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Mechanical and Electrochemical Performance of Carbon Fiber Reinforced Polymer in Oxygen Evolution Environment

机译:析氧环境下碳纤维增强聚合物的力学和电化学性能

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摘要

Carbon fiber-reinforced polymer (CFRP) is recognized as a promising anode material to prevent steel corrosion in reinforced concrete. However, the electrochemical performance of CFRP itself is unclear. This paper focuses on the understanding of electrochemical and mechanical properties of CFRP in an oxygen evolution environment by conducting accelerated polarization tests. Different amounts of current density were applied in polarization tests with various test durations, and feeding voltage and potential were measured. Afterwards, tensile tests were carried out to investigate the failure modes for the post-polarization CFRP specimens. Results show that CFRP specimens had two typical tensile-failure modes and had a stable anodic performance in an oxygen evolution environment. As such, CFRP can be potentially used as an anode material for impressed current cathodic protection (ICCP) of reinforced concrete structures, besides the fact that CFRP can strengthen the structural properties of reinforced concrete.
机译:碳纤维增强聚合物(CFRP)被认为是一种有前途的阳极材料,可以防止钢筋混凝土中的钢腐蚀。但是,CFRP本身的电化学性能尚不清楚。本文通过进行加速极化测试,着重于了解氧气逸出环境中CFRP的电化学和机械性能。在极化测试中以不同的测试持续时间施加不同量的电流密度,并测量馈电电压和电势。之后,进行了拉伸测试以研究极化后CFRP样品的破坏模式。结果表明,CFRP试样具有两种典型的拉伸破坏模式,并且在析氧环境中具有稳定的阳极性能。这样,除了CFRP可以增强钢筋混凝土的结构特性外,CFRP还可潜在地用作增强混凝土结构的外加电流阴极保护(ICCP)的阳极材料。

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