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Evaluation of Bonding Shear Performance of Ultra-High-Performance Concrete with Increase in Delay in Formation of Cold Joints

机译:超高性能混凝土粘结剪切性能随冷缝形成延迟增加的评估

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摘要

This study set out to derive the optimal conditions for ensuring the monolithicity of ultra-high-performance concrete (UHPC). Direct shear tests were performed to examine the influence on the bonding shear performance. The experimental variables included tamping and delay, which were set to 0, 15, 30, and 60 min. SEM and XRD analyses of the microstructure and composition were performed. The direct shear tests showed that the bonding shear strength was enhanced by the addition of tamping. For the normal-strength concrete (NSC), it is thought that a monolithicity of around 95% can be attained with a cold joint formation delay up to 60 min. In contrast, while the normalized bonding shear strength reduction of UHPC with a delay of 15 min was the lowest at around 8%, a dramatic degradation in the bonding shear performance was observed after 15 min. XRD analyses of the middle and surface sections revealed the composition of the thin film formed at the surface of the UHPC and, as a result, the main component appeared to be SiO2, which is believed to be a result of the rising of the SiO2-based filler, used as an admixture in this study, towards the surface, due to its low specific gravity.
机译:这项研究旨在得出确保超高性能混凝土(UHPC)整体性的最佳条件。进行直接剪切测试以检查对粘结剪切性能的影响。实验变量包括夯实和延迟,分别设置为0、15、30和60分钟。进行了微观结构和组成的SEM和XRD分析。直接剪切试验表明,通过增加夯实,粘结剪切强度得以提高。对于普通强度混凝土(NSC),认为可以达到大约95%的整体性,而冷缝的形成延迟可长达60分钟。相比之下,虽然UHPC的标准化粘结剪切强度降低(延迟15分钟)最低,约为8%,但15分钟后观察到粘结剪切性能急剧下降。中部和表面部分的XRD分析表明,在UHPC表面形成的薄膜的成分,因此,主要成分似乎是SiO2,这被认为是SiO2-上升的结果。基填充料,由于其低的比重,因此在表面上用作混合物。

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