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Basic mechanical behaviours and deterioration mechanism of RC beams under chloride-sulphate environment

机译:氯化物-硫酸盐环境下RC梁的基本力学性能及劣化机理

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This paper investigates the basic mechanical behaviour of reinforced concrete (RC) beams using chloride corrosion-damaged steel reinforcements and subjected to sulphate ions environment. To this end, ten RC beams were studied which contained 5% sodium chloride and implemented by a series of drying immersion cycling (15% sodium sulphate immersion solution). Test results indicated that the flexural capacity, ductility, and stiffness of the beams were improved at early stage of the corrosion. This was attributed to the fact that concrete strength and steel-concrete interfacial bond were enhanced. The former is for the filling effects of micro-expansive Ettringite and gypsum sulphate, while the latter is due to the slight surface corrosion pits of steel bars at the stage. However, the mechanical properties of the beams decreased subsequently for the deteriorations in the concrete strength due to excessive expansion of Ettringite and gypsum sulphate, and the degradation of self-property of reinforcement and its interface bond with the concrete. Based on the study, the deterioration mechanism of RC beams under chloride sulphate environment was discussed and its main determining factors at different stages were analysed. (C) 2017 Elsevier Ltd. All rights reserved.
机译:本文研究了使用氯离子腐蚀破坏的钢筋加固并受硫酸根离子环境影响的钢筋混凝土(RC)梁的基本力学性能。为此,研究了十个RC梁,其中包含5%的氯化钠,并通过一系列干燥浸没循环(15%硫酸钠浸没溶液)实施。测试结果表明,在腐蚀的早期阶段,梁的抗弯能力,延展性和刚度得到了改善。这归因于增强了混凝土强度和钢-混凝土界面粘结的事实。前者用于微膨胀钙矾石和硫酸石膏的填充效果,而后者则是由于该阶段钢筋的轻微表面腐蚀坑。然而,由于钙矾石和硫酸石膏的过度膨胀,以及由于增强材料的自身性能和其与混凝土的界面粘结性的下降,梁的机械性能随后下降,这是由于混凝土强度的降低。在此基础上,探讨了氯离子环境下钢筋混凝土梁的劣化机理,分析了其在不同阶段的主要影响因素。 (C)2017 Elsevier Ltd.保留所有权利。

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