Coal-Ash Corrosion of a Chromium-Molybdenum Steel Superheater Tube

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Abstract

The top tube of a horizontal superheater bank in the reheat furnace of a steam generator ruptured after seven years in service. The rupture was found to have occurred in the ferritic steel tubing (2.25Cr-1Mo steel (ASME SA-213, grade T-22)) near the joint where it was welded to austenitic stainless steel tubing (type 321 stainless steel (ASME SA-213, grade TP321H)). The surface temperature of the tube was found to be higher than operating temperature in use earlier. The ferritic steel portion of the tube was found to be longitudinally split and heavily corroded in the region of the rupture. A red and white deposit was found on the sides and bottom of the tube in the rupture area. The deposit was produced by attack of the steel by the alkali acid sulfate and had thinned the tube wall. It was concluded that rupture of the tube had occurred due to thinning of the wall by coal-ash corrosion. The thinned tubes were reinforced by pad welding. Type 304 stainless steel shields were welded to the stainless steel portions of the top reheater tubes and were held in place about the chromium-molybdenum steel portions of the tubes by steel bands.
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铬钼钢过热器管的煤灰腐蚀
某蒸汽发生器加热炉卧式过热器组顶管在使用7年后发生断裂。发现断裂发生在铁素体钢管(2.25Cr-1Mo钢(ASME SA-213,等级T-22))与奥氏体不锈钢管(321型不锈钢(ASME SA-213,等级TP321H))焊接接头附近。在前期使用中发现该管表面温度高于操作温度。管的铁素体钢部分纵向裂开,在破裂区域严重腐蚀。在管的侧面和底部的破裂区域发现了红色和白色的沉积物。该沉积物是由于钢质受到硫酸碱的侵蚀而产生的,使管壁变薄。结论是由于煤灰腐蚀导致管壁变薄,导致管壁破裂。这些变薄的管子通过垫焊加固。304型不锈钢护罩焊接在顶部再热器管的不锈钢部分上,并用钢带固定在管的铬钼钢部分上。
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