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Review of Repair Materials for Fire-Damaged Reinforced Concrete Structures

机译:审查防火钢筋混凝土结构的维修材料

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Reinforced concrete (RC) structures perform well during fire and may be repaired after the fire incident because their low heat conductivity prevents the loss or degradation of mechanical strength of the concrete core and internal reinforcing steel. When an RC structure is heated to more than 500 °C, mechanical properties such as compressive strength, stiffness, and tensile strength start to degrade and deformations occur. Although the fire-exposed RC structure shows no visible damage, its residual strength decreases compared with that in the pre-fire state. Upon thorough assessment, the fire-damaged RC structure can be repaired or strengthened, instead of subjecting to partial or total demolition followed by reconstruction. The structure can be repaired using several materials, such as carbon fiber-reinforced polymer, glass fiber-reinforced polymer, normal strength concrete, fiber-reinforced concrete, ferrocement, epoxy resin mortar, and high-performance concrete. Selecting an appropriate repair material that must be compatible with the substrate or base material is a vital step to ensure successful repair. This paper reviews existing repair materials and factors affecting their performance. Of the materials considered, ultra-high-performance fiber-reinforced concrete (UHPFRC) exhibits huge potential for repairing fire-damaged RC structures but lack of information available. Hence, further studies must be performed to assess the potential of UHPFRC in rehabilitating fire-damaged RC structures.
机译:钢筋混凝土(RC)结构在火灾期间表现良好,可能在火灾发生后修复,因为它们的低导热性可防止混凝土芯和内部加强钢的机械强度的损耗或劣化。当RC结构加热至超过500℃时,诸如压缩强度,刚度和拉伸强度的机械性能开始降低和变形。虽然曝光的RC结构没有明显的损坏,但其残留的强度与预防状态相比减少。在彻底的评估后,可以修复或加强防火RC结构,而不是进行部分或全拆性,然后重建。该结构可以使用几种材料进行修复,例如碳纤维增强聚合物,玻璃纤维增​​强聚合物,正常强度混凝土,纤维增强混凝土,纤维纤维,环氧树脂砂浆和高性能混凝土。选择必须与基板或基材兼容的合适的修复材料是确保成功修复的重要步骤。本文审查了现有的维修材料和影响其性能的因素。考虑了材料的材料,超高性能纤维钢筋混凝土(UHPFRC)对修复火灾损坏的RC结构但缺乏可用信息的巨大潜力。因此,必须进行进一步的研究以评估UHPFRC在恢复防火RC结构中的潜力。

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