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Performance investigations of reinforced magnesium phosphate concrete beams under accelerated corrosion conditions by multi techniques

机译:多种技术对钢筋磷酸镁混凝土梁在加速腐蚀条件下的性能研究

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摘要

Due to the specific characteristics such as rapid strength development, fast setting, and cohesive, magnesium phosphate cement (MPC) is becoming the most widely used materials for the maintenance of existing engineering structures. However, MPC has lower pH value than ordinary Portland cement (OPC). In this case, corrosion is becoming a big challenge for MPC concrete in harsh environment. To investigate the performance of reinforced MPC structures, a group of accelerated corrosion experiments was conducted on reinforced MPC concrete beams under accelerated corrosion conditions. Three non-destructive testing techniques including Half-cell Potential method, Galvanic Current method, and Acoustic Emission technique were employed to monitor the corrosion situation of the reinforcement in the test beams. Based on the measurement results, the effect of magnesium phosphate in the reinforced beam corrosion can be revealed and analyzed. Finally, accelerated corrosion tests of reinforcements in the OPC and MPC concrete beams were conducted to confirm the durability of MPC concrete. From the test results, it can be found that there is an acceptable discrepancy between the corrosion resistance performances of OPC and MPC concrete. Therefore, it can be said that the MPC concrete can be used as an alternative for the OPC concrete in the maintenance of marine buildings. (C) 2015 Elsevier Ltd. All rights reserved.
机译:由于诸如快速强度发展,快速凝固和内聚性等特定特性,磷酸镁水泥(MPC)成为维护现有工程结构的最广泛使用的材料。但是,MPC的pH值低于普通波特兰水泥(OPC)。在这种情况下,腐蚀已成为恶劣环境下MPC混凝土的一大挑战。为了研究增强型MPC结构的性能,在加速腐蚀条件下对增强型MPC混凝土梁进行了一组加速腐蚀实验。采用了三种无损检测技术,包括半电池电位法,电流检测法和声发射技术,来监测钢筋在测试梁中的腐蚀情况。根据测量结果,可以揭示和分析磷酸镁对增强梁腐蚀的影响。最后,对OPC和MPC混凝土梁中的钢筋进行了加速腐蚀试验,以确认MPC混凝土的耐久性。从测试结果可以发现,OPC和MPC混凝土的耐腐蚀性之间存在可接受的差异。因此,可以说,MPC混凝土可以用作海洋建筑维护中OPC混凝土的替代品。 (C)2015 Elsevier Ltd.保留所有权利。

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