Hot Deformation Behavior and Microstructural Evolution of the Al-Cu-Li alloy: A Study With Processing Map
暂无分享,去创建一个
[1] Zhe Chen,et al. Slip-induced mechanism of the orientation-dependent deformation banding in cold rolled Al-Mg alloy , 2022, Materials Characterization.
[2] Hongliang Su,et al. Microstructure evolution and mechanical properties of as-annealed and solution treated Al-Cu-Li alloy 2195 under dynamic compression , 2022, Journal of Materials Processing Technology.
[3] D. Lu,et al. Detailed investigation of quench sensitivity of 2050 Al-Cu-Li alloy by interrupted quenching method and novel end quenching method , 2021 .
[4] You-ping Yi,et al. Kinetic model for describing continuous and discontinuous dynamic recrystallization behaviors of 2195 aluminum alloy during hot deformation , 2021, Materials Characterization.
[5] Jun Jiang,et al. How would the deformation bands affect recrystallization in pure aluminium , 2021 .
[6] Yunlong Ma,et al. Characterization of Al3Zr precipitation via double-step homogenization and recrystallization behavior after subsequent deformation in 2195 Al Li alloy , 2021, Materials Characterization.
[7] Kanghua Chen,et al. Influence of Forging Temperature on the Microstructures and Mechanical Properties of a Multi-Directionally Forged Al–Cu–Li Alloy , 2021, Metals and Materials International.
[8] Guoqun Zhao,et al. Microstructure evolution of spray deposited and as-cast 2195 Al-Li alloys during homogenization , 2021 .
[9] You-ping Yi,et al. Investigation of Quench Sensitivity and Microstructure Evolution During Isothermal Treatment in 2195 Al–Li Alloy , 2021, Metals and Materials International.
[10] Xiaoxue Chen,et al. Effect of extrusion parameters on microstructure, texture and mechanical property anisotropy of spray deposited 2195 Al–Li alloy profile , 2021, Materials Science and Engineering: A.
[11] J. Ning,et al. Hot tensile deformation behavior and microstructural evolution of 2195 Al–Li alloy , 2021, Vacuum.
[12] Yun-lai Deng,et al. Experimental study of grain structures evolution and constitutive model of isothermal deformed 2A14 aluminum alloy , 2021, Journal of Materials Research and Technology.
[13] Yunlong Ma,et al. Quench sensitivity and microstructure evolution of the 2060 Al-Cu-Li alloy with a low Mg content , 2021, Materials Characterization.
[14] You-ping Yi,et al. Dynamic recrystallization mechanisms of 2195 aluminum alloy during medium/high temperature compression deformation , 2021, Materials Science and Engineering: A.
[15] N. Nayan,et al. Evolution of microstructure and texture in the third generation Al–Li alloy AA2195 during warm hybrid processing , 2021, Journal of Alloys and Compounds.
[16] Xiaodong Liu,et al. Hot deformation behavior and 3D processing maps of AA7020 aluminum alloy , 2020 .
[17] Guoqun Zhao,et al. Constitutive modeling and microstructure characterization of 2196 Al-Li alloy in various hot deformation conditions , 2020 .
[18] Weiguo Li,et al. Microstructure evolution and processing map of Al–Cu–Li–Mg–Ag alloy , 2020 .
[19] Weiguo Li,et al. Effect of Al3Zr particles on hot-compression behavior and processing map for Al-Cu-Li based alloys at elevated temperatures , 2020 .
[20] H. Poulsen,et al. Subgrain dynamics during recovery of partly recrystallized aluminum , 2020, Acta Materialia.
[21] Xin Eric Wang,et al. Effects of coarse Al2CuLi phase on the hot deformation behavior of Al–Li alloy , 2020 .
[22] H. Xing,et al. Experimental and crystal plasticity study on deformation bands in single crystal and multi-crystal pure aluminium , 2020 .
[23] W. Gao,et al. Hot deformation characterization of as-homogenized Al-Cu-Li X2A66 alloy through processing maps and microstructural evolution , 2019, Journal of Materials Science & Technology.
[24] Guoqun Zhao,et al. Effect of inter-annealing between two stages of extrusion on the microstructure and mechanical property for spray deposited Al–Cu–Li alloy 2195 , 2019, Journal of Materials Research and Technology.
[25] Guoqun Zhao,et al. Constitutive modeling, processing map establishment and microstructure analysis of spray deposited Al-Cu-Li alloy 2195 , 2019, Journal of Alloys and Compounds.
[26] J. Cui,et al. Hot deformation characteristics and processing parameter optimization of 2219 Al alloy using constitutive equation and processing map , 2019, Vacuum.
[27] Yun-lai Deng,et al. Effects of creep aging upon Al-Cu-Li alloy: Strength, toughness and microstructure , 2018, Journal of Alloys and Compounds.
[28] Shuang-jiang Li,et al. A Physically Based Constitutive Model and Continuous Dynamic Recrystallization Behavior Analysis of 2219 Aluminum Alloy during Hot Deformation Process , 2018, Materials.
[29] Guoqun Zhao,et al. Microstructures and mechanical properties of spray deposited 2195 Al-Cu-Li alloy through thermo-mechanical processing , 2018, Materials Science and Engineering: A.
[30] Jin-feng Li,et al. Flow curve correction and processing map of 2050 Al–Li alloy , 2018 .
[31] C. Liu,et al. Experimental quantification of “hardenability” of 2195 and 2050 Al-Li alloys by using cold-rolled sheets , 2018 .
[32] Yong-bo Xu,et al. Strengthening mechanisms, deformation behavior, and anisotropic mechanical properties of Al-Li alloys: A review , 2017, Journal of advanced research.
[33] N. Nayan,et al. Effect of temperature and strain rate on hot deformation behavior and microstructure of Al-Cu-Li alloy , 2017 .
[34] Qing Liu,et al. Hot deformation behavior and microstructure of AA2195 alloy under plane strain compression , 2017 .
[35] L. Zhuang,et al. Effect of deformation induced precipitation on grain refinement and improvement of mechanical properties AA 7055 aluminum alloy , 2017 .
[36] B. Xiong,et al. Processing maps and microstructural evolution of Al–Cu–Li alloy during hot deformation , 2017, Rare Metals.
[37] Ke Huang,et al. A review of dynamic recrystallization phenomena in metallic materials , 2016 .
[38] H. Lee,et al. Effect of precipitates on mechanical properties of AA2195 , 2016 .
[39] P. Prangnell,et al. Quantification of the influence of increased pre-stretching on microstructure-strength relationships in the Al–Cu–Li alloy AA2195 , 2016 .
[40] Guoqun Zhao,et al. Constitutive equation and processing maps of an Al–Mg–Si aluminum alloy: Determination and application in simulating extrusion process of complex profiles , 2016 .
[41] Y. Nie,et al. Hot deformation behavior of 2060 alloy , 2015 .
[42] N. Nayan,et al. Microstructure and micro-texture evolution during large strain deformation of an aluminium–copper–lithium alloy AA 2195 , 2015 .
[43] Constantinos Soutis,et al. Recent developments in advanced aircraft aluminium alloys , 2014 .
[44] A. Deschamps,et al. Microstructural evolution during ageing of Al–Cu–Li–x alloys , 2014, 1510.02917.
[45] Desheng Huang,et al. Processing maps and microstructural evolution of isothermal compressed Al–Cu–Li alloy , 2013 .
[46] E. Evangelista. Hot Deformation and Processing of Aluminum Alloys , 2011 .
[47] J. Cabrera,et al. Constitutive relationships for hot deformation of austenite , 2011 .
[48] X. Gao,et al. Microstructure evolution of aluminum-lithium alloy 2195 undergoing commercial production , 2010 .
[49] B. P. Kashyap,et al. Processing map for hot working of spray formed and hot isostatically pressed Al–Li alloy (UL40) , 2009 .
[50] Tang Jian-guo. Grain refinement of AA2195 Al-Li alloy by pre-deformation and overaging , 2009 .
[51] F. Montheillet,et al. A model of continuous dynamic recrystallization , 2003 .
[52] H. J. McQueen,et al. Constitutive analysis in hot working , 2002 .
[53] D. Ponge,et al. Necklace formation during dynamic recrystallization: mechanisms and impact on flow behavior , 1998 .
[54] S. Murty,et al. On the development of instability criteria during hotworking with reference to IN 718 , 1998 .
[55] D. Kuhlmann-wilsdorf,et al. Some observations on deformation banding and correlated microstructures of two aluminum alloys compressed at different temperatures and strain rates , 1998 .
[56] G. Kridli,et al. Development of process maps for superplastic forming of Weldalite™ 049 , 1998 .
[57] S. M. Doraivelu,et al. Modeling of dynamic material behavior in hot deformation: Forging of Ti-6242 , 1984 .
[58] C. Sellars,et al. On the mechanism of hot deformation , 1966 .
[59] J. H. Hollomon,et al. Effect of Strain Rate Upon Plastic Flow of Steel , 1944 .