Effect of Temperature on Behavior of Hot Deformation and Structure of High Nitrogen Steel Mnl6Cr22Nil. 6N0.6
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Effect of Temperature on Behavior of Hot Deformation and Structure of High Nitrogen Steel Mnl6Cr22Nil. 6N0.6
Special SteelVol. 31, Issue 2, Pages: 66-68(2010)
作者机构:
1. 云南大学物理科学与技术学院材料系,昆明,650091
2. 钢铁研究总院,北京,100081
作者简介:
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DOI:
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Received:27 October 2009,
Online First:17 November 2022,
Published:17 November 2010
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王敏, 郎宇平, 吴兴惠. Effect of Temperature on Behavior of Hot Deformation and Structure of High Nitrogen Steel Mnl6Cr22Nil. 6N0.6[J]. Special Steel, 2010, 31(2): 66-68.
DOI:
王敏, 郎宇平, 吴兴惠. Effect of Temperature on Behavior of Hot Deformation and Structure of High Nitrogen Steel Mnl6Cr22Nil. 6N0.6[J]. Special Steel, 2010, 31(2): 66-68.DOI:
Effect of Temperature on Behavior of Hot Deformation and Structure of High Nitrogen Steel Mnl6Cr22Nil. 6N0.6
Tensile hot deformation behavior and structure change of high nitrogen austenite stainless steel Mnl6Cr22Nil. 6N0. 6 (%: 0.12C
22.05Cr
15.52Mn
1.64Ni
0. 58N) with strain rate 0.005 s
-1
at 900 ~ 1 300 ℃ have been studied by Gleeble 1500D thermal simulator. Results show that the high nitrogen steel has nice plasticity at 1 100 ~ 1 250 ℃ with the maximum reduction of area is 59% at 1 220 ℃. The observations on structure at tensile fracture show that as the steel tensions at 900 ~ 1 000 ℃ the recrystallization occurs with forming fine grains
at 1 000 ~ 1 100 ℃ the recrystallized grain grows with serrated grain boundary
at 1 100 〜1 300 ℃ the ferrite occurs and with increasing temperature the amount of ferrite increases
and at 1 300 ℃. the melting phenomena of grain boundaries occurs.