碳素钢管因氢致开裂和脱碳而破裂

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引用次数: 0

摘要

75mm外径× 7.4 mm壁厚的碳钢锅炉管破裂。通过目测发现,在靠近破裂处的水面上有相当程度的腐蚀,留下了一个粗糙的区域。断口处管壁断面的显微检查显示脱碳和广泛的不连续晶间裂纹。结果表明,钢中溶解的氢与碳反应生成甲烷是氢损伤所致。氢气是由腐蚀管内表面的化学反应产生的。氢脆的钢只有在晶界开裂或脱碳没有发生的情况下才能恢复,但由于材料以这种方式脆化,建议更换。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Rupture of a Carbon Steel Tube Because of Hydrogen-Induced Cracking and Decarburization
A 75 mm OD x 7.4 mm wall thickness carbon steel boiler tube ruptured. A substantial degree of corrosion on the water-side surface leaving a rough area in the immediate vicinity of the rupture was revealed by visual examination. Decarburization and extensive discontinuous intergranular cracking was revealed by microscopic examination of a cross section through the tube wall at the fracture. It was concluded that the rupture occurred because of hydrogen damage involving the formation of methane by the reaction of dissolved hydrogen with carbon in the steel. Hydrogen was produced by the chemical reaction that corroded the internal tube surface. Steel embrittled by hydrogen can be restored only if grain boundary cracking or decarburization had not occurred but since the material embrittled in this manner, its replacement was recommended.
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