M-A islands in high grade X100 pipeline steel
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摘要: 通過顯微組織分析方法,研究了冷卻開始溫度及冷卻速度對高鋼級X100管線鋼熱模擬試樣中M-A島的體積分數和尺寸的影響.結果表明降低冷卻開始溫度和提高冷卻速度都可以細化組織,導致M-A島的體積分數降低,使M-A島由尺寸較大的塊狀、條狀轉變成尺寸較小且彌散分布的塊狀、條狀.利用透射電鏡觀察了熱軋后以不同冷卻速度冷卻所得試樣組織中M-A島的形貌.發現在低的冷卻速度下,M-A島由殘余奧氏體、尺寸及取向均不同的馬氏體板條組成.在馬氏體板條中存在孿晶,證明了碳的擴散,也說明M-A島中M是孿晶馬氏體.在高的冷卻速度下,轉變為針狀、薄膜狀的M-A島弱化了鐵素體板條的界面,降低了管線鋼的韌性.因此只有控制冷速在一定范圍內,才能獲得尺寸細小、彌散分布的M-A島.Abstract: The effects of cooling temperature and cooling rate on the size and volume fraction of M-A islands in thermal simulation samples of high grade X100 pipeline steel were investigated by the microstructure analysis method. The results show that reducing the cooling temperature and increasing the cooling rate can refine the microstructure, decrease the volume fraction of M-A islands, and make the M-A islands from larger blocks and strips into smaller and dispersed ones. The morphology of M-A islands in X100 pipeline steel with different cooling rates after hot rolling was observed by transmission electron microscopy (TEM). It is found that the M-A islands consist of retained austenite and different sizes and orientations of martensite plates at low cooling rate. Microtwins in the martensite plates prove carbon diffusion and show that martensite in the M-A islands is twinned martensite. At high cooling speed, the M-A islands, which change into the acicular and flaky, weaken the ferrite lath interface and reduce the toughness of the pipeline steel. So in order to obtain small size and dispersive M-A islands, the cooling speed must be controlled in a certain range.
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Key words:
- pipeline steel /
- martensite /
- austenite /
- microtwins /
- cooling
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