共查询到17条相似文献,搜索用时 62 毫秒
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用热模拟实验机Gleeble-1500模拟了F45MnV钢(%:0.44C、1.18Mn、0.10V)热轧过程中的加热、轧制及冷却参数。通过实验发现,加热温度由950℃增至1100℃,钢中奥氏体平均晶粒尺寸由25.7μm增加至84.3μm;加热温度为1000~1050℃时,奥氏体晶粒尺寸为64.0~62.8μm,在该温度范围内轧制,有利于钢的质量控制和保证性能的稳定;随冷速由0.25℃/s增加至2℃/s,变形量70% 900℃,终轧的F45MnV钢的抗拉强度由815 MPa迅速提高至960MPa。 相似文献
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用100 t EAF-LF(VD)-300 mm×320 mm连铸-连轧工艺生产的48MnV钢(%:0.45~0.51 C、0.90~1.20Mn、0.05~0.10V)出现粗大晶粒,经13道次轧成的125 mm×125 mm方钢(0.030%~0.050%Ti)的晶粒度为3~4级,经9道次轧成的Φ141 mm圆钢(0.030%~0.053%Ti)的晶粒度为4~5级;但通过加0.018%~0.035%Ti和0.021%~0.029%Nb后,经9道次轧制的Φ141 mm圆钢的晶粒度达5.5~6.5级,显著提高钢的强韧性。 相似文献
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用Gleeble-1500热模拟实验机对YF45MnVS钢(%:0.48C、0.45Si、1.36Mn、0.009P、0.043S、0.086V)200 mm×200 mm铸坯上切取的Φ8mm试样进行950~1 200℃,变形速率10-2~101s-1变形量10%~50%的单道次等温压缩试验。结果表明,低应变速率和大变形量有利于实验用钢动态再结晶的发生。通过计算得到YF45MnVS钢在950~1 200℃的动态再结晶激活能为299.55 kJ/mol。 相似文献
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采用55t转炉 60t钢包精炼炉,1 50mm×1 50mm 4流弧形连铸机,短应力连轧机组生产Φ2 5mm非调质钢F40MnV( % :0. 3 9~0 .43C ,1 .2 0~1 .3 6Mn ,0 . 0 7~0 . 1 0V ,0 . 0 0 9~0 .0 2 4P ,0 . 0 1 1~0 . 0 1 8S)。钢中氧含量[O]为( 1 8 .8~2 0 .5)×1 0 - 6 ,[N]为( 3 5. 2~53 . 2 )×1 0 - 6 。钢的化学成分、力学性能、纯洁度、高低倍组织均达到标准和用户要求。为控制钢中N含量可选择加VN合金,在微合金化时增氮。 相似文献
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Hot Deformation Behavior of F6NM Stainless Steel 总被引:1,自引:0,他引:1
Long-teng MA Li-min WANG Zheng-dong LIU Gang YANG Lun LU Meng-du PENG 《钢铁研究学报(英文版)》2014,21(11):1035-1041
The hot deformation behavior of F6NM stainless steel was investigated by hot compression test in a Gleeble-1500D thermal-mechanical simulator. The flow strain-stress curves were obtained and the corresponding metallographic observation of this steel under different deformation conditions was also carried out. This steel exhibi- ted dynamic recrystallization (DRX) in the temperature range of 1 273- 1473 K and the strain rate range of 0.01- 0.1 s^-1. The activation energy for hot deformation was determined to be 457.91 kJ/mol, and the hot deformation equations were also established. The flow instability zone was determined and could be divided into two regions. The first one was located in the temperature range of 1 173- 1 348 K and the strain rate range of 0. 056-10 s^-1 , while the second one is in the temperature range of 1398-1448 K and the strain rate range of 1.25-10 s^-1. In the end, the optimum conditions for hot working were provided. 相似文献
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40MnV钢中微合金元素氮-碳化物的析出行为 总被引:1,自引:0,他引:1
用Thermo-cale软件对微合金钢40MnV(%:0.36-0.40C,1.36~1.40Mn,0.8~0.9V,0.011-0.016Ti,0.021-0.045Al,0.007-0.016N)中的析出相进行计算,并用电解分析,X-衍射,透射电镜研究了析出相的成分、形貌和分布。结果表明,钢中少量的N和Ti可导致在固液两相区析出尺寸为50nm的粗大TiN粒。随温度降低,析出相尺寸逐渐减小到10nm以下,形状由方形变成圆形,且析出相中V和C含量增加,N和Ti含量减少。随着钢中铝含量的增加,VN析出量减少。 相似文献