人员队伍详细资料

滕乐

发布时间:2024年09月09日 01时00分

 基 本 信 息

姓名:滕乐

性别:

党派:中国共产党员

职称:教授、博导

通讯地址:东南大学材料学院A611

邮箱:101013637@seu.edu.cn



研究方向:

1.  水泥基材料早期流变和微结构演变机理

2. 建筑高分子功能材料

3. 机器学习与智能建造高性能纤维复合材料

 个 人 简 介


滕乐,工学博士,教授,博士生导师,入选国家级高层次青年人才项目。在国际建筑材料与结构学术期刊发表SCI论文20余篇(第一/通讯作者10余篇),其中在水泥混凝土领域著名期刊Cement and Concrete ResearchCement and Concrete Composites发表论文10余篇。从事流态混凝土、超高性能水泥基复合材料、建筑高分子材料以及基于机器学习和数字孪生的先进工程材料的设计、微结构分析、性能调控等研究。每年招收博士生2名,硕士生若干名,纳入刘加平院士课题组统一管理,欢迎有材料、土木、化学、计算机等背景的学生报考。



教育背景与工作经历

2023.11至今

东南大学材料科学与工程学院

教授

2023.1-2023.10

东南大学材料科学与工程学院

助理研究员

2018.1-2022.5

美国密苏里科技大学土木工程学院

博士(AdvisorKamal   H.

Khayat

主持科研项目

[1] 国家自然科学基金青年项目“调黏剂和聚羧酸减水剂的交互作用对UHPC浆体流变的影响机制”,2024-2026

[2] 国家重点研发计划“动力锂电池运输安全防护技术与装备”子课题,2024-2026


代表性学术成果:

[1] Teng,   L., Addai-Nimoh, A., Khayat, K. H.* (2024). Contribution of shrinkage   reducing admixture and lightweight sand on moist curing requirement for   fiber-reinforced ultra-high-performance concrete.ACI Materials Journal,121-M28.

[2] Liu, Z., Chen, X., Teng, L.*,   Su, J., Zhang, Y., Zhang, W. (2024). Mechanism of Using L-Shaped Steel Plate   and Rubber to Enhance Seismic Performance of Bridge Pier with Low   Reinforcement Ratio. Journal of Bridge Engineering, 29(3), 04023124.

[3] Liu, J., Wang M., Liu N., Teng,   L.*, Wang, Y., Chen, Z., Shi, C.* (2023). Development of ultra-fine   SAP powder for lower-shrinkage and higher-strength cement pastes made with   ultra-low water-to-binder ratio. Composites Part B: Engineering, 262, 110810.

[4] Teng,   L., Wei, J., Assaad, J. J., Khayat, K. H.* (2023). Effect of   competitive adsorption between specialty admixtures and superplasticizer on   structural build-up and hardened property of mortar phase of   ultra-high-performance concrete.Cement and Concrete Composites, 141, 105130.

[5] Teng,   L., Khayat, K. H.* (2022). Effect of overlay thickness, fiber volume,   and shrinkage mitigation on flexural behavior of thin bonded   ultra-high-performance concrete overlay slab.Cement and Concrete Composites, 134, 104752.

[6] Teng, L., Huang, H., Khayat,   K. H.*, Gao, X. (2022). Simplified analytical model to assess key factors   influenced by fiber alignment and their effect on tensile performance of   UHPC. Cement and Concrete Composites, 127, 104395.

[7] Teng, L., Huang, H.,   Du, J., Khayat, K. H.* (2021). Prediction of fiber orientation and flexural   performance of UHPC based on suspending mortar rheology and casting method.   Cement and Concrete Composites, 122, 104142.

[8] Teng, L., Valipour, M.,   Khayat, K. H.* (2021). Design and performance of low shrinkage UHPC for thin   bonded bridge deck overlay. Cement and Concrete Composites, 118, 103953.

[9] Teng,   L., Zhu, J., Khayat, K. H.*, Liu, J. (2020). Effect of welan gum and   nanoclay on thixotropy of UHPC.   Cement and Concrete Research,   138, 106238.

[10] Teng,   L., Meng, W., Khayat, K. H.* (2020). Rheology control of   ultra-high-performance concrete made with different fiber contents. Cement and Concrete Research, 138, 106222.