欢迎登录材料期刊网

材料期刊网

高级检索

以U75V高速重轨钢为例,研究了加热保温处理对MnS夹杂的影响.采用高温共聚焦激光显微镜分别对铸坯和钢轨中MnS夹杂在连续升温过程中的行为进行了动态原位观察,结果表明MnS夹杂在600~870℃发生球化,在1 180℃左右时,MnS夹杂开始发生固溶.根据原位观察结果,在电阻炉中进行了加热保温处理实验.试验结果表明,830℃保温后,MnS夹杂尺寸只是略有减少,长宽比降低.在1180℃保温后,大型MnS夹杂数量明显减少,小尺寸MnS数量增多,且随保温时间的延长,夹杂物数量减少,长宽比进一步降低.通过加热保温处理可以改善重轨钢中长条状大型MnS夹杂.

参考文献

[1] Katsunari OIKAWA;Hiroshi OHTANI;Kiyohito ISHIDA .The control of the morphology of MnS inclusions in steel during solidification[J].ISIJ International,1995(4):402-408.
[2] K.Oikawa .Effect of Titanium Addition on the Formation and Distribution of MnS Inclusions in Steel during Solidification[J].ISIJ International,1997(4):332-338.
[3] OHTA Hiroki;SUITO Hideaki .Precipitation and Dispersion Control of MnS by Deoxidation Products of ZrO2,Al2O3,MgO and MnO-SiO2 Particles in Fe-10mass% Ni Alloy[J].ISIJ International,2006,46(04):480.
[4] 邵肖静,王新华,王万军,黄福祥,姜敏.硫化锰夹杂物在YF45MnV钢中行为的原位观察[J].北京科技大学学报,2010(05):570-573.
[5] 邵肖静,王新华,王万军,杨成威,黄福祥,姜敏,邓小旋.等温热处理对YF45MnV钢中硫化物的影响[J].材料热处理学报,2010(10):80-84.
[6] Xiaojing SHAO;Xinhua WANG;Min JIANG .Effect of Heat Treatment Conditions on Shape Control of Large-sized Elongated MnS Inclusions in Resulfurized Free-cutting Steels[J].ISIJ International,2011(12):1995-2001.
[7] Yanzhao LUO,Jiongming ZHANG,Zhiming LIU,Chao XIAO,Suzhou WU.In situ observation and thermodynamic calculation of MnS in 49MnVS3 non-quenched and tempered steel[J].金属学报(英文版),2011(04):326-334.
[8] PARK Jin Gyun;PARK Joo Hyun;Lee Young Seok et al.Thermodynamics of Copper Dissolution in MnO-SiO2-MnS Inclusion System[J].ISIJ International,2009,49(02):171.
[9] Ken-ichi YAMAMOTO;Hideaki YAMAMURA;Yoshihiro SUWA .Behavior of Non-metallic Inclusions in Steel during Hot Deformation and the Effects of Deformed Inclusions on Local Ductility[J].ISIJ International,2011(12):1987-1994.
[10] 齐江华,吴杰,索进平,陈钢,田青,吉玉.百米高速重轨钢中大型MnS夹杂的形成原因[J].钢铁研究,2011(03):22-24.
上一张 下一张
上一张 下一张
计量
  • 下载量()
  • 访问量()
文章评分
  • 您的评分:
  • 1
    0%
  • 2
    0%
  • 3
    0%
  • 4
    0%
  • 5
    0%