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热处理工艺对1500MPa级低碳Nb-Ti低合金钢组织及性能的影响 被引量:10
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作者 杨庚蔚 雍岐龙 +2 位作者 孙新军 李昭东 李晓闲 《材料热处理学报》 EI CAS CSCD 北大核心 2013年第7期65-72,共8页
通过低成本成分设计,在控制轧制的基础上,分别采用直接淬火(DQ)、直接淬火+回火(DQ+T)以及再加热淬火+回火(RQ+T)工艺成功制得了抗拉强度1500 MPa级经济型低合金高强高韧钢。对比研究了DQ、DQ+T和RQ+T 3种工艺钢的微观组织和力学性能。... 通过低成本成分设计,在控制轧制的基础上,分别采用直接淬火(DQ)、直接淬火+回火(DQ+T)以及再加热淬火+回火(RQ+T)工艺成功制得了抗拉强度1500 MPa级经济型低合金高强高韧钢。对比研究了DQ、DQ+T和RQ+T 3种工艺钢的微观组织和力学性能。结果表明:DQ工艺钢的微观组织为板条马氏体+少量铁素体及残留奥氏体的复相组织,其抗拉强度和屈服强度分别为1750 MPa和1300 MPa,-40℃下冲击吸收功为37 J。200℃回火1 h后,试验钢位错密度降低,大量细小ε碳化物在板条内析出。DQ+T工艺钢屈服强度达到1400 MPa,-40℃下冲击功为43 J。试验钢直接淬火后再加热至880℃,获得了平均晶粒尺寸为5.7μm的细小等轴奥氏体。相比于DQ及DQ+T工艺钢,RQ+T工艺钢获得了更高的韧性,冲击功达到56 J。研究发现,未溶的(Nb,Ti)(C,N)粒子能有效抑制奥氏体晶粒长大。组织细化及残留奥氏体是RQ+T工艺钢获得高韧性最主要的原因。 展开更多
关键词 低合金高强高韧钢 直接淬火 扁平奥氏体 板条马氏体 强韧化机理
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Third generation high strength low alloy steels with improved toughness 被引量:7
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作者 SUN XinJun LI ZhaoDong +3 位作者 YONG QiLong YANG ZhiGang DONG Han WENG YuQing 《Science China(Technological Sciences)》 SCIE EI CAS 2012年第7期1797-1805,共9页
On-line thermo mechanical controlled processing(TMCP) was conducted to develop the third generation high strength low alloy(HSLA) steel with high toughness economically.The ultra-low carbon content ensured a high leve... On-line thermo mechanical controlled processing(TMCP) was conducted to develop the third generation high strength low alloy(HSLA) steel with high toughness economically.The ultra-low carbon content ensured a high level of upper shelf energy while ultrafine lath martensitic structure transformed from super-thin pancaked austenite during controlled rolling and cooling.The reduction of martensite block size decreased ductile-to-brittle transition temperature(DBTT) and compensated the strength loss due to carbon reduction.Consequently,the excellent balance of strength and toughness values was obtained as 950-1060 MPa for yield strength,180 J for Charpy V-notch impact absorbed energy at 30℃,which is much superior to that of traditional martensitic steel.Two mechanisms for the refinement of lath martensite block were proposed:One is the austenite grain refinement in the direction of thickness,and the other is the reduction in the fraction of sub-block boundaries with small misorientation and the increase in the fraction of block boundaries with large misorientation,possibly due to austenite hardening. 展开更多
关键词 pancaked austenite lath martensite PRECIPITATE TMCP HSLA steel
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