论文标题
基于电力阻抗(EMI)实时定量评估实时定量评估智能阴极保护系统(EMI)
Smart cathodic protection system for real-time quantitative assessment of corrosion of sacrificial anode based on Electro-Mechanical Impedance (EMI)
论文作者
论文摘要
通常使用阴极保护系统来防止金属结构的腐蚀,这些保护系统采用了牺牲阳极,这些阳极相对于要保护的金属而更优选地腐蚀。在其使用寿命的早期阶段对这些牺牲阳极的原位监测可能会提供几种见解,以使基础设施周围的材料恶化,并用作预防关键基础设施的预防性维护的早期警告指标。在本文中,我们提出了一种基于电力的阻抗(EMI)测量技术,以量化无需手动干预的锌牺牲阳极的腐蚀程度。检测设备由含铅锆酸钛酸盐(PZT)换能器组成,该透明剂固定在圆形锌盘上,当将组件浸入液体电解质(盐溶液)中时,防水环氧树脂可保护转换器元件,以通过印象深刻的电流加速腐蚀。我们开发了一个分析模型,用于通过监测光盘的平面径向膨胀模式的谐振频率的变化来辨别腐蚀程度,该模型还准确地模拟了圆盘中腐蚀产物(锌氧化物)的部分分层引入的非线性。因此,因此开发的分析模型与有限元分析(FEA)和实验结果表现出了极好的一致性。我们的工作确立了所提出的技术在其恶化的早期阶段监测牺牲阳极健康状况的功效,因此可以广泛用于物联网中的结构健康监测应用。
Corrosion of metal structures is often prevented using cathodic protection systems, that employ sacrificial anodes that corrode more preferentially relative to the metal to be protected. In-situ monitoring of these sacrificial anodes during early stages of their useful life could offer several insights into deterioration of the material surrounding the infrastructure as well as serve as early warning indicator for preventive maintenance of critical infrastructure. In this paper, we present an Electro-Mechanical Impedance (EMI) measurement-based technique to quantify extent of corrosion of a zinc sacrificial anode without manual intervention. The detection apparatus consists of a lead zirconate titanate (PZT) transducer affixed onto a circular zinc disc, with waterproofing epoxy protecting the transducer element when the assembly is submerged in liquid electrolyte (salt solution) for accelerated corrosion by means of impressed current. We develop an analytical model for discerning the extent of corrosion by monitoring shift in resonance frequency for in-plane radial expansion mode of the disc, that also accurately models the nonlinearity introduced by partial delamination of the corrosion product (zinc oxide) from the disc. The analytical model thus developed shows excellent agreement with Finite Element Analysis (FEA) and experimental results. Our work establishes the efficacy of the proposed technique for monitoring the state of health of sacrificial anodes in their early stage of deterioration and could thus be widely adopted for structural health monitoring applications within the internet of things.