康澜
发布时间: 2023-05-30

基本信息

n  职称:副教授

n  职务:副系主任

n  人才称号:广东省特支计划科技创新青年拔尖人才

n  联系电话:

n  电子邮箱:ctlkang@scut.edu.cn

n  办公地址:7号楼7110办公室

研究方向 

1. 极端荷载作用下普通和高强钢结构服役性能演化规律研究

2.金属增材制造土木工程应用研究

学术兼职 

亚热带建筑科学国家重点实验室成员

7个国际SCI期刊审稿人

中国建筑节能协会工程改造与加固分会委员

行业标准《再生混合混凝土组合结构设计标准》、广东省标准《再生块体混凝土组合结构技术规程》编委

招生专业 

博士生:土木工程(方向:防灾减灾工程及防护工程)

硕士生:土木工程

专业学位硕士:土木水利

教育与工作经历 

教育经历

20069月~20099月,同济大学,结构工程,博士

20039月~20066月,华南理工大学,结构工程,硕士

19999月~20036月,华南理工大学,土木工程,学士

工作经历

20229月至今,华南理工大学,土木与交通学院,博士生导师,土木工程系副系主任,副教授

2019620228月,华南理工大学,土木与交通学院,土木工程系副系主任,副教授

2014920195月,华南理工大学,土木与交通学院,副教授

2012420146月,日本名城大学,工学部,JSPS外国人特别研究员,合作教授:葛汉彬院士

2011420123月,日本名城大学,工学部,大幸学者,合作教授:葛汉彬院士

2009920113月,中交四航工程研究院有限公司,结构所,工程师

教学与科研情况  


²  教学

本科生教学:

1.《装配式结构设计》华南理工大学本科线上一流本科课程负责人,《砌体结构》华南理工大学本科线上线下一流本科课程负责人。

2.截至2022年,指导毕业设计 29人,校级优秀 2 人,院级优秀   13人,优秀占比45 %

3. 2021年,指导学生获得首届全国大学生工业化建筑与智慧建造竞赛二等奖。

4.指导学生完成多项国家大学生创新计划项目。

5.2021年校级课程思政项目,校级课程思政示范课程:装配式结构设计,项目负责人。

6.2022年校级教研教改项目,新工科和金课背景下装配式结构设计课程建设与实践创新,项目负责人。

 

研究生教学:

讲授《数据挖掘及土木工程应用》、《3D打印材料与结构设计》课程,年均招收硕士生2-3名,博士生1名。

教学成果:

1.2021年,广东省研究生教育创新计划项目(教改项目),基于全过程盲控和协同育人的土木水利专业学位研究生培养质量保障体系的构建与研究,项目负责人。

2.截至2022年,培养研究生2人获得国家奖学金。

3.发表教研教改论文1 篇:

康澜, 季静,吴建营,侯爽. 土木工程研究生培养质量多维保障体系的研究与实践, 教育现代化, 2022, 19.

 

²  科研

科研兴趣:

1. 极端荷载作用下普通和高强钢结构服役性能演化规律研究

Ø  大震下钢结构的极低周疲劳性能:材料、构件和体系

Ø  腐蚀后钢结构剩余承载力评价与分析

Ø  钢桥桥墩抗震性能研究

Ø  地震耦合海啸作用下沿海钢桥损伤评价与分析

Ø  高强钢结构耐火性能研究

2.金属增材制造土木工程应用研究

Ø  腐蚀、疲劳、撞击等表面损伤钢结构的还原式修复

Ø  钢结构薄弱部位的补强与加固

Ø  复杂钢结构连接节点

科研项目:

1. 国家自然科学基金面上项目,52178286,激光熔覆修复局部腐蚀圆钢管的界面应力传递规律及承载机制,2022-012025-1275.4万元,在研,主持

2. 国家自然科学基金青年项目,51508205,考虑极低周疲劳效应的焊接钢材延性断裂模型及评价分析方法研究,2016-012018-1225.6万元,已结题,主持

3. 广东省自然科学基金面上项目,2020A1515011070,海上风机导管架基础船撞安全性能研究,2020-012022-1210万元,已结题,主持

4. “广东特支计划”科技创新青年拔尖人才,2016TQ03Z528,资源与环境领域,2017-072020-0630万,已结题,主持

5. 广东省科技计划项目,2014A020218002,跨海大桥在地震耦合海啸作用下的抗撞性能研究,2015-072018-0620万元,已结题,主持

6. 亚热带建筑科学国家重点实验室自主研究课题,2022KB14,激光增材制造高容错钢结构连接节点的拓扑优化及承载机制研究,2022-072024-630万元,在研,主持

7. 中央高校基本科研业务费重点项目,D2191360,加强型节点断裂破坏机理和设计方法研究,2019-012020-1220万元,已结题,主持

8. 中央高校基本科研业务费重点项目,2017ZD016,高强焊接工字形钢梁抗火性能与设计方法研究,2017-012018-1215万元,已结题,主持

9. 中央高校基本科研业务费面上项目,20152M015,不同应力三轴度条件下焊接钢材的延性断裂性能研究,2015-012016-129万元,已结题,主持

10. 亚热带建筑科学国家重点实验室开放课题,2016ZB25,极低周疲劳作用下焊接钢结构的延性断裂性能评价分析方法研究,2016-012017-123万元,已结题,主持

11. 国家自然科学基金面上项目,51978281FRP-高强混凝土-高强钢双壁空心柱受压力学性能研究,2020-012023-1260万元,在研,参与

12. 国家重点研发项目子课题,2017YFC0703400,组合结构全寿命性能与可靠性设计方法研究,2017-072020-0650万元,已结题,参与

代表性成果(论文、专利或专著、软件著作权、成果转化等)

1. Kang, L.*, Zhang, B., Bradford, M. A., and Liu, X. P. (2023). Interfacial behaviour and stress transfer mechanism of additively manufactured laser cladding sheet-covered steel plates. Thin-Walled Structures, 182, 110218.

2. Kang, L.*, Chen, F., Wu, B., Liu, X. P., and Ge, H. B. (2022). Mechanical properties and microstructure of laser-cladding additively manufactured 316L stainless steel sheets. Journal of Constructional Steel Research, 199, 107603.

3. Liu, Y., Ikeda, S., Liu, Y., Kang, L.*, and Ge, H. B. (2022). Experimental investigation of fracture performances of SBHS500, SM570 and SM490 steel specimens with notches. Metals, 12(4), 672.

4. Kang, L.*, and Zhang, C. (2022). Cyclic behavior of steel beam-to-column connections with novel strengthened angle components. Steel and Composite Structures, 42(6), 791-804.

5. Kang, L.*, Wu, B., Liu, X. P., and Ge, H. B. (2021).   Experimental study on post-fire mechanical performances of high   strength steel Q460. Advances in Structural Engineering, 24(12), 2791-2808.

6. Kang, L.*, Hong, S. T., and Liu, X. P. (2021). Shear behaviour and strength design of cellular beams with circular or elongated openings. Thin-Walled Structures, 160, 107353.

7. Kang, L.*,   Meng, L. C., and Lin, Y. W. (2020). Experimental and numerical investigation of lateral torsional buckling behavior and capacity of welded Q460 beams. Journal of Constructional Steel Research, 172, 106166.

8. Fujie, W., Taguchi, M., Kang, L.*, Ge, H. B., and Xu, B. (2020). Ductile crack initiation evaluation in stiffened steel bridge piers under cyclic loading. Steel and Composite Structures, 36(4), 463-480.

9. Liu, Y., Kang, L.*, and Ge, H. B. (2019). Experimental and numerical study on ductile fracture of structural steels under different stress states. Journal of Constructional Steel Research, 158, 381-404.

10. Kang, L., Wang, Y. Q., Liu, X. P., and Uy, B.   (2019). Investigation of residual stresses of hybrid normal and high strength steel (HNHSS) welded box sections. Steel and Composite Structures, 33(4), 489-507.

11. Kang, L., Ge, H. B.*, Magoshi, K., and Nonaka, T.   (2019). Behavior of a steel bridge with large caisson foundations under earthquake and tsunami actions. Steel and Composite Structures, 31(6),   575-589.

12. Wu, B., Cao, J.-L., and Kang, L.*   (2018). End patch loading behavior and strengthening of locally corroded steel I-beams. Journal of Constructional Steel Research, 148, 371-382.

13. Kang, L.*, Suzuki, M., Ge, H. B., and Wu, B. (2018). Experiment of ductile fracture performances of HSSS Q690 after a fire. Journal of Constructional Steel Research, 146, 109-121.

14. Kang, L.*, Suzuki, M., and Ge, H. B. (2018). A study on application of high strength steel SM570 in bridge piers with stiffened box section under cyclic loading. Steel and Composite Structures, 26(5), 583-594.

15. Kang, L.*, Ge, H. B., Suzuki, M., and Wu, B. (2018). An average weight whole-process method for predicting mechanical and ductile fracture performances of HSS Q690 after a fire. Construction and Building Materials, 191, 1023-1041.

16. Wu, B., Cao, J.-L., and Kang, L.* (2017). Influence of local corrosion on behavior of steel I-beams subjected to end patch loading: Experiments. Journal of Constructional Steel Research, 135, 150-161.

17. Kang, L., Magoshi, K., Ge, H. B.*, and Nonaka, T. (2017). Accumulative response of large offshore steel bridge under severe earthquake and ship impact due to earthquake-induced tsunami flow. Engineering Structures, 134, 190-204.

18. Kang, L.*, Ge, H. B., and Fang, X. (2016). An improved ductile fracture model for structural steels considering effect of high stress triaxiality. Construction and Building Materials, 115, 634-650.

19. Jia, L.-J., Ikai, T., Kang, L.*, Ge, H. B., and Kato, T. (2016). Ductile cracking simulation procedure for welded joints under monotonic tension. Structural Engineering and Mechanics, 60(1), 51-69.

20. Kang, L., Ge, H. B.*, and Kato, T. (2015). Experimental and ductile fracture model study of single-groove welded joints under monotonic loading. Engineering Structures, 85, 36-51.

21. Kang, L., and Ge, H. B. * (2015). Predicting ductile crack initiation in steel bridge piers with unstiffened box section under specific cyclic loadings using detailed and simplified evaluation methods. Advances in Structural Engineering, 18(9), 1427-1442.

22. Ge, H. B., and Kang, L.* (2014). Ductile crack initiation and propagation in steel bridge piers subjected to random cyclic loading. Engineering Structures, 59, 809-820.

23. Kang, L., and Ge, H. B.* (2013). Predicting ductile crack initiation of steel bridge structures due to extremely low-cycle fatigue using local and non-local models. Journal of Earthquake Engineering, 17(3), 323-349.

24. Ge, H. B., Kang, L.*, and Tsumura, Y. (2013). Extremely low-cycle fatigue tests of thick-walled steel bridge piers. Journal of Bridge Engineering, 18(9), 858-870.

25. Kang, L., and Ge, H. B.* (2012). Strength and ductility evaluation method for steel bridge pier frames considering effect of shear failure. Advanced Steel Construction, 8(4), 366-382.

26. Kang, L.*, Zhang, Q., and Wang, Z. (2009). Linear and geometrically nonlinear analysis of novel flat shell elements with rotational degrees of freedom. Finite Elements in Analysis and Design, 45(5), 386-392.

·      SCI收录期刊论文 (其他作者)

27. Liu, Q.*, Ma, J., Kang, L., Sun, G., and Li, Q. (2015). An experimental study on fatigue characteristics of CFRP-steel hybrid laminates. Materials & Design, 88, 643-650.

28. Ge, H. B., Jia, L.-J.*, Kang, L., and Suzuki, T. (2014). Experimental study on seismic performance of partial penetration welded steel beam-column connections with different fillet radii. Steel and Composite Structures, 17(6), 851-865.

29. Magoshi, K., Kang, L., Ge, H. B.*, Nonaka, T., Harada, T., and Murakami, K. (2013). An evaluation method for large drifting object-bridge collision during tsunami. Journal of Earthquake and Tsunami, 7(2), 1350009.

30. Ge, H. B.*, Kang, L., and Hayami, K. (2013). Recent research developments in ductile fracture of steel bridge structures. Journal of Earthquake and Tsunami, 7(3), 1350021.

31. Ge, H. B., and Kang, L. (2012). A damage index-based evaluation method for predicting the ductile crack initiation in steel structures. Journal of Earthquake Engineering, 16(5), 623-643.

32. Ge, H., Chen, X., and Kang, L. (2012). Demand on Stiffened steel shear panel dampers in a rigid-framed bridge pier under repeated seismic ground motions. Advances in Structural Engineering, 15(3), 525-546.

·        在投SCI期刊论文

33. Kang, L.*, Zhang, C., Bradford, M. A., and Liu, X. P. Full-range stress-strain relationship and fracture model for laser cladding additively manufactured 316L stainless steel sheets. Engineering Structures, under review.

34. Kang, L.*, Zhang, C., Bradford, M. A., and Liu, X. P. Axial compressive behaviour of corroded circular steel tube columns retrofitted by laser-cladding additive manufacturing. Thin-walled Structures, submitted.

35. Kang, L.*, Chen, F., Bradford, M. A., and Liu, X. P. Experimental study on mechanical properties of laser additively manufactured 316L stainless steels. ready to submit.

·        EI收录中文期刊论文

36. 康澜*, 陈宗霖, 林益伟, 高强圆钢管约束高强型钢混凝土短柱的轴压力学性能, 华南理工大学学报(自然科学版), 2022, 50(07): 1-12.

37. 康澜*, 邬彬,   陈志邦, 激光熔覆技术修复局部腐蚀钢板后修复件的力学性能, 华南理工大学学报(自然科学版), 2022, 50(05): 137-146.

38. 康澜*, 洪书涛, Q690D高强钢的疲劳性能试验研究, 华南理工大学学报(自然科学版), 2021, 49(08): 35-42.

专利标准

参编 1   部行业标准《再生混合混凝土组合结构技术标准》和1部广东省标准《再生混合混凝土组合结构技术规程》,授权发明专利和实用新型专利 10

1.  孟柳辰, 康澜.一种基于杠杆原理的钢梁稳定试验集中荷载加载装置,发明,2017110033024

2.  林陈可, 康澜, 陈涛, 陈启, 雷浚, 帅少璇, 陈宁, 刘玥, 冯晓桐.一种可拆装移动的模块化建筑结构,实用新型,2021209907611

3.  康澜,洪书涛.一种矩形钢管混凝土柱,实用新型,2020228630402

4.  林益伟, 康澜, 熊莹.一种高强钢管约束高强型钢混凝土组合柱,实用新型,201921866507X

5.  邱文科, 康澜, 张彬.一种可恢复功能的承载耗能梁柱节点装置,实用新型,2019218211645

6.  梁国立, 康澜, 张彬.一种双钢种矩形钢管高强混凝土柱,实用新型,2019219214509

7.  梁国立, 康澜.一种双腔式矩形钢管高强混凝土柱,实用新型,201921921547X

8.  王羽琦, 康澜.一种适用于抗震设防区的高延性混合强度箱形截面钢柱,实用新型,2018217637415

9.  林益伟, 康澜.一种轻钢龙骨铝锥芯航空板隔墙,实用新型,2018220067830

10. 林杨胜, 赵峻鹏,康澜,秦楚灏,谢睿杰,钟伟恒. 一种用碳纤维增强复合材料加固的开圆形孔蜂窝梁,实用新型,2018221059812

 

其他 

课题组研究氛围活跃,生活氛围轻松,欢迎在钢结构、组合结构以及智能建造方向有研究兴趣的同学报考硕士和博士研究生!让我们一起创造更美好的未来!

课题组长期招收具有土木、力学、材料及机械等相关专业博士毕业生加盟课题组开展博士后科研工作。依托于粤港澳大湾区的政策导向和经济优势,华南理工大学为博士后提供丰厚的待遇和配套条件,具体招聘启示请参见:https://www2.scut.edu.cn/postdoctor/2021/1102/c13590a449561/page.htm

Researchgate: https://www.researchgate.net/profile/Lan-Kang-5

科研之友:https://www.scholarmate.com/psnweb/homepage/show?des3PsnId=tXCtpUxTTKYQzLVJ045Zew%3D%3D