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Comparative Performance of Four Electrodes for Measuring the Electromechanical Response of Self-Damage Detecting Concrete under Tensile Load

机译:四个电极测量抗拉载荷检测混凝土机电响应的四个电极的比较性能

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摘要

Self-damage or/and stress-sensing concrete is a promising area of research for measuring the electromechanical response of structural materials using more robust sensors. However, the copper and silver paste sensors widely used in such applications can be expensive and have detrimental effects on the load carrying capacity and durability of the structural systems upon which they are installed. Accordingly, this study compared the performance of four electrode types—conventional copper tape with silver paste (CS), copper film with type 1 carbon tape (CC1), copper film with type 2 carbon tape (CC2), and copper wire and film with type 2 carbon tape (WC2)—to develop an economical and practical electrode for measuring the electromechanical response of self-damage-detecting concrete. The CC1 electrode exhibited comparable performance to the CS electrode in measuring the electromechanical response of self-damage-detecting concrete, despite requiring a longer polarization time (80 s) than the CS electrode (25 s). The CS electrode exhibited a higher damage-sensing capacity (GF2), whereas the CC1 electrode exhibited a higher strain-sensing capacity (GF1), as well as good damage-sensing capacity. Therefore, the CC1 electrode using copper film with type 1 carbon tape was determined to be the best alternative to the conventional CS electrode.
机译:自损伤或/和应激传感混凝土是测量结构材料使用更强大的传感器的结构材料的有希望的研究领域。然而,广泛用于这种应用中的铜和银浆体传感器可以是昂贵的并且对安装它们的结构系统的负载承载能力和耐久性具有昂贵的影响。因此,该研究比较了四个电极类型 - 常规铜带的性能与银糊(Cs),铜膜,1型碳胶带(CC1),带2型碳胶带(CC2)的铜膜和铜线和薄膜2型碳胶带(WC2) - 开发一种经济实用的电极,用于测量自损伤混凝土的机电响应。尽管需要比CS电极(25s)更长的偏振时间(80s),CC1电极在测量自损检测混凝土的机电响应时表现出与CS电极的相当性能。 CS电极表现出更高的损伤感应容量(GF2),而CC1电极表现出更高的应变感应容量(GF1),以及良好的损伤感应能力。因此,确定使用具有1型碳带的铜膜的CC1电极是传统CS电极的最佳替代方法。

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