张超

郑州大学水利与交通学院教授/博导、郑州大学光驱动成型与复合修复工程技术研发中心主任
研究方向:地下基础设施修复材料的多尺度物理力学性能与提升先进结构材料的设计与应用冻土传质传热与致灾表征及其高聚物注浆修复理论与技术
办公地点:

个人简介

张超,男,郑州大学水利与交通学院教授/博导,主要研究方向为地下基础设施修复材料的多尺度物理力学性能与提升、先进结构材料的设计与应用、冻土传质传热与致灾表征及其高聚物注浆修复理论与技术等。任郑州大学光驱动成型与复合修复工程技术研发中心主任。兼任河南省侨联青年委员会委员、国际工程地质与环境协会海洋工程地质委员会执委、中国岩石力学与工程学会极地岩土力学与工程专业委员会委员、中国岩石力学与工程学会海洋工程地质灾害防控分会理事、中国大坝工程学会大坝混凝土与岩石断裂力学专业委员会委员、中国土木工程学会土力学及岩土工程分会青年工作委员会委员等。

主持国家自然科学基金、河南省自然科学基金等国家级和省部级科研项目20余项,发表SCI、EI及核心期刊论文110余篇。授权发明专利19项。主参编国家、行业规范标准5部。获全国博士后创新创业大赛金奖、河南省教学成果特等奖、河南省高等学校优秀科技成果科技进步一等奖等。研究成果为郑州地铁8号线、郑州机许线铁路工程等多项重要工程提供技术支撑。

学术兼职

[1] The executive member of the Marine Engineering Geology Commission (C34)-The International Association for Engineering Geology and the Environment (IAEG)(国际工程地质与环境协会海洋工程地质委员会执委)
[2] 中国岩石力学与工程学会海洋工程地质灾害防控分会理事
[3] 中国岩石力学与工程学会极地岩土力学与工程专业委员会委员
[4] 中国大坝工程学会大坝混凝土与岩石断裂力学专业委员会委员
[5] 中国土工合成材料工程协会青年工作委员会委员
[6] 中国土木工程学会土力学及岩土工程分会青年工作委员会委员
[7] 中美联合非开挖工程研究中心专家委员会委员

教学课程

本科生教学课程:

  • 建筑材料(40学时)
  • 土力学(32学时)
  • 科学技术简史(32学时)

研究生教学课程:

  • 专业外语(32学时)

科研项目

[1]国家自然科学基金联合基金重点项目:极高海拔盐渍化冻土路基融-溶耦合变形机理与性能保持研究(子课题负责人),主持;
[2]国家自然科学基金面上项目:多因素耦合作用下混凝土排水管道紫外光固化修复材料与结构的全过程工作性态研究,主持;
[3]国家自然科学基金青年项目:非水反应类高聚物注浆材料强度机理的多尺度模拟与试验研究,主持;
[4]国家自然科学基金联合基金重点项目:高拱坝混凝土循环应力-温-湿耦合模型与长期性能提升方法研究,参与;

[5]中原英才计划—中原青年拔尖人才:寒区排水管道复合修复理论与技术,主持;
[6]河南省自然科学基金:紫外光固化复合材料性能提升及其修复排水管道理论与技术研究,主持;
[7]河南省高校科技创新人才:非开挖修复材料与技术,主持;
[8]河南省重点研发专项课题:极端低温天气地下管道灾变机理及复合修复材料理论研究与技术,主持;
[9]中国博士后基金特别资助项目:基于高聚物注浆修复的冻土路基冻胀演化机理研究,主持;
[10]中国博士后基金面上资助项目:基于高聚物注浆材料修复的冻土路基冻胀演化机理研究,主持;
[11]河南省留学人员科研择优资助项目:排水管道紫外光固化修复材料与结构的综合性能研究,主持;
[12]河南省科技厅科技攻关项目:高聚物注浆材料成型稳定性的试验与模拟研究,主持;
[13]河南省博士后科研启动项目一等资助:发泡高聚物材料成型稳定性的多尺度试验与理论研究,主持;
[14]省部共建交通工程结构力学行为与系统安全国家重点实验室开放基金:交通工程基础修复高聚物注浆材料静动态力学性能的多尺度研究,主持;
[15]天津大学水利工程仿真与安全国家重点实验室开放基金项目:水利工程高聚物注浆材料修复机理及其力学性能的多尺度研究,主持;
[16]安徽省自然科学基金水科学联合基金:混凝土坝渗漏机理及其诊治关键技术研究,参与;
[17]河南省卓越青年创新研究群体项目:城市地下管网安全防护,参与;
[18]中铁七局集团有限公司:复杂工况下冻结暗挖清障辅助盾构下穿既有结构及接收关键技术研究与应用,主持。

论文和专著

【论文】(部分中科院二区以上)

[1] Yongshen Wu, Wang Pan*, Cuixia Wang, Timon Rabczuk, Chao Zhang*. Multiscale Compressive Behavior and Constitutive Modeling of Self-Skinning Polyurethane Grouting Materials: Synergistic Effects of Density and Dimensional. Advanced Composites and Hybrid Materials, 2026 (IF=21.8)
[2] Chao Zhang, Wenjing Xing, Pengyang Li, Yangyang Xia, Cuixia Wang*, Ping Xu. Self-inductivesensing behavior of multi-walled carbon nanotubes reinforced epoxy matrix composites under static-dynamic tension, Polymer Composites, 2026,
[3] Chao Zhang, Jianbing Gan, Shen Luo, Quanhong Liu, Yuanpeng Xiang, Ummin Okumura, Cuixia Wang*. Detection of Frozen Soil Structures Using Rayleigh Waves: Insights from Thermo-Mechanical Coupling and MASW Analysis. Cold Regions Science and Technology, 2026
[4] 张超, 甘健兵, 王鸿飞. 刘铨鸿. 奥村运明, 王翠霞. 基于瑞利波频散分析的人工冻结壁动态无损监测技术研究. 科学技术与工程, 2026
[5] Cuixia Wang, Tao Liu, Yangyang Xia*, Chao Zhang*, Hongyuan Fang. Spatial distribution of flexural properties and analysis of failure mechanisms of curved glass fiber-reinforced UV-CIPP materials, Polymer Composites, 2026, 0,1-16, 71138
[6] Chao Zhang, Bo Xu, Jing Wan*, Jian Liang, Yongshen Wu, Cuixia Wang. Low-Frequency In-Plane Phonons Dominate Thermal Transport in Montmorillonite: Machine-Learning Molecular Dynamics Insights. Langmuir, 2026, 42, 5, 3902–3912(封面文章)
[7] 文杰, 张超*, 王翠霞, 夏洋洋, 林玉亮. 碳纳米管增强光热耦合固化修复材料的力学与传感性能. 材料导报, 2026
[8] Cuixia Wang, Jie Sun, Guojie Liu, Chao Zhang*, Juan Zhang, Chengchao Guo, Xueming Du, Hongyuan Fang, Fuming Wang. Assessment and prediction of polymer grouting repair for permafrost embankment based on heat-moisture-deformation coupling model. Thermal Science and Engineering Progress, 2026, 104365.
[9] Cuixia Wang, Menghao Du, Ruyi Zhang, Chao Zhang*, Xiaolei Qiao, Xiaojian Zhang*, Yangyang Xia, Wenjing Xing, Jie Wen. Pipeline structural health monitoring with curved multi-walled carbon nanotubes/epoxy composites: Mechanical and piezoresistive properties. Polymer Composites, 2025, 0:1–13.
[10] Xi Zhang, Cuixia Wang, Chao Zhang*. A prediction strategy for embankment piping occurrence based on comprehensive feature selection and machine learning. Reliability Engineering & system Safety, 2025, 111987.
[11] 张超, 王鸿飞, 罗珅, 刘铨鸿, 王翠霞*. 考虑冻结管串并联的人工冻结壁发展数值模型, 华北水利水电大学学报(自然科学版), 2025(网络首发)
[12] Cuixia Wang, Caihong Zhang, Chao Zhang*, Yongshen Wu, Quanhong Liu, Huaiping Feng, Hongyuan Fang. Water migration driven by temperature gradients in confined clay channels. Geoderma, 2025, 464, 117594.
[13] Xi Zhang, Yangyang Xia, Chao Zhang *, Bokai Liu*, Cuixia Wang, Hongyuan Fang, Jing Wang. A prediction model for dyke-dam piping based on data augmentation and interpretable ensemble learning. Engineering Failure Analysis, 2025, 182, 110174.
[14] Chao Zhang, Wenjing Xing, Guangyi Zhang*, Zezhuang Li, Yangyang Xia, Cuixia Wang, Hongyuan Fang. Dual-Stress aging of UV-CIPP composites: Microbial and mechanical degradation mechanisms in corrosive environments. Journal of Hazardous Materials, 2025, 498, 139938.
[15] Wenjing Xing, Chao Zhang*, Yangyang Xia, Cuixia Wang, Hongyuan Fang *, Xinxin Sang. Trenchless rehabilitation materials and technologies for water supply pipes: A comprehensive review. Process Safety and Environmental Protection, 2025, 203, 107896.
[16] Chao Zhang, Jie Wen*, Cuixia Wang *, Yangyang Xia, Xinxin Sang, Hongyuan Fang, Niannian Wang. An intelligent and multifunctional composite for drainage pipeline monitoring based on deformation and temperature sensitivity. Tunnelling and Underground Space Technology, 2025, 167, 107088.
[17] Xi Zhang, Yangyang Xia, Chao Zhang*, Cuixia Wang*, Bokai Liue, Hongyuan Fang. An Archimedes Optimization Algorithm Based Extreme Gradient Boosting Model for Predicting the Bending Strength of UV Cured Glass Fiber Reinforced Polymer Composites. Polymer Composites, 2025, 0: 1-18
[18] Yongshen Wu, Chao Zhang*, Cuixia Wang, Hongyuan Fang. Atomistic Insights into Interfacial Failure Prevention of clay-polyurethane composites. Computers and Geotechnics, 2025, 187, 107484
[19] Wang Pan, Cuixia Wang, Chao Zhang*, Hongyuan Fang, Jing Wang. Self-Skinning Polyurethane Composites: Fatigue Durability and Thermomechanical Degeneration Mechanisms. International Journal of Mechanical Sciences, 2025, 300, 110485.
[20] Juan Wang, Shuang Gao, Yu Deng*, Chao Zhang*, Xun Li. Fracture toughness prediction model for polyurethane grouting materials taking into account the geometric characteristics. Construction and Building Materials, 2025, 486, 141936.
[21] 张超, 张磊, 夏洋洋, 王翠霞*, 刘铨鸿, 方宏远, Timon Rabczuk, 王复明. 基于界面形貌三维重构的高聚物-粉土剪切特性分析[J] . 郑州大学学报(工学版), 20250624网络首发
[22] Xueming Du, Chang Liu, Xinxin Meng, Yichao Rui, Hongyuan Fang, Bin Li, Kejie Zhai, Chao Zhang, Mingrui Du, Binghan Xue, Shanyong Wang,Fuming Wang. Diffusion law of nonaqueous reactive expansive polymers in sand and gravel media. Journal of Central South University, 2025, 32, 420–436.
[23] Yangyang Xia, Chao Zhang*, Cuixia Wang, Jing Wang, Xinxin Sang, Peng Zhao, Hongyuan Fang*. Bending damage of novel UV-CGFR composites for pipeline rehabilitation: Experimental characterization and numerical simulation. Composite Structures, 2025, 360: 119065
[24] Wang Pan, Yongbo Wang, Weiliang Gao, Chao Zhang*, Cuixia Wang, Hongyuan Fang, Pengjia Zhu, Fuming Wang. Compressive fatigue resistance and damage evolution model of foamed polyurethane grouting materials under different loading characteristics and densities. Construction and Building Materials, 2025,
[25] Yongshen Wu, Cuixia Wang*, Caihong Zhang, Yongbo Wang, Chao Zhang*, Pengjia Zhu, Hongyuan Fang. Redefining surface dynamics: Advanced insights into nanoindentation and morphological variability of foamed polyurethane. Surfaces and Interfaces, 2025
[26] Hongwei Guo, Chao Zhang, Hongyuan Fang, Timon Rabczuk, Xiaoying Zhuang. Deep learning to evaluate seismic-induced soil liquefaction and modified transfer learning between various data sources, Underground Space, 2025
[27] 张茜;张超*;夏洋洋;王翠霞;方宏远. 基于数据驱动与可解释性分析的堤防管涌灾害预测模型. 华北水利水电大学学报(自然科学版), 2025(网络首发)
[28] Cuixia Wang, Shi Qiao, Chao Zhang*, Yangyang Xia, Yongshen Wu. Novel negative Poisson's ratio structure for pipelines’ local trenchless rehabilitation: Experimental and simulation study. Engineering Structures, 2025, 326,119531.
[29] Chao Zhang, Yi Li, Yongshen Wu, Cuixia Wang*, Jian Liang, Zihan Xu, Peng Zhao, Jing Wang. Key Role of Cross-Linking Homogeneity in Polyurethane Mechanical Properties: Insights from Molecular Dynamics, The Journal of Physical Chemistry B, 2024, 128, 12612-12627
[30] Jie Wen, Chao Zhang*, Yangyang Xia, Cuixia Wang*, Xinxin Sang, Hongyuan Fang, Niannian Wang. UV/thermal dual-cured MWCNTs composites for pipeline rehabilitation: Mechanical properties and damage analysis. Construction and Building Materials, 2024, 450, 138602
[31] 张超, 孙迎娣, 夏洋洋, 王翠霞*, 张晓光, 朱钢, 赵鹏, 方宏远. 埋地管道修复技术碳足迹评价与减排策略研究. 环境工程学报, 2024(accepted)
[32] Cuixia Wang, Zihan Xu, Yangyang Xia, Chao Zhang*, Hongyuan Fang*, Kangyan Sun. Water transport mechanism and performance evaluation in polyurethane materials: A state-of-the-art review. Polymer Testing, 2024, 108554
[33] Chao Zhang, Kangyan Sun, Yongshen Wu, Cuixia Wang*, Hongyuan Fang, Zihan Xu. Molecular dynamics simulation of water permeation mechanism in polymer grouting material. Materials Today Communications, 2024, 40, 109933.
[34] Chao Zhang, Shiming Liu, Yangyang Xia, Cuixia Wang*, Shi Qiao, Hongyuan Fang. Experimental and numerical investigations of an auxetic support structure used for local repair of buried pipelines. Construction and Building Materials, 2024, 438, 137127.
[35] Chao Zhang, Wenbo Zhai, Yangyang Xia*, Cuixia Wang*, Peng Zhao, Bin Li, Yanhui Pan, Hongyuan Fang, Okumura Ummin, Wei He, Nan Deng, Ruitao Zhao, Pengjia Zhu, Xutao Chen. Analysis of the stability of a novel assembled working shaft support structure during pipe jacking construction: experiments and numerical simulations. Engineering Failure Analysis, 2024, 162, 108418.
[36] 张广毅, 李泽庄, 张超*, 夏洋洋, 孟彭辉, 方宏远. 玻璃纤维/甲基丙烯酸酯基原位固化管道内衬在海水和硫酸中的加速老化行为. 复合材料学报, 2025, 42.
[37] Cuixia Wang, Zengni Qin, Xinghui Gong, Chao Zhang*, Wang Pan, Yangyang Xia, Peng Zhao, Lei Wang, Jian Liang, Zhenyuan Hang, Weiliang Gao. Static-dynamic damage mechanism and self-heating effect of a clean elastic polyurethane grouting material for trenchless rehabilitation under high stresses, International Journal of Fatigue, 2024, 183,
[38] Chao Zhang, Zheng Li, Yongshen Wu, Cuixia Wang*, Hongyuan Fang, Chongchong He, Chaojie Duan. Micromechanical properties of polymer-bentonite interface: A molecular dynamics study. Construction and Building Materials, 2024(acctepted)
[39] Pengyang Li, Yangyang Xia, Chao Zhang*, Cuixia Wang, Yu Liu, Hongyuan Fang*, Fuming Wang. Mechanical and piezoresistive properties of multi-walled carbon nanotube reinforced epoxy matrix composites for pipeline monitoring. Journal of Materials Research and Technology, 2024, 28, 2127–2137
[40] Wang Pan, Chao Zhang*, Cuixia Wang, Hongyuan Fang*, Fuming Wang, Zengni Qin, Juan Zhang, Lei Wang. Compressive fatigue resistance and related microscopic mechanisms in foamed polyurethane grouting materials for roadbed rehabilitation. International Journal of Fatigue, 2023, 171, 107593.
[41] Chao Zhang, Yunhui Zhang, Yangyang Xia*, Hongyuan Fang*, Peng Zhao, Cuixia Wang, Bin Li, Yanhui Pan, Zhihui Zou, Timon Rabczuk, Xiaoying Zhuang. Risk assessment and optimization of supporting structure for a new recyclable pipe jacking shaft during excavation process. Process Safety and Environmental Protection, 2023, 172, 211-221.
[42] Hongyuan Fang, Peng Zhao, Chao Zhang*, Wang Pan*, Zisen Yu, Kun Cai, Cuixia Wang, Juan Wang, Mingrui Du, Wei He, Ruitao Zhao, Nan Deng. A cleaner polyurethane elastomer grouting material with high hardening strain for the fundamental rehabilitation: The comprehensive mechanical properties study. Construction and Building Materials, 2022, 318, 125951.
[43] Chao Zhang, Junhua Zhao and Timon Rabczuk. The interface strength and delamination of fiber-reinforced composites using a continuum modeling. Composite Part B: Engineering, 2018, 137, 225-234.
[44] Yongshen Wu, Chao Zhang*, Cuixia Wang, Jing Wan, Ning Wei, Chunhua Zhu, Hongyuan Fang*, Zhihui Zou. Miro-mechanical properties of foamed polymer rehabilitation material: A molecular dynamics study, Polymer, 2022, 263, 125480
[45] Yangyang Xia, Mingsheng Shi, Chao Zhang*, Cuixia Wang, Xinxin Sang, Ren Liu, Peng Zhao, Guanfeng An, Hongyuan Fang*. Analysis of flexural failure mechanism of ultraviolet cured-in-place-pipe materials for buried pipelines rehabilitation based on curing temperature monitoring. Engineering Failure Analysis, 2022, 142, 106763.
[46] Juan Wang, Xun Li, Cuixia Wang, Chao Zhang*, Hongyuan Fang*, Yu Deng. Quantitative Analysis of the Representative Volume Element of Polymer Grouting Materials Based on Geometric Homogenization. Construction and Building Materials, 2021, 300, 124223.
[47] 张超,潘旺,方宏远,王翠霞*,王复明. 高聚物注浆材料压缩疲劳损伤演化与寿命预测. 中国公路学报, 2023, 36(10)
[48] Wang Pan, Cuixia Wang*, Chao Zhang*, Yongshen Wu, Fuming Wang, Hongyuan Fang. Compression fatigue and self-heating effect of foamed polyurethane grouting materials for roadbed trenchless rehabilitation. Journal of Materials Research and Technology, 2023, 27, 4521-4532.
[49] Yangyang Xia, Chao Zhang*, Cuixia Wang, Hongjin Liu, Xinxin Sang, Ren Liu, Peng Zhao, Guanfeng An, Hongyuan Fang*, Mingsheng Shi, Bin Li, Yiming Yuan, Bokai Liu. Prediction of bending strength of glass fiber reinforced methacrylate-based pipeline UV-CIPP rehabilitation materials based on machine learning. Tunnelling and Underground Space Technology, 2023, 140, 105319.
[50] Jing Wang, Yangyang Xia*, Chao Zhang*, Chaojie Wang, Binghan Xue, Ruidong Sun, Yanhui Pan, Jianguo Chen, Pan Li, Mingsheng Shi, Bo Wang. Evaluation of compressive strength of concrete durability degradation in dry and wet environments using destructive and non-destructive testing. Measurement, 2023, 223, 113702
[51] Yi Yang, Shanchen Li, Chao Zhang*, Junhua Zhao, Ning Wei*. Thermal conductivity of a two-dimensional diamondene sheet: A molecular study. The Journal of Physical Chemistry Part C: Energy, Materials, and Catalysis, C: Physical Properties of Materials and Interfaces, 2023, 127, 17, 8247–8255.
[52] 夏洋洋, 方宏远, 张超*, 潘艳辉, 翟文博, 石明生. 顶管施工对新型复合装配式支护工作井的力学响应分析. 岩土力学, 2022, 43(10), 2799-2808
[53] 夏洋洋, 方宏远, 张超*, 王翠霞, 石明生. 玻纤增强甲基丙烯酸酯基UV-CIPP修复材料抗弯性能及失效分析. 材料导报, 2024, (03): 1-31
[54] Yongshen Wu, Chao Zhang*, Cuixia Wang*, Timon Rabczuk, Pengjia Zhu, Peng Zhao, Lei Wang, Xiaoying Zhuang, Juan Zhang, Hongyuan Fang. The micro response mechanisms of foamed polymer rehabilitation material under compression: from a closed cell view. Polymer Testing, 2023, 124, 108082.
[55] Xueming Du, Hongyuan Fang, Kang Liu, Bin Li, Niannian Wang, Chao Zhang, Shanyong Wang. Experimental and practical investigation of reinforcement mechanism on permeable polymer in loose area of drainage pipeline. Tunnelling and Underground Space Technology incorporating Trenchless Technology Research, 2023, 140, 105250.
[56] Shanchen Li, Chenchen Lu, Chao Zhang, Zhihui Li, Junhua Zhao, Jige Chen, Ning Wei. Modeling and investigation of fluid flow affecting thermal boundary conductance at the solid-fluid interface. International Journal of Heat and Mass Transfer, 2023, 213, 124333.
[57] Zhenyang Wang, Mingrui Du, Hongyuan Fang, Chao Zhang, Manjun Li, Mingsheng Shi. Influence of different corrosion environments on mechanical properties of a roadbed rehabilitation polyurethane grouting material under uniaxial compression. Construction and Building Materials, 2021,301,124092.
[58] Duo Ma, Jianhua Liu, Hongyuan Fang, Niannian Wang, Chao Zhang, Zhaonan Li, Jiaxiu Dong. A Multi-defect detection system for sewer pipelines based on StyleGAN-SDM and fusion CNN. Construction and Building Materials, 2021, 312, 125385.
[59] Manjun Li, Chao Zhang*, Hongyuan Fang*, Mingrui Du, Zhan Su, and Fuming Wang. Effects of water content on shear properties of bentonite–polymer composite structure. Engineering Geology, 2021, 287, 106098.
[60] Cuixia Wang, Chao Zhang, Jinwu Jiang, Harold S. Park, Timon Rabczuk. Mechanical Strain Effects on Black Phosphorus Nanoresonators. Nanoscale, 8(2), 901-905 (2016).
[61] Ning Wei, Zhen Li, Zhi-Hui Li, Chao Zhang, Cuixia Wang, Junhua Zhao, Kun Cai. A heat and force locating sensor in nanoscale precision: A knitted graphene sheet. Nanoscale, 2021.
[62] Kejie Zhai, Hongyuan Fang*, Chengchao Guo, Pengpeng Ni, Bing Fu, Fuming Wang, Chao Zhang. Strengthening of PCCP with Broken Wires Using Prestressed CFRP. Construction and Building Materials, 2021, 267, 120903.
[63] Manjun Li, Hongyuan Fang, Mingrui Du, Chao Zhang, Zhan Su, Fuming Wang. The behavior of polymer-bentonite interface under shear stress. Construction and Building Materials, 2020, 248, 118680.
[64] Manjun Li, Mingrui Du, Fuming Wang, Binghan Xue, Chao Zhang, Hongyuan Fang. Study on the mechanical properties of polyurethane (PU) grouting material of different geometric sizes under uniaxial compression. Construction and Building Materials, 2020, 259, 119797.
[65] Jian Liang, Han Zhu*, Bin Zhang, Chao Zhang*, Jianwen Shao, Fuqiang Duan, Jianmin Wang*. Experimental research on controlling the floating of rubber particles in mortar based on the layering degree index. Construction and Building Materials, 2020, 247, 118567.
[66] Bo Song, Jiao Shi, Chunwei Hu, Jinbao Wang, Kun Cai* and Chao Zhang*. Recoverability of a gigahertz rotation-translation nanoconvertor with hydrogenated deformable rotor at room temperature. Nanotechnology, 2019, 30, 465301.
[67] Chao Zhang, S.S. Nanthakumar, Tom Lahmer, Timon Rabczuk. Multiple Cracks Identification for Piezoelectric Structures. International Journal of fracture, 2017, 206(2):151-169.
[68] Chao Zhang, Cuixia Wang, Tom Lahmer, Peng He, Timon Rabczuk. A dynamic XFEM formulation for crack identification. International Journal of Mechanics and Materials in Design, 2016, 12(4):427-448.
[69] Chao Zhang, Cuixia Wang, Timon Rabczuk. Thermal conductivity of single-layer MoS2: a comparative study between 1H and 1T phases, Physica E: Low-dimensional Systems and Nanostructures, 2018, 103, 294-299.
[70] Cuixia Wang, Chao Zhang, Jinwu Jiang, Timon Rabczuk. The Effects of Vacancy and Oxidation on Black Phosphorus Nanoresonators. Nanotechnology, 2017, 28 (13): 135202.
[71] Cuixia Wang, Chao Zhang, Jinwu Jiang, Timon Rabczuk. A Coarse-Grained Simulation for the Folding of Molybdenum Disulphide. Journal of Physics D: Applied Physics,2015, 49(2), 025302.
[72] Cuixia Wang, Chao Zhang, Jinwu Jiang, Ning Wei, Harold S. Park, Timon Rabczuk. Self-Assembly of Water Molecules Using Graphene Nanoresonators. RSC Advances, 2016, 6(112), 110466-110470.

专利和软件著作权

【授权发明专利】

[1] 张超,付一鸣,张福斌,陈红衞,张逍然,秦晓晗,方宏远,王翠霞,孙斌,张广毅,张金萍. 一种免切割弧片状CIPP光固化模具[P]. ZL 202122696974.6, 2021-11-05
[2] 张超;文杰;王翠霞;方宏远;夏洋洋;李鹏阳;王念念,用于排水管道修复与智能监测的装置及方法[P]. 河南省:CN116624788A,2023-08-22
[3] 张超, 王明军, 鲁圆圆, 王翠霞, 杨志聪, 靳晴晴, 王逸卓, 米洋洋, 孙斌, 张金萍. 一种闸门超声波除冰装置[P]. 202111371881.4
[4] 张超;陈红衛;王心怡;余航;张福斌;付一鸣;王翠霞;李鹏阳;赵鹏;王磊,一种树脂基复合材料反应过程温度监测装置[P]. 河南省:CN116021687A,2023-04-2
[5] 张超;张茜;王翠霞;夏洋洋;赵鹏;王磊,用于埋地管道紫外光原位固化修复质量实时监控的方法[P]. 河南省:CN116386789A,2023-07-04
[6] 张超;郭龙威;夏洋洋;王翠霞;赵鹏;王磊;邢文婧,管道管道UV-CIPP修复质量实时监控装置及监控方法[P]. 河南省:CN116772028A,2023-09-1
[7] 张超;刘泊渊;李雨桐;陈红衛;刘凯;李佳霖;王翠霞;邓楠;刘铨鸿;徐平;何伟,地铁隧道双圈水平冻结法施工模拟装置及模拟方法[P]. 河南省:CN117451776A,2024-01-26
[8] 张超;张逍然;付一鸣;张福斌;陈红衛;秦晓晗;方宏远;王翠霞;孙斌;张广毅;张金萍,光固化实验箱[P]. 专利号:ZL202130727242.1,2021-11-05
[9] 张超;詹铭杰;王翠霞;方宏远;夏洋洋;孙康艳;赵鹏;孙斌;张广毅;张金萍,非水反应高聚物注浆材料抗渗性能测试装置[P]. 专利号:ZL202220269208.3,2022-08-23
[10] 高济权;王翠霞;张超;夏洋洋;张敏;王俊翔;马佳美;吴亚龙,一种现场模拟塑料管道加速老化的试验装置及试验方法[P]. 河南省:CN116380763A,2023-07-04
[11] 张超;王明军;靳晴晴;杨志聪;王逸卓;米洋洋. 一种基于超声波的新型闸门除冰模;装置[P]. 专利号:ZL202120786152.4 2021-10-29
[12] 张超;刘世铭;王翠霞;夏洋洋. 具有负泊松比效应的孔隙胞元、管道内部支撑结构及其制作方法[P]. 河南省:CN116557676A,2023-08-08
[13] 王翠霞;张敏;李鹏阳;吴亚龙;高济权;马佳美;王俊翔;张超;赵鹏;王磊,一种树脂基复合材料的制作装置及使用方法[P]. 河南省:CN115890948A,2023-04-04
[14] 孙斌;陈仕哲;阳润芝;仝安;方宏远;张超;李志伟,一种给排水管道综合试验平台[P]. 河南省:CN216012700U,2022-03-11
[15] 孙斌;陈仕哲;张海嘉;杨磊;方宏远;张超;李志伟,排水管道淤积高度测量装置[P]. 河南省:CN216012396U,2022-03-11
[16] 孙斌, 常艺华, 刘权, 杨磊, 方宏远, 张金萍, 张超, 郭兵托, 李斌, 谭佩玲. 一种新型测量流速水位装置[P]. 河南省:CN111595392A,2020-08-28.
[17] 孙斌, 常艺华, 刘权, 杨磊, 方宏远, 张金萍, 张超, 郭兵托, 李斌, 谭佩玲. 一种便携式多功能流量计[P]. 河南省:CN111595391A,2020-08-28.
[18] 方宏远, 雷建伟, 薛冰寒, 李银萍, 胡浩帮, 张超. 一种基于GPU并行的探地雷达电磁波数值模拟计算方法[P]. 申请号 202010182487.5
[19] 王振扬, 杜明瑞, 方宏远, 张超, 石明生, 杜雪明, 李逢源, 郑前坤. 一种多场耦合作用下注浆材料特性演化模拟试验装置及方法[P]. 申请号 202011284098.X
[20] 杜明瑞;方宏远;赵焱;董博源;杜雪明;薛冰寒;张超. 一种用于测试高聚物注浆材料拉伸力学性能的装置及方法[P]. 河南省:CN113640120A,2021-11-12
[21] 王翠霞;张敏;李鹏阳;吴亚龙;高济权;马佳美;王俊翔;张超;赵鹏;王磊,一种树脂基复合材料的制作装置[P]. 河南省:CN219232361U,2023-06-23