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Influence of rapid changes of moisture content in concrete and temperature on corrosion rate of reinforcing steel

机译:水分含量快速变化在混凝土中的快速变化对加强钢腐蚀速率的影响

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Electrochemical tests on corrosion rate of reinforcement were performed on six concrete specimens reinforced with a single bar equipped with temperature and concrete moisture sensors. The specimens were kept in a climatic and corrosion chamber where ambient temperature was changing discretely in a temperature range of 7°C-*-35°C, and similarly humid conditions were changing in a range of 30%-r 90%. The tests were also conducted on specimens immersed in water at 7°C and 35°C. Temperature and moisture content in concrete at the bar surface were monitored throughout the tests. The objective of this work was to analyse the influence of rapid changes in climatic conditions maintained for a few-day cycles, on corrosion rate of reinforcement in concrete. The tests demonstrated that the current corrosion process models for concrete reinforcement which assumed an immediate response of corrosion rate to a change in climatic conditions, was correct only for temperature.
机译:在六个混凝土试样上进行了电化学试验,用一个配备温度和混凝土湿度传感器的单个杆加固。试样保持在气候和腐蚀室中,环境温度在7℃ - * - 35℃的温度范围内离径变化,并且类似地潮湿的条件在30%-90%的范围内变化。还在7℃和35℃下浸入水中的试样上进行测试。在整个试验中监测条形表面上的混凝土中的温度和水分含量。这项工作的目的是分析对少日周期保持的气候条件的快速变化的影响,以及混凝土中加固腐蚀速度。该试验证明,用于混凝土增强件的电流腐蚀过程模型,其假设对气候条件变化的腐蚀速率立即响应,仅用于温度。

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