科研项目 · 国家自然科学基金青年基金, 基于吸附层结构与空间构象演变机制的聚羧酸减水剂硫酸盐敏感度调控研究, 2019.01-2021.12. 主持 · 江苏省高等学校自然科学研究项目(面上项目), 基于硫酸盐敏感度调控的聚羧酸减水剂构效优化研究, 2019.01-2020.12. 主持 · 江苏省住建厅指导类项目,基于高强泵送混凝土气泡(孔)结构优化调控的聚羧酸系复合外加剂构效匹配研究, 2019.01~2020.12. 主持 · 苏州市科协科普项目, 建筑室内装饰装修与健康, 2018.1-2018.12. 主持 · 长江水利委员会长江科学院开放研究基金,锂渣基复合胶凝体系流变及水化性能的调控机制, 2022.07~2024.12. 主持 · 硅酸盐建筑材料国家重点实验室开放课题, 基于三维石墨烯导热网络增强效应的相变储能混凝土制备及其性能研究, 2018.01-2019.12. 主持 · 绿色建筑材料国家重点实验室开放课题,混杂三维石墨烯导热增强型相变储能混凝土的制备及其热性能研究, 2018.07-2020.12. 主持 · 陕西省高性能混凝土重点实验室开放课题,基于高性能混凝土气泡孔结构优化调控的聚羧酸系复合外加剂构效匹配研究, 2018.01-2020.06. 主持 · 苏州科技大学人才引进科研资助项目,相变混凝土制备与研究, 2017.09-2019.08. 主持 · 苏州科技大学校青年基金,聚羧酸减水剂构效优化设计研究, 2018.12-2021.01. 主持 |
代表性论著 [1] Yan He*, Guoqiang Zhang, Shun He, et al. Effect of C-S-H-PCE and TEA on performances of lithium slag-cement binder [J]. Journal of Building Engineering, 2023, 78: 107659. (SCI) [2] Yan He*, et al., Effect of Sodium Silicate and C-S-Hs-PCE on Properties of LS-Cement Binder [J]. Journal of Materials in Civil Engineering, 2024, 36(5): 04024083. (SCI) [3] Yan He*, Keyang Liu, et al. Effects of microencapsulated phase change materials on the thermal performance of gypsum board [J]. Energy and Buildings, 2024, 320: 114602. (SCI) [4] Yan He*, Guoqiang Zhang, et al. Impacts of C-S-Hs-PCE and Na2SO4 on hydration properties of lithium slag-cement composite binder [J]. Journal of Thermal Analysis and Calorimetry, 2024, 149(17), 9073-9083. (SCI) [5] Yan He*, Guoqiang Zhang, et al. Influence of C-S-Hs-PCE and Na2SO4 on the fluidity and mechanical performance of cement-lithium slag binder [J]. Materials and Structures, 2023. 56(9): 158. (SCI) [6] Yan He*, Chunyang You, et al., Rheological performance and hydration kinetics of lithium slag-cement binder in the function of sodium sulfate [J]. Journal of Thermal Analysis and Calorimetry, 2023, 148(21): 11653-11668. (SCI) [7] Yan He*, Shuhua Liu, Xiong Zhang, et al. Influence of triethanolamine on mechanical strength and hydration performance of blended cement containing fly ash, limestone and slag [J]. Journal of Building Engineering, 2021, 44: 102879. (SCI) [8] Yan He*, Hugang Ding, Shun He, et al. Influence of β-cyclodextrin modified PCE on fluidity and hydration behavior of cement paste [J]. Colloids and Surfaces A: Physicochemical and Engineering Aspects, 2024, 688: 133512. (SCI) [9] Yan He*, Shuhua Liu, R.D. Hooton, et al. Effects of TEA on rheological property and hydration performance of lithium slag-cement composite binder [J]. Construction and Building Materials, 2022, 318: 125757. (SCI) [10] Yan He*, et al. Synergistic Effect of C-S-H-PCE and Al2(SO4)3 on the Hydration Properties of Lithium Slag-Cement Composite Binder [J]. Journal of Materials in Civil Engineering, 2024, 36(12): 04024395. (SCI) [11] Yan He*, Shuhua Liu, R.D. Hooton, et al. Effects of TEA on rheological property and hydration performance of lithium slag-cement composite binder [J]. Construction and building materials, 2022, 318: 125757. (SCI) [12] Yan He*, Shuhua Liu, Qi Luo, et al. Influence of PCE-type GA on cement hydration performance [J]. Construction and building materials, 2021, 302: 124432. (SCI) [13] Yan He*, Shuhua Liu, Qi Luo, et al. Effects of sulfates on adsorption-dispersing polycarboxylate behavior with different carboxylic densities [J]. Advances in cement research, 2021, 1900155. (SCI) [14] Yan He*, Xiong Zhang, Shuhua Liu, et al. Impacts of sulphates on rheological property and hydration performance of cement paste in the function of polycarboxylate superplasticizer [J]. Construction and building materials, 2020, 256: 119428. (SCI) [15] Yan He*, Xiong Zhang, R.D. Hooton, et al. Influence of PCE on rheological and hydration performances of cement paste [J]. Journal of Materials in Civil Engineering, 2020, 32(3): 04020002. (SCI) [16] Yan He*, Shuhua Liu, Tao Ji, et al. Effect of organosilane-modified PCE on the fluidity and hydration properties of cement-fly ash composite binder [J]. Journal of Wuhan University of Technology-Mater. Sci. Ed., 2020, 12. (SCI) [17] Yan He*, Xiong Zhang, Wanling Hong, et al. Effects of polycarboxylate superplasticisers with various functional groups on the pore structure of cement mortar [J]. Advances in Cement Research, 2020, 32(11): 510-518. (SCI) [18] Yan He*, Xiong Zhang, Yiting Wang, et al. Effect of PCEs with different functional groups on the performance of cement paste [J]. Journal of Wuhan University of Technology-Mater. Sci. Ed., 2019, 34(5), 1163-1169. (SCI) [19] Yan He*, Xiong Zhang, Liangliang Shui. Effects of PCEs with various carboxylic densities and functional groups on the fluidity and hydration performances of cement paste [J]. Construction and building materials, 2019, 202: 656-668. (SCI) [20] Yan He*, Xiong Zhang, Tao Ji, et al. Effect of carboxylic density on sulfate sensitivity of polycarboxylate superplasticizers [J]. KSCE Journal of Civil Engineering, 2019, 23(12): 5163-5172. (SCI) |
发明专利 [1] 张雄, 何燕, 等. 硫酸盐竞争吸附型硅烷改性型聚羧酸减水剂及其制备方法, 中国, 201610264389.X [2] 张雄, 何燕, 等. 核电用超密实混凝土聚羧酸减水剂及其制备方法, 中国, ZL201510823415.3 [3] 何燕, 等. 一种防腐高保坍聚羧酸复合减水剂及其制备方法与应用, 中国, ZL201510673344.3 [4] 张雄, 何燕, 等. 一种高分散型聚羧酸减水剂的制备方法, 中国, 201510387154.5 [5] 张雄, 苗春, 何燕. 用于高含碳量混凝土的聚羧酸复合减水剂、制备方法及其使用方法, 中国, ZL201410724480.6 [6] 何燕, 等. 一种缓释高保坍型聚羧酸减水剂的制备方法, 中国, 201810722013.8 [7] 何燕, 等. 一种具有相变控温调湿净化性能的复合材料及其制备方法, 中国, 201810722013.8 [8] 何燕, 等. 硅烷改性氧化石墨烯化学修饰型聚羧酸减水剂及其制备方, 中国, 201910184033.9 横向服务 [1] 企业委托科研项目:低碳高性能混凝土关键技术研究,2023.07-2025.01. 主持 [2] 企业委托科研项目:铝合金模板体系中低碳混凝土构件质量控制的关键技术研究与应用,2023.07-2024.12. 主持 [3] 企业委托科研项目:锂渣资源化应用,2023.06-2024.07. 主持 [4] 企业委托科研项目:胶凝材料水化动力学分析,2020.05-2021.07. 主持 其他成果 ⟡ 主/参编标准 预拌盾构注浆料,建材行业标准 |