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首页> 外文期刊>Materials at High Temperatures >Mechanism of intergranular reheating crack in butt-welded joint of 12Cr1MoV tube served for 40,000 hours
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Mechanism of intergranular reheating crack in butt-welded joint of 12Cr1MoV tube served for 40,000 hours

机译:12Cr1mov管的骨干再加热裂纹的机理为12cr1mov管的配合物为40,000小时

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摘要

Cracking failure of butt-welded joint of 12Cr1MoV tube was comprehensively studied. Results show that both of initiation and propagation of the primary crack were circumferentially intergranular in the coarse-grained heat affect zone (CGHAZ). Many isolated and intergranular micro-cracks and cavities were observed near the primary crackxff0e;Neither oxide or corrosion products were observed in the isolated cavities or micro-cracks. According to the microstructure, location, propagation mode and morphology of the crack?the primary crack in butt-welded joint is concluded to be the intergranular reheating cracking (IRC). The crack failure is mainly due to poor welding quality, characterised by high residual stress and coarsened grain size. Mechanisms on the IRC based on previous laboratory research were studied on the failed tube sample, and results showed that the IRC is accumulation of high-stress induced creep damage, such as cavities along prior austenite grain boundaries (PAGBs). Neither segregation of alloys elements nor trace impurities were detected.
机译:全面研究了12Cr1mov管的对接接头破裂破坏。结果表明,初级裂纹的启动和传播两者在粗粒热影响区(CGHAZ)中周向晶间晶间晶间晶间晶间晶间晶间晶间晶间晶间晶间晶间晶状体(CGHAZ)。在初级裂解裂解附近观察到许多隔离和晶间微裂纹和腔;在隔离腔或微裂纹中均未观察到氧化物或腐蚀产物。根据裂缝的微观结构,位置,传播模式和形态?对接接头的主裂纹得出结论为晶间再加热裂解(IRC)。裂纹故障主要是由于焊接质量差,其特征在于高残留应力和粗晶粒尺寸。在失败的管样品上研究了基于先前实验室研究的IRC的机制,结果表明,IRC是高应力诱导蠕变损伤的积累,例如沿前奥氏体晶界(PAGBS)的腔。检测到合金元素的偏析也不检测到痕量杂质。

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