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Research on chloride diffusion and flexural behavior of beams strengthened with TRC subjected to dry-wet cycles

机译:干湿循环下TRC加固梁的氯化物扩散和挠曲特性研究

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This paper presents an experimental study on the flexural durability of beams strengthened with TRC subjected to dry-wet cycles. The effects of dry-wet cycles (180, 210, 240, 270 and 330) and the short-cut fiber contents (0, 0.2%, 0.5% and 1%) on chloride transport and flexural behavior were investigated. The results showed that with the increase of dry-wet cycles, the chloride ion content in the TRC increased, while the diffusion coefficient decreased, the micro-structure of the TRC matrix was obviously damaged after 330 cycles. A certain amount of short-cut fibers was beneficial to improve the chloride transport resistance of the TRC matrix. The effect of increasing dry-wet cycles on the overall mechanical properties of the strengthened beams fluctuated when there were few dry-wet cycles. However, the mechanical properties of the strengthened beams significantly diminished after 330 cycles. The mechanical properties of the strengthened beams were enhanced with the increase of short-cut fiber content, and the promotion effect was obvious as it reached 1%. Finally, the ultimate bearing capacity formula of TRC-strengthened beams subjected to dry-wet cycles was modified based on the test results. (C) 2019 Elsevier Ltd. All rights reserved.
机译:本文提出了在干湿循环下用TRC加固的梁的挠曲耐久性的实验研究。研究了干湿循环(180、210、240、270和330)和短纤维含量(0、0.2%,0.5%和1%)对氯化物传输和弯曲行为的影响。结果表明,随着干湿循环次数的增加,TRC中氯离子含量增加,而扩散系数降低,经过330次循环后,TRC基质的微观结构受到明显破坏。一定数量的短切纤维有利于改善TRC基质的耐氯化物传输性。当干湿循环很少时,增加干湿循环对增强梁的整体机械性能的影响就会波动。但是,经过330次循环后,增强梁的机械性能大大降低。随着短纤维含量的增加,增强梁的力学性能得到提高,达到1%时,促进作用明显。最后,根据试验结果修改了经干湿循环的TRC增强梁的极限承载力公式。 (C)2019 Elsevier Ltd.保留所有权利。

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