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Corrosion Resistance of High Performance Weathering Steel for Bridge Building Applications

机译:桥梁建筑用高性能耐候钢的耐蚀性

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The mechanical properties, corrosion resistance and microstructures of high performance steel (HPS) was investigated by tensile testing machine, Charpy V-Notch (CVN) testing machine, cyclic immersion corrosion tester, XRD, optical microscopy (OM), scanning electron microscopy (SEM), and electron probe micro-analyzer (EPMA). The results showed that significant differences existed in the tensile strength, yield strength and impact toughness between HPS and PCS. After 72 h cyclic immersion accelerated corrosion test, the inner rust layer on HPS was com- posed of a-FeOOH phase and denser than that on PCS that was a mixture of a-FeOOH and Fe3 04. The rust formed on HPS provides better protection and HPS has lower corrosion rates than PCS. Copper and chromium in HPS en- rich in the rust layer and enhance the compactness of the rust layer. Based on the results of the accelerated corrosion tests and rust layer analysis, the roles of Cu and Cr against corrosion are discussed, providing HPS with chemical specification which has been industrially successful to produce weathering steel for bridge structure.
机译:通过拉伸试验机,夏比V缺口(CVN)试验机,循环浸没腐蚀试验机,X射线衍射,光学显微镜(OM),扫描电子显微镜(SEM)研究了高性能钢(HPS)的力学性能,耐蚀性和显微组织。 )和电子探针微分析仪(EPMA)。结果表明,HPS和PCS之间的拉伸强度,屈服强度和冲击韧性存在显着差异。经过72小时的循环浸没加速腐蚀试验,HPS上的内部锈层由a-FeOOH相组成,并且比a-FeOOH和Fe3 04的混合物PCS上更致密。HPS上形成的锈斑提供了更好的防护HPS的腐蚀速率低于PCS。 HPS中的铜和铬会在防锈层中富集并增强防锈层的致密性。根据加速腐蚀试验和锈层分析的结果,讨论了铜和铬对腐蚀的作用,为HPS提供了化学规格,该规格在工业上成功地生产了桥梁结构用耐候钢。

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