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首页> 外文期刊>Journal of Structural Engineering >STRESS-STRAIN RELATIONS FOR CRACKED TENSILE CONCRETE FROM RC BEAM TESTS
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STRESS-STRAIN RELATIONS FOR CRACKED TENSILE CONCRETE FROM RC BEAM TESTS

机译:RC梁试验中开裂拉伸混凝土的应力-应变关系

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摘要

A method for determining the stress-strain relations for concrete form short-term flexural tests of reinforced concrete members is proposed. The method is based on the smeared crack approach. Average stress-strain relations for concrete in tension (including the descending branch) and in compression are computed from experimental moment-average strain and/or moment-curvature curves. Computation of stress-strain relations is performed incrementally for the extreme surface fibers, and is based on a novel idea of using the previously computed portions of the stress-strain relations at each load increment to compute the current increments of the stress-strain relations. The proposed method has been applied to some experimental data reported in the literature. Average stress-strain curves for concrete in tension, where cracking, bond, and shrinkage effects were taken into account in an integrated manner, have been computed for beams with various depths, reinforcement ratios, and rebar diameters. These and other parameters affecting the shape of the stress-strain curves (or tension stiffening effect) have been discussed.
机译:提出了一种钢筋混凝土构件混凝土构件短期弯曲试验应力-应变关系的确定方法。该方法基于拖尾裂纹方法。根据实验力矩平均应变和/或弯矩曲率曲线计算受拉(包括下降分支)和受压混凝土的平均应力-应变关系。应力-应变关系的计算是针对极端表面纤维逐步进行的,并且基于一种新的想法,即在每个载荷增量下使用先前计算的应力-应变关系部分来计算应力-应变关系的当前增量。该方法已应用于文献报道的一些实验数据。对于不同深度、钢筋比和钢筋直径的梁,计算了受拉混凝土的平均应力-应变曲线,其中开裂、粘结和收缩效应被综合考虑在内。已经讨论了影响应力-应变曲线形状(或拉伸刚度效应)的这些参数和其他参数。

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