人员页面

人员页面

陈诚


  姓名:陈诚

职称:副研究员

办公电话:18458339121

通讯地址:复材创新中心大楼C412

邮箱:chencheng@dhu.edu.cn


一、 主要经历

2024.05-至今:东华大学,民用航空复合材料协同创新中心,副研究

2021.05-2024.04:华中科技大学,博士后

2016.09-2021.05:不列颠哥伦比亚大学(2024QS世界大学排名第34名),材料工程,博士

2015.09-2016.05:滑铁卢大学(加拿大),机械工程,交换生

2012.09-2016.06:南京航空航天大学,飞行器动力工程,学士

二、研究方向

(1)民机用高韧性环氧复合材料自动铺丝热压罐成形

(2)热塑性复合材料激光辅助自动铺放原位成形

三、科研项目

(1)国家自然科学基金青年基金,主持

(2)中国博士后科学基金第71批面上资助,主持

(3)博士后国际交流计划引进项目,主持

(4)大飞机先进材料创新联盟项目,主持

(5)某企合作项目,主持

四、代表性论文

1. Cheng Chen*, Zhikun Chen, Shirui Hu, Yue Zhou, Zhigao Huang*, Huamin Zhou. Significantly enhanced laser trapping and heating of carbon nanotube/carbon fibre hierarchical composites for efficient laser-assisted automated fibre placement. Composites Part A: Applied Science and Manufacturing 177 (2024): 107965.

2. Wei Jiang, Zhikun Chen, Min Liu, Cheng Chen*, Zhigao Huang*, Helezi Zhou, Huamin Zhou. Optical properties optimization of carbon fiber reinforced thermoplastic tapes by micro surface texturing for enhanced laser heating efficiency and in-situ consolidation quality during AFP process. Composites Part B: Engineering 278 (2024): 111393. (Co-corresponding Author

3. Wei Jiang, Cheng Chen*, Xukang Wang, Huang Gao, Maoyuan Li, Zhigao Huang*, Huamin Zhou. Carbon nanotube-induced localized laser heating toward simultaneously enhanced laydown efficiency and fracture toughness of in-situ consolidated glass fiber thermoplastic composites. Composites Part B: Engineering 280 (2024): 111531.(Co-corresponding Author

4. Xukang Wang, Cheng Chen*, Shirui Hu, Zhikun Chen, Wei Jiang, Guancheng Shen, Zhigao Huang*, Huamin Zhou. In-situ infrared annealing for laser-assisted automated fiber placement to enhance interlaminar properties without sacrificing laydown efficiency. Composites Part A: Applied Science and Manufacturing 183 (2024): 108214.(Co-corresponding Author

5. Guancheng Shen, Junyu Hu, Cheng Chen*, Maoyuan Li*, Xukang Wang, Zechen Ying, Zhikun Chen et al. In-situ crystallization process monitoring of thermoplastic composites by dielectric sensing during laser-assisted automated fiber placement. Journal of Manufacturing Processes 124 (2024): 479-488. (Co-corresponding Author

6. Cheng Chen, Luyang Gong, Wei Jiang, Zhikun Chen, Wenlong Chen, Xusheng Du, Helezi Zhou, Zhigao Huang, Huamin Zhou. Light-trapping carbon nanotube forests in glass fibre-reinforced thermoplastic prepregs for efficient laser-assisted automated fibre placement. Composites Science and Technology 235 (2023): 109971. 

7. Cheng Chen, Scott Nesbitt, Johannes Reiner, Anoush Poursartip, Göran Fernlund. Cure path dependency of damage resistance in interlayer toughened composite laminates subjected to quasi-static indentation and low-velocity impact. Composites Part B: Engineering 266 (2023): 111000.

8. Wei Jiang, Cheng Chen*, Zhikun Chen, Zhigao Huang, Huamin Zhou. Effect of crystallinity on optical properties of PEEK prepreg tapes for laser-assisted automated fiber placement. Composites Communications 38 (2023): 101490. (Co-corresponding Author

9. Cheng Chen., Poursartip, A., & Fernlund, G. (2020). Cure-dependent microstructures and their effect on elastic properties of interlayer toughened thermoset composites. Composites Science and Technology, 108241.

10. Cheng Chen, Nesbitt, S., Reiner, J., Vaziri, R., Poursartip, A., & Fernlund, G. (2020). Cure path dependency of static and dynamic mode II interlaminar fracture toughness of interlayer toughened composite laminates. Composites Science and Technology, 200, 108444.

11. Cheng Chen., Anoush Poursartip, and Göran Fernlund. Influence of the glass transition of interlaminar particles on shear behaviour during cure of interlayer toughened thermoset composites. Composites Part A: Applied Science and Manufacturing 147 (2021): 106447.

12.  Reiner, J., Cheng Chen, Vaziri, R., & Poursartip, A. (2022). Combining digital image correlation and phased-array ultrasonics for non-destructive testing of translaminar fracture in composite laminates. Composites Part A: Applied Science and Manufacturing, 161, 107060.

五、招生

本科课题组围绕国产大飞机复合材料构件制造的关键问题开展应用基础研究。诚挚欢迎具有力学、高分子、材料、纺织、机械等相关学科背景的同学加入团队攻读研究生和博士学位,深入接触民机先进材料、先进装备和先进制造技术,与行业专家共同解决航空复合材料应用的难题。同时,也欢迎大一、大二、大三本科生到课题组开展实验、模拟和装备搭建等方面的实习工作,通过实践发现自己的爱好和特长,为今后学业和职业发展的选择做铺垫。

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