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Creep experimental test and analysis of high-performance concrete in bridge

机译:桥梁高性能混凝土的蠕变试验测试与分析

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Factors that have effect on concrete creep include mixture composition, curing conditions, ambient exposure conditions,and element geometry. Considering concrete mixtures influence and in order to improve the prediction of prestress loss in important structures, an experimental test under laboratory conditions was carried out to investigate compression creep of two high performance concrete mixtures used for prestressed members in one bridge. Based on the experimental results, a power exponent function of creep degree for structural numerical analysis was used to model the creep degree of two HPCs, and two series of parameters of this function for two HPCs were calculated with evolution program optimum method. The experimental data was compared with CEB-FiP 90 and ACI 209(92) models, and the two code models both overestimated creep degrees of the two HPCs.So it is recommended that the power exponent function should be used in this bridge structure analysis.
机译:影响混凝土蠕变的因素包括混合料组成,固化条件,环境暴露条件和单元几何形状。考虑到混凝土混合物的影响并为了改善重要结构中的预应力损失的预测,在实验室条件下进行了实验测试,以研究用于一桥中预应力构件的两种高性能混凝土混合物的压缩蠕变。根据实验结果,利用蠕变度的幂指数函数对结构进行数值分析,对两个高性能混凝土的蠕变度进行建模,并使用演化程序优化方法计算了两个高性能混凝土的该函数的两个参数系列。将实验数据与CEB-FiP 90和ACI 209(92)模型进行了比较,两个代码模型都高估了两个HPC的蠕变度,因此建议在此桥梁结构分析中使用幂指数函数。

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