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Steel fibre content and interconnection induced electrochemical corrosion of Ultra-High Performance Fibre Reinforced Concrete (UHPFRC)

机译:钢纤维含量和互联诱导超高效纤维钢筋混凝土电化学腐蚀(UHPFRC)

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摘要

This study addresses the steel fibre content and interconnection induced electrochemical corrosion of Ultra-High Performance Fibre reinforced Concrete (UHPFRC) subjected to critical marine environment. The design basis of UHPFRC matrix is particle close packing principle, and then its fresh and hardened properties are investigated. After that, the AC-impedance spectroscopy is used to measure the electrical resistivity of the developed UHPFRC with different fibre amount. Furthermore, to clarify the distribution and interconnection of fibres in the hardened UHPFRC, an X-ray CT is employed. The obtained results show that with an increase of the added fibres amount, the rapid chloride migration (D-RCM) and the electrical resistivity of the designed UHPFRC simultaneously decrease. When the added steel fibres amount reach 2% (vol.), a sharply decrease of the electrical resistivity can be observed, which implies that a steel fibre network formation could be obtained in the hardened UHPFRC.
机译:本研究解决了临界海洋环境的超高性能纤维钢筋混凝土(UHPFRC)的钢纤维含量和互连诱导的电化学腐蚀。 UHPFRC基质的设计基础是粒子关闭填料原理,然后研究了其新鲜和硬化的性质。 之后,AC阻抗光谱用于测量具有不同纤维量的发育UHPFRC的电阻率。 此外,为了阐明硬化UHPFRC中的纤维的分布和互连,采用X射线CT。 得到的结果表明,随着添加的纤维量的增加,氯化物迁移(D-RCM)的快速迁移(D-RCM)和电阻率同时降低。 当添加的钢纤维量达到2%(Vol.)时,可以观察到电阻率急剧下降,这意味着可以在硬化的UHPFRC中获得钢纤维网络形成。

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