教育经历
入学时间 |
毕业时间 |
学位授予单位 |
学历 |
2012-09-01 |
2017-06-20 |
北京化工大学 |
博士研究生毕业 |
2008-09-01 |
2012-07-01 |
南京林业大学 |
大学本科毕业 |
工作经历
起始年月 |
截止年月 |
所在单位名称 |
2022-12-01 |
至今 |
北京化工大学 |
2020-05-20 |
2022-11-01 |
北京化工大学 |
2017-06-23 |
2020-04-28 |
北京化工大学 |
本科生课程
课程名称 |
开课学年 |
课程总学时 |
选课人数 |
课程性质 |
高分子材料模拟理论与应用 |
2023 |
32 |
86 |
专业选修 |
高分子材料模拟理论与应用 |
2023 |
32 |
86 |
专业选修 |
高分子材料模拟理论与应用 |
2023 |
32 |
|
专业选修 |
高分子材料模拟理论与应用 |
2023 |
32 |
|
专业选修 |
纵向项目
- 1. 热-力-老化耦合下航空轮胎用胎面橡胶材料多轴疲劳寿命预测方法研究 ,国家自然科学基金项目,项目时间:2025-01-01 至 2028-12-31
- 2. 超强高耐热聚酰胺66 纤维及加捻帘线结构仿真设计技术 ,国家重点研发计划,项目时间:2023-12-01 至 2026-10-31
- 3. 生物基弹性体的制备与规模化应用 ,国家科技部,项目时间:2022-11-01 至 2025-10-31
- 4. 蒲公英橡胶纳米复合材料制备与应用研究 ,国家科技支撑计划,项目时间:2022-11-01 至 2025-10-31
- 5. 本征型介电弹性体电致形变的分子机制研究及模型构建(离职人员委托项目) ,国家自然科学基金项目,项目时间:2022-01-01 至 2024-12-31
- 6. 热力耦合下橡胶纳米复合材料制件动态生热的跨尺度模拟及实验研究 ,国家自然科学基金项目,项目时间:2021-01-01 至 2023-12-31
横向项目
- 1. 轮胎橡胶疲劳折痕裂纹产生机制及抗弯折疲劳方法研究 ,企事业单位委托科技项目,项目时间:2025-03-01 至 2026-12-31
- 2. 基于动力学与热力耦合的新能源轿车轮胎材料磨耗仿真预测及验证 ,企事业单位委托科技项目,项目时间:2024-12-01 至 2026-12-31
- 3. 硅橡胶硫化仿真合作研究 ,企事业单位委托科技项目,项目时间:2024-10-01 至 2025-09-30
- 4. 储罐新型通气附件及在线监检测技术研发 ,企事业单位委托科技项目,项目时间:2024-02-24 至 2026-12-30
- 5. 高载高速长距离航空轮胎设计与制备 ,企事业单位委托科技项目,项目时间:2023-12-01 至 2026-12-31
- 6. 小微型子午线航空轮胎设计与制备 ,企事业单位委托科技项目,项目时间:2023-12-01 至 2026-12-31
- 7. 大型民用航空轮胎设计与制备 ,其他研究项目,项目时间:2023-12-01 至 2026-12-31
- 8. 高性能纤维线绳结构设计仿真及在轮胎骨架材料应用研究 ,企事业单位委托科技项目,项目时间:2023-11-10 至 2026-11-10
- 9. 高分子热老化活化能测定及模拟计算研究 ,其他研究项目,项目时间:2023-06-30 至 2025-06-30
- 10. 燃料电池用橡胶材料的本构模型建立及现役电堆密封设计优化 ,企事业单位委托科技项目,项目时间:2023-06-01 至 2023-12-31
- 11. 高性能板簧橡胶支座用胶料开发及其成型工艺的优化 ,企事业单位委托科技项目,项目时间:2022-04-13 至 2023-12-31
- 12. 天津银河阀门有限公司-北京化工大学阀门橡胶技术研发中心合作协议 ,企事业单位委托科技项目,项目时间:2021-11-02 至 2024-10-31
- 13. 橡胶本构模型及动态温升、滚动阻力、疲劳寿命和硫化程度有限元分析研究 ,企事业单位委托科技项目,项目时间:2021-07-01 至 2023-12-31
- 14. 电梯中聚氨酯和PVC高分子材料低温机械性能检测 ,自选课题,项目时间:2021-05-01 至 2022-04-30
- 15. UHMWPE在橡胶输送带中的应用研究 ,企事业单位委托科技项目,项目时间:2021-02-01 至 2022-02-01
- 16. 自发电智能轮胎开发 ,企事业单位委托科技项目,项目时间:2021-01-01 至 2023-12-31
- 17. 胶乳气球平漂充气量算法模型建立 ,国家科技部,项目时间:2020-01-01 至 2021-12-31
论文信息
[+][-]代表性论文
-
1. DOI
Qu, Fan;Sun, Wei;Li, Bin;Li, Fanzhu;Gao, Yangyang;Zhao, Xiuying;Zhang, Liqun
Erratum: Synergistic effect in improving the electrical conductivity in polymer nanocomposites by mixing spherical and rod-shaped fillers[期刊论文],Soft Matter,2021-01-21
-
2. DOI
Qu, Fan;Sun, Wei;Li, Bin;Li, Fanzhu;Gao, Yangyang;Zhao, Xiuying;Zhang, Liqun
Synergistic effect in improving the electrical conductivity in polymer nanocomposites by mixing spherical and rod-shaped fillers[期刊论文],SOFT MATTER,2020-12-10
[+][-]
2030年
-
1. DOI
Qu, Fan;Sun, Wei;Li, Bin;Li, Fanzhu;Gao, Yangyang;Zhao, Xiuying;Zhang, Liqun
Erratum: Synergistic effect in improving the electrical conductivity in polymer nanocomposites by mixing spherical and rod-shaped fillers[期刊论文],Soft Matter,2021-01-21
-
2. DOI
Qu, Fan;Sun, Wei;Li, Bin;Li, Fanzhu;Gao, Yangyang;Zhao, Xiuying;Zhang, Liqun
Synergistic effect in improving the electrical conductivity in polymer nanocomposites by mixing spherical and rod-shaped fillers[期刊论文],SOFT MATTER,2020-12-10
[+][-]
2029年
-
1. DOI
Qu, Fan;Sun, Wei;Li, Bin;Li, Fanzhu;Gao, Yangyang;Zhao, Xiuying;Zhang, Liqun
Erratum: Synergistic effect in improving the electrical conductivity in polymer nanocomposites by mixing spherical and rod-shaped fillers[期刊论文],Soft Matter,2021-01-21
-
2. DOI
Qu, Fan;Sun, Wei;Li, Bin;Li, Fanzhu;Gao, Yangyang;Zhao, Xiuying;Zhang, Liqun
Synergistic effect in improving the electrical conductivity in polymer nanocomposites by mixing spherical and rod-shaped fillers[期刊论文],SOFT MATTER,2020-12-10
[+][-]
2028年
-
1. DOI
Qu, Fan;Sun, Wei;Li, Bin;Li, Fanzhu;Gao, Yangyang;Zhao, Xiuying;Zhang, Liqun
Erratum: Synergistic effect in improving the electrical conductivity in polymer nanocomposites by mixing spherical and rod-shaped fillers[期刊论文],Soft Matter,2021-01-21
-
2. DOI
Qu, Fan;Sun, Wei;Li, Bin;Li, Fanzhu;Gao, Yangyang;Zhao, Xiuying;Zhang, Liqun
Synergistic effect in improving the electrical conductivity in polymer nanocomposites by mixing spherical and rod-shaped fillers[期刊论文],SOFT MATTER,2020-12-10
[+][-]
2027年
-
1. DOI
Qu, Fan;Sun, Wei;Li, Bin;Li, Fanzhu;Gao, Yangyang;Zhao, Xiuying;Zhang, Liqun
Erratum: Synergistic effect in improving the electrical conductivity in polymer nanocomposites by mixing spherical and rod-shaped fillers[期刊论文],Soft Matter,2021-01-21
-
2. DOI
Qu, Fan;Sun, Wei;Li, Bin;Li, Fanzhu;Gao, Yangyang;Zhao, Xiuying;Zhang, Liqun
Synergistic effect in improving the electrical conductivity in polymer nanocomposites by mixing spherical and rod-shaped fillers[期刊论文],SOFT MATTER,2020-12-10
[+][-]
2026年
-
1. DOI
Qu, Fan;Sun, Wei;Li, Bin;Li, Fanzhu;Gao, Yangyang;Zhao, Xiuying;Zhang, Liqun
Erratum: Synergistic effect in improving the electrical conductivity in polymer nanocomposites by mixing spherical and rod-shaped fillers[期刊论文],Soft Matter,2021-01-21
-
2. DOI
Qu, Fan;Sun, Wei;Li, Bin;Li, Fanzhu;Gao, Yangyang;Zhao, Xiuying;Zhang, Liqun
Synergistic effect in improving the electrical conductivity in polymer nanocomposites by mixing spherical and rod-shaped fillers[期刊论文],SOFT MATTER,2020-12-10
[+][-]
2025年
-
1. DOI
Qu, Fan;Sun, Wei;Li, Bin;Li, Fanzhu;Gao, Yangyang;Zhao, Xiuying;Zhang, Liqun
Erratum: Synergistic effect in improving the electrical conductivity in polymer nanocomposites by mixing spherical and rod-shaped fillers[期刊论文],Soft Matter,2021-01-21
-
2. DOI
Qu, Fan;Sun, Wei;Li, Bin;Li, Fanzhu;Gao, Yangyang;Zhao, Xiuying;Zhang, Liqun
Synergistic effect in improving the electrical conductivity in polymer nanocomposites by mixing spherical and rod-shaped fillers[期刊论文],SOFT MATTER,2020-12-10
[+][-]
2024年
-
1. DOI
Qu, Fan;Sun, Wei;Li, Bin;Li, Fanzhu;Gao, Yangyang;Zhao, Xiuying;Zhang, Liqun
Erratum: Synergistic effect in improving the electrical conductivity in polymer nanocomposites by mixing spherical and rod-shaped fillers[期刊论文],Soft Matter,2021-01-21
-
2. DOI
Qu, Fan;Sun, Wei;Li, Bin;Li, Fanzhu;Gao, Yangyang;Zhao, Xiuying;Zhang, Liqun
Synergistic effect in improving the electrical conductivity in polymer nanocomposites by mixing spherical and rod-shaped fillers[期刊论文],SOFT MATTER,2020-12-10
[+][-]
2023年
-
1. DOI
Qu, Fan;Sun, Wei;Li, Bin;Li, Fanzhu;Gao, Yangyang;Zhao, Xiuying;Zhang, Liqun
Erratum: Synergistic effect in improving the electrical conductivity in polymer nanocomposites by mixing spherical and rod-shaped fillers[期刊论文],Soft Matter,2021-01-21
-
2. DOI
Qu, Fan;Sun, Wei;Li, Bin;Li, Fanzhu;Gao, Yangyang;Zhao, Xiuying;Zhang, Liqun
Synergistic effect in improving the electrical conductivity in polymer nanocomposites by mixing spherical and rod-shaped fillers[期刊论文],SOFT MATTER,2020-12-10
[+][-]2023年之前
-
1. DOI
Qu, Fan;Sun, Wei;Li, Bin;Li, Fanzhu;Gao, Yangyang;Zhao, Xiuying;Zhang, Liqun
Erratum: Synergistic effect in improving the electrical conductivity in polymer nanocomposites by mixing spherical and rod-shaped fillers[期刊论文],Soft Matter,2021-01-21
-
2. DOI
Qu, Fan;Sun, Wei;Li, Bin;Li, Fanzhu;Gao, Yangyang;Zhao, Xiuying;Zhang, Liqun
Synergistic effect in improving the electrical conductivity in polymer nanocomposites by mixing spherical and rod-shaped fillers[期刊论文],SOFT MATTER,2020-12-10
专利
- 1. 一种氢燃料电池用三元乙丙橡胶密封材料及制备方法和应用 ,CN113372655A
- 2. 一种隔震支座用类铅高分子复合材料
- 3. 隔震支座用类铅高分子复合材料及其制备方法
荣誉及奖励
- 1. 高速列车用高性能橡胶空气弹簧关键技术及工程化应用 ,2024-12-30 00:00:00 ,社会科技奖励 ,一等奖
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