Sigma Phase Effect on Pitting Corrosion of Super Duplex Stainless Steel UNS S32750

Karyanto Herlambang, Aldyno Henry
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Abstract

The welding process on Super Duplex Stainless Steel material can cause decreased corrosion resistance of Super Duplex Stainless Steel material. This process occurs a lot in the heat treatment process piping and pipeline. This decrease in corrosion resistance occurs due to the formation of sigma phase precipitation due to heat treatment of the metal. This research will determine the relationship between the ratio of heat input cold pass: the ratio of heat input root pass to the percentage of sigma phase and the relationship between the percentage of sigma phase to the weight loss value. accompanied by the formation of pitting corrosion on UNS S32750 Super Duplex Steel. Test Coupon (TC) specimens obtained from as-welded with the ratio of heat input cold pass : ratio of heat input root pass (TC-1=74%; TC-2=70%; TC-3=68%; TC-4=61 %) which was then tested for microstructure. The percentage of sigma phase obtained is TC-1 = 13.96%, TC-2 = 8.33%, TC-3 = 8.33%, and TC-4 = 4.38%). The corrosion resistance test yielded weight loss values (TC-1 = 14.67 gr/m2, TC-2 = 11.71 gr/m2, TC-3 = 1.27 gr/m2, and TC-4 = 2.71 gr/m2). This study concludes that the formation of the sigma phase will be directly proportional to the value of the root pass heat input ratio: the cold pass heat input ratio. The higher the percentage of sigma phase, the higher the weight loss value in the corrosion test, which will cause pitting corrosion.
超级双相不锈钢S32750点蚀的Sigma相效应
超级双相不锈钢材料的焊接工艺会导致超级双相不锈钢材料的耐蚀性下降。这一过程在管道和管道的热处理工艺中经常发生。这种耐蚀性的下降是由于金属热处理形成的sigma相沉淀造成的。本研究将确定热输入冷通比、热输入根通比与西格玛相百分比、西格玛相百分比与减重值之间的关系。同时在UNS S32750超级双相钢上形成点蚀。热输入冷道比:热输入根道比(TC-1=74%;TC-2 = 70%;TC-3 = 68%;TC-4= 61%),然后进行显微组织测试。得到的sigma相比例为TC-1 = 13.96%, TC-2 = 8.33%, TC-3 = 8.33%, TC-4 = 4.38%)。耐腐蚀试验得出失重值(TC-1 = 14.67 gr/m2, TC-2 = 11.71 gr/m2, TC-3 = 1.27 gr/m2, TC-4 = 2.71 gr/m2)。本研究得出sigma相的形成将与根通热输入比即冷通热输入比的值成正比。sigma相含量越高,腐蚀试验失重值越高,会引起点蚀。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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