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The factor time at the formation and development of the passive layer in the atmosphere

机译:大气中被动层形成和发展的时间因子

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Passive layers on high alloyed chromium nickel steels protect the metal from corrosion. The protective effect of the passive layer, however, does not immediately exist after the final surface treatment. Some time is necessary to form the protective layer. The exposure conditions are also decisive for the formation and further development of the passive layer besides the surface treatment. Samples of different chromium nickel steels are pickled and active passivated before they are exposed under laboratory conditions and in outdoor climates at different locations. The state of the corrosion resistance of the surface is determined with electrochemical noise measurements after different exposure times. The decreasing activity of the surface with an increasing exposure time indicates the further formation process of the protective qualities of the passive layer. An index which quantifies the state of the surface at the time of the measuring is calculated from the measured potential and potential noise signals. With these results, the development of the passive layer can be assessed and the corrosion resistance of the metal can then be estimated.
机译:高合金铬镍钢上的钝化层可保护金属免受腐蚀。然而,钝化层的保护作用在最终表面处理之后并不立即存在。形成保护层需要一些时间。除了表面处理之外,曝光条件对于钝化层的形成和进一步发展也具有决定性作用。对不同铬镍钢的样品进行酸洗和活性钝化,然后在实验室条件和室外气候下的不同位置进行暴露。在不同的暴露时间后,通过电化学噪声测量来确定表面的耐腐蚀状态。随着暴露时间的增加,表面活性降低,表明钝化层的保护质量进一步形成。根据测量的电位和电位噪声信号,计算出在测量时量化表面状态的指标。利用这些结果,可以评估钝化层的发展,然后可以评估金属的耐腐蚀性。

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