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首页> 外文期刊>Journal of Cleaner Production >Environmental performance and durability of concrete incorporating waste tire rubber and steel fiber subjected to acid attack
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Environmental performance and durability of concrete incorporating waste tire rubber and steel fiber subjected to acid attack

机译:混凝土的环境性能和耐用性掺入废轮胎橡胶和钢纤维对酸发作的影响

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摘要

Corrosion of sewage concrete pipes is a major dilemma in the modern world and annually considerable amounts of money are spent for the maintenance. On the other hand, the use of waste materials in concrete mixes has recently attracted the attention of engineers due to the environmental importance. In this study, the effects of different dosages of steel fibers (SFs) by volume (0, 0.25, 0.5, and 1. %) and different contents of recycled crumb rubber (CR) waste with different fine aggregate (sand) replacement ratios (0, 10, and 20%) were evaluated on the durability properties. The corrosion resistance of the specimens was measured in terms of weight loss, crushing load, ultrasonic wave velocity, impact resistance, and X-ray diffraction analysis (XRD) in different immersion cycles of 15, 30, 45, 60, and 90 days. The most important factors affecting on crushing load, weight, ultrasonic wave velocity and impact resistance were determined by using variance (Anova) method. Also, global warming potential (GWP) was studied as a criterion for CO2 emissions. According to the results, addition of 10% CR and 0.25% SF could create more efficacies for better performance in both terms of durability and crushing load. Besides, the specimen containing 10% CR and 1% SF exhibited the highest performance in the impact resistance. The GWP evaluation shows that the use of CR reduces the amount of CO2 emitted from the production of raw materials consumed. Although adding SFs to the concrete slightly increases CO2 emissions, effects of synthetic CR and SF can be of great benefit in improving durability and impact resistance in sulfuric acid solution. (c) 2020 Elsevier Ltd. All rights reserved.
机译:污水混凝土管的腐蚀是现代世界的重大困境,每年都花费大量资金用于维护。另一方面,由于环境重要性,混凝土混合物中的废料在混凝土混合物中的使用最近引起了工程师的注意。在该研究中,用不同细聚集(沙子)更换比(0,0,20,5,5,1%)和再生碎屑橡胶(Cr)废物的不同剂量(0,0.25,0.5和1.%)和不同含量的影响评估0,10和20%)对耐久性特性进行评估。在不同浸入循环为15,30,40,60和90天的重量损失,破碎载荷,超声波速度,抗冲击性和X射线衍射分析(XRD)方面测量样品的耐腐蚀性。通过使用方差(ANOVA)方法确定影响破碎负荷,重量,超声波速度和抗冲击性的最重要因素。此外,研究了全球变暖潜力(GWP)作为二氧化碳排放的标准。根据结果​​,添加10%Cr和0.25%SF可以在耐用性和破碎负荷方面具有更好的性能,可以产生更多的效率。此外,含有10%Cr和1%SF的样品表现出抗冲击性最高性能。 GWP评估表明,使用CR的使用降低了所消耗的原料生产中的二氧化碳量。尽管将SFS添加到混凝土略微增加CO 2排放,但合成Cr和Sf的效果在提高耐久性和硫酸溶液中的耐冲击性方面可能具有很大的益处。 (c)2020 elestvier有限公司保留所有权利。

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