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完全再結晶區多道次變形時晶粒的變化

Grain Variation Characteristic in Complete Recrystallization Region Under Multi-Pass Deformation

  • 摘要: 含微量鈦的16Mn鋼在奧氏體完全再結晶區進行恒溫、恒道次變形量和恒道次間隙時間的多道次變形后奧氏體晶粒變化的研究,發現多道次變形后奧氏體晶粒尺寸會達到一個極限尺寸,達到極限尺寸所需總變形量和達到的極限晶粒尺寸因變形條件而異。變形溫度越高達到所需總變形量Rorit越小,達到的dr越大,道次變形量越大,達到所需總變形量越大,達到的dr越小,道次間隙時間的影響小。根據實驗結果,提出了在奧氏體完全再結晶區控制軋制該鋼種時的合理工藝制度是要保征在950℃左右有2道次以上,道次變形量為20%的變形。

     

    Abstract: In order to study the variation of Austenite grain, the Ti-treated 16Mn steel was multi-pass deformed in Austenite complete recrystallization region at constant rolling temperature, pass reduction and interval between passes. After multi-pass rolled, the Austenite grain reached a limit size dr. To change deforming conditions will affect the critical amount deformation (Rcrit) required to reach the dr With the increasing of deformation temperature, Rcrit decreased and dr increased; At big pass reduction, Rcrit increased and Dcrit decreased; while the affluence of interval between passes on Rcrit and dr was small. Depending on above mentioned result, a reasonable technical schedule for this steel to be control in Austenite complete recrystallization region is that there must be at least two passes at 950℃ or so and each pass reduction is about 20%.

     

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