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Creep and shrinkage behavior of high-strength concrete and minimum reinforcement ratio for bridge columns

机译:高强混凝土的蠕变和收缩行为以及桥柱的最小配筋率

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>This paper summarizes the findings of an extensive research program that examined the shrinkage and creep behavior of high-strength concrete (HSC) up to a strength of 18 ksi (124 MPa). Creep and shrinkage strains of 60 specimens were monitored for up to two years. The variables considered in this investigation were the concrete compressive strength, specimen size, curing type, age of concrete at loading, and loading stress level.Research findings indicate that the current American Association of State Highway and Transportation Officials’ AASHTO LRFD Bridge Design Specifications could be used to estimate the creep coefficient and shrinkage strain of HSC up to 15 ksi (103 MPa). However, the current AASHTO LRFD specifications do not provide appropriate predictions for concrete compressive strength greater than 15 ksi (103 MPa). A revised time-development correction factor is proposed to obtain better predictions for HSC up to 18 ksi (124 MPa). For HSC compression members, the current AASHTO LRFD specifications require an excessive amount of minimum longitudinal reinforcement to accountfor the long-term effects due to shrinkage and creep. Based on an analysis, a new relationship is proposed for the required minimum reinforcement ratio.
机译:>本文总结了一项广泛的研究计划的结果,该计划研究了强度高达18 ksi(124 MPa)的高强度混凝土(HSC)的收缩和蠕变行为。监测了60个样品的蠕变和收缩应变长达两年。研究中考虑的变量包括混凝土的抗压强度,标本尺寸,固化类型,混凝土在加载时的年龄和加载应力水平。研究结果表明,现行的美国国家公路和运输官员协会的AASHTO LRFD桥梁设计规范可以用于估计高达15 ksi(103 MPa)的HSC的蠕变系数和收缩应变。但是,当前的AASHTO LRFD规范未提供大于15 ksi(103 MPa)的混凝土抗压强度的适当预测。提出了修订的时间发展校正因子,以获得对高达18 ksi(124 MPa)的HSC的更好预测。对于HSC压缩构件,当前的AASHTO LRFD规范要求过多的最小纵向加强量,以解决由于收缩和蠕变引起的长期影响。在分析的基础上,提出了所需最小配筋率的新关系。

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