职 务:兰州大学科研院副院长
专 业:土木工程
所在系所:土木工程系、结构工程研究所
通讯地址:甘肃省兰州市天水南路222号兰州大学土木工程与力学学院,730000
电子信箱: zhangqq@lzu.edu.cn
联系电话:+86-13659417036
传 真:
2010.08-2012.07: 哈尔滨工业大学结构工程 工学硕士
2012.08-2016.04: 哈尔滨工业大学工程力学 工学博士
2014.09-2015.12:美国普渡大学材料科学 CSC联合培养博士
2021.03-2023.03:国家自然科学基金委员会,流动编制项目主任
2021.01-现在:兰州大学“萃英学者”特聘教授
2018.07-现在:兰州大学土木工程与力学学院,青年教授、教授(三级)
2016.07-2018.06:兰州大学土木工程与力学学院,副教授
2. 多功能复合材料3D打印智造
3. 工程材料极端工况损伤智能识别与测量
3. 仿生功能多尺度材料强韧化与机器学习智能设计
2024年,入选第十一届甘肃青年科技奖(R1);
2024年,获甘肃省技术发明一等奖(R6);
2023年,入选甘肃省领军人才(第二层次);
2022年,入选中组部第七届“国家高层次人才特殊支持计划”;
2022年,入选第四批甘肃省“飞天学者”特聘计划青年学者;
2022年,获中国产学研合作创新成果奖二等奖(排名:R9)
2021年,获甘肃省材料科学技术一等奖(R1);
2021年,获黑龙江省自然科学一等奖(R3);
2021年,获中国公路学会科学技术奖一等奖(R6);
2019年,甘肃省优秀硕士学位论文指导教师;
2019年,获教育部霍英东教育基金会第十七届高等院校青年教师基金;
2018年,获“甘肃省杰出青年科学基金”;
2018年,入选“哈尔滨工业大学”第20届优秀博士毕业论文奖;
2017年,The Certificate of Guinness World Records:The least dense 3D-printed structure of graphene aerogel(3/3)。
主持或参与国家重点研发计划项目、中国科学院B类先导计划、国家自然科学基金(面上、青年)、教育部霍英东教育基金会基金、JW“十四五”装备预先研究项目、甘肃省杰出青年科学基金、中国工程院“中国3D打印材料及应用发展战略研究”咨询项目等20余项。
1. Jingxiang Zhang, Zhongyang Liu, Jing Wang,Yang Zhang, Jiaqi Dong, Jianpeng Gao, Licheng Zhang, Jizeng Wang, Peifu Tang, Qiangqiang Zhang. 3D Coaxially Printing rGO Aerogel-based Biocompatible Fiber for Peripheral Nerve Regeneration. Advanced Fiber Materials, 6(2024): 713-726.
2. Kunkun Song, Shengda Yang, Ningqi Shao, Yantang Zhao, Peng He, Yongfeng Wei, Hengzhong Fan, Yongsheng Zhang, Qiangqiang Zhang. Highly strengthening and toughening biomimetic ceramic structures fabricated via a novel coaxially printing. Journal of Advanced Ceramics, 13(2024): 4.
3. Kunkun Song, Shengda Yang, Yongfeng Wei, Ningqi Shao, Peng He, Yantang Zhao, Tao Du, Hengzhong Fan, Qiangqiang Zhang. Coaxially printed biomimetic BSPC with high strength and toughness. Materials & Design, 238(2024): 112648.
4. Yongfeng Wei, Kunkun Song, Qiangqiang Zhang, Hui Dou, Huaxin Xu. Formulation optimization of oil shale semi-coke/lime/cement solidified loess based on ternary nephogram and establishment of elastic-plastic damage model, Construction and Building Materials, 428(2024), 136313.
5. Tao Du, Xuan Ge, Fengming Cao, Han Liu, Caijuan Shi, Junwei Ding, Daming Sun, Qiangqiang Zhang, Yuanzheng Yue, Morten Smedskjaer. Structural Origin of the Deformation Propensity of Zeolitic Imidazolate Framework Glasses, Chemistry of Materials, 36(2024): 6167–6179.
6. Peng He, Tao Du, Ke-Ren Zhao, Jia-Qi Dong, Yu-Sheng Liang, Qiang-Qiang Zhang. Lightweight 3D Graphene Metamaterials with Tunable Negative Thermal Expansion, Advanced Materials, 35 (2023): 2208562.
7. Yu Wang, Xin Jing, Wen-Li Chen, Hui Li, Yang Xu, Qiang-Qiang Zhang. Geometry-informed deep learning-based structural component segmentation of post-earthquake buildings, Mechanical Systems and Signal Processing, 188(2023): 110028.
8. Yu Wang, Xin Jing, Liangyi Cui, Chenzong Zhang, Yang Xu, Jian Yuan, Qiangqiang Zhang. Geometric Consistency Enhanced Deep Convolutional Encoder-Decoder for Urban Seismic Damage Assessment by UAV Images, Engineering Structures, 286(2023): 116132.
9. Yu Wang, Xin Jing, Yang Xu, Liangyi Cui, Hui Li, Qiangqiang Zhang. Geometry-guided Semantic Segmentation for Post-Earthquake Buildings Using Optical Remote Sensing Images,Earthquake Engineering and Structural Dynamics, 52(2023): 3392-3413.
10. Jicheng Li, Shuna Chen, Hengzhong Fan, Qiangqiang Zhang, Yunfeng Su, Junjie Song, Litian Hu, Yanchun Zhou, Yongsheng Zhang. High-entropy (Ti0.2V0.2Nb0.2Mo0.2W0.2)Si2 with excellent high-temperature wear resistance, Journal of the American Ceramic Society, 107 (2023): 2750-2764.
11. Liangyi Cui, Xin Jing, Yu Wang, Yixuan Huan, Yang Xu, Qiangqiang Zhang. Improved Swin Transformer-Based Semantic Segmentation of Postearthquake Dense Buildings in Urban Areas Using Remote Sensing Images, IEEE Journal of Selected Topics in Applied Earth Observations and Remote Sensing, 16(2023): 369-385.(ESI前1%高被引)
12. Ji-Cheng Li, Qiang-Qiang Zhang, Shu-Na Chen, Heng-Zhong Fan, Jun-Jie Song, Yong-Sheng Zhang, Carbon-deficient high-entropy (Zr0.17Nb0.2Ta0.2Mo0.2W0.2)C0.89: A potential high temperature and vacuum wear-resistant material. Materials & Design, 226 (2023): 1-12.
13. Zai-Shan Lin, Jia-Qi Dong, Xin Wang, Qi-Tao Huang, Xi Shen, Ming-Long Yang, Xian-Xian Sun, Ye Yuan, Sha-Sha Wang, Yuan-Hao Ning, Shuang Yang, Wei-Long Yin, Meng-Lin Li, Yi-Wei Sun, Qiang-Qiang Zhang, Yi-Bin Li, Twin‐Structured Graphene Metamaterials with Anomalous Mechanical Properties. Advanced Materials, 34 (2022): 2200444.
14. Fu-Xiang Song, Na Wang, Qiang-Qiang Zhang, Wei-Bo Jie, Liu Bin, 3D printing calcium alginate adsorbents for highly efficient recovery of U (VI) in acidic conditions. Journal of Hazardous Materials, 440(2022): 129774.
15. Qiang-Qiang Zhang, Jia-Qi Dong, Yan-Tang Zhao, Yue-Yan Zheng, Three-dimensional Meta-Architecture with Programmable Mechanical Properties. International Journal of Smart and Nano Materials, 13 (2022): 152-165.
16. Bao-Qiang Zhang, Qiang-Qiang Zhang, Peng He, Yan-Bin Ma, Lei Shen, Xing-Yi Zhang, and You-He Zhou, Efficient fabrication of ultralight YBa2Cu3O7−x superconductors with programmable shape and structure. Advanced Functional Materials, 31 (2021): 2100680.
17. Fu-Xiang Song, Jing-Xiang Zhang, Tao Du, Na Wang, Zhuo-Yue Wang, Zhen Zhang, Bin Liu, Qiang-Qiang Zhang. Three-dimensional-printed Hierarchical Reduced Graphene Oxide/Ethylenediamine Filter with Super-high Uranyl Ions with Recycling Capacity and Unique Selectivity. Carbon, 182 (2021): 1-10.
18. Zhuo-Yue Wang, Han-Wen Liu, Feng-Juan Chen, Qiang-Qiang Zhang. A Three-Dimensional Printed Biomimetic Hierarchical Graphene Architecture with High Solar-Thermal Conversion. Journal of Materials Chemistry A, 8 (2020): 19387-19395.
19. Xiang Xu, Qiang-Qiang Zhang, Meng-Long Hao, Hu Yuan, Zhao-Yang Lin, Le-Le Peng, Tao-Wang, Xue-Xin Ren, Chen Wang, Zi-Peng Zhao, Cheng-Zhang Wan, Hui-Long Fei, Lei Wang, Jian Zhu, Hong-Tao Sun, Wen-Li Chen, Tao Du, Bi-Wei Deng, Gary J. Cheng, Imran Shakir, Chris Dames, Timothy S. Fisher, Xiang Zhang, Hui Li, Yu Huang, Xiang-Feng Duan, Double-Negative-Index Ceramic Aerogels for Thermal Superinsulation. Science, 363 (2019): 723–727. (ESI前1%高被引)
20. Yan-Bin Ma, Qiang-Qiang Zhang, Ke-Ren Zhao, Cong Liu, Bao-Qiang Zhang, Xing-Yi Zhang, and You-He Zhou, Tunable Negative Thermal Expansion of Ultralight ZrW2O8/Graphene Hybrid Metamaterial. Carbon,153 (2019): 32-39.
21. Qiang-Qiang Zhang, Feng Zhang, Xu Xiang, Chi Zhou, Dong Lin, 3D Printing Polymer Hollow Template-Mediated Graphene Lattice with Tailorable Architectures and Multifunctional Properties, ACS Nano, 12 (2018): 1096–1106.
22. Qiang-Qiang Zhang, Yu Wang, Bao-Qiang Zhang, Ke-Ren Zhao, Peng He, Bo-Yun Huang, 3D Superelastic Graphene Aerogel-Nanosheet Hybrid Hierarchical Nanostructure as High-Performance Supercapacitor Electrode. Carbon, 127 (2018): 449-458.
23. Qiang-Qiang Zhang, Dong Lin, Bi-Wei Deng, Xiang Xu, Qiong Nian, Sheng-Yu Jin, Kevin D. Leedy, Hui Li, Gary J. Cheng, Flyweight, Superelastic, Electrically Conductive, and Flame-Retardant 3D Multi-Nanolayer Graphene/Ceramic Metamaterial. Advanced Materials, 29 (2017): 1605506. (Research Highlight on Nature Review Materials “Graphene makes ceramics multifunctional”)
24. Guo-Ping Xiong, Ping-Ge He, Di-Ni Wang, Qiang-Qiang Zhang, Teng-Fei Chen, Timothy S. Fisher, Hierarchical Ni-Co Hydroxide Petals on Mechanically Robust Graphene Petal Foam for High-Energy Asymmetric Supercapacitors, Advanced Functional Materials, 26 (2016): 5460-5470.
25. Qiang-Qiang Zhang, Meng-Long Hao, Xiang Xu, Guo-Ping Xiong, Hui Li, Timothy S. Fisher. Flyweight 3D Graphene Scaffolds with Microinterface Barrier-Derived Tunable Thermal Insulation and Flame Retardancy. ACS Applied Materials & Interfaces, 9 (2017): 14232-14241.
26. Qiang-Qiang Zhang, Yi-Yang Yu, Kai-Chun Yang, Bao-Qiang Zhang, Ke-Ren Zhao, Guo-Ping Xiong, Xing-Yi Zhang, Mechanically Robust and Electrically Conductive Graphene-Paper/ Glass-Fibers/ Epoxy Composites for Stimuli-Responsive Sensors and Joule Heating Deicers. Carbon, 124 (2017): 296-307.
27. Qiang-Qiang Zhang, Xiang Xu, Dong Lin, Wen-Li Chen, Guo-Ping Xiong, Yi-Kang Yu, Timothy S. Fisher, Hui Li, Hyperbolically Patterned 3D Graphene Metamaterial with Negative Poisson's Ratio and Superelasticity. Advanced Materials, 28 (2016): 2229-2237. (VIP Publication)
28. Xiang Xu, Qiang-Qiang Zhang, Yi-Kang Yu, Wen-Li Chen, Hui Hu, Hui Li, Naturally Dried Graphene Aerogels with Superelasticity and Tunable Poisson's Ratio. Advanced Materials, 28 (2016): 9223-9230.
29. Guo-Ping Xiong, Ping-Ge He, Di-Ni Wang, Qiang-Qiang Zhang, Teng-Fei Chen, Timothy S. Fisher. Hierarchical Ni-Co Hydroxide Petals on Mechanically Robust Graphene Petal Foam for High-Energy Asymmetric Supercapacitors. Advanced Functional Materials, 26 (30): 5460-5470.
30. Qiang-Qiang Zhang, Feng Zhang, Sai Pradeep Medarametla, Hui Li, Chi Zhou, Dong Lin, Three-Dimensional Printing Graphene Aerogel. Small, 12 (2016): 1702-1708. (2016’s Most accessed paper,2017 Guinness World Records ‘The lightest 3D printing graphene aerogel’, ESI前1%高被引)
31. Xiang Xu, Hui Li, Qiang-Qiang Zhang, Self-sensing, Ultralight and Conductive 3D Graphene/Iron Oxide Aerogel Elastomer Deformable in Magnetic Field. ACS Nano, 9 (2015): 3969–3977. (ESI前1%高被引)
32. Qiang-Qiang Zhang, Xiang Xu, Hui Li, Guo-ping Xiong, Han Hu, Timothy S Fisher, Mechanically Robust Honeycomb Graphene Aerogel Multifunctional Polymer Composites. Carbon, 93 (2015): 659-670.
33. 张强强 等译(1/4),氧化石墨烯基础原理与应用(Dimiev A M,Eigler S著,Graphene oxide Fundamentals and applications,Wiley,2017),机械工业出版社,2018.
34. 张强强 等译(1/4),石墨烯基能源器件(A. Rashid bin Mohd Yusoff 等著,Graphene based energy devices,Wiley,2017),机械工业出版社,2019.
35. Hui Li, Qiangqiang Zhang, Huigang Xiao. Chapter 11. The Self-Heating Carbon Cano-Fiber Polymer Composites and Applications in De-icing/Snow-Thawing of Pavement. Innovative Developments of Advanced Multifunctional Nanocomposites in Civil and Structural Engineering (Eds. K.J. Loh and S. Nagarajaiah). 2016, 247-277,Woodhead Publishing: Cambridge, England.
36. 张强强等(1/3),第六章:无机复合材料3D打印技术,中国工程院“3D打印材料及应用发展战略研究”丛书:3D打印无机非金属材料(沈晓冬等著),2020。
37. 张强强等,一种用于处理含铀废水的3D打印还原氧化石墨烯滤芯的制备方法,国家发明专利,2022,ZL202110312372.8.
38. 张强强等, 一种石墨烯基聚合物复合神经导管及其制备方法,国家发明专利,2022,ZL202110313603.7.
39. 张强强等,一种三通道同轴3D打印成型的硅酸盐陶瓷自修复材料的制备方法,国家发明专利,2022,ZL202210194882.4.
40. 张强强等,一种基于同轴打印的3D打印用针头,实用新型专利,2021,ZL2021 20147965.9.