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INVESTIGATION OF THE ATMOSPHERIC CORROSION OF CARBON STEEL UNDER THE CONDITIONS OF FORMATION OF ADSORPTION AND PHASE MOISTURE FILMS

机译:吸附和相膜形成条件下碳钢的大气腐蚀研究

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摘要

Using eight-electrode electrochemical sensors of the rate of atmospheric corrosion, we study the specific features of the corrosion of carbon steel when adsorption and phase moisture films are formed. We have established that, with decrease in the air relative humidity from 100 to 80%, the corrosion rate falls down by almost three orders of magnitude: from 10~ mm/yr to 10 mm/yr. The corrosion rate of carbon steel on a cooled surface at an air relative humidity of 100% is almost an order of magnitude lower than on a noncooled surface, but, at an air relative humidity of 80%, it is an order of magnitude higher. If the air relative humidity is 80%, then the moisture condensation on a cooled surface begins at a temperature of 50°C, whereas it is not observed on a noncooled surface. In crevices of height 1 mm, where the temperature of their bottom and top surfaces is lower than that of ambient air, the moisture condensation on the sensor surface begins at 40°C, which accelerates the corrosion processes.
机译:使用大气腐蚀速率的八电极电化学传感器,我们研究了在形成吸附膜和相湿膜时碳钢腐蚀的具体特征。我们已经确定,随着空气相对湿度从100%降低到80%,腐蚀速率下降了几乎三个数量级:从10mm / yr到10mm / yr。碳钢在空气相对湿度为100%时在冷却表面上的腐蚀速率几乎比非冷却表面低一个数量级,但在空气相对湿度为80%时,其腐蚀速率则高一个数量级。如果空气相对湿度为80%,则在冷却表面上的湿气凝结始于50°C的温度,而在非冷却表面上则未观察到。在高度为1毫米的缝隙中,其底部和顶部表面的温度低于环境空气的温度,传感器表面上的湿气凝结始于40°C,从而加速了腐蚀过程。

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