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Design of filling self-stressing concrete to use in strengthening of columns by prefabricated jacketing

机译:用预制夹套加固填充自压力混凝土的设计

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摘要

This study proposes the design and characterization of an expansive self-compacting concrete (SCC) with self-stressing properties for its use as a filling in reinforcement systems by external prefabricated jacketing. The self-compacting characteristic ensures the correct filling of the inner space and the characteristic of expansiveness (self-stressing) guarantees a correct transmission of tensions from the column to the prefabricated reinforcement jacket. In the design, a K-type expansive agent based on calcium sulfoaluminate is used in the doses of 10% and 15% and the influence of its addition on the fresh properties and the compressive strength on the reference mix of SCC is analysed. The restrained expansion is evaluated in prisms by the standard method ASTM C878 and by means of an alternative method based on a double ring device that simulates the configuration of reinforcement systems using carbon fiber reinforced polymers (CFRP) or steel external jacketing. Finally, the efficiency of the proposed strengthening system is compared to that usually used for CFRP jacketing directly glued on the element like concrete specimens and reinforced concrete columns. The results show that the double-ring based test device presents a high degree of correlation with the prism-based standard method and that the proposed strengthening based on filling self-stressing SCC and external prefabricated jacketings is an efficient solution that allows to move from a passive reinforcement system (CFRP jacketing glued directly to the column) to an active one that allows the reinforcement to contribute from the initial moments of the cast-in-place of the self-stressing SCC. (C) 2020 Elsevier Ltd. All rights reserved.y
机译:本研究提出了具有膨胀性自压力混凝土(SCC)的设计和表征,其用外部预制夹套作为填充系统的填充物。自压式特性确保了内部空间的正确填充和膨胀性的特性(自重应力)保证了从柱子到预制的加强套的紧张局势的正确传输。在设计中,基于磺钙酸钙的K型膨胀剂在10%和15%的剂量中使用,分析了SCC参考混合物对新鲜性质和抗压强度的影响。通过标准方法ASTM C878并通过基于双环装置的替代方法在棱镜中评估抑制的膨胀,该方法使用碳纤维增强聚合物(CFRP)或钢外套模拟增强系统的配置。最后,将所提出的强化系统的效率与通常用于CFRP护套直接粘在混凝土样本和钢筋混凝土柱的元素上的效率进行比较。结果表明,基于双环的测试装置与基于棱镜的标准方法具有高度相关性,并且基于填充自重的SCC和外部预制护套的提出强化是一种有效的解决方案,允许从A移动被动加固系统(CFRP护套直接粘在柱上)到有效的系统,允许加强件从自我应力SCC的铸造的初始时刻贡献。 (c)2020 elestvier有限公司版权所有.Y

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