
Name:Jian Li
Position and Technical Title:Lecturer
Research Areas:Structural integrity assessment; Fatigue and fracture of metallic materials; Optical experimental mechanics
Graduate Admission Professions:Mechanics
E-mail:lj66@ujs.edu.cn
Corresponding Address:School of Low-Altitude Technology, Jiangsu University, No.301, Xuefu Road, Zhenjiang, Jiangsu Province(212013)
Education and Work Experience
Education:
09, 2012 – 12, 2018 Nanjing Tech University
PhD and Chemical Process Equipment
Fatigue crack Growth Behavior of Commercial Pure Titanium
09, 2008 – 06, 2012 Nanjing Tech University
Bachelor and Process Equipment and Control Engineering
Professional Experience:
04, 2026 – Present Jiangsu University, Lecture
School of Low-Altitude Technology
03, 2019 – 12, 2025 Jiangsu University, Lecture
Researcher of Institute of Structural Health Monitoring
Academic and Social Part-time
International journal reviewer of Applied Energy, International Journal of Mechanical Sciences, Engineering Fracture Mechanics, International Journal of Pressure Vessels and Piping
Academic Publications
[1] Tao Sun, Jian Li*, Ze-En Sun, et al. Measurement of mixed I-II mode crack tip position and plastic zone information based on digital image correlation for displacement field. Engineering Fracture Mechanics, 2026.
[2] Tao Sun, Jian Li*, Xun Zhao, et al. Study on fatigue crack growth behavior of titanium alloy with elliptical hole by finite element analysis. Engineering Fracture Mechanics, 2025.
[3] Xun Zhao, Jian Li*, Tao Sun, et al. Research on local cyclic plastic behavior and fatigue life prediction of notched components based on digital image correlation. Theoretical and Applied Fracture Mechanics, 2025.
[4] Xun Zhao, Jian Li*, Tao Sun, et al. Characterization of fatigue crack growth rate by digital image correlation measurements of the plastic zone considering multiple parameters. Engineering Fracture Mechanics, 2025.
[5] Xun Zhao, Jian Li*, Jun-Ming Ge, et al. Determination of fatigue crack tip location and plastic zone dimensions using displacement fields measured by digital image correlation method. Engineering Fracture Mechanics, 2025.
[6] Jian Li*, Chang-Yu Zhou, Jian-Guo Zhu*, Xiao-Yu Wang. Creep analyses for pipe bends under combined internal pressure and bending loads. International Journal of Pressure Vessels and Piping, 2021.
[7] Wen-Jie Qian, Hui-Ying Zhang, Jian-Guo Zhu*, Jian Li*, Jian Zhang, Mu-Yu Zhang. Determination of fracture toughness of polymer coating using micro-scale digital image correlation technique. Polymer Testing, 2021.
[8] Jian Li*, Chang-Yu Zhou, Jian-Guo Zhu*. Limit loads for 180° pipe bends under in-plane bending moment considering geometric nonlinearity. International Journal of Pressure Vessels and Piping, 2020.
[9] Jian Li, Chuan-Yi Su, Lei Lu, Peng Zhang, Le Chang, Xin-Ting Miao, Bin-Bin Zhou, Xiao-Hua He, Chang-Yu Zhou*. Investigation on fatigue crack growth behavior for commercial pure titanium at different crack tip plastic deformed levels. Theoretical and Applied Fracture Mechanics, 2019.
[10] Jian Li, Peng Zhang, Lei Lu, Fei Lv, Xin-Ting Miao, Le Chang, Bin-Bin Zhou, Xiao-Hua He, Chang-Yu Zhou*. Effect of pre-strain on fatigue crack growth behavior for commercial pure titanium at ambient temperature. International Journal of Fatigue, 2018.
[11] Jian Li, Lei Lu, Peng Zhang, Xin-Ting Miao, Le Chang, Bin-Bin Zhou, Yuan-Zhe Wang, Xiao-Hua He, Chang-Yu Zhou*. Effect of cold creep on fatigue crack growth behavior for commercial pure titanium. Theoretical and Applied Fracture Mechanics, 2018.
[12] Jian Li, Chang-Yu Zhou*, Le Chang, Xin-Ting Miao, Xiao-Hua He. Limit loads for un-cracked and circumferential through-wall cracked pipe bends under torsion moment considering geometric nonlinearity. Thin-Walled Structures, 2017.
[13] Jian Li, Chang-Yu Zhou*, Xin-Ting Miao, Le Chang, Xiao-Hua He. Plastic limit loads for pipe bends with circumferential through-wall crack under torsion moment. International Journal of Mechanical Sciences, 2015.
[14] Jian Li, Chang-Yu Zhou*, Peng Cui, Xiao-Hua He. Plastic limit loads for pipe bends under combined bending and torsion moment. International Journal of Mechanical Sciences, 2015.
[15] Jian Li, Chang-Yu Zhou*, Ji-Lin Xue, Xiao-Hua He. Limit loads for pipe bends under combined pressure and out-of-plane bending moment based on finite element analysis. International Journal of Mechanical Sciences, 2014.
[16] Le Chang, Bin-Bin Zhou, Tian-Hao Ma, Jian Li, Xiao-Hua He, Chang-Yu Zhou*. Comparisons of low cycle fatigue behavior of CP-Ti under stress and strain-controlled modes in transverse direction. Materials Science and Engineering A, 2019.
[17] Le Chang, Bin-Bin Zhou, Tian-Hao Ma, Jian Li, Xiao-Hua He, Chang-Yu Zhou*. The difference in low cycle fatigue behavior of CP-Ti under fully reversed strain and stress controlled modes along rolling direction. Materials Science and Engineering A, 2019.
[18] Le Chang, Chang-Yu Zhou*, Hong-Xi Liu, Jian Li, Xiao-Hua He. Orientation and strain rate dependent tensile behavior of single crystal titanium nanowires by molecular dynamics simulation. Journal of Materials Science & Technology, 2018.
[19] Xin-Ting Miao, Qin Yu, Chang-Yu Zhou*, Jian Li, Yuan-Zhe Wang, Xiao-Hua He. Experimental and numerical investigation on fracture behavior of I-II mixed mode crack for commercially pure Titanium. Theoretical and Applied Fracture Mechanics, 2018.
[20] Xin-Ting Miao, Qin Yu, Chang-Yu Zhou*, Jian Li, Yuan-Zhe Wang, Xiao-Hua He. Experimental and numerical investigation on fracture behavior of CTS specimen under I-II mixed mode loading. European Journal of Mechanics/A Solids, 2018.