Ductile Fracture of a Forged Steel Shaft at a Change in Section and at a Stainless Steel Weld

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Abstract

The stub-shaft assembly which was part of the agitator shaft in a polyvinyl chloride reactor, fractured in service after a nut that retained a loose sleeve around the smaller-diam section of the shaft had been tightened several times to reduce leakage. The shaft was made of ASTM A105, grade 2 steel, and the larger-diam section was covered with a type 316 stainless steel end cap. The cap was welded to each end using type ER316 stainless steel filler metal. The forged steel shaft was revealed to have fractured at approximately 90 deg to the shaft axis in the weld metal and not in the heat-affected zone of the forged steel shaft. Microscopic investigation and chemical analysis of the steel shaft revealed presence of martensite (offered a path of easy crack propagation) around the fusion line and dilution of the weld metal by the carbon steel shaft. The microstructure was found to be martensitic as the fusion line was approached. The forged steel shaft was concluded to have failed by ductile fracture and possible reasons were discussed. Corrective measures adopted in the replacement shaft were specified.
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锻钢轴在截面变化和不锈钢焊缝处的韧性断裂
聚氯乙烯反应器搅拌轴的短轴组件在使用过程中发生断裂,原因是为了减少泄漏,在短轴的小直径部分上拧紧了一根螺母,该螺母保留了一个松散的套筒。轴由ASTM A105 2级钢制成,直径较大的部分覆盖有316型不锈钢端盖。端盖焊接到每端使用ER316型不锈钢填充金属。锻钢轴在焊接金属中与轴轴约90度处断裂,而不是在锻钢轴的热影响区断裂。钢轴的显微检查和化学分析表明,在熔合线周围存在马氏体(提供了一个容易裂纹扩展的路径),并且碳钢轴对焊缝金属的稀释。接近熔合线时,组织为马氏体。认为锻钢轴是由韧性断裂造成的,并对可能的原因进行了讨论。对更换轴所采取的纠正措施进行了说明。
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