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Experimental investigations on residual bond performance in concrete subjected to elevated temperature

机译:高温下混凝土残余粘结性能的试验研究

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摘要

In this work, the residual bond performance of reinforcement in concrete under elevated temperatures is experimentally investigated using the cuboidal (square prismatic) concrete specimens. The test reinforcement was placed at different cover distances with an aim to study the influence of elevated temperature on bond pullout and bond splitting behavior. It was found that under ambient conditions as well as after exposure to elevated temperature, concrete cover has a strong influence on the absolute value of the bond strength and failure mode. The thermal degradation of bond strength is found to be similar to that of compressive or tensile strength of concrete for pure bond or splitting failure respectively. The level of confinement provided by the concrete cover to the rebar reduces with increasing temperature, while the width of splitting cracks increases with increasing temperature. The bond stiffness gradually reduces with the increase in exposure temperature for both pullout and splitting failure. The details and the results of the experimental investigations are reported in this paper.
机译:在这项工作中,使用立方形(方形棱柱)混凝土试样,通过实验研究了钢筋在高温下的残余粘结性能。将测试钢筋放置在不同的覆盖距离处,目的是研究高温对粘结拉出和粘结分裂行为的影响。发现在环境条件下以及暴露于高温后,混凝土覆盖层对粘结强度和破坏模式的绝对值有很大的影响。发现粘结强度的热降解分别类似于纯粘结或劈裂破坏的混凝土的抗压强度或拉伸强度。随着温度的升高,混凝土保护层对钢筋的限制程度降低,而裂缝的宽度随着温度的升高而增加。对于拔出和劈裂失败,结合刚度随着暴露温度的升高而逐渐降低。本文报道了实验研究的细节和结果。

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