Stress Corrosion Cracking of CO2 Absorber Vessel

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Abstract

Following the discovery numerous cracks at many of the welded seams of a mild steel CO2 absorber vessel, a sample for examination was removed from the worst affected area where repairs had been effected. A 12 in. long circumferential crack was visible. Specimens were taken to cover the several locations of cracking which, in all cases, were found to be similar and of the intergranular type filled with oxide or corrosion product. The association of the cracks with the weld seams indicated that contraction stresses from welding were primarily responsible. Failure of the absorber vessel was found to be due to stress corrosion. Although the active agent present was not positively identified, the aqueous solution of monoethanolamine was thought to be the most probable. The origin of the stresses was not elucidated but the association of the cracks with the welded seams indicated inherent residual stresses as being primarily responsible. Tests carried out tend to suggest that stress relief was not carried out. For the replacement plant, consideration of stress relieving or the use of an alternative material was advised.
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二氧化碳吸收容器的应力腐蚀开裂
在低碳钢二氧化碳吸收容器的许多焊缝处发现了许多裂缝后,从受影响最严重的区域取出了一个样品进行检查,该区域已经进行了维修。12英寸。可见长圆周裂纹。试样被用来覆盖开裂的几个位置,在所有情况下,发现是相似的,并且是充满氧化物或腐蚀产物的晶间型。裂纹与焊缝的联系表明,焊接产生的收缩应力是主要原因。发现吸收器容器的失效是由于应力腐蚀。虽然目前的活性剂没有被确定,但单乙醇胺水溶液被认为是最可能的。应力的来源尚未阐明,但裂纹与焊缝的联系表明,固有残余应力是主要原因。所进行的测试往往表明,没有进行压力缓解。对于替代装置,建议考虑消除应力或使用替代材料。
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