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Corrosion Behavior of Steel Reinforcement in Concrete with Recycled Aggregates Fly Ash and Spent Cracking Catalyst

机译:再生骨料粉煤灰和废裂化催化剂对钢筋混凝土的腐蚀行为

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摘要

The main strategy to reduce the environmental impact of the concrete industry is to reuse the waste materials. This research has considered the combination of cement replacement by industrial by-products, and natural coarse aggregate substitution by recycled aggregate. The aim is to evaluate the behavior of concretes with a reduced impact on the environment by replacing a 50% of cement by industrial by-products (15% of spent fluid catalytic cracking catalyst and 35% of fly ash) and a 100% of natural coarse aggregate by recycled aggregate. The concretes prepared according to these considerations have been tested in terms of mechanical strengths and the protection offered against steel reinforcement corrosion under carbonation attack and chloride-contaminated environments. The proposed concrete combinations reduced the mechanical performance of concretes in terms of elastic modulus, compressive strength, and flexural strength. In addition, an increase in open porosity due to the presence of recycled aggregate was observed, which is coherent with the changes observed in mechanical tests. Regarding corrosion tests, no significant differences were observed in the case of the resistance of these types of concretes under a natural chloride attack. In the case of carbonation attack, although all concretes did not stand the highly aggressive conditions, those concretes with cement replacement behaved worse than Portland cement concretes.
机译:减少混凝土工业对环境的影响的主要策略是重复利用废料。这项研究考虑了工业副产品替代水泥和天然粗骨料替代回收骨料的结合。目的是通过用工业副产品(50%的废催化裂化催化剂和35%的粉煤灰)和100%的天然副产品代替50%的水泥,从而评估对环境影响较小的混凝土的性能。粗骨料的回收骨料。根据这些考虑制备的混凝土已经过机械强度测试,并在碳化腐蚀和氯化物污染的环境下提供了针对钢筋增强腐蚀的保护措施。提出的混凝土组合在弹性模量,抗压强度和抗弯强度方面降低了混凝土的机械性能。另外,观察到由于存在再循环的骨料而导致的开孔率增加,这与在机械测试中观察到的变化一致。关于腐蚀试验,在天然氯化物侵蚀下,这些类型的混凝土的抵抗力没有观察到显着差异。在碳化作用的情况下,尽管所有混凝土都不能承受高侵蚀性条件,但是那些用水泥替代的混凝土的性能比波特兰水泥混凝土差。

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