个人概况:
姓 名:邵春光 性 别:男
出生日期:1982年 籍贯:山东省济宁市
最高学历:博 士 职 称:教授
联系方式:E-mail:shaochg@zzu.edu.cn
通讯地址:河南省郑州市文化路97号附1号橡塑模具国家工程研究中心
个人简历:
2000年9月-2004年7月,鲁东大学,普通本科,物理学;
2004年9月-2006年7月,西南交通大学,硕博连读,高压凝聚态物理;
2006年9月-2009年7月,中国科学技术大学国家同步辐射实验室(合肥);
2009年9月至今 郑州大学橡塑模具国家工程研究中心工作。
研究方向:
聚合物的高压成型工艺
非晶聚合物材料成型及改性
聚合物的形态结构-性能关系
承担和参加项目情况:
(1)国家自然科学基金委员会, 面上项目, 52273027, “基于原位检测技术构建高压成型工艺与聚合物结晶”,2023/01-2026/12,进行中、主持;
(2)校企合作横向项目,20230321A,“面向注塑成型的先进成型工艺研究”,2022/09-2025/9,进行中、主持;
(3)国家自然科学基金委员会,面上项目,51573171,“可控增压条件下聚合物的成型及制品的结构-性能关系研究”,2016/01-2019/12,已结题、主持;
(4)郑州大学优秀青年教师项目,1521502001,“增压和预剪双重调控下聚合物的成型-成性研究”,2016/01-2019/12,已结题、主持;
(5)国家自然科学基金委员会,青年项目,51103138,“快速增压法制备大块非晶聚合物及原位FTIR、X射线研究其拉伸过程中的结晶行为”,2012/01-2014/12,已结题、主持;
(6)河南省教育厅科学技术研究重点项目,14A430011,“原位研究拉伸过程中聚合物与离子液体复合材料的多尺度结构演化与力学性能关系”,2014/01-2017/12、已结题、主持;
(7)河南省高等学校青年骨干教师资助计划项目,2014GGJS-007,“在线研究离子液体对PLA结晶行为及其力学性能的影响”,2015/01-2017/12,已结题、主持;
(8)“973”预研项目,2012CB626809、基于非晶材料微结构流道的高聚物微成型过程微观组织演化与性能、2012/07-2014/07、已结题、参加;
(9)河南省重大公益项目,HNZB[2010]N91、生物降解高分子材料制备及加工工程中的关键问题研究、2011/01-2013/12、已结题、参加;
(10)河南省高校科技创新团队人才支持计划,14IRTSTHN001、2014/01-2016/12、参加。
主要荣誉:
1. 2011年 获得郑州大学校级骨干教师。
2. 2013年 获得郑州大学“三育人”先进个人。
3. 2014年 获得河南省高校优秀青年骨干教师。
论文发表情况:
1. X. Zhang, Z. Li, C. Wei, Z. Shi, Y. Wang, C. Liu, C. Shen, C. Shao*. Effect of High Pressure on Crystallization Structure and Mechanical Properties of Polybutene-1and Polypropylene Blends, Acta Polymerica Sinica, 54, 1925-1934, (2023)
2. M. Xu, J. Lin, X. Zhang, Z. Li, Y. Wang, C. Liu, C. Shen, C. Shao*. In Situ Detection of Structural Evolution of Isotropic Polypropylene Crystals During Uniaxial Stretching by Two-Dimensional X-Ray Diffraction Spectroscopy, Spectroscopy and Spectral Analysisi, 43: 1426-1433, (2023)
3. W. Zhai, G. Zheng, C. Shao*, et al.Stretchable, Sensitive Strain Sensors with a Wide Workable Range and Low Detection Limit for Wearable Electronic Skins, ACS Applied Materials and Interfaces, 14: 4562-4570, (2022)
4. Y. Liu, Y. Wang, H. Zhang, Y. Wu, S. Zhao, Q. L, C. Shao*, et al. Toughening of polybutene-1 with form I induced by rapid pressurization, Cryst Eng Comm, 24: 300-310, (2022)
5. Q. Xia, S. Wang, W. Zhai, C. Shao*, et al. Highly linear and low hysteresis porous strainsensor for wearable electronic skins, COMPOSITES COMMUNICATIONS, 26: 0-100809, (2021)
6. B. Dong, X. Yang, Y. Ji, F. Su, C. Shao*, et al. Polymorph selection during melt crystallization of the isotactic polybutene-1 homopolymer depending on the melt state and crystallization pressure, Soft Matter, 16: 9074-9082, (2020)
7. X. Fu, C. Shao* et al. Phase Transitions of the Rapid-Compression Induced Mesomorphic Isotactic Polypropylene under High Pressure Annealing, Journal of Polymer Science Part b, 57, 651-661, (2019)
8. J. Huang, X. Fu, C. Shao*, Z. Ma, Y. Wang, C. Liu, C. Shen. High-pressure induced formation of isotactic polypropylene mesophase: synergistic effect of pressure and pressurization rate, Polym. Eng. Sci.,59,439-446, (2019)
9. G. Li, J. Huang, H. Zhang, C. Yuan, C. Shao* et al. Formation and structure analysis of interfacial cylindrites inducted by silkworm silk fiber in poly (lactic acid) based composites, Chemical Journal of Chinese Universities, 38, 1663-1669, (2017)
10. R. Zhuo, Y. Zhang, G. Li, C. Shao* et al. Structural evolution of poly(lactic acid) upon uniaxial stretching investigated by in situ infrared spectroscopy, Vibrational Spectroscopy, 86, 262-269, (2016)
11. Y. Zhang, R, Zhuo, G. Li, C. Shao* et al. Mesophase formation and structure evolution of poly (lactic acid) during annealing. Chemical Journal of Chinese Universities, 37, 581-586, (2016)
12. Q. Li, R. Zhang, C. Shao* et al. Cold crystallization behavior of glassy poly(lactic acid) prepared by rapid compression. Polym. Eng. Sci., 55, 359-366, (2015)
13. R. Zhuo, C. Shao* et al. Effect of Rapid Compression on the Crystallization Behaviour of Polyethylene. Polymers & Polymer Composites, 21, 543-551(2013)
14. C. Shao* et al. Relationship between crystal orientation and stress-induced crystalline melting of syndiotactic polypropylene under uniaxial deformation via in situ wide-angle X-ray scattering. Chemical Journal of Chinese Universities, 34, 458-490, (2013)
15. Y. Zhang, C. Shao* et al. Drawing-induced crystallization behavior of amorphous PEEK prepared by rapid compression, Chemical Journal of Chinese Universities, 34, 1258-1263, (2013)
16. R. Zhang, C. Shao* et al. Isothermal cold crystallization behavior of amorphous PLA prepared by rapid compression. Acta Polymerica Sinica, 8, 1085-1091, (2013)
17. C. Shao* et al. Inhomogeneous deformation of crystalline skeleton of syndiotactic polypropylene under uniaxial stretching, J. Mater Sci, 47, 3334-3343, (2012)
18. C. Shao, H. An, X. Wang, R. Jia, B. Zhao, Z. Ma, X. Li, G. Pan, L. Li, S. Hong. Deformation-Induced Linear Chain-Ring Transition and Crystallization of Living Polymer Sulfur, Macromolecules, 40, 9475-9481, (2007)
19. H, Zhang, C. Shao, W, Kong, Y, Wang, W, Cao, C, Liu, C. Sheng. Memory effect on the crystallization behavior of poly(lactic acid) probed by infrared spectroscopy, European Polymer Journal, 91, 376-385, (2017)
20. W. Wang, C. Shao, L. Zheng, B. Wang, P. Li, Y. Li, Y. Wang, C. Liu, M. Zhe. Mazhe. Stretching induced phase transition of the butene-1/ethylene random copolymer: Orientation and kinetics, Journal of Polymer Science Part B, accepted, DOI: 10.1002/polb.24764, (2018)
21. D. Wang, C. Shao, B. Zhao, L. Bai, X. Wang, T. Yan, J, Li, G. Pan, L. Li. Deformation-Induced Phase Transitions of Polyamide 12 at Different Temperatures: An in Situ Wide-Angle X-ray Scattering Study, Macromolecules, 43, 2406-2412, (2010)
22. Z. Ma, C. Shao, X. Wang, B. Zhao, X. Li, H. An, T. Yan, Z. Li, L. Li. Critical stress for drawing-induced α crystal-mesophase transition in isotactic polypropylene, Polymer, 50, 2706-2715, (2009)
23. F. Luo, X. Liu, C. Shao, J. Zhang, C. Shen, Z. Guo. Micromechanical analysis of molecular orientation in high-temperature creep of polycarbonate, Materials and Design, 144, 25-31, (2018)
24. Q. Han, Y. Wang, C. Shao, G. Zheng, Q. Li, C. Shen. Nonisothermal crystallization kinetics of biodegradable poly(lactic acid)/zinc phenylphosphonate composites, Journal of Composite Materials, 48, 2737-2746,(2014)
25. D. He, Y. Wang, C. Shao, G. Zheng, Q. Li, C. Shen, Effect of phthalimide as an efficient nucleating agent on the crystallization kinetics of poly(lactic acid), Polym. Test., 32, pp1088–1093, (2013)
申请专利和奖励:
[1] 邵春光(第二/共九人); 工程高分子材料的高压制备关键技术, 河南省教育厅, 科技成果奖二等奖,(2021)
[2] 邵春光,黄静静,卓然然, 张欢欢,扶晓波,王亚明,刘春太,控制iPP相结构的方法及制备含中间相结构iPP的方法, 2019-3-29, 发明专利, CN201710187251.9
[3] 王市伟,孙波,冷瑜婷,蒋晶,邵春光,李倩,申长雨,国家发明专利,一种提高热塑性树脂微成型制品结晶度的方法,发明专利:CN201410299592.1;
[4]汪啸,邵春光,赵佰金,洪义麟,姚传荣,李良彬,用于多光源原位结构检测的材料拉伸和压缩装置,实用新型专利:ZL200820038881.6。