Intergranular Fracture of Martensitic Welds

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Abstract

Several fractures occurred in flange studs used for remote handling of radioactive equipment. The studs, of quenched-and-tempered type 414 stainless steel, fractured in the HAZs produced in the studs during the circumferential welding that joined the studs to the flanges. The weld deposits were of type 347 stainless steel, and the flanges were type 304 stainless steel. Metallographic examination of the failed studs revealed that the HAZs contained regions of martensite and that intergranular cracks, which initiated at the stud surfaces during welding, propagated to complete separation under subsequent loading. The studs fractured under service loads as a result of intergranular crack propagation in the HAZ. Rapid heating and cooling during attachment welding produced a martensitic structure in the HAZ of the stud, which cracked circumferentially from the combination of thermal-gradient and phase-change stresses. Joining the studs to the flanges by welding should be discontinued. They should be attached by screw threads, using a key and keyway to prevent turning in service.
马氏体焊缝的晶间断裂
用于远程操作放射性设备的法兰螺栓发生了几次断裂。螺栓,淬火和回火414型不锈钢,在螺栓连接到法兰的环形焊接过程中,螺栓产生的haz断裂。焊层为347型不锈钢,法兰为304型不锈钢。失效螺柱的金相检查显示,haz中含有马氏体区域,焊接时在螺柱表面产生的晶间裂纹在后续加载下扩展到完全分离。在使用载荷作用下,由于热影响区内的晶间裂纹扩展,导致螺柱断裂。在焊接过程中,快速加热和冷却在螺柱的热影响区产生马氏体组织,并在热梯度和相变应力的共同作用下产生圆周裂纹。应停止通过焊接将螺柱连接到法兰上。它们应该通过螺纹连接,使用钥匙和键槽,以防止在使用中转动。
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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