Skip to main content
Top
Published in: Rare Metals 10/2017

02-01-2016

Deformation resistance of Fe–Mn–V–N alloy under different deformation processes

Authors: Yun-Li Feng, Jie Li, Li-Qun Ai, Bao-Mei Duan

Published in: Rare Metals | Issue 10/2017

Log in

Activate our intelligent search to find suitable subject content or patents.

search-config
loading …

Abstract

The deformation resistance of Fe–Mn–V–N alloy under different deformation conditions was investigated by hot compression method on thermal simulator. Effects of deformation degree, deformation temperature, and strain rate on deformation resistance were analyzed. The results show that when other conditions are constant, the deformation resistance increases with the increase in deformation degree and strain rate and decreases with the increase in deformation temperature. At the same time, the mathematical model of deformation resistance for Fe–Mn–V–N alloy was established by 1stOpt software using the Levenberg–Marquardt optimization algorithm carried out on the fitting of regression coefficients, which has higher fitting precision.

Dont have a licence yet? Then find out more about our products and how to get one now:

Springer Professional "Wirtschaft+Technik"

Online-Abonnement

Mit Springer Professional "Wirtschaft+Technik" erhalten Sie Zugriff auf:

  • über 102.000 Bücher
  • über 537 Zeitschriften

aus folgenden Fachgebieten:

  • Automobil + Motoren
  • Bauwesen + Immobilien
  • Business IT + Informatik
  • Elektrotechnik + Elektronik
  • Energie + Nachhaltigkeit
  • Finance + Banking
  • Management + Führung
  • Marketing + Vertrieb
  • Maschinenbau + Werkstoffe
  • Versicherung + Risiko

Jetzt Wissensvorsprung sichern!

Springer Professional "Technik"

Online-Abonnement

Mit Springer Professional "Technik" erhalten Sie Zugriff auf:

  • über 67.000 Bücher
  • über 390 Zeitschriften

aus folgenden Fachgebieten:

  • Automobil + Motoren
  • Bauwesen + Immobilien
  • Business IT + Informatik
  • Elektrotechnik + Elektronik
  • Energie + Nachhaltigkeit
  • Maschinenbau + Werkstoffe




 

Jetzt Wissensvorsprung sichern!

Literature
[1]
go back to reference Zhao ZY. Metals Plastic Deformation and Rolling Theory. Beijing: Metallurgical Industry Press; 1994. 6. Zhao ZY. Metals Plastic Deformation and Rolling Theory. Beijing: Metallurgical Industry Press; 1994. 6.
[2]
go back to reference Sun JQ, Zhang JW, Wang YC. Study on hot deformation behavior of SPHC steel. Iron Steel. 2008;43(9):44. Sun JQ, Zhang JW, Wang YC. Study on hot deformation behavior of SPHC steel. Iron Steel. 2008;43(9):44.
[3]
go back to reference Liu Y. Research and application of high temperature deformation resistance in low-alloy steel with vanadium. Iron Steel Vanadium Titan. 2012;33(5):60. Liu Y. Research and application of high temperature deformation resistance in low-alloy steel with vanadium. Iron Steel Vanadium Titan. 2012;33(5):60.
[4]
go back to reference Gao W, Ju CH, Pang ZZ. Study on deformation resistance of high strength steel. J Chongqing Univ Sci Technol (Nat Sci Ed). 2010;12(6):144. Gao W, Ju CH, Pang ZZ. Study on deformation resistance of high strength steel. J Chongqing Univ Sci Technol (Nat Sci Ed). 2010;12(6):144.
[5]
go back to reference Li H, Liang JL, Feng YL, Huo DX. Microstructure transformation of X70 pipeline steel welding heat-affected zone. Rare Met. 2014;33(4):493.CrossRef Li H, Liang JL, Feng YL, Huo DX. Microstructure transformation of X70 pipeline steel welding heat-affected zone. Rare Met. 2014;33(4):493.CrossRef
[6]
go back to reference Li SG, Liu CP, Wang BS, Yang ZD, Huang H. The model establishment of the resistance to deformation and the rolling force prediction of 20 steel. Steel Roll. 2001;18(1):26. Li SG, Liu CP, Wang BS, Yang ZD, Huang H. The model establishment of the resistance to deformation and the rolling force prediction of 20 steel. Steel Roll. 2001;18(1):26.
[7]
go back to reference Chen RF, Xu BJ, Yang ML, Xiao Z, Huang Y. Effect of deformation temperature on deformation resistance of SWRH82B steel. Chin J Process Eng. 2010;10(5):1010. Chen RF, Xu BJ, Yang ML, Xiao Z, Huang Y. Effect of deformation temperature on deformation resistance of SWRH82B steel. Chin J Process Eng. 2010;10(5):1010.
[8]
go back to reference Zhou JH, Guan KZ. Plastic Deformation Resistance of Metals. Beijing: Machinery Industry Press; 1989. 59. Zhou JH, Guan KZ. Plastic Deformation Resistance of Metals. Beijing: Machinery Industry Press; 1989. 59.
[9]
go back to reference Wang YM, Li MY, Wei G. Controlled Rolling and Controlled Cooling of Steel. Beijing: Metallurgical Industry Press; 2009. 50. Wang YM, Li MY, Wei G. Controlled Rolling and Controlled Cooling of Steel. Beijing: Metallurgical Industry Press; 2009. 50.
[10]
go back to reference Wang LJ, Yu W, Wu HB, Cai QW, Qi QG. Hot deformation behaviors and mathematical model of 12MnNiVR steel. Heat Treat Met. 2010;35(7):5. Wang LJ, Yu W, Wu HB, Cai QW, Qi QG. Hot deformation behaviors and mathematical model of 12MnNiVR steel. Heat Treat Met. 2010;35(7):5.
[11]
go back to reference Zeng WF, Chen YH. Experimental study of deformation resistance of TRIP800 steel. J Wuhan Univ Sci Technol (Nat Sci Ed). 2007;30(1):14. Zeng WF, Chen YH. Experimental study of deformation resistance of TRIP800 steel. J Wuhan Univ Sci Technol (Nat Sci Ed). 2007;30(1):14.
[12]
go back to reference Wu XJ. Research on controlled rolling and controlled cooling process of 82B coil rod. Shenyang: Northeastern University; 2006. 42. Wu XJ. Research on controlled rolling and controlled cooling process of 82B coil rod. Shenyang: Northeastern University; 2006. 42.
[13]
go back to reference Fang J. Research on deformation resistance and recrystallization of non-quenched and non-tempered micro-alloy steel 40Mn2V. Wuhan: Wuhan University of Science and Technology; 2008. 21. Fang J. Research on deformation resistance and recrystallization of non-quenched and non-tempered micro-alloy steel 40Mn2V. Wuhan: Wuhan University of Science and Technology; 2008. 21.
[14]
go back to reference Sun JQ, Dai H, Zhang YC. Research on mathematical model of thermal deformation resistance of X80 pipeline steel. Mater Des. 2011;32(3):1612.CrossRef Sun JQ, Dai H, Zhang YC. Research on mathematical model of thermal deformation resistance of X80 pipeline steel. Mater Des. 2011;32(3):1612.CrossRef
[15]
go back to reference Yong QL. Second Phases in Steel Materials. Beijing: Metallurgical Industry Press; 2006. 166. Yong QL. Second Phases in Steel Materials. Beijing: Metallurgical Industry Press; 2006. 166.
[16]
go back to reference Zhang YH, Zhao HJ, Kang YL. Study on hot deformation behaviors of 600 MPa grade C–Si–Mn TRIP steel. Heat Treat Met. 2006;31(7):23. Zhang YH, Zhao HJ, Kang YL. Study on hot deformation behaviors of 600 MPa grade C–Si–Mn TRIP steel. Heat Treat Met. 2006;31(7):23.
[17]
go back to reference Li CJ. Study on the deformation resistance of micro-alloy low-carbon bainitic steel. Shandong Metall. 2006;28(2):49. Li CJ. Study on the deformation resistance of micro-alloy low-carbon bainitic steel. Shandong Metall. 2006;28(2):49.
[18]
go back to reference Wang ZG, Ren Y, Cheng XR, Zhan SL, Huang DJ. Math model for deformation resistance of steel Q345B at low temperature and its application in straightening process. Spec Steel. 2012;33(2):33. Wang ZG, Ren Y, Cheng XR, Zhan SL, Huang DJ. Math model for deformation resistance of steel Q345B at low temperature and its application in straightening process. Spec Steel. 2012;33(2):33.
[19]
go back to reference Gao XH, Liu W, Qi KM, Qiu CL, Zhang DT, Li FT, Yue SB, Yin XQ. Study on deformation resistance of 28CrMo57 steel. Steel Pipe. 2006;35(5):21. Gao XH, Liu W, Qi KM, Qiu CL, Zhang DT, Li FT, Yue SB, Yin XQ. Study on deformation resistance of 28CrMo57 steel. Steel Pipe. 2006;35(5):21.
[20]
go back to reference Cheng GP, Zhang MR. Thermal simulation experiment on high temperature hot deformation resistance of 60Si2Mn spring steel. Hunan Metall. 2000;3:22. Cheng GP, Zhang MR. Thermal simulation experiment on high temperature hot deformation resistance of 60Si2Mn spring steel. Hunan Metall. 2000;3:22.
Metadata
Title
Deformation resistance of Fe–Mn–V–N alloy under different deformation processes
Authors
Yun-Li Feng
Jie Li
Li-Qun Ai
Bao-Mei Duan
Publication date
02-01-2016
Publisher
Nonferrous Metals Society of China
Published in
Rare Metals / Issue 10/2017
Print ISSN: 1001-0521
Electronic ISSN: 1867-7185
DOI
https://doi.org/10.1007/s12598-015-0678-z

Other articles of this Issue 10/2017

Rare Metals 10/2017 Go to the issue

Premium Partners