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[1]张劲.Regulating effect of pre-stretching on the synchronization of deformation and mechanical property in creep aging of Al-Cu-Li alloy[J].Materials Science & Engineering A, 2019 (763) : 138-157.
[2]张劲.Effects of pre-stretching on the creep behavior, mechanical property and microstructure in creep aging of Al-Cu-Li alloy[J].Materials, 2019 (12) : 333.
[3]张新明, 邓运来, 张劲.Constitutive modeling for creep age forming of heat-treatable strengthening aluminum alloys containing plate or rod shaped precipitates[J].Materials Science and Engineering: A, 2013, 563 (15) : 8-16.
[4]et al., Yunlai Deng, Jin Zhang.Design of the multistage quenching process for 7050 aluminum alloy[J].Materials and Design, 2014, 56 (1) : 334-344.
[5]et al, Yu Wang, Jin Zhang.Effect of deformation degree on the creep age forming of 7475 aluminum alloy: the feasibility of the extended deformation range.Materials Science and Engineering: A, 2016, 664 (1) : 126-134.
[6]et al., Yunlai Deng, Jin Zhang.Creep age forming of 2124 aluminum alloy with single/double curvature[J].Transactions of Nonferrous Metals Society of China, 2013, 23 (7) : 1922-1929.
[7]et al., Cheng Wang, Jin Zhang.Effects of creep aging upon Al-Cu-Li alloy: Strength, toughness and micro-structue[J].Journal of Alloys and Compounds, 2018, 764 (1) : 452-459.
[8]Jin Zhang.The effect of inhomogeneous microstruc-tures on strength and fatigue properties of an Al-Cu-Li thick plate[J].Materials Science and Engineering: A, 2018, 731 (1) : 1-11.
[9]Jin Zhang.Modeling of the Temperature-Related Two-Stage Creep Aging for Al-Zn-Mg-Cu Aluminum Alloy[J].Rare Metal Materials and Engineering, 2018, 47 (2) : 496-502.
[10]等, 张劲, 谭佳.Al-Cu-Li合金蠕变时效过程性能演变与显微组织分析[J].中国有色金属学报, 2019 (7)
[11]杨金龙等, 邓运来, 张劲.2124铝合金蠕变时效试验及本构模型研究[J].金属学报, 2013, 49 (3) : 379-384.
[12]张劲.蛇形轧制对 Al-Cu-Mg 合金板材强韧性能及微观组织的影响[J].中国有色金属学报, 2017, 27 (10) : 2005-2011.
[13]张劲.时效工艺对Al-Zn-Mg-Cu合金组织和力学性能的影响[J].中国有色金属学报, 2018, 28 (9) : 1711-1719.
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