A visiting research scholar who is majored in material mechanics, characterization

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Curriculum Vitae Guozheng Quan School of Material Science and Engineering, Chongqing University Chongqing 400044, P. R. China Tel: (86) 18203720216 (office) Fax: (8623) 65111493 Mobile: (86) 15922900904 E-mail: quanguozheng@cqu.edu.cn Personal Born July 07, 1980 in Nanyang, Henan, China. Married with Ms. Ying Tong. Profile A visiting research scholar who is majored in material mechanics, characterization and processing Engaged in the research of the state of stress workability and intrinsic workability for magnesium alloy, heat-resistant alloy and duralumin alloy, and even the relative flexible forming processes involving electric upsetting and spinning for the obove-mentioned hardworking materials. Rich experience in modeling of the plastic flowing behavior, microstructure evolution and even multi-field and multi-scale simulation of plastic forming processes. Computer Skills: Windows; Office; Table-curve; Origin; AutoCAD; UG; Abaqus; Marc; Deform. Education 2004.2~2007.6 Ph.D. in Material Processing Engineering. Chongqing University, Chongqing, P. R. China 1

2002.9~2004.1 M.A. in Material Processing Engineering. Chongqing University, Chongqing, P. R. China 1998.9~2002.6 B.S. in Material Processing Engineering. Chongqing University, Chongqing, P. R. China Work experience 2002.9~2013.7, I did a part-time job as a Research and Development Engineer of Chongqing Jiepin Lt.d. 2004.10~2006.9, I went into the workforce as a teaching assistant of Chongqing University, P. R. China. 2006.9~2008.9, I achieved the qualification of university lecturer of Chongqing University, P. R. China. 2008.9~present, I achieved the qualification of associate professor and master's supervisor of Chongqing University, P. R. China. 2007.12~2010.12, I completed the post-doctoral research program in Department of Solid Mechanics, Chongqing University, Chongqing, P. R. China 2010.4~2011.4, I completed the post-doctoral research program in Department of Aerospace Engineering, Pusan National University, Pusan, South Korea. 2014.8~2015.8, I am doing the visiting scholar research program in the Laboratory of Micromechanics of Materials, Georgia Institute of Technology, Atlanta, GA, USA. Publication Record [1] Guo-Zheng Quan, Xuan Wang, Yong-le Li, Le Zhang. Analytical descriptions of dynamic softening mechanisms for Ti-13Nb-13Zr biomedical alloy in single phase and two phase regions [J]. Archives of Metallurgy and Materials. (SCI) (IF:0.96) (In press) [2] Quan Guo-zheng*, Zhi-hua Zhang, Xuan Wang, Yong-le Li, An Mao, Yu-feng Xia. Parameter optimization of cooling system in U-shape hot stamping mold for high strength steel sheet based on MOPSO [J]. International Journal of Advanced Manufacturing Technology, 90(1): 887 906, 2017. (SCI) (IF: 1.568). [3] Quan Guo-zheng*, Tong Wang, Le Zhang. Research on the Influence of Hot Stamping Process Parameters on Phase Field Evolution by Thermal-mechanical-phase Coupling Finite Element [J]. International Journal of 2

Advanced Manufacturing Technology, 89(1): 145 161, 2017. (SCI) (IF: 1.568). [4] Guo-Zheng Quan, Zhi-hua Zhang, Tong Wang, Yu-feng Xia. Numerical description of hot flow behaviors at Ti-6Al-2Zr-1Mo-1V alloy by GA-SVR and relative applications [J]. Materials Research-Ibero-American Journal of Materials, 19(6): 1253-1269, 2016. (SCI) (IF:0.483) [5] Guo-zheng Quan, Yong-le Li, Le Zhang, Xuan Wang. Evolution of grain refinement degree induced by dynamic recrystallization for Nimonic 80A during hot compression process and its FEM analysis [J]. Vacuum, 139: 51-63, 2017. (SCI) (IF:1.56) [6] Quan Guo-zheng*, Zong-yang Zhan, Tong Wang, Yu-feng Xia. Modeling the hot tensile flow behaviors at ultra-high-strength steel and construction of three-dimensional continuous interaction space for forming parameters [J]. High Temperature Materials and Processes, 36(1): 29-43, 2017. (SCI: EH7PP) (IF:0.356) [7] Quan Guo-zheng*, Zhen-yu Zou, Tong Wang, Bo Liu, Jun-chao Li. Modelling of the hot flow behaviors for as-extruded 7075 alloy by ANN and its application [J]. High Temperature Materials and Processes, 36(1): 1-13, 2017. (SCI: EH7PP) (IF:0.356) [8] Guo-Zheng Quan, Le Zhang, Xuan Wang, Yong-le Li. Correspondence between microstructural evolution mechanisms and hot processing parameters for Ti-13Nb-13Zr biomedical alloy in comprehensive processing maps [J]. Journal of Alloys and Compounds, 698:178-193, 2017. (SCI) (IF:3.03) [9] Guo-zheng Quan*, Jia Pan, Xuan Wang, Le Zhang, Tong Wang. Correspondence between grain refinements and flow softening behaviors at Nimonic 80A superalloy under different strain rates, temperatures and strains [J]. Materials Science and Engineering: A, 679:358-371, 2017. (SCI:ED7XW) (IF:2.409) [10] Guo-zheng Quan*, Zhi-Hua Zhang, Le Zhang, Qing Liu. Numerical Descriptions of Hot Flow Behaviors across β Transus for as-forged Ti 10V 2Fe 3Al Alloy by LHS-SVR and GA-SVR and Improvement in Forming Simulation Accuracy [J]. Applied Sciences-basel, 6(8): 1-23, 2016. (SCI: DZ0HC) ( IF:1.484) [11] Quan Guo-zheng*, Zhen-yu Zou, Zhi-hua Zhang, Jia Pan. A study on formation process of secondary upsetting defect in electric upsetting and optimization of processing parameters based on multi-field coupling FEM [J]. Materials Research-Ibero-American Journal of Materials, 19(4): 856-864, 2016. (SCI: DV8JZ) (IF:0.483) [12] Quan Guozheng*, Zong-yang Zhan, Le Zhang, Dong-sen Wu, Gui-chang Luo, Yu-feng Xia. A study on the multi-phase transformation kinetics of ultra-high-strength steel and application in thermal-mechanical-phase coupling simulation of hot stamping process. Materials Science and Engineering: A, 673: 24-38, 2016. (SCI: DU7QP) ( IF:2.409) [13] Quan Guo-zheng*, Zhen-yu Zou, Dong-sen Wu, Jian-ting Liang, Jie Zhou and Qing Liu. Prediction of Ductile Fracture Initiation for Ti-10V-2Fe-3Al Alloy by Compressions at Different Temperatures and Strain Rates [J]. Materials at High Temperatures, 33 (1): 6-14, 2016. (SCI: DJ9PL) (IF:0.837) [14] Guo-zheng Quan*, Jia Pan, Xuan Wang. Prediction the hot compressive deformation behavior for superalloy Nimonic 80A by BP-ANN model [J]. Applied Sciences-basel, 6 3

(3): 1-16, 2016. (SCI: DI5HY) (IF:1.484) [15] Guo-Zheng Quan*, Jia Pan, Zhi-hua Zhang. Phase transformation and recrystallization evolution in space-time domain during isothermal compressions for Ti-6Al-4V by Multi-field and Multi-scale Coupling FE analysis [J]. Materials & Design, 94: 523-535, 2016. (SCI: DD0CZ) (IF:3.501) [16] Quan Guo-zheng*, Tong Wang, Zong-yang Zhan, Yu-feng Xia. Artificial Neural Network Modeling to Evaluate the Dynamic Flow Stress of 7050 Aluminum Alloy [J]. Journal of Materials Engineering and Performance, 25 (2): 553-564, 2016. (SCI: DG8CA) (IF:0.998) [17] Quan Guo-zheng*, Hai-rong Wen, Jia Pan, Zhen-yu Zou, Shi-ao Pu. Construction of Processing Maps based on Expanded Data by BP-ANN and Identification of Optimal Deforming Parameters for Ti-6Al-4V Alloy [J]. International Journal of Precision Engineering and Manufacturing, 17 (2): 1-10, 2016. (SCI: DC9UU) (IF:1.5) [18] Quan Guo-zheng*, Zhi-hua Zhang, Jia Pan, Yu-feng Xia. Modelling the hot flow behaviors of AZ80 alloy by BP-ANN and the applications in accuracy improvement of computations [J]. Materials Research-Ibero-American Journal of Materials, 18(6): 1331-1345, 2015. (SCI: CZ5OA) (IF:0.483) [19] Quan Guo-zheng*, Hai-rong Wen, Shi-ao Pu, Zheng-yu Zou, Dong-sen Wu. Identification of stable processing parameters in Ti-6Al-4V alloy from a wide temperature range across β transus and a large strain rate range [J]. High Temperature Materials and Processes, 34(7): 715-729, 2015. (SCI: CW2HU) (IF:0.356) [20] Quan Guo-zheng*, Jin Liu, An Mao,Bo Liu, Jin-sheng Zhang. A characterization for the hot flow behaviors of as-extruded 7050 aluminum Alloy [J]. High Temperature Materials and Processes, 34(7): 643-650, 2015. (SCI: CW2HU) (IF:0.356) [21] Quan Guo-zheng*, An Mao, Zhen-yu Zou, Gui-chang Luo, Jian-ting Liang. Description of grain refinement by dynamic recrystallization under hot compressions for as-extruded 3Cr20Ni10W2 heat-resistant alloy [J]. High Temperature Materials and Processes, 34(7): 697-713, 2015. (SCI: CW2HU) (IF:0.356) [22] Quan Guo-zheng*, Zhen-yu Zou, Hai-rong Wen, Shi-ao Pu, Wen-quan Lv. A characterization of hot flow behaviors involving different softening mechanisms by ANN for as-forged Ti-10V-2Fe-3Al alloy [J]. High Temperature Materials and Processes, 34(7): 651-665, 2015. (SCI: CW2HU) (IF:0.356) [23] Quan Guo-zheng*, Shi-ao Pu, Zheng-yu Zou, Hai-rong Wen, Jie Zhou. Quantitative Analysis of Dynamic Softening Behaviors Induced by Dynamic Recrystallization for Ti-10V-2Fe-2Al Alloy [J]. High Temperature Materials and Processes, 34(6): 549-561, 2015. (SCI:CS0MK) (IF:0.356) [24] Quan Guo-zheng*, Shi-ao Pu, Zhen-yu Zou, Ying-ying Liu and Yu-feng Xia. Modelling of the hot flow behaviors for Ti-13Nb-13Zr alloy by BP-ANN model and its application [J]. International Journal of Precision Engineering and Manufacturing, 16(10): 2129-2137, 2015. (SCI:CQ4JL) (IF:1.5) [25] Quan Guo-zheng*, Dong-sen Wu, Yan-dong Zhang, Yu-feng Xia, Jie Zhou. Constitutive modeling for tensile behaviors of Ultra-high-strength-steel BR1500HS at 4

different temperatures and strain rates [J]. High Temperature Materials and Processes, 34(5): 407-416, 2015. (SCI:CN3LK) (SCI) (IF:0.356) [26] Quan Guo-zheng*, Gui-Chang Luo, Hai-Rong Wen. Influence of Electric Upsetting Process Variables on Temperature Field Evolution by Multi-field Coupling Finite Element Analysis [J]. International Journal of Precision Engineering and Manufacturing, 16(7): 1525-1531, 2015. (SCI:CK9LT) (IF:1.5) [27] Quan Guo-zheng*, Wen-Quan Lv, Jian-Ting Liang, Shi-Ao Pu, Gui-Chang Luo, Qing Liu. Evaluation of the hot workability corresponding to complex deformation mechanism evolution for Ti-10V-2Fe-3Al alloy in a wide condition range [J]. Journal of Materials Processing Technology, 221: 66-79, 2015. (SCI:CG1BJ) (IF:2.041) [28] Quan Guo-zheng*, Gui-chang Luo, Jian-ting Liang, Dong-sen Wu, An Mao, Qing Liu. Modelling for the dynamic recrystallization evolution of Ti-6Al-4V alloy in two-phase temperature range and a wide strain rate range [J]. Computational Materials Science, 97(1): 136-147, 2015. (SCI:AU3JF) (IF:1.879) [29] Quan Guo-zheng*, Jian-ting Liang, Wen-quan Lv, Dong-sen Wu, Ying-ying Liu, Gui-chang Luo, Jie Zhou. A characterization for the constitutive relationships of 42CrMo high strength steel by artificial neural network and its application in isothermal deformation [J]. Materials Research-Ibero-American Journal of Materials, 17(5): 1102-1114, 2014. (SCI: AW9IF) (IF:0.483) [30] Guo-Zheng Quan*, Gui-chang Luo, An Mao, Jian-ting Liang, and Dong-sen Wu. Evaluation of Varying Ductile Fracture Criteria for 42CrMo Steel by Compressions at Different Temperatures and Strain Rates [J]. The Scientific World Journal, 2014, 2014(doi:10.1155/2014/579328): 1-10. (SCI:AA1WW) (IF:1.219) [31] Quan Guo-zheng*, Yuan-ping Mao, Chun-tang Yu, Wen-quan Lv, Zhou Jie. The flow behavior modeling of as-extruded 3Cr20Ni10W2 austenitic heat-resistant alloy at elevated temperatures considering the effect of strain. Materials Research-Ibero-American Journal of Materials, 17(2): 451-460, 2014. (SCI:AH6QO) (IF:0.483) [32] Guo-Zheng Quan*, Chun-tang Yu, Ying-ying Liu, Yu-feng Xia. A comparative study on improved Arrhenius-type and artificial neural network models to predict high-temperature flow behaviors in 20MnNiMo alloy [J]. The Scientific World Journal, 2014, 2014(doi:10.1155/2014/108492): 1-12. (SCI:AB4LP) (IF:1.219) [33] Quan Guozheng*, Dong-sen Wu, Gui-chang Luo, Yu-feng Xia, Jie Zhou, Qing Liu, Lin Gao. Dynamic recrystallization kinetics in α phase of as-cast Ti-6Al-2Zr-1Mo-1V alloy during compression at different temperatures and strain rates. Materials Science and Engineering: A, 589(1): 23-33, 2014. (SCI:273FX) ( IF:2.409) [34] Guo-Zheng Quan*, An Mao, Gui-chang Luo, Jian-ting Liang, Dong-sen Wu, Jie Zhou. Constitutive modeling for the dynamic recrystallization kinetics of as-extruded 3Cr20Ni10W2 heat-resistant alloy based on stress-strain data. Materials & Design, 52(12): 98-107, 2013. (SCI:210KR) (IF:3.171) [35] Guo-Zheng Quan*, Jian-ting Liang, Ying-ying Liu, Gui-chang Luo, Yu shi, Jie Zhou. Identification of optimal deforming parameters from a large range of strain, strain rate 5

and temperature for 3Cr20Ni10W2 heat-resistant alloy. Materials & Design, 52(12): 593-601, 2013. (SCI:210KR) (IF: 3.171) [36] Guo-Zheng Quan*, Wen-quan Lv, Yuan-ping Mao, Yan-wei Zhang, Jie Zhou. Prediction of flow stress in a wide temperature range involving phase transformation for as-cast Ti-6Al-2Zr-1Mo-1V alloy by artificial neural network. Materials & Design, 50(4): 56-61, 2013. (SCI:167EZ) (IF:3.171) [37] Quan Guo-zheng*, Gui-sheng Li, Yang Wang, Chun-tang Yu, Zhou Jie. A characterization for the flow behavior of as-extruded 7075 aluminum alloy by the improved Arrhenius model with variable parameters. Materials Research-Ibero-American Journal of Materials, 16(1): 19-27, 2013. (SCI:087VC) (IF:0.483) [38] Quan Guo-zheng*, Yu Shi, Chun-tang Yu, Zhou Jie. The improved Arrhenius model with variable parameters of flow behavior characterizing for the as-cast AZ80 magnesium alloy. Materials Research-Ibero-American Journal of Materials, 16(4): 66-75, 2013. (SCI:195TX) (IF:0.483) [39] Quan Guo-zheng*, Feng-biao Wang, Ying-ying Liu, Yu Shi, Jie Zhou. Evaluation of varying ductile fracture criterion for 7075 aluminum alloy. Transactions of Nonferrous Metals Society of China, 23(3): 749-755, 2013. (SCI:212SM) (IF:1.001) [40] Quan Guozheng*, Yang Wang, Chun-tang Yu, Zhou Jie. Hot workability characteristics of as-cast titanium alloy Ti 6Al 2Zr 1Mo 1V: A study using processing map. Materials Science and Engineering: A, 564(1): 46-56, 2013. (SCI:101AR) (IF:2.409) [41] Quan Guo-zheng*, Yang Wang, Ying-ying Liu, Zhou Jie. Effect of temperatures and strain rates on the average size of grains refined by dynamic recrystallization for as-extruded 42CrMo steel. Materials Research-Ibero-American Journal of Materials, 16(5): 1092-1105, 2013. (SCI:239WA) (IF:0.483) [42] Guo-Zheng Quan*, Yuan-ping Mao, Gui-sheng Li, Wen-quan Lv, Yang Wang, Jie Zhou. A characterization for the dynamic recrystallization kinetics of as-extruded 7075 aluminum alloy based on true stress-strain curves. Computational Materials Science, 55(1): 65-72, 2012. (SCI:898GS) (IF:1.879) [43] Lv Wen-quan, Quan Guo-zheng*, Yu Chun-tang, Zhou Jie. Effect of strain, strain rate and temperature on workability of AZ80 wrought magnesium alloy. Transactions of Nonferrous Metals Society of China, 22(s3): 650-655, 2012. (SCI:175GF) (IF:1.001) [44] Guo-zheng Quan*, Lei Zhao, Tao Chen, Yang Wang, Yuan-ping Mao, Wen-quan Lv, Jie Zhou. Identification for the optimal working parameters of as-extruded 42CrMo high-strength steel from a large range of strain, strain rate and temperature. Materials Science and Engineering: A, 538(1-2): 364-373, 2012. (SCI:913TV) (IF:2.409) [45] Guo-Zheng Quan*, Tae-Wan Ku, Woo-Jin Song, Beom-Soo Kang. The workability evaluation of wrought AZ80 magnesium alloy in hot compression. Materials & Design, 32(4): 2462-2468, 2011. (SCI:725KE) (IF:3.171) [46] Guo-Zheng Quan*, Tae-Wan Ku, Beom-Soo Kang. Improvement of Formability for Multi-point Bending Process of AZ31B Sheet Material Using Elastic Cushion. 6

International Journal of Precision Engineering and Manufacturing, 12(6): 1023-1030, 2011. (SCI:855QR) (IF:1.5) [47] Guo-Zheng Quan*, Yu Shi, Yi-Xin Wang, Beom-Soo Kang, Tae-Wan Ku, Woo-Jin Song. Constitutive modeling for the dynamic recrystallization evolution of AZ80 magnesium alloy based on stress strain data. Materials Science and Engineering: A, 528(28): 8051-8059, 2011. (SCI:829DE) (IF:2.409) [48] Quan Guozheng*, Li Guisheng, Chen Tao, Wang Yixin, Zhang Yanwei, Zhou Jie. Dynamic recrystallization kinetics of 42CrMo steel during compression at different temperatures and strain rates. Materials Science and Engineering: A, 528(13-14): 4643-4651, 2010. (SCI:756IF) (IF:2.409) [49] Quan Guo-zheng*, Tong Ying, Luo Gang, Zhou Jie. A characterization for the flow behavior of 42CrMo steel. Computational Materials Science, 50(1): 167-171, 2010. (SCI:680QY) (IF:1.879) [50] Guo-Zheng Quan*, Beom-Soo Kang, Tae-Wan Ku, Woo-Jin Song. Identification for the optimal working parameters of Al-Zn-Mg-Cu alloy with the processing maps based on DMM. International Journal of Advanced Manufacturing Technology, 56(9-12): 1069-1078, 2010. (SCI:817OQ) (IF:1.205) [51] Quan Guo-zheng*, Tong Ying, Zhou Jie. Dynamic softening behaviour of AZ80 magnesium alloy during upsetting at different temperatures and strain rates. Proceedings of the Institution of Mechanical Engineers. Part B-Journal of Engineering Manufacture, 24(11): 1707-1716, 2010. (SCI:684TU) (IF:0.77) [52] Quan Guo-zheng*, Song Tao, Zhou Yi-jun. Relationship between mechanical properties and grain size of AZ80 at 350 under different strain rates. Transactions of Nonferrous Metals Society of China, 20(s2): 584-588, 2010. (SCI:638DW) (IF:1.001) [53] Quan Guo-zheng*, Liu Ke-wei, Zhou Jie. Dynamic softening behaviors of 7075 aluminum alloy. Transactions of Nonferrous Metals Society of China, 19(s3): 537-541, 2009. (SCI:529FL) (IF:1.001) [54] Quan Guo-zheng*, Zhou Jie, Wang Meng-han, Quan Guo-hui, Tong Ying. Deforming mechanism of non-mandrel drawing process of circular aluminum tube by simulation. Transactions of Nonferrous Metals Society of China, l6(s3): 1301-1304, 2006. (SCI:140RP) (IF:1.001) 7