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宁波大学土木与环境工程学院导师教师师资介绍简介-汪晖
/2021-04-14
土木与环境工程学院教师个人简历
一、 基本情况姓名:汪晖
职称/职务:讲师/教师 学位/学历:博士/研究生政治面貌:群众
电子邮箱:wanghui4@nbu.edu.cn
研究领域:混凝土耐久性,生态建筑材料,多功能智能混凝土所在硕士点(方向):土木工程(防灾、结构)
所在研究所:建材所
二、主要学习和工作经历:
2017.11~至今 宁波大学 讲师、硕士生导师
2020/06-至今, 南京工业大学,材料科学与工程学院,材料工程,博士后。
2013.09~2017.07 哈尔滨工业大学土木工程学院 博士
2011.08~2013.07 哈尔滨工业大学土木工程学院 硕士
2007.09~2011.07 华东交通大学 本科
科 研 经 历
1. 国家自然科学基金青年基金项目,51808300,海工结构用智能纳米碳纤维活性粉末混凝土制备及自监测性能研究,2019/01-2021/12,27.6万,进行中,主持。
2. 硅酸盐建筑材料国家重点实验室( 武汉理工大学) 开放基金项目, SYSJJ2019-12, 定向分布不锈钢丝超高强智能海工混凝土性能自监测研究, 2019.1-2020.12,
5万,进行中,主持。
3. 国家住房与城乡建设部一般项目,2018-K9-024,自产热自保温低碳混凝土材料研究,2018/03-2020/03, 0万,进行中,主持。
4. 宁波市自然科学基金,2018A610357,沿海环境下纳米碳纤维活性粉末混凝土自感知性能研究,2018/11-2020/11,3万,进行中,主持。
5. 江苏高校生态建材与环保装备协同创新中心暨江苏省新型环保重点实验室开放基金,JH201813,绿色环保型自调温混凝土材料研究,2018.12-2019.12, 3万,进行中,主持。
6. 宁波大学校自然科学基金,XYL19010,定向分布不锈钢丝超高强自监
测混凝土研制, 2018.12-2019.12, 0.6万,进行中,主持。
7.国家自然科学基金面上项目,51878360,陶粒混凝土-高强混凝土复合叠浇粘结滑移机理及设计研究,2019/01-2021/12,60万,进行中,参加,排名前三。
8.国家自然科学基金面上项目,51978346,碳化和氯离子共同作用下复合改
性硫氧镁水泥基材料损伤机理研究,2020/01-2022/12,60万,进行中,参加,排名前三。
9.国家自然科学基金面上项目,51978344,冻融循环后型钢混凝土粘结与界面力传递性能研究,2020/01-2022/12,60万,进行中,参加,排名前三。
10. 国家自然科学基金面上项目,51578192,基于流变学的混凝土原始界面
缺陷形成机理与控制研究,2016/01-2019/12,75.6万元,参加。
学 术 成 果
[1] H. Wang, A. Zhang, F. Shi, J. Liu*, et al. Development of relationships between permeability
coefficient and electrical and thermal conductivity of recycled aggregates permeable
concrete. Construction and Building Materials, 2020,254: 119247. ( SCI, IF=4.419,一区)
[2] H. Wang, X. Gao*, J. Liu*, et al. Relationship between electrical resistance and
rheological parameters of fresh cement slurry. Construction and Building Materials, 2020, 256:
119479. (SCI, IF=4.419,一区)
[3] H. Wang, A. Zhang, L. Zhang, Q. Wang, X. Yang, X. Gao*, F. Shi. Electrical and piezoresistive
properties of carbon nanofiber cement mortar under different temperatures and water
contents. Construction and Building Materials, 2020, 265: 120740. (SCI, IF= 4.419).
[4] H. Wang, A. Zhang, J. Wang, H. Shu, J. Liu*. Study on the influence of compound
rust inhibitor on corrosion of steel bars in chloride concrete by electrical parameters.
Construction and Building Materials, 2020,262, 30:120763. (SCI, IF= 4.419).
[5] H. Wang, Ailian Zhang, Linchun Zhang, Xiaojian Gao, Junzhe Liu*, Kaikai Jin. Research on the
self-sensing and mechanical properties of aligned stainless fiber reinforced reactive
powder concrete. Cement and concrete composite,2020(接收). ( SCI, IF=6.257,一区)
[6] H. Wang, X. Gao*, J. Liu, et al. Multi-functional properties of carbon nanofiber reinforced
reactive powder concrete [J]. Construction and Building Materials, 2018, 187: 699-707. (SCI,
IF=4.419,一区).
[7] H. Wang, X. Gao*, J. Liu, et al. Coupling effect of salt freeze-thaw cycles and
cyclic loading on performance degradation of carbon nanofiber mortar. Cold Regions Science and
Technology, 2018, 154: 95-102. (SCI, IF=2.767,一区).
[8] H. Wang, X. Gao*, J. Liu. Effects of salt freeze-thaw cycles and cyclic loading on the
piezoresistive properties of carbon nanofibers mortar. Construction and Building
Materials, 2018, 115: 126-133. (SCI, IF=4.419,一区).
[9] H. Wang, X. Gao*, R. Wang. The influence of rheological parameters of cement
paste on the dispersion of carbon nanofibers and self-sensing performance[J].
Construction and Building Materials, 2017, 134: 673-683. ( SCI, IF=4.419,一区)
[10] H. Wang, A. Zhang, J. Liu*, et al. Hydration process of rice husk ash cement paste and the
following corrosion resistance of embedded steel bar. Journal of Central South University,2020,
11(3).( SCI, IF= 1.249,三区)
[11] H. Wang*, X. Hu, P Cao, et al. The Application of Electrical Parameters to
Reflect the Hydration Process of Cement Paste with Rice Husk Ash [J]. Materials, 2019,
12(17), 2815. (SCI, IF=3.057,二区)
[12] H. Wang, J. Liu*, X. Gao, et al. Influence of salt freeze-thaw cycles on the
damage and the following electrical and self-sensing performance of carbon
nanofibers concrete[J]. Materials Research Express, 2019, 6(2): 025705. (SCI, IF=1.929,三区).
[13] J. Liu, H. Wang*, J. Shen, et al. Research on the influencing factors of free
nitrite ions content in cement paste [J]Materials Research Express, 2019,6(8):085801. (SCI,
IF=1.929,三区).
[14] F. Shi, H. Wang*, J. Shen, et al. Research on the influencing factors on the
corrosion resistance of rebars in concrete [J] Materials Research Express, 2019. (SCI,
IF=1.929,三区).
[15]H. Wang, J. Shen, J. Liu*, M. Yin, P. Zhuge. Research on the mechanical and conductive
properties of carbon nanofiber mortar with quartz sand [J]. Iranian Journal of Science and
Technology, Transactions of Civil Engineering, 2020,44(4): 1101–1108. (SCI, IF= 0.975,四区)
[16] H. Wang, X.Gao*, A. Garipova, et al. The influence of electrodes and testing
conditions on the resistance and piezoresistivity of carbon nanofibers cement paste[J]. Romanian
Journal of Materials, 2017, 47(2): 71-77. ( SCI, IF=0.628,四区)
[17] J. Liu, J. Geng, H. Wang*, et al. Influence of nitrite on chemical composition of
passivation film of steel bars under the coupling effects of carbonization and chloride
[J]Anti-Corrosion Materials and Methods, 2019,6(2): 230-235.(SCI, IF= 1.196).
[18] H. Wang, A. Zhang, L. Zhang, J. Liu*, et al. Research on the Influence of
Carbonation on the Content and State of Chloride Ions and the Following Corrosion Resistance of
Steel Bars in Cement Paste [J].Coatings 2020, 10(11), 1071. ( SCI, IF=2.456,二区)
[19] H. Wang, A. Zhang, L. Zhang, J. Liu*, et al. Influence of NaCl freeze-thaw
cycles and alternations of drying and wetting on the degradation of self-sensing and mechanical
properties of aligned stainless fiber reinforced reactive powder concrete [J]. Construction and
Building Materials(接收). ( SCI, IF=4.419,一区)
[20] H. Wang, J. Shen, J. Liu, Influence of carbon nanofiber content and sodium
chloride solution on the stability of resistance and the following self-sensing
performance of carbon nanofiber cement paste[J] Case Study in Construction
Materials, 2019:e00247. (EI).
[21]俞静,汪晖*,柳俊哲,沈佳乐. 胶砂经硫铝酸盐水泥砂浆修复后的性能研究[J].硅酸盐通报,2019,38(10):3367-3372.
[22] X.Gao*, H. Wang, S. Li, L. Lu, Y. Mo. Piezoresistive effect of carbon nanofiber concrete
exposed to different environmental conditions[J]. Romanian Journal of Materials, 2015, 45
(4): 341-347. (SCI, IF=0.628,四区).
[22] 张爱莲,张林春,柳俊哲,高小建,汪晖. 相变保温封装盒体的实用效果研究[J].
建筑材料学报:1-12.