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王中钢

领域:新能源汽车产业 学校:中南大学职称:

冲击动力学
轻质复合材料及结构力学
主持科研项目情况:
【1】国家自然科学基金面上项目,51875581,高速磁浮列车异物冲击三维有序负泊松比夹芯结构阻抗机理,2019/01-2022/12,60万元(直接经费),在研
【2】国家自然科学基金青年基金,51505502,多孔格栅填充金属薄壁复合结构轴向冲击形性演变机理及失稳控制,2016/01-2018/12,20万元(直接经费),在研
【3】 中国博士后基金面上项目(一等资助),2017M620358,碳纤维复合材料磁浮列车异物冲击损伤机理及耐撞优化,2017/11/13-2019/06/30,8万元,在研
【4】国家重点研发计划,2017YFB1201103-02,列车全生命周期噪声品质预测与控制及结构气动优化,2017/07-2020/06,334万元,在研
【5】国家重点研发计划,2017YFB1201104-06,轨道交通车站内列车气动冲击效应及噪声分析,2017/07-2020/06,30万元,在研
【6】国家重点实验室开放课题,ZZYJKT2017-09,轻质多孔负泊松比夹芯曲面结构冲击响应机理研究,2017/01-2018/12,20万元,结题
【7】国家科技支撑计划课题,2015BAG13B01-05,下一代地铁车辆技术研究及应用示范,2015/01-2017/01,300万元,结题,本人负责子项(100万元)
【8】中南大学创新驱动支持计划(人才项目),2018CX022,高速列车轻质负泊松比夹芯结构冲击破损机理及阻抗优化,2018/1-2019/12,70.0万元,在研
【9】 中国博士后基金特别资助,2018T110707,冰载荷对碳纤维复合材料磁浮列车异物冲击损伤机理,2018/03/01-2019/06/30,15万元,结题
【10】 湖南省知识产权专利战略实施专项项目, 2017Y1002D, 先进轨道交通装备耐撞性技术专利预警分析及战略建议, 2017/04-2017/12, 5万元,结题
【11】 中央高校基本科研业务,/,超轻先进复合式结构稳健设计,2017/01/01-2019/06/30,25万元,结题
【12】 湖南省博士研究生科研创新项目,CX2013B067,高速动车组复合式蜂窝结构吸能机理,2013/03/01-2014/04/30,1万元,结题
【13】 教育部博士研究生学术新人(人才项目),/,2013/03/01-2014/04/30,3万元,结题
【14】 校企合作开发项目,GSZX20150109,发泡铝力学性能测试,2015/01/01-2015/12/31,3万元,结题
【15】 校企合作开发项目,SF/JS-军字-2016-253,高寒抗风沙动车组设备舱通风及空调风沙跟踪试验 2016/06-2018/05,149万元,结题
【16】 校企合作开发项目,SFC2017KF-JK-005,哈萨克斯坦电动车组车体焊接结构仿真分析计算,2016/07-2016/12,12万元,结题
【17】 校企合作开发项目,SFC2017KF-JK-006,哈萨克斯坦电动车组头车车体结构优化及仿真分析计算,2016/07-2016/12,7.8万元,结题
【18】 校企合作开发项目,GSZX20160501, 夹芯三明治力学性能测试,2016/05-2017/05,3 万元,结题
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教育背景

工作经历

项目课题经历

论文、成果、著作等

【1】Liu J, Chen W S, Hao H, Wang Z. Numerical study of low-speed impact response of sandwich panel with tube filled honeycomb core. Compos Struct 2019, 220:736-748. Article, (JCR Q1).

【2】Wang Z*, Li Z, Shi C, Zhou W. Mechanical performance of vertex-based hierarchical vs square thin-walled multi-cell structure. Thin-walled Struct, 2019,134:102-110. Article, (JCR Q1).

【3】Wang Z, Wang X, Shi C, Li Z, Zhou W. Mechanical behaviors of square metallic tube reinforced with rivets—Experiment and simulation. International Journal of Mechanical Sciences. 2019, 163:105118 Article, (JCR Q1).

【4】Wang Z, Li Z, Shi C, Li Z, Zhou W. Theoretical and numerical analysis of the folding mechanism of vertex-based hierarchical honeycomb structure. Mechanics of advanced material and structure. 2019, Article, (JCR Q1).

【5】Zhou W, Chen L, Wang Z, Ding S, Shan Y. Aerodynamic load spectrum and fatigue behavior of high-speed train’s equipment cabin in Fatigue. Fatigue & Fracture of Engineering Materials & Structures. 2019, Article, (JCR Q1).

【6】Wang Z*, Tian H, Lu Z, Zhou W. High-speed axial impact of aluminum honeycomb–Experiments and simulations. Compos Part B, 2014, 56: 1-8. Article, (JCR Q1).

【7】Wang Z*, Lu Z, Yao S, et al. Deformation mode evolutional mechanism of honeycomb structure when undergoing a shallow inclined load. Compos Struct, 2016, 147:211-219. Article, (JCR Q1).

【8】Wang Z*, Tian H, Lu Z, Yao S, Zhou W. Theoretical assessment methodology on axial compressed hexagonal honeycomb's energy absorption capability. J Mech Adv Mater Struct, 2016, 23(6):503-512. Article, (JCR Q1).

【9】Wang Z*, Gao G, Tian H, Lu Z. A stability maintenance method and experiments for multi-layer tandem aluminum honeycomb array. Int J Crashworthiness, 2013, 18(5), 483-491. Article, (JCR Q4).

【10】Wang Z*, Yao S, Lu Z, et al. Matching Effect of Honeycomb-filled Thin-Walled Square Tube—Experiment and Simulation. Compos Struct, 2016; 157:494-505. Article , (JCR Q1).

【11】Wang Z*, Liu J, Hui D. Mechanical behaviors of inclined cell honeycomb structure subjected to compression. Compos Part B, 2017, 110:307-314. Article, (JCR Q1).

【12】Wang Z*, Liu J, Lu Z, Hui D. Mechanical behavior of composited structure filled with tandem honeycombs. Compos Part B, 2017, 114:128-138. Article, (JCR Q1).

【13】Wang Z*, Zhou W, Liu J. Initial densification strain point's determination of honeycomb structure subjected to out-of-plane compression. J Cent South Univ, 2017, 24(7):1671-1675. Article, (JCR Q3).

【14】Wang Z*, Liu J, Yao S. On folding mechanics of multi-cell thin-walled square tubes. Compos Part B, 2018, 132:17-27. Article, (JCR Q1).

【15】Wang Z*, Liu J. Mechanical performance of honeycomb filled with circular CFRP tubes. Compos Part B, 2018, 135:232-241. Article, (JCR Q1).

【16】Wang Z*, Li Z, Shi C, Zhou W. Mechanical performance of vertex-based hierarchical vs square thin-walled multi-cell structure. Thin-walled Struct, 2018, 143,102-110. Article, (JCR Q1).

【17】Zhou W*, Xiao HT, Wang Z, Chen L, Fu SQ. Dynamic target template matching for railway catenary suspension motion detection in wind area. Int J Distrib Sens N, 2018, Acceptance. Article, (JCR Q2).

【18】Zhang, Y., Yao, S., Hong, X, Wang Z. A modified Johnson–Cook model for 7N01 aluminum alloy under dynamic condition. J Cent South Univ, 2017, 24(11): 2550–2555. Article, (JCR Q3).

【19】Wang Z*. Gluing defect influence on mechanical properties of hexagonal aluminum honeycomb. ICCE-23,Chengdu, 2015.07.Conference paper.

【20】Wang Z*, Zhang Y, Liu J. Comparison between five typical reinforced honeycomb structures. ICAEMT2015, Guangzhou, 2015.08. Conference paper.

【21】Wang Z*, Liu J. Stripping control ways of honeycomb structure. ICCE-24, Haikou, 2016.07. Conference paper.

【22】Wang Z*, Liu J. Mechanical behavior of tandem honeycomb structure. ICCE-24, Haikou, 2016.07. Conference paper.

【23】Wang Z*, Liu J. On the inhomogeneous stress determination of honeycomb core block manufactured by expansion technology. ICCM21, Xian,2017.08. Conference paper.

【24】Wang Z*, Liu J. Performance of packed circular CFRP tubes subjected to axial compression. ICCE-25, Rome, 2017.07. Conference paper.

【25】Wang Z,Wang Z*,Zhou Dan. Air ejectment of honeycomb cell subjected to axial compression. 2nd International Conference on Industrial Aerodynamics (ICIA 2017), Qingdao, 2017.10. Conference paper.

【26】3-point bending experiment of super thin stone honeycomb sandwich panel. Wang Z*, Li Z. 3nd International Conference on Materials Science and Nanotechnology (ICMSNT 2018), Chengdu, 2018.03. Conference paper.

【27】Wang Z*, Liu J, Li Z. Crashworthiness of sandwich panel cored with circular tubes-filled honeycomb structure. International Conference on Impact Loading of Structures and Material (ICIMSM 2018), Xi’an, 2018,05. Conference paper.

【28】Wang Z*, Li Z. On the crashworthiness performance of vertex‐based hierarchical structure International Conference on Theoretical, Analytical and Computational Methods for Composite Structures (ICOMP 2018) .Wuhan, 2018,05. Conference paper.

专利、著作版权等

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