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Heat Behavior of Electrically Conductive Concretes with and without Rebar Reinforcement

机译:导电混凝土的热性能,无螺旋加固

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摘要

Lately, electrically conductive concrete (ECC) is being investigated to prevent accumulation of snow and ice. The conductivity of electrical conductive concretes containing steel fiber is reduced by the corrosion of the steel fiber in time. Therefore, it is proposed to produce electrical conductive concretes that does not contain steel fibers recently. In this study, it is aimed to examine rebars in electrical conductive concretes non containing steel fiber. For this, 45?′?45?′?5?cm ECC slabs with and without ?10 rebars were produced. Carbon fiber was used as a single fiber type in the mixtures. The heating times and thermal behaviors of the slab specimens were examined in a cooler at about –?10?°C. According to the results, the temperature in the rebars reinforced specimens has increased first in the regions near the electrodes and then proceeds towards the middle of the specimen. In non-rebars specimens, temperature rise has started from random points.
机译:最近,正在研究导电混凝土(ECC)以防止积雪累积。通过钢纤维及时腐蚀,减少了含有钢纤维的导电混凝土的电导率。因此,提出了最近产生不含钢纤维的导电混凝土。在这项研究中,旨在检查导电混凝土中的钢筋非含钢纤维。为此,45?'?45?'?5?CM ECC板坯,没有?10个钢筋。在混合物中使用碳纤维作为单纤维型。在约10℃的冷却器中检查平板样本的加热时间和热行为。根据结果​​,钢筋增强标本中的温度在电极附近的区域中首先增加,然后朝向标本的中间进入。在非钢筋标本中,温度上升已经从随机点开始。

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