Simulation of Static Recrystallization Behavior of 58SiMn Steel

被引:0
|
作者
ZHANG Jin 1
机构
关键词
static recrystallization; mathematical model; simulation; grain size; 58SiMn steel;
D O I
暂无
中图分类号
TG111.7 [金属的范性形变、回复和再结晶];
学科分类号
摘要
58SiMn steel can be used as a kind of material for projectile-like barrel parts.During producing barrel parts,the microstructure of the barrel parts will be changed due to its hot deformation at certain high temperature,which resulted in the variety of the part’s mechanical properties.It is necessary to optimize the parameters for recrystallization process by prediction and simulation.The double-pass hot compression tests were conducted using Gleeble 1500 System at different deformation temperature,strain rate and pre-strain.Effect of pre-strain,deformation temperature on the curve of stress-strain has been analyzed.The static recrystallization fraction of double-pass hot deformation was computed and analyzed using compensation test.The actual grain size was measured by metallographic method using oxidation process,which overcomes the difficulty in revealing grain size of 58SiMn steel.The oxidation process was the method of heating the martensite in very fast speed and use of its microstructure inherent characteristic and regarding the size of austenite grain as the maximum of martensite plate.Using regression of the experimental data,the mathematical model of static recrystallization is set up.The average grain size of 58SiMn steel during hot deformation was calculated by deform-3D software and verified by experiment.The results show that the rate of static recrystallization was in direct proportional to the pre-strain of the steel.The grain size decreased with the increase of holding time at low deformation temperature 1 173 K and pre-strain 0.10.The mathematical model proposed could be used for predicting the static recrystallization behaviors of 58SiMn steel.
引用
收藏
页码:446 / 451
页数:6
相关论文
共 50 条
  • [1] Simulation of Static Recrystallization Behavior of 58SiMn Steel
    Zhang Jin
    Zhang Yecheng
    Huang Shaodong
    CHINESE JOURNAL OF MECHANICAL ENGINEERING, 2011, 24 (03) : 446 - 451
  • [2] 58SiMn钢动态拉伸断裂特性试验研究
    李付刚
    梁民族
    李翔宇
    聂铮玥
    弹箭与制导学报, 2020, 40 (06) : 102 - 105+110
  • [3] 58SiMn钢手工氩弧焊接常见缺陷及其控制
    李胜鑫
    电焊机, 2013, 43 (01) : 58 - 60
  • [4] 58SiMn钢高能束流局部淬硬性能分析
    万仁毅
    李德元
    李超
    机械设计与制造, 2016, (10) : 215 - 217
  • [5] 余热回收系统中筒形件58SiMn组织性能
    陈辉
    陈丽丽
    秦盼盼
    于陆宁
    刘士魁
    沈阳建筑大学学报(自然科学版), 2011, (05) : 981 - 985
  • [6] Static Recrystallization Behavior of SCM435 Steel
    徐东
    郑冰
    王海龙
    罗森
    王朝晖
    Journal of Donghua University(English Edition), 2015, 32 (05) : 720 - 724
  • [7] Metadynamic and static recrystallization softening behavior of a bainite steel
    Li, Lixin
    Zheng, Liangyu
    Ye, Ben
    Tong, Zeqiong
    METALS AND MATERIALS INTERNATIONAL, 2018, 24 (01) : 60 - 66
  • [8] Metadynamic and static recrystallization softening behavior of a bainite steel
    Lixin Li
    Liangyu Zheng
    Ben Ye
    Zeqiong Tong
    Metals and Materials International, 2018, 24 : 60 - 66
  • [9] Static recrystallization behavior of SCM435 steel
    Xu, Dong
    Zheng, Bing
    Wang, Hai-Long
    Luo, Sen
    Wang, Zhao-Hui
    Journal of Donghua University (English Edition), 2015, 32 (05) : 720 - 724
  • [10] 58SiMn钢热压缩过程中的再结晶行为模拟
    张叶成
    张津
    孙智富
    黄少东
    武汉理工大学学报, 2010, 32 (01) : 70 - 73