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Thermal and residual mechanical profile of recycled aggregate concrete prepared with carbonated concrete aggregates after exposure to elevated temperatures

机译:碳化混凝土骨料在高温下暴露后的再生骨料混凝土的热力学和残余力学性能

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Thermal and residual mechanical performance of recycled aggregate concrete (RAC) prepared with recycled concrete aggregates (RCAs) after exposure to high temperatures has so far received less attention than that of conventional concrete prepared with natural aggregates (NAs). This study experimentally investigated thermal and residual mechanical performance of RAC prepared with different replacement percentages of non-carbonated and carbonated RCAs after exposure to high temperatures. The residual mechanical properties, including compressive strength, modulus of elasticity, and peak strain at the maximum strength, were measured for evaluating the fire resistance of RAC. The experimental results showed that although the fire-resistant ability of natural granite aggregates was high, thermal deterioration of the conventional concrete after exposure to 600 degrees C, presented by thermal induced mesocracks, was more serious than that of RAC due to thermal incompatibility between NAs and mortar. Using the carbonated RCAs can reduce the width of thermal mesocrack in RAC. The residual mechanical properties of RAC after exposure to 600 degrees C can be obviously improved by incorporating 20% to 40% of the carbonated RCAs. For the RAC made with the 100% carbonated RCAs, the ratio of residual to initial compressive strength after exposure to above 500 degrees C was even higher than that of the conventional concrete.
机译:迄今为止,用再生混凝土骨料(RCA)制备的再生骨料混凝土(RAC)在高温下的热性能和残余力学性能受到的关注少于使用天然骨料(NAs)制备的常规混凝土。这项研究通过实验研究了暴露于高温后用不同置换百分比的非碳酸和碳酸RCA制备的RAC的热和残余机械性能。测量了残余机械性能,包括抗压强度,弹性模量和最大强度下的峰值应变,以评估RAC的耐火性。实验结果表明,尽管天然花岗岩骨料的耐火性很高,但由于NA之间的热不相容性,传统混凝土在暴露于600摄氏度后由于热介观裂纹所引起的热劣化比RAC更严重。和砂浆。使用碳酸化的RCA可以减小RAC中热中观裂纹的宽度。通过掺入20%至40%的碳酸RCA,可以明显改善RAC暴露于600摄氏度后的残余机械性能。对于由100%碳酸RCA制成的RAC,暴露于高于500摄氏度后的残余抗压强度与初始抗压强度之比甚至比常规混凝土更高。

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