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Sacrificial Anodes for Reinforced Concrete Structures: A Review

机译:钢筋混凝土结构的牺牲阳极:综述

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In recent years the use of sacrificial anodes for cathodic protection in reinforced concrete structures has increased reflecting ease of installation, low maintenance requirements as well as desirability in prestressed concrete structures where the naturally controlled protection potential decreases the risk of hydrogen embrittlement. Zinc-based alloys have been among the most evaluated galvanic materials for concrete structures, especially in USA, in many applications: thermal spray, superficial metal/mesh with and without hydrogel adhesive, embedded in concrete (point anodes) with or without salt activator, etc. However, the protection capacity lifetime of zinc alloys as used has been questioned based both on laboratory and on field application studies. Aluminum alloys have also been evaluated, showing sometimes better results as anode materials than zinc alloys. However, both zinc and aluminum alloy anodes may experience limited applicability in concrete structures exposed only to atmospheric conditions, as opposed to those in immersed, tidal and splash zone service. This paper presents a review of the research work in the literature to date for both laboratory and field evaluations, toward identifying technically relevant situations where the use of sacrificial anodes may or may not be a practical option for reinforcement protection in concrete structures.
机译:近年来,牺牲阳极在钢筋混凝土结构中进行阴极保护的用途有所增加,这反映了安装的便利性,较低的维护要求以及对预应力混凝土结构的期望,在这些应力中,自然控制的保护潜力降低了氢脆的风险。锌基合金在许多应用中,尤其是在美国,已成为用于混凝土结构的最受好评的电镀材料,包括:热喷涂,带有或不带有水凝胶粘合剂的表层金属/网孔,带有或不带有盐活化剂的埋入混凝土(点状阳极),然而,基于实验室和现场应用研究,对所使用的锌合金的保护能力寿命提出了质疑。还对铝合金进行了评估,有时显示出比锌合金更好的阳极材料效果。但是,与浸入式,潮汐式和飞溅区中使用的阳极相反,锌和铝合金阳极在仅暴露于大气条件下的混凝土结构中的适用性可能会受到限制。本文介绍了迄今为止针对实验室和现场评估的文献研究成果,旨在确定在技术上相关的情况下,牺牲阳极的使用可能会或可能不会成为混凝土结构中钢筋保护的实际选择。

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