Hot compressive deformation and microstructural evolution of 60NiTi alloy

Hot deformation behavior and microstructure of 60NiTi alloy during hot compressive deformation were investigated using Gleeble−3500 thermal simulation test machine in the temperature range of 500−650 °C and strain rate range of 0.001−1 s−1. The constitutive equation of hot compression was constructe...

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Published inTransactions of Nonferrous Metals Society of China Vol. 33; no. 1; pp. 189 - 200
Main Authors CHEN, Dong, YANG, Qian-ru, YANG, Na-chuan, WANG, Meng, XU, Qiang, WU, Jing-yuan, JIANG, Yan-bin, LI, Zhou, XIAO, Zhu, WEI, Hai-gen
Format Journal Article
LanguageEnglish
Published Elsevier Ltd 01.01.2023
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Abstract Hot deformation behavior and microstructure of 60NiTi alloy during hot compressive deformation were investigated using Gleeble−3500 thermal simulation test machine in the temperature range of 500−650 °C and strain rate range of 0.001−1 s−1. The constitutive equation of hot compression was constructed and the hot processing maps were plotted. When the compression temperature rose or the strain rate declined, the peak stress reduced. The hot deformation activation energy was calculated as 327.89 kJ/mol, and the proper hot working parameters of compression temperature of 600−650 °C and strain rate of 0.005−0.05 s−1 were obtained. The recrystallization degree increased with increasing compression temperature. When the strain rate increased, both dislocation density and number of twins were improved, and the Ni3Ti phase tended to aggregate. Ni3Ti precipitation phase was beneficial to inducing dynamic recrystallization of the 60NiTi alloy. The dynamic recovery, dynamic recrystallization and twinning took place during hot compressive deformation of the 60NiTi alloy.
AbstractList Hot deformation behavior and microstructure of 60NiTi alloy during hot compressive deformation were investigated using Gleeble−3500 thermal simulation test machine in the temperature range of 500−650 °C and strain rate range of 0.001−1 s−1. The constitutive equation of hot compression was constructed and the hot processing maps were plotted. When the compression temperature rose or the strain rate declined, the peak stress reduced. The hot deformation activation energy was calculated as 327.89 kJ/mol, and the proper hot working parameters of compression temperature of 600−650 °C and strain rate of 0.005−0.05 s−1 were obtained. The recrystallization degree increased with increasing compression temperature. When the strain rate increased, both dislocation density and number of twins were improved, and the Ni3Ti phase tended to aggregate. Ni3Ti precipitation phase was beneficial to inducing dynamic recrystallization of the 60NiTi alloy. The dynamic recovery, dynamic recrystallization and twinning took place during hot compressive deformation of the 60NiTi alloy.
Author WANG, Meng
CHEN, Dong
WEI, Hai-gen
LI, Zhou
YANG, Na-chuan
YANG, Qian-ru
WU, Jing-yuan
XU, Qiang
JIANG, Yan-bin
XIAO, Zhu
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  organization: School of Materials Science and Engineering, Central South University, Changsha 410083, China
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  givenname: Yan-bin
  surname: JIANG
  fullname: JIANG, Yan-bin
  email: jiangyanbin@tsinghua.org.cn
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  surname: LI
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  organization: School of Materials Science and Engineering, Central South University, Changsha 410083, China
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  givenname: Zhu
  surname: XIAO
  fullname: XIAO, Zhu
  organization: School of Materials Science and Engineering, Central South University, Changsha 410083, China
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  givenname: Hai-gen
  surname: WEI
  fullname: WEI, Hai-gen
  organization: Faculty of Materials Metallurgy and Chemistry, Jiangxi University of Science and Technology, Ganzhou 341000, China
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Issue 1
Keywords hot compressive deformation
microstructure
dynamic recrystallization
60NiTi alloy
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Snippet Hot deformation behavior and microstructure of 60NiTi alloy during hot compressive deformation were investigated using Gleeble−3500 thermal simulation test...
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SubjectTerms 60NiTi alloy
dynamic recrystallization
hot compressive deformation
microstructure
Title Hot compressive deformation and microstructural evolution of 60NiTi alloy
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