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王庭慰
阅读次数:     发布时间:2021-03-28

基本信息

wtw-photo 

      名:

王庭慰

      别:

出生年月:

1960.5

      贯:

江苏

      称:

教授

E-mail

wangtw@njtech.edu.cn

工作地点:

B402

学缘情况和工作经历

1978.2~1982.2 南京化工学院;高分子化工专业

1982.9~1985.5 南京化工学院;高分子材料硕士

1988.8~1989.9 斯洛伐克技术大学访问学者

1998.9~1999.3 加拿大瑞尔逊大学访问学者

1985.5~至今       留校任教

 

教学与科研情况

 

长期从事高分子材料、有机复合材料的科研和教学工作。目前担任本科生“聚合反应工程”和研究生“材料科学进展”课程教学。

研究领域:高分子材料的合成与性能研究,生物可降解高分子材料研究,复合材料的性能研究。

   承担国家和省部级科研项目多项。在国内外发表文章160余篇。

 

 

高水平代表性论文

1. Improved   ceramifiable properties of EVA composites with whitened and capsulized red phosphorus   (WCRP), RSC Advances, 2016, 6: 96984.

2. Improved   self-supporting property of ceramifying silicone rubber composites by forming   crystalline phase at high temperatures, Journal of Alloys and Compounds,   2017, 706: 322-329.

3. Ceramifiable   EVA/APP/SGF composites for improved ceramifiable properties, Polymer   Degradation and Stability, 2018, 150: 140-147.

4. Constructing a   filler network for thermal conductivity enhancement in epoxy composites via   reaction-induced phase separation, Composites Part A, 2018, 110:62-69.

5. Three-dimensional   cross-linking structures in ceramifiable EVA composites for improving   self-supporting property and ceramifiable properties at high temperature, Polymer   Degradation and Stability, 2019, 162: 94-101.

6. Effects of   chain extender and uniaxial stretching on the properties of PLA/PPC/mica composites,   Polymers for Advanced Technologies, 2019, 30: 2436-2446.

7. Improved   Self-Supporting and Ceramifiable Properties of Ceramifiable EPDM Composites   by Adding Aramid Fiber, Polymers, 2020, 12: 1523.

8. Feasibility   study of water as thinner for polyvinyl chloride plastisol, Journal of   Applied Polymer Science, 2021, 138: e49684.

9. Novel   imidazole derivatives with recoverable activity as latent curing agents for   epoxy, Journal of Applied Polymer Science, 2021, 138: e49730.

10. Enhanced   residue stability and strength of epoxy-based coating for fire protection via   ceramifiable strategy, Progress in Organic Coatings, 2021, 154:   106211.

授权发明专利

一种高吸水性、高保水性聚氨酯泡沫及其制备方法 (CN201710530908.7) 

一种滚塑级耐磨聚烯烃树脂及其制备方法 (CN201010018252.9)

低温快速烧成高频低损耗玻璃陶瓷及其制备方法 (CN200810124200.2) 

一种高导热有机硅灌封胶 (CN200710022980.5)

5低温快速烧成高频低损耗玻璃陶瓷及其制备方法 (CN200810124200.2)

6一种防滴落陶瓷化聚烯烃复合材料及其制备方法 (CN201410107797.5)

一种普通聚乙烯耐磨复合材料及其制备方法 (CN200910033254.2) 

一种PVDF/PETG组合物及其制备的薄膜 (CN201110318207.X)

9一种透明聚酰胺及其合成方法 (CN201310430548.5)