分析光钢振荡与激光方法论

Siti Raudatul Jannah, N. Ratini, Windarjoto Windarjoto, H. Suyanto
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引用次数: 0

摘要

方法已实施。对低碳钢锌铝型进行了浸泡处理(NaCl 3.5%) 10天和不浸泡处理30天的研究。采用能量为120 mJ的激光辐照(Nd-YAG 1064 nm, 7 ns)低碳钢,采集数据累积3次,延时0.5µs。元素识别是通过采集距离表面75 μm的数据来完成的。LIBS分析结果表明,浸泡10天后,低碳钢的腐蚀速度和硬度随浸泡时间的增加而增加。溶解氧强度的减小表明低碳钢的腐蚀速度加快,电化学反应迅速。锌和铝元素强度值的增加表明腐蚀速率的降低,这与金属表面形成钝化膜作为保护层来保护进一步的腐蚀有关。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Analisis Korosifitas Baja Ringan dengan Metoda Laser Induced Breakdown Spectroscopy (LIBS)
Method has been carried out. Research is done on mild steel zincalume type with immersion treatment (NaCl 3.5%) for 10 days, and 30 days and without immersion. Mild steel is laser irradiated (Nd-YAG 1064 nm, 7 ns) with energy of 120 mJ, and the data is taken with an accumulation of 3, delay time of 0.5 µs. Elements identification is done by taking data from up to 75 μm from the surface. The results of the analysis with LIBS showed immersion for 10 days, the corrosion rate and hardness of mild steel increased with 30 days immersion. The increase in the corrosion rate of mild steel is indicated by decreasing the value of dissolved oxygen intensity, the electrochemical reaction is fast. The decrease in the corrosion rate is indicated by the increase in the intensity value of Zn and Al elements associated with the formation of a passive film on the metal surface as a protective layer to protect further corrosion attacks.
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