Effect of corrosion and sandblasting on the high cycle fatigue behavior of reinforcing B500C steel bars

M. Vasco, P. Polydoropoulou, A. Chamos, S. Pantelakis
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引用次数: 2

Abstract

In a series of applications, steel reinforced concrete structures are subjected to fatigue loads during their service life, what in most cases happens in corrosive environments. Surface treatments have been proved to represent proper processes in order to improve both fatigue and corrosion resistances. In this work, the effect of corrosion and sandblasting on the high cycle fatigue behavior reinforcing steel bars is investigated. The investigated material is the reinforcing steel bar of technical class B500C, of nominal diameter of 12 mm. Steel bars specimens were first exposed to corrosion in alternate salt spray environment for 30 and 60 days and subjected to both tensile and fatigue tests. Then, a series of specimens were subjected to common sandblasting, corroded and mechanically tested. Metallographic investigation and corrosion damage evaluation regarding mass loss and martensitic area reduction were performed. Tensile tests were conducted after each corrosion exposure period prior to the fatigue tests. Fatigue tests were performed at a stress ratio, R, of 0.1 and loading frequency of 20 Hz. All fatigue tests series as well as tensile test were also performed for as received steel bars to obtain the reference behavior. The results have shown that sandblasting hardly affects the tensile behavior of the uncorroded material. The effect of sandblasting on the tensile behavior of pre-corroded specimens seems to be also limited. On the other hand, fatigue results indicate an improved fatigue behavior for the sandblasted material after 60 days of corrosion exposure. Martensitic area reductions, mass loss and depth of the pits were significantly smaller for the case of sandblasted materials, which confirms an increased corrosion resistance.
腐蚀和喷砂对增强B500C钢筋高周疲劳性能的影响
在一系列应用中,钢筋混凝土结构在其使用寿命期间承受疲劳载荷,在大多数情况下发生在腐蚀性环境中。表面处理已被证明是适当的工艺,以提高疲劳和耐腐蚀性。本文研究了腐蚀和喷砂对钢筋高周疲劳性能的影响。所研究材料为技术等级B500C的钢筋,公称直径为12mm。将钢筋试件分别置于盐雾交替腐蚀环境下30和60天,进行拉伸和疲劳试验。然后,对一系列试件进行普通喷砂、腐蚀和力学试验。进行了金相研究和质量损失和马氏体面积减少的腐蚀损伤评估。在疲劳试验之前,在每个腐蚀暴露期之后进行拉伸试验。疲劳试验在应力比R为0.1,加载频率为20 Hz的条件下进行。还对接收的钢筋进行了所有的疲劳试验系列和拉伸试验,以获得参考性能。结果表明,喷砂对未腐蚀材料的拉伸性能影响不大。喷砂对预腐蚀试样拉伸性能的影响似乎也是有限的。另一方面,疲劳结果表明,经过60天的腐蚀暴露后,喷砂材料的疲劳行为有所改善。喷砂材料的马氏体面积减少、质量损失和凹坑深度明显更小,这证实了抗腐蚀性的提高。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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