澳门新莆京7906not(中国)官方网站

张鸿儒

信息来源:暂无 发布日期: 2021-10-27 浏览次数:

个人信息

张鸿儒,女,19891月生,山东威海人,博士,澳门新莆京7906not副研究员,博士生导师。

通讯地址:福州市闽侯县大学城学园路6号,澳门新莆京7906not,岩土馆209

电话:+86 13950251176

邮箱:hrzh@fzu.edu.cn

 

教育经历


2011. 9~2016. 9      浙江大学结构工程研究所,工学博士,导师:赵羽习;

2013. 7~2014. 7   美国西北大学(Northwestern University,土木与环境工程系,联合培养博士研究生,导师:Surendra P Shah;

2009. 9~2011. 6      浙江大学,建筑工程学院,土木工程系,工学学士;

2007. 9~2011. 6      浙江大学,竺可桢学院工科平台,荣誉工学学士,导师:赵羽习。

 

工作经历

2020.9至今          福州大学,澳门新莆京7906not,先进土木工程材料中心,副研究员;

2016.12-2020.9          福州大学,澳门新莆京7906not,先进土木工程材料中心,助理研究员;

2018.12-2019.12     美国加州大学伯克利(University of California, Berkeley),土木与环境工程系,博士后,合作导师:Paulo J M Monteiro。

 

主要研究方向

1. 混凝土结构耐久性:氯盐侵蚀、硫酸盐侵蚀下混凝土材料及结构构件性能劣化及损伤机理;

2. 再生骨料混凝土改性技术:运用多种手段改善再生骨料混凝土性能,推进其结构高等级利用;

3. 水泥基材料微观/纳观结构特征:采用精密光学、微观/纳观力学等测试手段相结合的方式,对水泥基材料(再生骨料混凝土、超高性能混凝土、水泥砂浆等)界面过渡区、孔结构、水化进程等进行定性观察与定量测试,探究其显著特征;

4. 混凝土多尺度性能劣化:基于不同空间与时间尺度的研究,对不同服役环境下混凝土性能劣化规律与模型进行探索。

 

指导学生

硕士研究生

2015级:曾学鹏;

2016级:刘辉,苏尚亮;

2017级:刘福江,赖雄;

2018级:何炳坚,汤玲燕;

2019级:徐鑫,刘文绅;

2020级:耿炎,苏豪,江隽杰;

2021级:张翠榕,万孟涛,李从正,杨梓俊,陈斯,朱裕。

 

发表论文(期刊)

[1] Zhang, H. , Liu, W. , Lin, X., Su, S. & Zhao B. (2021). To ameliorate the performance of recycled aggregate concrete (RAC) by pre-treating aggregate in sulfoaluminate cement slurry and water glass solution. Journal of Building Engineering, 44, 103364(1)-(15).

[2] Zhang, H. , Xu, X. , Su, S. & Zeng W. (2021). To improve the resistance of recycled aggregate concrete (RAC) to the internal steel corrosion by the pre-treatment of aggregate. Construction and Building Materials, 306, 124911(1)-(13).

[3] Zhang, H., Ji, T., Liu, H., & Su, S. (2021). Improving the sulfate resistance of recycled aggregate concrete (RAC) by using surface-treated aggregate with sulfoaluminate cement (SAC). Construction and Building Materials, 297, 123535. (SCIEI收录,中科院二区)

[4] Peng, L., Zhao, Y., & Zhang, H. (2021). Flexural behavior and durability properties of recycled aggregate concrete (RAC) beams subjected to long-term loading and chloride attacks. Construction and Building Materials, 227, 122277. (SCIEI收录,中科院二区)

[5] 张鸿儒,季韬,刘福江,何炳坚,张松安. (2020). 不同养护制度下掺铁尾矿粉超高性能混凝土力学性能. 福州大学学报(自然科学版). 2020, 48(1): 90-97.

[6] Zhang, H., Ji, T., & Liu, H. (2020). Performance evolution of recycled aggregate concrete (RAC) exposed to external sulfate attacks under full-soaking and dry-wet cycling conditions. Construction and Building Materials, 248, 118675(1)-(21).

[7] Zhang, H., Ji, T., & Liu, H. (2019). Performance evolution of the interfacial transition zone (ITZ) in recycled aggregate concrete under external sulfate attacks and dry-wet cycling. Construction and Building Materials, 229, 116938. (SCIEI收录,中科院二区)

[8] Zhang, H., Ji, T., He, B., & He, L. (2019). Performance of ultra-high performance concrete (UHPC) with cement partially replaced by ground granite powder (GGP) under different curing conditions. Construction and Building Materials, 213, 469-482. (SCIEI收录,中科院二区)

[9] Zhang, H., Ji, T., & Lin, X. (2019). Pullout behavior of steel fibers with different shapes from ultra-high performance concrete (UHPC) prepared with granite powder under different curing conditions. Construction and Building Materials, 211, 688-702. (SCIEI收录,中科院二区)

[10] Zhang, H., & Zhao, Y. (2019). Cracking of reinforced recycled aggregate concrete beams subjected to loads and steel corrosion. Construction and Building Materials, 210, 364-379. (SCIEI收录,中科院二区)

[11] Zhang, H., Ji, T., Zeng, X., Yang, Z., Lin, X., & Liang, Y. (2018). Mechanical behavior of ultra-high performance concrete (UHPC) using recycled fine aggregate cured under different conditions and the mechanism based on integrated microstructural parameters. Construction and Building Materials, 128, 96-107. (SCIEI收录,中科院二区)

[12] Zhang, H., Ji, T., Liu, H., & Su, S. (2018). Modifying recycled aggregate concrete by aggregate surface treatment using sulphoaluminate cement and basalt powder. Construction and Building Materials, 192, 526-537. (SCIEI收录,中科院二区)

[13] Zhang, H., & Zhao, Y. (2016). Performance of recycled concrete beams under sustained loads coupled with chloride ion (Cl-) ingress. Construction and Building Materials, 128, 96-107. (SCIEI收录,中科院二区)

[14] Zhang, H., & Zhao, Y. (2015). Integrated interface parameters of recycled aggregate concrete. Construction and Building Materials, 101, 861-877. (SCIEI收录,中科院二区)

[15] Zhang, H., Zhao, Y., Meng, T., & Shah, S. P. (2015). The modification effects of a nano-silica slurry on microstructure, strength, and strain development of recycled aggregate concrete applied in an enlarged structural test. Construction and Building Materials, 95, 721-735. (SCIEI收录,中科院二区)

[16] Zhang, H., Zhao, Y., Meng, T., & Shah, S. P. (2015). Surface Treatment on Recycled Coarse Aggregates with Nanomaterials. Journal of Materials in Civil Engineering, 04015094. (SCIEI收录,中科院三区)

[17] Zhao, Y., Zhang, H., Chen, C., & Jin, W. (2015). Early-age index choosing for long-term quality evaluation of concrete structures. Advances in Structural Engineering, 18(12), 2047-2058. (SCIEI收录,中科院四区)

[18] Zhang, H., & Zhao, Y. (2014). Performance of Recycled Aggregate Concrete in a Real Project. Advances in Structural Engineering, 17(6), 895-906. (SCIEI收录,中科院四区)

[19] 张鸿儒, 赵羽习, & 李智慧. (2016). 再生骨料混凝土在某框架结构中的应用及长期应变监测. 建筑结构学报, 37(5), 177-184. EI收录)

[20] 朱勇年,张鸿儒,孟涛,&赵羽习. (2014). 纳米SiO2改性再生骨料混凝土工程应用研究及实体性能监测. 混凝土,24(7)138-144. (中文核心)

[21] 张鸿儒, 赵羽习, & 马开宇. (2011). 施工条件对再生混凝土性能的影响. 混凝土, (12), 34-36. (中文核心)

[22] Zhao, Y., Zeng, W., & Zhang, H. (2017). Properties of recycled aggregate concrete with different water control methods. Construction and Building Materials, 152, 539-546. (SCIEI收录,中科院二区)

 

项目资助

1.主持项目

[1]国家自然科学基金面上项目——“再生混凝土多重材料相中氯离子传输特性及构件锈蚀劣化机制研究”, 2022.1-2025.12

[2]国家自然科学基金青年基金项目——“硫酸盐侵蚀下再生骨料混凝土界面过渡区损伤机制及性能劣化模型研究”, 2018.01-2020.12

[3]福州大学人才引进基金项目——“硫酸盐侵蚀下再生骨料混凝土界面过渡区损伤机制研究”,2017.01-2019.12.

[4]校企合作项目——“盾构土静压制砖关键技术研究”,2021.1-2022.1.

[5]校企合作项目——中国建筑国际科技研发子课题“基于再生骨料强化及界面过渡区强化的再生混凝土改性技术研究”,2020.12-2022.12.

2.主要参与项目

[1]国家自然科学基金面上项目——“碳化环境下碱矿渣混凝土微结构演变机制及钢筋锈蚀机理”,2019.01-2021.12.

[2]国家自然科学基金青年基金项目——“碱矿渣水泥拉伸徐变机理研究”, 2018.01-2020.12.

[3]企业合作项目(横项)——“福州东南快速通道(长乐营前至滨海新城万新路复线段)工程开展基于滨海新城建筑固废弃原位消纳的环保型再生骨料应用技术研究”,2019.11-2020.10.

 


获得奖励

1.2020年7月,“建筑固废高效利用关键技术及工程应用”,获浙江省科学进步二等奖,排名第九;

2.2021年6月,获福州大学“福州大学曾亦容奖教金”;

3.2021年7月,获福州大学“先进党务工作者”荣誉称号;

4.2020年12月,获福州大学第二十一届青年教师“最佳一节课”理工组一等奖,福州大学;

5.2020年10月,获澳门新莆京7906not第十届青年教师“最佳一节课”一等奖,澳门新莆京7906not;

6.2017年3月,获澳门新莆京7906not第十届青年教师“最佳一节课”二等奖,澳门新莆京7906not;

7.2018年6月,获2017年度澳门新莆京7906not“优秀党务工作者”荣誉称号,澳门新莆京7906not;

8.2018年9月,获2017年度澳门新莆京7906not“优秀新生班导师”荣誉称号,澳门新莆京7906not。 


从教理念

桃李不言,下自成蹊;

只愿君心似我心,定不负相随志;

逻辑,高效,责任。