蒋震宇
发布时间: 2023-05-23

基本信息

n  职称:教授


n  职务:工程力学系副系主任


n  联系电话:020-87111030-3304


n  电子邮箱:zhenyujiang@scut.edu.cn


n  办公地址:交通大楼603B

研究方向

(1)基于机器视觉的形貌和变形测量技术

(2)微纳米多尺度复合材料的力学性质及增强机理

(3)先进工程材料研制及力学建模方法                              

学术兼职

中国力学学会实验力学专业委员会实验力学新方法专业组成员,中国颗粒学会青年理事,广东省力学学会常务理事,新加坡光学和光子学学会中国学会技术委员会成员,Optics and Lasers in Engineering客座编辑,二十余家国际知名学术期刊通讯审稿人。

招生专业

博士生:固体力学                                

硕士生:工程力学                                 

教育与工作经历

教育经历

19999月~20051月,中国科学技术大学,固体力学专业,博士                             

19959月~19997月,中国科学技术大学,理论与应用力学专业,学士                              

工作经历                              

20119月至今,华南理工大学,土木与交通学院,工程力学系,副教授(2011-2017),教授/博士生导师(2017至今)

20099月~20113月,英国贝尔法斯特女王大学(Queen’s Belfast University),机械与航空航天工程学院,Research Fellow,合作教授:PeterHornsby教授

200710月~20098月,香港理工大学,机械工程系,Postdoctoral Fellow,合作教授:周利民教授

20053月~20079月,德国凯撒斯劳滕工业大学(Technical Universityof Kaiserslautern),复合材料研究所,Research Associate,合作教授:Klaus Friedrich教授                              

教学与科研情况

²  教学                

本科生教学:                              

1.Plasticity Theory》、《Theoretical Mechanics》、《实验力学》、《材料力学》。

2. 指导学生完成多项国家大学生创新计划项目。                                

研究生教学:                              

讲授《现代测试技术I》,年均招收硕士生1-2名,博士生1名。                                

教学成果:

2017年,中国力学学会全国徐芝纶力学优秀教师奖

2017年,获英国文化教育协会和英国总领事馆文化处全英授课(EMI)培训认证

2014~2016年,连续三年获华南理工大学本科教学优秀奖     

  

²  科研              

科研兴趣:主要集中于实验固体力学和复合材料力学领域,包括光测力学方法,先进材料的力学模型,高性能工程材料的研制,人工智能在力学问题中的应用,运动生物力学等

科研项目:先后主持国家自然科学基金项目3项,参与国家自然科学基金重点项目2项,长期担任国家自然科学基金评审专家。主持和参与多项省部级和企事业科技项目。

主要项目:

1. 国家自然科学基金面上项目,12072115,纤维增强水凝胶复合材料的力学性能及实验评估方法研究,2021/01-2024/1262万元,主持。

2. 国家自然科学基金面上项目,11772131,用于泡沫金属材料内部变形场分析的高精度数字体图像相关法研究,2018/01-2021/1264万元,主持。

3. 国家自然科学基金青年科学基金项目,11202081,纳米颗粒和连续纤维对微纳米多相复合材料压缩性能的协同增强机理研究,2013/01-2015/1226万元,主持。

4. 教育部留学回国人员科研启动基金项目,微纳米多相复合材料中纤维/基体界面的力学性质研究,2013/12-2014/123万元,主持。

5. 国家自然科学基金重点项目,12232017,细胞外基质高阶复杂变形场测量方法和细胞病变损伤力学机制研究,2023/01-2027/12301万元,参与。

6. 国家自然科学基金重点项目, 11932007, 溶液环境中高含水率超软材料动态力学性能的实验技术与表征方法,2020/01-2024/12, 340万元, 在研, 参与

7. 国家自然科学基金面上项目,11772132,围压下环氧树脂基混凝土的动态压剪累积损伤与破坏行为研究,2018/01-2021/1264万元,参与。

8. 广东省科技计划项目,2015B010131009,面向桥梁长期健康监测的大数据处理技术及应用,2016/01-2018/12500万元,参与。

9. 广州市科技项目,201903010046,基于云计算的桥梁长期健康监测系统开发及示范应用,2019/04-2023/3100万元,参与。                             

 

代表性成果(论文、专利或专著、软件著作权、成果转化等):发表期刊论文100余篇,其中SCI收录期刊论文80余篇,被引用超过2800次(Google scholar citations)。  参编英文学术专著两部,分别由SpringerDe Gruyter出版。已获授权发明专利5项。

主要论文(*通讯作者)

- I - 基于机器视觉的变形和形貌测量技术

1. Jiang ZY*, OpenCorr: An open source library for research and development of digital image correlation. Optics and Lasers in Engineering. 2023; 165: 107566.

2. Lin AY, Li R, Jiang ZY*, Dong SB*, Liu YP, Liu ZJ, Zhou LC, Tang LQ. Tang, Path independent stereo digital image correlation with high speed and analysis resolution. Optics and Lasers in Engineering. 2022; 149:106812.

3. Cai LC, Yang JR, Dong SB*, JiangZY*. GPU accelerated parallel reliability-guided digital volume correlation with automatic seed selection based on 3D SIFT. Parallel Computing. 2021; 108:102824.

4. Yang JR, Huang JW, Jiang ZY*, Dong SB*, Tang LQ, Liu YP, Liu ZJ, Zhou LC. 3D SIFT aided path independent digital volume correlation and its GPU acceleration. Optics and Lasers in Engineering. 2021; 136:106323.

5. Yang JR, Huang JW, Jiang ZY*, Dong SB*, Tang LQ, Liu YP, Liu ZJ, Zhou LC. SIFT-aided path-independent digital image correlation accelerated by parallel computing. Optics and Lasers in Engineering. 2020;127:105964.

6. Huang JW, Zhang LQ, Jiang ZY*, Dong SB*, Chen W, Liu YP, Liu ZJ, Zhou LC, Tang LQ. Heterogeneous parallel computing accelerated iterative subpixel digital image correlation. Science China Technological Sciences 2018; 61(1):74-85.

7. Chen W, Jiang ZY*, Tang LQ, Liu YP, Liu ZJ. Equal noise resistance of two mainstream iterative sub-pixel registration algorithms in digital image correlation. Experimental Mechanics 2017; 57(6): 979-996.

8. Wang TY, Jiang ZY*, Kemao Q*, Lin F, Soon H. GPU accelerated digital volume correlation. Experimental Mechanics 2016; 56(2): 297-309.

9. Pan ZW, Chen W, Jiang ZY*, Tang LQ, Liu YP, Liu ZJ. Performance of global look-up table strategy in digital image correlation with cubic B-spline interpolation and bicubic interpolation. Theoretical and Applied Mechanics Letters 2016; 6(3): 126-130.

10. Zhang LQ, Wang TY, Jiang ZY*, Kemao Q*, Liu YP, Liu ZJ, Tang LQ, Dong SB. High accuracy digital image correlation powered by GPU-based parallel computing. Optics and Lasers in Engineering 2015; 69: 7-12.

11. Jiang ZY*, Kemao Q*, Miao H, Yang JL, Tang LQ. Path-independent digital image correlation with high accuracy, speed and robustness. Optics and Lasers in Engineering 2015; 65: 93-102.

12. Zhang QC*, Jiang ZY, Jiang HF, Chen ZJ, Wu XP. On the propagation and pulsation of Portevin-Le Chatelier deformation bands: An experimental study with digital speckle pattern metrology. International Journal of Plasticity 2005; 21(11):2150-2173.

- II - 多尺度复合材料和纳米复合材料力学性质

13. He K, Liao HC, Liu ZJ, Liu YP, Tang LQ, Yang B, Zhou LC*, Jiang ZY*. Reinforcing efficiency of nanophases with various geometric shapes on interfacial bonding in multiscale composites. Composites Part A: Applied Science and Manufacturing. 2023; 165:107369.

14. Liu C, Lin JX, Tang LQ, Liu ZJ, Jiang ZY*, Lian KQ*. Design of metal-polymer structure for dental implants with stiffness adaptable to alveolar bone. Composites Communications. 2021; 24:100660.

15. Chen W, Liu YP*, Jiang ZY*, Tang LQ, Liu ZJ, Zhou LC. Modeling of compressive strength for unidirectional fiber reinforced composites with nanoparticle modified epoxy matrix. Materials. 2019;12(23):3897.

16. Li W, Chen W, Tang LQ, Jiang ZY*, Huang PY*. A general strength model for fiber bundle composites under transverse tension or interlaminar shear. Composites Part A 2019; 121:45-55.

17. Yu B, Li XT, An JL, Jiang ZY*, Yang JL*. Interfacial and glass transition properties of surface-treated carbon fiber reinforced polymer composites under hygrothermal conditions. Engineered Science 2018; 2:67-73.

18. Yu B, He PG, Jiang ZY*, Yang JL*. Interlaminar fracture properties of surface treated Ti-CFRP hybrid composites under long-term hygrothermal conditions. Composites Part A 2017; 96: 9-17.

19. Jiang ZY*, Zhang H*, Han JF, Liu ZJ, Liu YP, Tang LQ. Percolation model of reinforcement efficiency for carbon nanotubes dispersed in thermoplastics. Composites Part A 2016; 86:49-56.

20. Yu B, Jiang ZY, Yang JL*, Long-term moisture effects on the interfacial shear strength between surface treated carbon fiber and epoxy matrix. Composites Part A 2015; 78:311-317.

21. Yu B, Jiang ZY*, Tang XZ, Yue CY, Yang JL*. Enhanced interphase between epoxy matrix and carbon fiber with carbon nanotube-modified silane coating. Composites Science and Technology 2014; 99:131-136.

22. Jiang ZY*, Hornsby P, McCool R, Murphy A. Mechanical and thermal properties of polyphenylene sulphide/multi-walled carbon nanotube composites. Journal of Applied Polymer Science 2012; 123(5):2676-2683.

23. Jiang ZY*, Siengchin S, Zhou LM, Steeg M, Karger-Kocsis J, Man HC. Poly (butylene terephthalate)/silica nanocomposites prepared from cyclic butylene terephthalate. Composites Part A 2009; 40(1):273-278.

24. Jiang ZY, Zhang H, Zhang Z*, Murayama H, Okamoto K. Improved bonding between PAN-based carbon fibers and fullerene-modified epoxy matrix. Composites Part A 2008; 39(11):1762-1767.

25. Jiang ZY*, Gyurova LA, Friedrich K, Schlarb AK, Zhang Z. Study on friction and wear behavior of polyphenylene sulfide composites reinforced by short carbon fibers and sub-micro TiO2 particles. Composites Science and Technology 2008; 68(3-4):734-742.

26. Jiang ZY, Gyurova LA, Zhang Z*, Friedrich K, Schlarb AK. Neural network based prediction on mechanical and wear properties of short fibers reinforced polyamide composites. Materials & Design 2008; 29(3):628-637.

27. Jiang ZY, Zhang Z*, Friedrich K. Prediction on wear properties of polymer composites with artificial neural networks. Composites Science and Technology 2007; 67(2):168-176.

- III - 先进工程材料力学行为和建模方法

28. Peng C, Liu C, Liao ZH, Yang B, Tang LQ, Yang L*, Jiang ZY*. Automatic 3D image based finite element modelling for metallic foams and accuracy verification of digital volume correlation. International Journal of Mechanical Sciences. 2022; 235:107715.

29. Ma DP, Liu C, Zhu HB, Liu YP*, Jiang ZY*, Liu ZJ, Zhou LC, Tang LQ. High fidelity 3D mesoscale modeling of concrete with ultrahigh volume fraction of irregular shaped aggregate. Composite Structures. 2022; 291:115600.

30. Li XH, Ma DP, Lu ZM, Liu YP*, Jiang ZY*, Tang LQ, Liu ZJ, Zhou LC. Experimental study of hygrothermal and ultraviolet aging on the flexural performance of epoxy polymer mortar. Acta MechanicaSolida Sinica.2021; 24(4):539-549.

31. Ma DP, Liang ZM, Liu YP*, Jiang ZY*, Liu ZJ, Zhou LC, Tang LQ. Mesoscale modeling of epoxy polymer concrete under tension or bending. Composite Structures. 2021; 256:113079.

32. Ma DP, Pan ZW, Liu YP*, Jiang ZY*, Liu ZJ, Zhou LC, Tang LQ. Residual flexural performance of epoxy polymer concrete under hygrothermal conditions and ultraviolet aging. Materials. 2019;12(21):3472.

33. Lin JX, Zhang G, Jiang ZY*, Tang LQ, Lian KQ. Evaluation of biomechanical health degree of peri-implant bone through finite element analysis: A first approach. International Journal of Applied Mechanics 2018; 10(9)-1850097.

34. Hu B, Zhang NL, Liao YT, Pan ZW, Zhou LC, Liu ZJ*, Jiang ZY*. Enhanced flexural performance of epoxy polymer concrete with short natural fibers. Science China Technological Sciences 2018; 61(8):1107-1113.

35. Ma DP, Liu YP, Zhang NL, Jiang ZY*, Tang LQ, Xi HF*. Micromechanical modeling of flexural strength for epoxy polymer concrete. International Journal of Applied Mechanics 2017; 9(8): 1750117.

36. Liu YP, Ma DP, Jiang ZY*, Xiao F, Huang XX, Liu ZJ, Tang LQ. Dynamic response of expanded polystyrene concrete during low speed impact. Construction and Building Materials 2016; 122: 72-80.

37. Yang B, Liu ZJ, Tang LQ, Jiang ZY*, Liu YP. Mechanism of the Strain Rate Effect of Metal Foams with Numerical Simulations of 3D Voronoi Foams during the Split Hopkinson Pressure Bar Tests. International Journal of Computational Methods 2015; 12(4): 1540010.

38. Zhang XY, Tang LQ, Jiang ZY*, Liu ZJ, Liu YP, Fang DN. Effects of Meso Shape Irregularity of Metal Foam on Yield Features under Triaxial Loading. International Journal of Structural Stability and Dynamics 2015; 15(7): 1540014.

39. Jiang ZY, Zhang QC*, Jiang HF, Chen ZJ, Wu XP. Spatial characteristics of the Portevin-Le Chatelier deformation bands in Al-4 at%Cu polycrystals. Materials Science and Engineering A 2005; 43(1-2):154-164.

40. Zhou GY*, Jiang ZY. Deformation in magnetorheological elastomer and elastomer-ferromagnet composite driven by a magnetic field. Smart Materials &Structures 2004; 13(2):309-316.

专利:

1. 中国发明专利,一种基于图像特征增强数字体图像相关法的变形测量方法,专利申请日:2021/01/13,授权日:2023/03/21ZL202210034810.3,排名第三

2. 中国发明专利,一种基于桩锤激震和决策树模型的地下溶洞探测方法,专利申请日:2019/07/19,授权日:2020/11/17ZL201910653024.X,排名第十

3. 中国发明专利,通过圆柱体侧向压缩力位移响应确定材料参数的方法,专利申请日:2018/05/28,授权公告日:2019/10/18ZL201810521081.8,排名第六

4. 中国发明专利,一种不封闭交通的公路桥面图像获取方法,专利申请日:2015/06/16,授权公告日:2018/04/13ZL201510332329.2,排名第二

5. 中国发明专利,一种用于霍普金森压杆的双子弹电磁驱动装置,专利申请日:2015/11/20,授权公告日:2018/02/27ZL201510815296.7,排名第五

6. 中国发明专利,基于数字图像的分离式霍普金森压杆实验的同步测量方法,专利申请日:2014/09/17,授权公告日:2016/10/05ZL201410476610.9,排名第五                        

其他

长期招聘固体力学方向博士后(特别是有光测力学或复合材料力学研究经验者),有兴趣的合作者请通过Email联系,发送简历和代表作论文。华南理工大学为博士后提供丰厚的待遇和配套条件,具体招聘信息请参见以下链接:

https://www2.scut.edu.cn/postdoctor/2021/1102/c13590a449561/page.htm

 

开源数字图像相关法(DIC/DVC)软件开发库OpenCorrhttps://opencorr.org/

 

最新招生信息:https://yanzhao.scut.edu.cn/open/ExpertInfo.aspx?zjbh=gRMtINKk2niLyj2BHjAvsw==

ORCIDhttps://orcid.org/0000-0001-8497-3405

Google Scholar: https://scholar.google.com/citations?user=M_9zqq8AAAAJ&hl=en

ResearchGate: https://www.researchgate.net/profile/Zhenyu-Jiang-2

 

毕业研究生去向:

2012-2015,刘奇,硕士,就业单位:金地集团(深圳)
2014-2017
,李稳,硕士,就业单位:英国牛津大学(University of Oxford),博士后
2015-2018
,方奕欣,硕士,就业单位:中海地产集团(汕头)
2015-2018
,林俊雄,硕士,毕业去向:加拿大西安大略大学(Western University),博士研究生
2015-2018
,潘志伟,硕士,就业单位:数说故事(广州)
2015-2018
,黄建文,硕士(合作培养),就业单位:商汤科技(深圳)
2012-2018
,陈蔚,博士(直博,合作培养),就业单位:美的集团(佛山)
2017-2020
,杨俊荣,硕士(合作培养),就业单位:腾讯(深圳)
2016-2021
,马东鹏,博士(合作培养),就业单位:浙江清华柔性电子技术研究院(嘉兴),博士后
2017-2021
,廖焕臣,硕士,就业单位:中航通用飞机(珠海)
2018-2021
,刘畅,硕士,就业单位:开立生物医疗(深圳)
2018-2021
,朱孟轩,硕士,毕业去向:华中科技大学(武汉),博士研究生
2018-2021
,林傲宇,硕士(合作培养),就业单位:中国南方电网(广州