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Ti和Ti-V微合金化低碳贝氏体钢组织性能及析出行为的研究 被引量:4

Effect of Ti and Ti-V Microalloyed on Precipitation Behaviors,Microstructure and Properties of Low Carbon Bainitic Steel
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摘要 利用场发射扫描电子显微镜(FE-SEM)、高分辨透射电子显微镜(HRTEM)和能谱仪(EDS)等,研究了不同Ti含量的低碳贝氏体钢的显微组织和析出相的成分、尺寸、形貌以及分布等特征。结果表明:在450℃和520℃保温2h,三种实验钢组织为粒状贝氏体。与低Ti实验钢相比,高Ti及Ti-V复合实验钢的屈服强度增加了150MPa以上。高Ti钢中纳米级析出相有两种类型:一种大于15nm的TiC析出相;另一种是在10nm以下,具有面心立方结构的(Ti,Mo)C复合析出相。Ti-V钢基体中存在大量尺寸在10nm以下的(Ti,V,Mo)C复合析出相。 The morphology,size,distribution and chemical composition of precipitates and the microstructure of the low carbon bainitic steel with different content of Ti were investigated by field emission scanning electronic microscopy (FE-SEM),high resolution transmission electron microscope (HR-TEM) and energy disperse spectroscopy (EDS).The results show that the test steels holding at 450℃ and 520℃ for 2h,the microstructure of three kinds of steels is granular bainite.Compared with the low titanium steel,the yield strength of the high titanium steel and titanium-vanadium steel increases by over 150MPa.There are two kinds of the nanometer-sized precipitate particles in high titanium steel:one of these is titanium carbide,which size is more than 15nm.The other is composite precipitate with the FCC(face-centered cubic)-(Ti,Mo)C structure,which size is smaller than 10nm.In the matrix of titanium-vanadium steel,there are a great amount of (Ti,V,Mo)C composite precipitates with the size smaller than 10nm.
出处 《材料工程》 EI CAS CSCD 北大核心 2015年第6期52-59,共8页 Journal of Materials Engineering
关键词 粒状贝氏体 纳米级析出相 位错线 (Ti Mo)C (Ti V Mo)C granular bainite nanometer-sized precipitate dislocation line (Ti, Mo)C (Ti, V, Mo)C
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  • 1赵四新,姚连登.Ti和Nb-Ti微合金化高强钢中Ti的析出行为[J].材料热处理学报,2010,31(12):71-79. 被引量:14
  • 2OUCHI C. Development of steel plates by intensive use of TMCP and direct quenching proeesses[J]. ISIJ International, 2001, 4] (6) : 542--553.
  • 3NOBUO S, SHINJI M,SHIGERU E. Recent development in mi- crostructural control technologies through the thermal-mechanical control process (TMCP) with JFE steel' s high performance plates[J]. JFE Technical Report, 2008, (11 ) : 1 -- 6.
  • 4毛新平,孙新军,康永林,林振源.薄板坯连铸连轧Ti微合金化钢的物理冶金学特征[J].金属学报,2006,42(10):1091-1095. 被引量:69
  • 5CHARLEUX M, POOLE W J. Precipitation behavior and its effect on strengthening of an HSLA-Nh/Ti steel[J].Metal| Ma- terTransA, 2001,32(7) : 1635--1647.
  • 6DESCHAMPS A, DANOIX F, GEUSER F D, et al. Low tem- perature precipitation kinetics of niobium nitride platelets in Fe [J]. Mater Lett, 2011,65 (14) :2265--2268.
  • 7XIE Y, ZHENG T, CAIMNEY J M, et al. Strengthening from Nb-rich clusters in a Nb-microalloyed steel [J].Scripta Mater, 2012, 66 (9):710--713.
  • 8李静宇,韦弦,于爱民,孙斌,赵贤平.终冷温度对低碳贝氏体钢组织和性能的影响[J].物理测试,2008,26(6):13-15. 被引量:9
  • 9武会宾,尚成嘉,杨善武,侯华兴,马玉璞,于功利.超细化低碳贝氏体钢的回火组织及力学性能[J].金属学报,2004,40(11):1143-1150. 被引量:33
  • 10CIZEK P, WYNNE B P, DAVIES C H, et al. Effect of compo- sition and austenite deformation on the transformation character- istics of low carbon and ultra-low carbon microalloyed steels[J].Metallurgical and Materials Transactions A,2002,33(5) :1331-- 1349.

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