Effect of second thermal cycle on the microstructure of the coarse grain heat-affected zone of in-service welded pipeline steel
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摘要: 采用焊接熱模擬技術、金相分析及透射電鏡研究了X70管線鋼在役焊接粗晶區及其經受不同峰值溫度二次焊接熱循環作用后熱影響區各區的金相組織和精細結構.結果表明,在役焊接粗晶區的金相組織主要是板條束貝氏體和粒狀貝氏體,經歷不同峰值溫度的二次熱循環后,組織類型沒有發生變化,但各種組織的形態、大小、數量以及原奧氏體晶粒大小有些差異.熱影響區各區的主要形貌都是鐵素體板條和分布在板條之間或板條基體上的M-A組元.在役焊接粗晶區M-A組元形態以條狀為主,經歷二次熱循環后,再熱臨界粗晶區的M-A組元有所細化.再熱臨界粗晶區存在下貝氏體組織,且具有典型的"中脊"形貌.Abstract: Welding thermal simulation, metallographic analysis and transmission electron microscope (TEM) were used to study the metallurgical microstructure and fine structure of the coarse grain heat-affected zone (CGHAZ) of in-service welding and the zones that subject to second thermal cycle at different peak temperatures. The results show that the main metallurgical microstructures of the CGHAZ of in-service welding are granular bainite and lath bainite. After second thermal cycle, the types of mierostructure have no change, but the shape and amount of each kind of microstructure and the grain size of original austenite are different when the peak temperature of second thermal cycle is different. Observing by TEM, the fine structures of each HAZ are ferrite laths and M-A constituents that distribute on or between ferrite laths. The M-A constituents in the CGHAZ of in-service welding are main strip-shaped. After second thermal cycle, the M-A constituents in the intercritically reheated CGHAZ are refined and lower bainite that has typical midrib morphology produces in the zone.
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Key words:
- X70 pipeline steel /
- in-service welding /
- second thermal cycle /
- microstructure
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