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[21]Hong-Ying Li, Hong-Ying Li, Wei-chen Yu, Xiao-yu Wang, Rong Du, Wen You.Investigation on Microstructural Evolution and Properties of an Al-Cu-Li Alloy with Mg and Zn Microalloying during Homogenization.metals, 2018, 8 (12) : 1010-1010.
[22]Wei-chen Yu, Hong-Ying Li, Rong Du, Wen You, Ming-chun Zhao, Zheng-an Wang.Characteristic constitution model and microstructure of an Al-3.5Cu-1.5Li alloy subjected to thermal deformation.Materials Characterization, 2018, 704: 53-64.
[23]W Kang, HY Li, SX Zhao, Y Han, CL Yang, G Ma.Effects of homogenization treatments on the microstructure evolution, microhardness and electrical conductivity of dilute Al-Sc-Zr-Er alloys.Journal of Alloys and Compounds, 2017, 704: 683-692.
[24]Hong-Ying Li, Hong-Ying Li, De-sheng Huang, Wei Kang, Jiao-jiao Liu, Yang-xun Ou, De-wang Li.Effect of Different Aging Processes on the Microstructure and Mechanical Properties of a Novel?Al–Cu–Li?Alloys.Journal of Materials Science & Technology, 2016, 32 (10) : 1049-1053.
[25]HY Li, HY Li, JJ Liu, WC Yu, DW Li.Development of non-linear continuous cooling precipitation diagram for Al-Zn-Mg-Cu alloy.MATERIALS SCIENCE AND TECHNOLOGY, 2015, 31 (12) : 1443-1451.
[26]Hong-Ying Li, Hong-Ying Li, Wei Kang, Xiao- chao Lu.Effect of age-forming on microstructure, mechanical and corrosion properties of a novel Al–Li alloy.Journal of Alloys and Compounds, 2015, 640 (15) : 210-218.
[27]Jiao–Jiao Liu, Hong-Ying Li, De-wang Li, Yue Wu.Application of novel physical picture based on artificial neural networks to predict microstructure evolution of Al?Zn?Mg?Cu alloy during solid solution process.Trans. Nonferrous Met. Soc. China, 2015, 25 (3) : 944-953.
[28]Zhao-he Gao, Hong-Ying Li, Jiao–Jiao Liu, Xiao- chao Lu, Yang-xun Ou.Effects of Ytterbium and Zirconium on precipitation evolution and coarsening resistance in aluminum during isothermal aging.Journal of Alloys and Compounds, 2014, 592: 100-104.
[29]Hao Yin?, Hong-Ying Li, Xiong-jie Su, De-sheng Huang.Processing maps and microstructural evolution of isothermal compressed Al-Cu-Li alloy.Materials Science and Engineering A, 2013, 586: 115-122.
[30]Zhao-he Gao, Hong-Ying Li, Yong-qiu Lai, Yang-xun Ou, De-wang Li.Effects of minor Zr and Er on microstructure and mechanical properties of pure aluminum.Materials Science and Engineering A, 2013, 580: 92-98.
[31]Hong-Ying Li, Hong-Ying Li, Xiao–Feng Wang, Jun–Ying Duan, Jiao–Jiao Liu.A modified Johnson Cook model for elevated temperature flow behavior of T24 steel.Materials Science and Engineering A, 2013, 577: 138-146.
[32]Hong-Ying Li, Hong-Ying Li, Zhao-he Gao, Hao Yin, Hao-fan Jiang, Xiong-jie Su, Jie Bin.Effects of Er and Zr additions on precipitation and recrystallization of pure aluminum.Scripta Materialia, 2013, 68 (1) : 59-62.
[33]Hong-Ying Li, Hong-Ying Li, Jie Bin, Jiao-jiao Liu, Zhao-he Gao, Xiao- chao Lu.Precipitation evolution and coarsening resistance at 400℃ of Al microalloyed with Zr and Er.Scripta Materialia, 2012, 67 (1) : 73-76.
[34]HY Li, HY Li, Y Liu, XC Lu, XJ Su.Constitutive modeling for hot deformation behavior of ZA27 alloy.JOURNAL OF MATERIALS SCIENCE, 2012, 47: 5411-5418.
[35]Hong-Ying Li, Hong-Ying Li, Ji-Dong Hu, Dong-Dong Wei, Xiao-Feng Wang, Yang-Hua Li.Artificial neural network and constitutive equations to predict the hot deformation behavior of modified 2.25Cr-1Mo steel.Materials & Design, 2012, 42: 192-197.
[36]Hong-Ying Li, Hong-Ying Li, Dong-Dong Wei, Yang-Hua Li, Xiao-Feng Wang.Application of artificial neural network and constitutive equations to describe the hot compressive behavior of 28CrMnMoV steel.Materials & Design, 2012, 35: 557-562.
[37]Hong-Ying Li, Hong-Ying Li, Dong-Dong Wei, Ji-Dong Hu, Yang-Hua Li, Shao-Lin Chen.Constitutive modeling for hot deformation behavior of T24 ferritic steel.Computational Materials Science, 2012, 53 (1) : 425-430.
[38]Hong-Ying Li, Hong-Ying Li, Xiao-Feng Wang, Dong-Dong Wei, Ji-Dong Hu, Yang-Hua Li.A comparative study on modified Zerilli–Armstrong, Arrhenius-type and artificial neural network models to predict high-temperature deformation behavior in T24 steel.Materials Science and Engineering A, 2012, 536: 216-222.
[39]Hong-Ying Li, Hong-Ying Li, Yang-Hua Li, ?Dong-Dong Wei, Jiao-Jiao Liu, ?Xiao-Feng Wang.Constitutive equation to predict elevated temperature flow stress of V150 grade oil casing steel.Materials Science and Engineering A, 2011, 530 (1) : 367-372.
[40]李红英, 李红英, 赵延阔, 唐宜, 王晓峰.6082铝合金CCT图的测定及应用.金属学报, 2010, 46 (10) : 1237-1243.
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