姓  名李建出生年月1989.09

政治面貌中共党员最高学位博士
职  称讲师任职年月2019.03
所在学科力学博导/硕导硕导 
学习与工作经历

学习经历:
2012.09-2018.12 南京工业大学 机械与动力工程学院 化工过程机械 博士
2008.09-2012.06 南京工业大学 机械与动力工程学院 过程装备与控制工程 学士
工作经历:

2019.03-至今 江苏大学 土木工程与力学学院 讲师
2026.04-至今 江苏大学 低空技术学院 讲师


学术与社会任职

Applied Energy, International Journal of Mechanical Sciences, Engineering Fracture Mechanics, International Journal of Pressure Vessels and Piping等期刊审稿人;Metals期刊Guest Editor;江苏省高层次创新创业人才引进计划"科技副总";中国力学学会会员;江苏省力学学会会员。

主讲课程

本科生
理论力学、断裂力学

研究领域

结构完整性评估,金属材料的疲劳与断裂,金属材料3D打印,光测实验力学

科研项目

在研项目

1. 上海有色金属工业技术监测中心有限公司委托科研项目:管线钢应力腐蚀的原位光学测试技术研发,2025.06-至今,主持/在研

2. 上海有色金属工业技术监测中心有限公司委托科研项目:新型镍基高温合金研发及蠕变寿命评估技术,2023.06-2023.12,主持/已结题

3. 国合品控(上海)检测科技有限公司委托科研项目:直流有刷电机轴承测试用复合材料研发,2023.06-2023.12,主持/已结题

4. 国家自然科学基金青年基金项目:激光选区熔化3D打印航空Ti2AlNb基合金及缺口件疲劳设计(52105149),2022.01-2024.12,主持/已结题

5. 中国博士后基金面上项目:基于光学测量的激光增材制造航空TC4ELI合金疲劳裂纹扩展行为及寿命预测(2020M681496),2020.11-2022.12,主持/已结题

6. 哈尔滨工业大学(深圳)委托科研项目:固体氧化物燃料电池喷涂及分析,2020.12-2021.05,参与/已结题

7. 北京理工大学委托科研项目:锂电池热失控极片SEM表征,2020.06-2022.05,参与/已结题

8. 中国航发北京航空材料研究院委托科研项目:Ti2AlNb整体机匣材料元件/模拟件设计与试验技术研究,2020.06-2021.06,参与/已结题

9. 江苏大学高端装备关键结构健康管理国际联合研究中心开放课题:基于阵列磁声导波与阻抗的CFRP结构健康监测方法研究(KFJJ20-02K),2019.09-2021.06,参与/已结题

10. 国家自然科学基金项目:工业纯钛室温蠕变及其含裂纹承压结构完整性评定(51475223),2015.01-2018.09,参加/已结题

11. 国家自然科学基金项目:基于HILL屈服准则的正交各向异性金属承压结构分析设计方法(51675260),2015.01-2018.09,参加/已结题

12. 江苏省研究生科研创新项目:工业纯钛室温蠕变疲劳裂纹扩展行为(KYLX15_0801),2015.06-2018.09,主持/已结题


主要论著

论文

[1] Jian Li*, Tao Sun, 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.


获奖情况

2021年驻镇高校力学青年教师讲课竞赛,三等奖

发明专利

[1] 一种基于 DIC 的 Ⅰ-Ⅱ 复合型裂纹尖端位置识别方法[P]. 2025-11-21, 中国. (已公开,公开号:CN120997171A)

[2] 一种基于三维 DIC的裂纹尖端塑性区尺寸离面位移场测量方法[P]. 2026-01-02, 中国. (已公开,公开号:CN121253549A)

[3] 一种裂尖塑性区尺寸离面位移场测量方法[P]. 2024-12-20,中国. (已公开,公开号:CN119164758A)

[4] 一种基于白光干涉测量表面形貌的双轴残余应力引入装置,国家发明专利,(专利号ZL201910805036.X,授权日期:2021.11)

[5] 一种聚合物涂层材料界面结合强度测试装置,国家发明专利(专利号ZL2019 1 0800502.5,授权日期:2021.09)


重要学术活动

1. 2024年11月,中国重庆,参加2024年中国轻量化材料及成型技术高峰论坛.

2. 2023年12月,中国北京,参加2023年增材制造合金材料疲劳与断裂行为研讨会.

3. 2021年10月,中国杭州,参加2021年国际结构完整性会议 (International Symposium on Structural Integrity-ISSI2021).

4. 2019年9月,中国杭州,参加2019年中国力学大会,做中文报告.

5. 2018年11月,中国南京,参加2018年国际结构完整性会议 (2018 International Symposium on Structural Integrity-ISSI2018),做英文报告.

6. 2017年5月,英国曼彻斯特,参加第14届工程结构完整性评估暨2017国际结构完整性会议(Engineering Structural Integrity Assessment-ESIA14, in conjunction with the 2017 International Symposium on Structural Integrity-ISSI2017),做英文报告.

7. 2016年7月,加拿大温哥华,参加2016年美国机械工程师协会举办的国际压力容器与管道会议(The 2016 ASME Pressure Vessels and Piping Conference),做英文报告.

8. 2015年9月,中国上海,参加第14届国际压力容器技术会议(The 14th International Conference on Pressure Vessel and Technology),做英文报告.


联系方式

Email: lj66@ujs.edu.cn; lijian83675215@163.com