陈弋翀
发布时间:2024-10-22   访问次数:10   作者:

姓名:陈弋翀

职称:特聘副研究员、硕士生导师

地址:华东理工大学实验十楼225

电话:021-64252085

邮箱:chenyc@ecust.edu.cn

 

【个人经历】

2024/9 -  今,华东理工大学,九游体育官网,特聘副研究员

2022/1 - 2024/8,华东理工大学,九游体育官网,博士后

2016/9 - 2022/1,华东理工大学,九游体育官网,博士(硕博连读)

2012/9 - 2016/7,华东理工大学,九游体育官网,学士


【研究方向】

超临界流体技术,主要从事超临界流体发泡聚合物新技术与新产品的相关研究:

1.超临界流体发泡原料的结构设计及过程的多尺度模拟优化;

2.外场强化辅助高效超临界流体发泡过程的设计与开发;

3.高性能聚合物微孔材料的可控制备和规模放大制备。

 

【所获荣誉】

1.2024年全国颠覆性技术创新大赛 优胜奖(第2完成人)

2.2023年第二十四届中国专利奖 优秀奖(第2完成人)

3.2022年第二届上海市博士后创新创业大赛 优胜奖

4.2022年第八届中国国际“互联网+”创新创业大赛 国赛铜奖/市赛金奖

5.2021年第八届创青春中国青年创新创业大赛 国赛银奖

6.2020年第十二届“挑战杯”中国大学生创业计划竞赛 国赛银奖/市赛金奖

7.2020年第六届中国国际“互联网+”创新创业大赛 国赛铜奖/市赛金奖

8.2019年第一届SCIP+绿色化学化工创新创业大赛 一等奖

 

【社会兼职】

American Journal of Chemical Engineering》编委

 

【承担项目】

1.国家自然科学基金青年基金,超临界CO2氛围中聚合物颗粒的粘结现象和分散行为,2024-202630万元

2.上海市“超级博士后”激励计划,2022-202330万元

3.相关产学研项目4

 

【主要成果】

目前共发表30余篇SCI论文,申请17项中国发明专利、1项美国发明专利。

 

【近年来发表的代表性论文】

1. Wenyu Zhong, Dongdong Hu, Yichong Chen*, Ling Zhao*. Microwave-assisted Physical Foaming of Polymers: A Review. Polymer Reviews, 2024, 64(4): 1136-1175.

2. Wenyu Zhong, Dongdong Hu, Xingyu Jia, Yu Huang, Yuanwei Wang, Ke Lei, Xiulei Jiang, Jiabao Yu, Yichong Chen*, Ling Zhao*. A novel semi-continuous preparation mode of ultra-low density thermoplastic polyurethane foam. Chemical Engineering Journal, 2024, 481: 148402.

3. Xingyu Jia, Wenyu Zhong, Yichong Chen*, Dongdong Hu, Jiayang Sun, Yao Peng, Jiabao Yu, Xiulei Jiang, Ling Zhao*. Density Gradient Structure Foams Prepared by Novel Two-step Foaming Strategy: Performance, Simulation and Optimization. Composites Part B: Engineering, 2024, 111890.

4. Yichong Chen, Wenyu Zhong, Xingyu Jia, Dongdong Hu*, Jiayang Sun, Yao Peng, Jiabao Yu, Xiulei Jiang, Huifeng Wang, Ling Zhao*. Microcellular Thermoplastic Polyurethane (TPU) with Multimodal Cell Structure Fabricated Based on Pressure Swing Strategy and Its Compressive Mechanical Properties. Industrial & Engineering Chemistry Research, 2024, 63(19): 8833-8845.

5. Wenyu Zhong, Jiabao Yu, Nemin Yang, Dongdong Hu, Yichong Chen*, Chuanjie Fan, Xiulei Jiang, Ling Zhao*. PS/PPO Foam with Excellent Comprehensive Properties Prepared by Integrated Foaming and Sintering Strategy with Microwave-assisted. Composites Communications, 2024, 48: 101925.

6.  Jiabao Yu1, Yichong Chen1, *, Wenyu Zhong, Dongdong Hu, Xingyu Jia, Jiayang Sun, Yi Jiang, Xiulei Jiang, Huifeng Wang, Ling Zhao*. Microcellular long-chain branched polyphenylene oxide (PPO) with excellent comprehensive properties and comprehensive analysis of its dielectric properties. European Polymer Journal, 2024, 214: 113157.

7. Yanfei Zhao, Yichong Chen*, Dongdong Hu, Wenyu Zhong, Jiayang Sun, Xingyu Jia, Ling Zhao*. Structural Regulation of Microcellular Thermotropic Liquid Crystalline Polymer (TLCP) with Low Dielectric Properties during Supercritical Fluid Foaming Process. Advanced Engineering Materials, 2024, 26: 202400039.

8. Wenyu Zhong, Dongdong Hu, Yichong Chen*, Ling Zhao*. Second cell growth optimized by heating mode during two-step supercritical CO2 foaming polymer process. Chemical Engineering Science, 2023, 281: 119110.

9. Yichong Chen, Jiabao Yu, Yijie Ling, Shun Yao, Xiulei Jiang, Dongdong Hu, Huifeng Wang, Ling Zhao*. Comprehensive analysis of mechanical properties of microcellular polypropylene: Experiment and simulation. Polymer Testing, 2022, 116: 107812.

10.Yichong Chen, Shun Yao, Yijie Ling, Wenyu Zhong, Dongdong Hu, Ling Zhao*. Microcellular PETs with high expansion ratio produced by supercritical CO2 molding compression foaming process and their mechanical properties. Advanced Engineering Materials, 2022 24(3): 2101124.

11.Yichong Chen, Dongyang Li, Hong Zhang, Yijie Ling, Kaiwen Wu, Tao Liu, Dongdong Hu, Ling Zhao*. Antishrinking strategy of microcellular thermoplastic polyurethane by comprehensive modeling analysis. Industrial & Engineering Chemistry Research, 2021 60(19): 7155-7166.

12.Yichong Chen, Chengzhi Xia, Tao Liu, Dongdong Hu, Zhimei Xu, Ling Zhao*. Application of a CO2 pressure swing saturation strategy in PP semi-solid-state batch foaming: evaluation of foamability by experiments and numerical simulations. Industrial & Engineering Chemistry Research, 2020, 59(11): 4924-4935.

13.Yichong Chen, Chen Wan, Tao Liu*, Zheqi Chen, Yida Qiao, Jiawei Lu, Junyu Yan, Ling Zhao, Mohamed Esseghir. Evaluation of LLDPE/LDPE blend foamability by in situ rheological measurements and bubble growth simulations. Chemical Engineering Science, 2018, 192: 488-498.