Effect of two-stage controlled cooling on the microstructure and properties of Mo-containing X80 high-deformability pipeline steel
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摘要: 采用TMCP熱軋及軋后兩階段控制冷卻技術,在試驗室制備了含Mo成分的X80級抗大變形管線鋼,并利用掃描電鏡和透射電鏡等分析方法研究了不同冷卻條件對組織與性能的影響.結果表明,采用兩階段控制冷卻工藝的含Mo成分X80抗大變形管線鋼為鐵素體-貝氏體雙相組織;隨加速冷卻中開冷溫度降低,組織中鐵素體含量增加,試樣強度降低,屈強比降低,均勻伸長率提高;隨加速冷卻中終冷溫度降低,貝氏體中M/A含量減少,尺寸更細小,分布更分散,試樣強度變化不大但均勻伸長率顯著提升.分析表明,當鐵素體含量一定時,均勻伸長率與貝氏體中M/A密切相關,細小且均勻分布的M/A可提高加工硬化速率,推遲頸縮發生,使均勻伸長率升高.當加速冷卻中開冷溫度為690℃、終冷溫度為450℃時,組織中鐵素體的體積分數約為23%、晶粒尺寸約為5μm,M/A島尺寸約為1μm,組織均勻性良好,試樣得到最優的強度塑性匹配.Abstract: A Mo-containing X80 high-deformability pipeline steel was processed by TMCP rolling and two-stage controlled cooling in laboratory.The effects of cooling conditions on the microstructure and properties of the steel were investigated by scanning electron microscopy(SEM) and transmission electron microscopy(TEM).It is found that the microstructure of the steel processed by two-stage controlled cooling is ferrite-bainite dual phase.As the start temperature in accelerated cooling comes down,both the strength and yield ratio decrease and the uniform elongation(uEl) increases with the ferritic volume fraction increasing.As the finish temperature in accelerated cooling becomes lower,the amount of martensite-austenite(M/A) constituents in bainite decreases and the M/A islands are much finer and more uniformly dispersed.The strength changes little but the uEl increases significantly.It is considered that uEl is closely related to M/A constituents in bainite when the ferritic volume fraction is constant.Finely and uniformly dispersed M/A islands can increase the value of uEl by increasing the work hardening rate and delaying the onset of necking.When the accelerated cooling starts at 690℃ and finishes at 450℃,the ferritic volume fraction is about 23%,the grain size is approximately 5 μm,and the average grain size of M/A islands is approximately 1 μm.The uniform microstructure provides good combination of strength-ductility properties.
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Key words:
- pipeline steel /
- molybdenum /
- controlled cooling /
- microstructure /
- mechanical properties
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