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Electrical Resistivity of Sustainable Fiber Reinforced Concretes for Smart Marine Structures

机译:用于智能海洋结构的可持续纤维增强混凝土电阻率

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Self-monitoring structural materials have recently raised renovated attention due to their potential to enable continuous low-cost monitoring of next-generation smart-structures. This characteristic is particularly important in harsh environments such as highly energetic marine coastal areas, where structural damage due to excessive loading is frequent and very impactful in the performance of structures. In the context this research a sustainable fiber reinforced conductive concrete was developed and studied, with the aim of enabling the future development of self-sensing structural materials and systems for marine harsh environments. The variation of the electrical resistivity with curing time, as well as the compressive load versus displacement responses were investigated. Results indicated that the self-monitoring is possible with sustainable formulations that lead to reasonably conductive concretes. The experimental results seem to indicate that electrical resistivity can be a good parameter for self-monitoring of concrete structures.
机译:自监测结构材料最近引起了经过的潜力,使其能够持续对下一代智能结构进行持续的低成本监测。这种特性在严苛的环境中尤为重要,例如高度充满活力的海洋沿海地区,其中由于载荷过度的结构损坏频繁,并且在结构的性能方面是非常有影响。在该研究中,开发和研究了可持续的纤维增强导电混凝土,其目的是为了使未来的自我传感结构材料和用于海洋恶劣环境的系统的发展。研究了具有固化时间的电阻率的变化,以及压缩载荷与位移响应的变化。结果表明,可持续配方可以进行自我监测,从而导致合理导电的混凝土。实验结果似乎表明电阻率可以是混凝土结构的自我监控的良好参数。

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