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Ultimate and fatigue response of shear dominated full-scale pretensioned concrete box girders

机译:剪切为主的全尺寸预应力混凝土箱梁的极限和疲劳响应

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摘要

Two full-scale, precast, pretensioned box girders were subjected to shear-dominated loading, one under monotonic loads to failure and the other subjected to one-half million cycles of fatigue loads followed by monotonic ultimate loads. The number of cycles was selected to allow for comparison with previous research. The fatigue loads were applied in combination with occasional overloads. In the present study, fatigue loading reduced the shear capacity by only six percent compared to the capacity under monotonic loading. However, previous research on flexure-dominated girders subjected to the same number of repeated loads showed that fatigue loading changed the mode of failure from flexure to shear/ flexure and the girder capacity dropped by 14 percent. The comparison of the measured data with calculated shear capacity from five different theoretical methods showed that the ACI code method, the compression field theory, and the modified compression field theory led to reasonable estimates of the shear strength. The truss model led to an overly conservative estimate of the capacity.
机译:对两个全尺寸,预制,预张紧的箱形梁施加剪力支配的荷载,一个承受单调破坏的荷载,另一个承受半百万个疲劳荷载的循环,然后承受单调的极限荷载。选择循环数以便与以前的研究进行比较。疲劳载荷与偶尔的过载相结合。在本研究中,与单调载荷下的容量相比,疲劳载荷仅将剪切容量降低了6%。但是,先前对受相同屈曲荷载作用的以挠曲为主的大梁的研究表明,疲劳载荷将破坏模式从挠曲改变为剪切/挠曲,而梁的承载能力下降了14%。对来自五种不同理论方法的测量数据与计算的剪切能力的比较表明,ACI编码方法,压缩场理论和改进的压缩场理论可以合理估计剪切强度。桁架模型导致对容量的过于保守的估计。

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