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首页> 外文期刊>Composite Structures >Fatigue performance of NSM CFRP strips embedded in concrete using innovative high-strength self-compacting cementitious adhesive (IHSSC-CA) made with graphene oxide
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Fatigue performance of NSM CFRP strips embedded in concrete using innovative high-strength self-compacting cementitious adhesive (IHSSC-CA) made with graphene oxide

机译:使用由氧化石墨烯制成的创新型高强度自密实水泥胶粘剂(IHSSC-CA),将NSM CFRP条带埋入混凝土中的疲劳性能

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摘要

The efficiency of strengthening reinforced concrete (RC) structures using the near-surface mounted (NSM) fibre reinforced polymer (FRP) technique depends on the bond between the NSM FRP and the concrete substrate. This paper presents the results of an experimental study of NSM carbon FRP strips bonded to concrete substrate with innovative high-strength self-compacting cementitious adhesive (IHSSC-CA) under fatigue loading using single-lap shear tests. Graphene oxide and cementitious materials were used to synthesise the IHSSC-CA. The test variables were: CFRP strip dimensions (1.4 x 10 mm, 1.4 x 20 mm) and CFRP strip surface conditions (smooth, rough). 61 specimens were tested under different fatigue load ranges to develop the load range (LR)-fatigue life (N) relationships. Finally, equations were developed to predict fatigue lives based on the experimental results. It was found that the rough surface CFRP strips 1.4 x 20 mm in dimensions showed the best fatigue life under different fatigue load levels. Moreover, the test results confirm the effectiveness of using IHSSC-CA to bond NSM CFRP strips to the concrete substrate. Furthermore, the proposed equations can predict fatigue life reasonably well and can be used in the design of NSM CFRP-strengthened RC members. (C) 2016 Elsevier Ltd. All rights reserved.
机译:使用近表面安装(NSM)纤维增强聚合物(FRP)技术来增强钢筋混凝土(RC)结构的效率取决于NSM FRP和混凝土基材之间的结合力。本文介绍了使用创新的高强度自密实胶结胶粘剂(IHSSC-CA)在疲劳载荷下使用单圈剪切试验将NSM碳纤维增强塑料条粘结到混凝土基材上的实验研究结果。氧化石墨烯和胶凝材料被用来合成IHSSC-CA。测试变量为:CFRP带材尺寸(1.4 x 10 mm,1.4 x 20 mm)和CFRP带材表面状况(光滑,粗糙)。在不同的疲劳载荷范围内测试了61个试样,以建立载荷范围(LR)-疲劳寿命(N)的关系。最后,根据实验结果开发了方程来预测疲劳寿命。发现在不同疲劳载荷水平下,尺寸为1.4 x 20 mm的CFRP粗糙表面条显示出最佳的疲劳寿命。此外,测试结果证实了使用IHSSC-CA将NSM CFRP条粘结到混凝土基材上的有效性。此外,所提出的方程可以很好地预测疲劳寿命,并且可以用于NSM CFRP加固的RC构件的设计。 (C)2016 Elsevier Ltd.保留所有权利。

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