Tension Stiffening and Cracking Behavior in High-Strength Concrete

G. Creazza, R. DiMarco
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Abstract

This paper describes a theoretical and experimental analysis designed to characterize the initial branch of the bond-stress/slipping curves for normal-strength and high-strength concretes. The theoretical analysis is used to interpret the results of experimental trials on reinforced concrete ties prepared with class 50 and 100 MPa concrete mixtures and submitted to tensile forces without inducing any yield in the bar. The purpose of the investigation was to study any changes in bond behavior (over the limited range of slipping values considered) due to the better mechanical features of the 100 MPa concrete, and thus contribute to a better understanding of how high-strength reinforced concrete elements behave in a serviceability state.
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高强混凝土的拉伸加劲与开裂行为
本文描述了一种理论和实验分析,旨在表征普通强度和高强混凝土的粘结-应力/滑移曲线的初始分支。理论分析用于解释用50mpa和100mpa混凝土混合料配制的钢筋混凝土拉筋的试验结果,这些拉筋在拉力作用下不产生屈服。调查的目的是研究由于100mpa混凝土具有更好的机械特性而导致的粘结行为的任何变化(在所考虑的滑移值的有限范围内),从而有助于更好地理解高强度钢筋混凝土元件在可使用状态下的行为。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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Contribution of Concrete between Cracks at Inelastic Steel Strains and Conclusions for the Optimization of Bond Preventing Brittle Failure of Tension Splices in High-Strength Concrete Bond Studies of Reinforcing Bars in Silica Fume Concrete Bond Modelling of Prestressing Strand Bond and Splitting: A Vexing Question
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