掺有 SN 型缓蚀剂的自密实混凝土的挠曲行为和耐久性能

Zeeshan Shah Khan, Mohammed Moiz
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摘要

本研究旨在通过用 F 级粉煤灰替代 30% 的水泥,制造出一种具有持久特性的自密实混凝土(SCC),并评估其新鲜度、机械性能和耐久性能。此外,还研究了掺入 SN 缓蚀剂的 SCC 的性能。研究了水粉比、细骨料、粗骨料(12 毫米级配)和 SN 缓蚀剂等各种因素。使用筛子分析了材料的粒度分布,以实现均匀的粒度分布、适当的填料和较低的空隙含量。进行了多种混合,每种混合都采用了独特的细骨料和粗骨料组合,并改变了水粉比,以优化混合比例。最后,受控 SCC(或混合料 M2)达到了 EFNARC 指南和规范中规定的新鲜特性标准。研究了受控 SCC 和掺有 SN 缓蚀剂的 SCC 的机械和耐久性能。结果表明,使用对照 SCC 时,钢筋水泥混凝土 (RCC) 梁的抗压强度、劈裂拉伸强度和弯曲性能均有明显改善。此外,与对照 SCC 相比,掺入 2% SN 的 SCC 在氯化物渗透方面表现出更优越的性能。含 2% SN 的 SCC 的抗弯强度参数与对照 SCC 相当。根据研究结果,可以得出结论:在水泥中添加重量百分比为 2% 的抑制剂可提高耐久性能,而不会影响 SCC 的强度性能。因此,可以建议将制作的耐久性 SCC 用于桥梁、预制建筑和钢筋密集的桥面板等应用。这项研究的结果将有助于开发出性能更强的 SCC,从而生产出更耐用、更可持续的建筑材料。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Flexural Behaviour and Durability of Self Compacting Concrete Mixed with SN-Based Corrosion Inhibitor
The present study aimed to create a Self-Compacting Concrete (SCC) that possesses long-lasting properties and evaluate its fresh, mechanical, and durability properties by substituting 30% of the cement with class F fly ash. Furthermore, the performance of SCC that has been admixed with an SN-based corrosion inhibitor was investigated. Various factors such as the ratio of water to powder, fine aggregate, coarse aggregate (12mm downgraded), and the SN-based corrosion inhibitor were studied. The particle size distribution of the materials was analyzed using a sieve to achieve an even distribution of sizes, appropriate packing, and a lower void content. Multiple mixes were conducted, each with a unique combination of fine and coarse aggregate, as well as a water-to-powder ratio that was altered to optimize the mix percentage. Finally, controlled SCC (or mix M2) met the fresh property standards outlined in the EFNARC guidelines and specifications.The mechanical and durability properties of control SCC and SCC admixed with an SN-based corrosion inhibitor were investigated. Results showed a significant improvement in the compressive strength, split tensile strength, and flexural behavior of Reinforced Cement Concrete (RCC) beams when control SCC was utilized. Furthermore, the SCC with 2% SN demonstrated superior performance in terms of chloride penetration compared to the control SCC. The flexural strength parameters of the SCC with 2% SN were comparable to those of the control SCC. Based on the study's findings, it can be concluded that the addition of inhibitors at a weight percentage of 2% of the cement supplied increased durability properties without affecting the strength properties of SCC. Therefore, the created durable SCC can be recommended for applications such as bridges, prefabricated constructions, and deck slabs which are densely crowded with steel rebars. The study's findings could contribute to the development of SCC with enhanced properties, which would lead to more durable and sustainable construction materials.
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