位移影响矩阵 预应力损失计算
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沙河U形渡槽预应力张拉试验研究
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作者 张玉明 张明恩 +2 位作者 张高伟 冯光伟 马春安 《人民长江》 北大核心 2013年第16期46-50,共5页
南水北调中线工程沙河渡槽为预应力渡槽。为了掌握预应力渡槽施加预应力后应力损失情况,于渡槽正式架设前,在施工现场建造了预应力锚索张拉试验台,对渡槽纵横向预应力锚固情况进行了测验与分析。介绍了张拉台的设计方案、测验过程及改... 南水北调中线工程沙河渡槽为预应力渡槽。为了掌握预应力渡槽施加预应力后应力损失情况,于渡槽正式架设前,在施工现场建造了预应力锚索张拉试验台,对渡槽纵横向预应力锚固情况进行了测验与分析。介绍了张拉台的设计方案、测验过程及改进测试精度的措施。通过试验,获得了锚索孔道摩阻系数、锚固回缩损失、锚圈口锚力损失等重要参数,为设计和施工提供了依据。 展开更多
关键词 U形渡槽 预应力锚固测试 预应力损失计算 沙河渡槽 南水北调中线工程
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Coupling model for calculating prestress loss caused by relaxation loss,shrinkage,and creep of concrete
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作者 曹国辉 胡佳星 张锴 《Journal of Central South University》 SCIE EI CAS CSCD 2016年第2期470-478,共9页
The calculation model for the relaxation loss of concrete mentioned in the Code for Design of Highway Reinforced Concrete and Prestressed Concrete Bridges and Culverts(JTG D62—2004) was modified according to experime... The calculation model for the relaxation loss of concrete mentioned in the Code for Design of Highway Reinforced Concrete and Prestressed Concrete Bridges and Culverts(JTG D62—2004) was modified according to experimental data. Time-varying relaxation loss was considered in the new model. Moreover, prestressed reinforcement with varying lengths(caused by the shrinkage and creep of concrete) might influence the final values and the time-varying function of the forecast relaxation loss. Hence, the effects of concrete shrinkage and creep were considered when calculating prestress loss, which reflected the coupling relation between these effects and relaxation loss in concrete. Hence, the forecast relaxation loss of prestressed reinforcement under the effects of different initial stress levels at any time point can be calculated using the modified model. To simplify the calculation, the integral expression of the model can be changed into an algebraic equation. The accuracy of the result is related to the division of the periods within the ending time of deriving the final value of the relaxation loss of prestressed reinforcement. When the time division is reasonable, result accuracy is high. The modified model works excellently according to the comparison of the test results. The calculation result of the modified model mainly reflects the prestress loss values of prestressed reinforcement at each time point, which confirms that adopting the finding in practical applications is reasonable. 展开更多
关键词 PRESTRESS relaxation loss shrinkage and creep theoretical analysis calculation model
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