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TESTING AND PREDICTION OF CREEP BEHAVIOR OF HIGH PERFORMANCE SELF-COMPACTING CONCRETE-FROM MATERIAL TO STRUCTURE

机译:高性能自填充混凝土自结构材料蠕变行为的测试与预测

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摘要

A high performance self-compacting concrete(HPC,C50)which exhibits much lower creep property than conventional high strength concrete(HSC,C50)is designed by substituting 40% cement with ultra-fine fly ash composite(UFAC),the long-term creep behavior of tested specimens under standard environment and simply supported T-section beams with six meter long under natural environment,constructed with HPC50,is tested.The predicted creep values based on formulae included in ACI-95 and CEB-FIP(MC90)fit well with the experimental results based on material trials,while serious discrepancy is found between the deduced values from structure experiment.The presented approach to predict time-dependent creep behavior of structures with modified creep models in ACI-95 and CEB-FIP(MC90)based on structural short-term testing results shows agreeable with experimental values.The proposed model can be used to calculate creep effect both in reinforced and prestressed concrete structures constructed by any kind of concrete.
机译:通过用长效超细粉煤灰复合材料(UFAC)替代40%的水泥,设计出一种比常规高强度混凝土(HSC,C50)蠕变性能低得多的高性能自密实混凝土(HPC,C50)测试了在标准环境下的测试样本的蠕变行为以及在自然环境下用HPC50构造的简单支撑的六米长T型截面梁的蠕变性能。基于ACI-95和CEB-FIP(MC90)公式的预测蠕变值拟合与基于材料试验的实验结果相吻合,同时在结构实验的推导值之间存在严重差异。本文提出的方法是使用ACI-95和CEB-FIP(MC90)修改的蠕变模型来预测结构随时间的蠕变行为基于结构的短期测试结果表明与实验值吻合。该模型可用于计算任何亲属构造的钢筋混凝土和预应力混凝土结构的蠕变效应。 d混凝土。

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