Study of Steel Corrosion by Application of Neutron Activation Analysis

M. Šimková, D. Kuchynka
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Abstract

For the study f the precise corrosion process a method of neutron instrumental activation analysis for evaluating of constructional material usability in various chemical industry equipment was used. Steel specimens having a size of 20 mm × 15 mm × 0,3 mm were irradiated in a reactor VVR-S during 80 hours at a neutron flux of 2 × 1017 nm−2 s−1. The cooling time before starting the corrosion experiment was one month. The corrosion tests were performed according to a Czechoslovak Standard. Liquid portions of the corrosion medium taken during the corrosion process were measured gamma-spectrometrically. The experiments gave evidence that in the initial stage of corrosion the compounds of metal are dissolving unequable. In the next phase a steady state is set up, but in many cases the disproportion in solubility of the compounds lasted on. In practice it is very important to know corrosion speed and ratio in a steady state.
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应用中子活化分析研究钢的腐蚀
为了研究精密腐蚀过程,采用中子仪器活化分析方法评价了各种化工设备中结构材料的可用性。尺寸为20 mm × 15 mm × 0,3 mm的钢试样在VVR-S反应堆中以2 × 1017 nm−2 s−1的中子通量照射80小时。腐蚀实验开始前的冷却时间为1个月。腐蚀试验是根据捷克斯洛伐克标准进行的。在腐蚀过程中所取的腐蚀介质的液体部分用伽玛光谱法进行了测量。实验证明,在腐蚀初期,金属化合物的溶解是不均匀的。下一阶段建立了稳定状态,但在许多情况下,化合物溶解度的不平衡继续存在。在实际应用中,了解稳定状态下的腐蚀速率和腐蚀比是非常重要的。
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