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Microscale miniaturisation of chloride ion detection sensors for long-term embedding in reinforced concrete structures

机译:氯化物离子检测传感器的微观小型化,用于钢筋混凝土结构的长期嵌入

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摘要

Chloride ions are a potential cause of rebar corrosion in a reinforced concrete (RC) structure. Corrosion causes the rebar to expand, thereby stressing the concrete and causing the structure to deteriorate in time. An embedded chloride ion sensory system would enable real-time detection of chloride ions in the pore solution which enables timely corrective action to be taken to save the structure. Ideally, such a sensory system would be a miniature, low-cost and durable integrated circuit (IC)-sized device. This would enable widespread deployment of such a system inside many of the RC structures being built around the world. This literature review paper endeavours to look at currently existing technology in a bid to identify technology areas which can be developed through future research to design an operational IC-sized chloride ion detection system. Such a review is highly innovative as such sensors have not yet been miniaturised to the microscale IC level. The paper also uses a specifically developed parametric score system through which the best technology for miniaturisation could be identified. After comparing the various technologies which can be used to build the miniaturised chloride ion detection, the area which was found to be most promising was one based on potential measurement using galvanic voltage measurement.
机译:氯离子是钢筋混凝土(RC)结构中钢筋腐蚀的潜在原因。腐蚀使钢筋扩展,从而强调混凝土并导致结构及时恶化。嵌入的氯离子感觉系统将能够实时检测孔隙溶液中的氯离子,这使得能够及时纠正措施以保存结构。理想情况下,这种感觉系统将是微型,低成本和耐用的集成电路(IC)的设备。这将使这种系统的广泛部署在世界各地建造的许多RC结构中。本文的文献审查纸张努力,以识别通过未来研究可以开发的技术领域的现有技术,以设计操作IC氯离子离子检测系统。这种审查是高度创新的,因为这种传感器尚未落入微米IC水平。本文还采用了专门开发的参数分数系统,通过该系统,可以识别最佳小型化技术。在比较可用于构建小型化氯离子检测的各种技术之后,发现最有前途的区域是基于使用电压电压测量的电位测量的区域。

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