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Modeling of bonding between steel rebar and concrete at elevated temperatures

机译:高温下钢筋与混凝土之间的粘结建模

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摘要

A mechanical model of bonding between steel rebar and concrete at elevated temperatures is proposed based on the smear crack theory and the thick-wall cylinder in its partially cracked elastic stage. The relationship between the splitting bond strength and the inner crack radius of the concrete is established by taking into account the variation of the material properties with temperature and the differential thermal expansion of the rebar and the concrete. The model is validated by using previous experimental results on the bond strength. Parametric studies are conducted to investigate the effect of the variation of compres-sive strength of concrete, concrete cover and temperature on the bond strength degradation. It has been found that the estimate of bond strength based on the previous studies may be unconservative if the concrete cover is relatively small compared with the rebar diameter in which case the concrete cover is more susceptible to splitting failure.
机译:基于涂片裂纹理论和厚壁圆筒在其部分破裂的弹性阶段,提出了高温下钢筋与混凝土粘结的力学模型。考虑到材料性能随温度的变化以及钢筋和混凝土的热膨胀差异,建立了混凝土的劈裂粘结强度与内部裂缝半径之间的关系。通过使用以前的粘结强度实验结果验证了该模型。进行了参数研究,以研究混凝土抗压强度,混凝土覆盖层和温度变化对粘结强度降低的影响。已经发现,基于先前的研究,如果混凝土覆盖层与钢筋直径相比相对较小,则对粘结强度的估计可能并不保守,在这种情况下,混凝土覆盖层更容易破裂。

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