陈葱琳,博士
副研究员、博士生导师
交通学院道路工程系教师
所属团队:先进道路材料技术中心
办公地点:东南大学九龙湖校区交通学院大楼512室
88038威尼斯的联系方式:conglinchen@seu.edu.cn
研究方向:
高性能改性技术
乳化沥青及黏封透沥青技术
大掺量冷热再生技术
教育经历:
博士,美国爱荷华州立大学,土木工程(沥青路面与材料)专业,2018
硕士,美国爱荷华州立大学,土木工程(沥青路面与材料)专业,2015
学士,重庆交通大学,土木工程(公路与城市道路)专业,2014
工作经历:
2021/03-至今,东南大学,交通学院,道路工程系,专任教师
2019/11-2021/01,澳大利亚国家道路研究院(ntro-arrb),专业工程师/研究员
2018/12-2019/11,美国爱荷华州立大学,土木工程(沥青路面与材料),博士后
科研项目:
1. 2022.12-2025.11:废弃工业大豆油基嵌段生物聚合物改性沥青机理及性能研究,国家自然科学基金青年项目
2. 2022/01-2022/12:南通市农村公路绿色建养关键技术研究与应用项目2021nlky标段,南通市公路事业发展中心
3. 2021/04-2021/11:江苏省普通国省道预防性养护技术体系研究,江苏省交通运输厅公路事业发展中心
4. 2020/03-2021/01:测量沥青混合料中沥青的抗车辙性能的可持续的试验方法(sustainable test for measuring rutting performance of binders in asphalt apt6213),澳洲道路协会(austroads)
5. 2020/01-2021/01:用于沥青混合料与封层的橡胶沥青国家规范(national specification for crumb rubber binders in asphalt and seals apt6173),澳洲道路协会(austroads)
6. 2019/11-2020/01:提高聚合物及橡胶改性沥青在喷洒封层技术中的应用(improved sprayed sealing practices for pmb and crm binders),澳大利亚国家卓越资产中心(national asset centre of excellence)
7. 2016/01-2019/11:development of bio-based polymers for use in asphalt – phase ii, ia),美国爱荷华州交通局(iowa dot)及爱荷华州公路研究协会(iowa highway research board),
8. 2014/08-12:development of renewable polymers for use in asphalt pavements),美国国家公路运输协会(aashto)、美国国家联邦公路局(fhwa)及美国国家公路合作研究项目(nchrp)
承担课程:
道路工程b(本科生)
专著教材:
马涛,廖公云,陈葱琳编著,功能路面结构与材料(functional pavement structures and materials),东南大学出版社,2022年4月
代表性论文:
1. chen, c., lu, j., ma, t., zhang, y., gu, l., and chen, x. (2023). applications of vegetable oils and their derivatives as bio-additives for use in asphalt binders: a review. construction and building materials. https://doi.org/10.1016/j.conbuildmat.2023.131312.
2. chen, c., lin, l., and ma, t. (2022). effects of oil/asphalt emulsion formulation on particle size and stability. transportation research record. https://doi.org/10.1177/03611981221100512
3. 马涛,陈葱琳*,张阳,张伟光. 胶粉应用于沥青改性技术的发展综述[j]. 中国公路学报,2021, 34(10): 1-16. https://doi.org/10.19721/j.cnki.1001-7372.2021.10.001.
4. podolsky, j. h., hohmann, a. d., chen, c., sotoodeh-nia, z., manke, n., saw, b., hernández, n. b., ledtje, p., forrester, m., williams, r. c., cochran, e. w., and huisman, t. (2022). effect of soybean oil derived additives on improved performance of polymer-modified asphalt binder and mix containing 50% fine-graded rap. proceedings of the rilem international symposium on bituminous materials. https://doi.org/10.1007/978-3-030-46455-4_78.
5. podolsky, j. h., chen, c.*, hernández, n. b., williams, r. c., and cochran, e. w. (2020). low temperature performance of hot mix asphalt using vacuum tower distillation bottoms modified with bio-derived rejuvenators according to the scb test. international journal of pavement engineering.
6. chen, c.*, williams, r. c., podolsky, j. h., hohmann, a. d., and cochran, e. w. (2019). effect of blending protocol on the performance of sbs/sulfur/soybean-derived additive composite modified asphalt binders. international journal of pavement engineering.
7. podolsky, j. h., chen, c.*, buss, a. f., williams, r. c., and cochran, e. w. (2019). effect of bio-derived/chemical additives on hma and wma compaction and dynamic modulus performance. international journal of pavement engineering.
8. chen, c.*, podolsky, j. h., williams, r. c., & cochran, e. w. (2018). laboratory investigation of using acrylated epoxidized soybean oil (aeso) for asphalt modification. construction and building materials.
9. chen, c.*, podolsky, j. h., williams, r. c., & cochran, e. w. (2018). rheological properties and effects of aging on acrylated epoxidised soybean oil monomer-modified asphalt binder. road materials and pavement design. https://doi.org/10.1080/14680629.2018.1491883
10. chen, c.*, podolsky, j. h., hernández, n. b., hohmann, a. d., williams, r. c., and cochran, e. w. (2017). preliminary investigation of bioadvantaged polymers as sustainable alternatives to petroleum-derived polymers for asphalt modification. materials and structures.
11. chen, c.*, podolsky, j. h., williams, r. c., & cochran, e. w. (2017). determination of the optimum polystyrene parameters using asphalt binder modified with poly (styrene-acrylated epoxidised soybean oil) through response surface modelling. road materials and pavement design.
12. chen, c., podolsky, j. h. *, hernández, n. b., hohmann, a. d., williams, r. c., and cochran, e. w. (2016). use of bioadvantaged materials for use in bituminous modification. transportation research procedia.