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Feasibility of externally activated self-repairing concrete with epoxy injection network and Cu-Al-Mn superelastic alloy reinforcing bars

机译:带有环氧注入网络和Cu-Al-Mn超弹性合金钢筋的外部活化自修复混凝土的可行性

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摘要

This paper studies the effectiveness of an externally activated self-repairing technique for concrete members with epoxy injection network and Cu-Al-Mn superelastic alloy (SEA) reinforcing bars (rebars). Compared to existing crack self-repairing and self-healing techniques, the epoxy injection network has the following strengths: (1) Different from the self-repairing methods using brittle containers or tubes for adhesives, the proposed self-repair process can be performed repeatedly and is feasible for onsite concrete casting. (2) Different from the autogenic self-healing techniques, full strength recovery can be achieved in a shorter time period without the necessity of water. This paper attempts to enhance the self-repairing capability of the epoxy injection network by reducing residual cracks by using cost-effective Cu-based SEA bars. The effectiveness of the present technique is examined using concrete beam specimens reinforced by 3 types of bars. The first specimen is reinforced by steel deformed bars, the second by steel threaded bars, and finally by SEA threaded rebars. The tests were performed with a 3 point cyclic loading with increasing amplitude. From the test results, effective self-repairing was confirmed for small deformation levels irrespective of the reinforcement types. Effective self-repairing was observed in the SEA reinforced specimen even under much larger deformations. Nonlinear finite element analysis was performed to confirm the experimental findings.
机译:本文研究了一种外部活化的自修复技术对带有环氧树脂注入网络和Cu-Al-Mn超弹性合金(SEA)钢筋(钢筋)的混凝土构件的有效性。与现有的裂纹自修复和自修复技术相比,环氧树脂注入网络具有以下优势:(1)与使用脆性容器或胶粘剂的自修复方法不同,所提出的自修复过程可以重复执行并且对于现场混凝土浇铸是可行的。 (2)与自体自我修复技术不同,无需水即可在更短的时间内实现完全的强度恢复。本文试图通过使用具有成本效益的铜基SEA棒来减少残留裂纹,从而增强环氧注入网络的自修复能力。本技术的有效性通过使用3种钢筋加固的混凝土梁样本进行了检验。第一个试样用钢变形钢筋加固,第二个用钢螺纹钢筋加固,最后用SEA螺纹钢筋加固。测试是在3点循环负载下进行的,幅度不断增加。从测试结果可以确认,对于较小的变形水平,无论钢筋类型如何,都可以进行有效的自我修复。即使在更大的变形下,在SEA增强的试样中也观察到有效的自我修复。进行了非线性有限元分析,以确认实验结果。

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