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哈尔滨工业大学航天学院研究生考研导师简介-熊健

本站小编 Free考研网/2019-05-24

基本信息论文专著 (Publications)我的团队(People)科学研究 (Research)教育教学 (Teaching)最新消息 (News)
Welcome to Prof. Dr. Jian Xiong’s Research Group
Our Team works to investigate the mechanics of Advanced Lightweight Composite Structures

Research interests: Mechanics of Lightweight Composite Materials and Structure (Composite Materials, Cellular Materials, Porous Materials, Biomaterials, Sandwich Panels, Lightweight Structures, Multifunctional Structures)
Dr. Jian Xiong05/1984

Full Professor, Humboldt Research Fellow

Center for Composite Materials and Structures

Harbin Institute of Technology, Harbin 150080, P.R.China.

E-mail: jx@hit.edu.cn

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十余年以来 一直致力于 先进轻质复合材料结构的设计理论及力学机制研究

研究方向关键词:轻质复合材料结构力学 ,特种环境复合材料结构力学行为,轻质复合材料与结构,轻量化材料与结构,新型材料与结构力学性能,固体力学

熊健,教授,博士生导师,德国洪堡学者,1984年05月出生於湖南常德,中共党员,哈工大航天学院复合材料与结构研究所, 特种环境复合材料技术国家级重点实验室。

德国“洪堡学者基金”和DAAD学者获得者,何鸿燊奖教金获得者、入选中国科协“青年托举人才”工程(军民融合联合体,工程力学专业),入选哈工大“青年拔尖人才”和“基础研究杰出人才”计划,校优秀博士学位论文。针对空间飞行器特殊服役环境,为了实现飞行器减轻重量、增加有效载荷的目的,发展先进轻质复合材料结构,实现结构轻量化和多功能化是迫切需要解决的科学问题。在这个研究背景下,十余年以来,一直致力于先进轻质复合材料结构的设计理论及力学机制研究。以第一作者/通讯作者在《Journal of the Mechanics and Physics of Solids》、《Acta Materialia》、《Composites Science and Technology》、《International Journal of Solids and Structures》、《Composite Part A》、《Experimental Mechanics》、《Journal of Sandwich Structures and Materials》、《International Journal of Mechanical Sciences》、《Journal of The Mechanical Behavior of Biomedical Materials》、《Composites Structures》等复合材料结构、固体力学等领域重要期刊发表学术论文30余篇,受到美、欧、英、加、日、韩、加、澳、印、中等国际国内院士和知名学者等同行以及NASA、空客和东丽等知名企业的广泛引用和正面评价。学术成果被大段编写入俄罗斯工程院/欧洲科学与艺术学院院士主编的学术书籍,产生了重要影响。所提出的轻量化结构设计方法与理论为航天院所型号研制与工程应用提供了参考依据,已授权国家发明专利10余项,出版学术专著一部,获得黑龙江省自然科学技术一等奖和二等奖各一项。主持国家自然科学基金面上基金、青年基金和应急项目、军委科技委国防基金、军委科技委前沿创新基金、教育部博士点基金和产学研合作等十余项课题。参与国家自然科学基金创新研究群体项目、国家自然科学基金重点项目两项、国家重大基础研究计划-973计划两项、总装备部预研基金项目两项、总装“十一五”和“十二五”项目计划等等。

Email: jx@hit.edu.cn



Employment history (工作经历)
12.2015-Present Professor, Center for Composite Materials and Structures, Harbin Institute of Technology

02.2019-04.2019 Visiting Scholar, Rice University, U.S.A

12.2017-01.2018 Research Fellow, The Hong Kong Polytechnic University, Hong Kong

04.2015-08.2016 Humboldt Research Fellow, Siegen University, Germany

12.2013-12.2015 Associate Professor, Center for Composite Materials and Structures, Harbin Institute of Technology

09.2013-12.2013 Visiting Scholar, Siegen University, Germany

07.2012-12.2013 Lecturer, Center for Composite Materials and Structures, Harbin Institute of Technology

01.2011-01.2012 Visiting Scholar, Northeastern University, U.S.A

09.2011-06.2012 Assistant Professor, Center for Composite Materials and Structures, Harbin Institute of Technology

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2017.05-至今 哈尔滨工业大学复合材料与结构研究所 博士生导师

2015.12-至今 哈尔滨工业大学复合材料与结构研究所 教授(破格)

2019.02-2019.04 美国Rice University工程学院 访问学者

2017.12-2018.01 香港理工大学纺织与织衣系 访问研究员

2015.04-2016.08 德国Siegen University机械工业工程系 洪堡研究员

2013.12-2015.12 哈尔滨工业大学复合材料与结构研究所 副教授(破格)

2013.09-2013.12 德国Siegen University机械工业工程系 访问学者

2012.07-2013.11 哈尔滨工业大学复合材料与结构研究所 讲师

2011.01-2012.01 美国Northeastern University工程学院 访问学者

2011.09-2012.06 哈尔滨工业大学复合材料与结构研究所 助教

Education (教育经历)
07.2008-11.2012Ph.D., Engineering Mechanics, Harbin Institute of Technology
09.2006-07.2008M.Sc., Engineering Mechanics, Harbin Institute of Technology

09.2003-07.2006Minor, Business Administration, Harbin Engineering University

09.2002-07.2006B.Sc., Engineering Mechanics, Harbin Engineering University

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2008.07-2012.11 博士 哈尔滨工业大学航天学院复合材料与结构研究所 工程力学专业

2006.09-2008.07 硕士 哈尔滨工业大学航天学院复合材料与结构研究所 工程力学专业
2003.09-2006.07 辅修专业 哈尔滨工程大学经济管理学院 工商管理专业

2002.09-2006.07 学士 哈尔滨工程大学建筑工程学院工程力学专业

Honors and Awards (荣誉称号)
03.2016 Young Talents of the Chinese Society of Composite Materials

12.2015The Outstanding Youth Talent Plan of Harbin Institute of Technology

05.2015Excellent Guide Teacher Award for student activities of Harbin Institute ofTechnology

07.2014The Outstanding Doctoral Dissertations of Harbin Institute of Technology

04.2014The Basic Research Outstanding Talent Cultivation Plan of Harbin Institute of Technology

03.2014Humboldt Research Fellow from AVH, Germany

12.2013Second prize of Heilongjiang ScienceAcademic achievement

11.2013First prize of Harbin Science Academicachievement

09.2013Fellowship from DAAD for visitingscholar at Germany

05.2012Outstanding Graduates in Harbin Institute of Technology 07.2011 Young ScientistAward was awarded by the committee at the International conference ACE-X 2011(Algarve, Portugal)-3 participators were award /300 participators

07.2011Ongoing excellent doctoral thesis prize in Harbin Institute of Technology

01.2011Fellowship from China Scholarship Council for visiting scholar at U.S.A

07.2010The Young Scholar Prize awarded by MOE of China

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2018.12 何鸿燊(SHATF)奖教金获得者

2017.01 黑龙江省自然科学一等奖 (排名第三)

2016.12 入选中国科协“青年托举人才工程” (工程力学)

2016.03 入选中国复合材料学会“青年人才库”

2015.12 入选校“青年拔尖人才计划”,破格 教授

2015.05 哈工大学生活动优秀指导教师

2014.07 获第十六批哈尔滨工业大学优秀博士学位论文

2014.04 入选校“基础研究杰出人才计划 III 类”

2014.03 入选德国“洪堡学者”计划

2013.12 黑龙江省自然科学学术成果二等奖

2013.11 哈尔滨市自然科学学术成果一等奖

2013.09 德国DAAD奖学金

2012.05 被评为哈尔滨工业大学优秀毕业研究生

2011.07 被欧洲ACE-X2011 会议授予“YoungScientist Award”

2011.07 被评为哈尔滨工业大学第十三批正在进行优秀博士论文

2011.01 国家公派留学奖学金

2010.07 获教育部博士生学术新人奖

Others (其他)
中国复合材料学会车辆工程专业委员会副主任

中国复合材料学会职称评定工作委员会副主任

中国复合材料学会青年工作委员会委员

中华洪堡学者协会常务理事兼副秘书长

黑龙江省力学学会青年工作委员会副主任

黑龙江省青年科技工作者协会理事

Reviewer for journals (审稿人): 《Carbon》, 《Composite Science and Technology》,《Engineering Fracture Mechanics》,《International Journal of Mechanical Sciences》,《Composite Part A》, 《Composite Structures》, 《Composites PartB》, 《Materials and Design》, 《Thin wallstructures》, 《Journal of Composite Materials》,《Advanced Engineering Materials》,《AIAA》et al.

中国力学学会 会员 Membersof the Chinese Society of Theoretical and Applied Mechanics

中国复合材料学会 会员 Members of the ChineseSociety of Composite Materials


Selected Key Publications
[1] Qianqian Wu, Ashkan Vaziri, Mohamad Eydani Asl, Ranajay Ghosh, Ying Gao, Xingyu Wei, Li Ma, Jian Xiong*, Linzhi Wu.Lattice Materials with Pyramidal Hierarchy: Systematic Analysis and Three Dimensional Failure Mechanism Maps.Journal of the Mechanics and Physics of Solids(JMPS),2019, 125: 112-144.
Highlights: The concept of an ideal ultralight-weight sandwich materials was proposed and the pyramidal-pyramidal topological configuration was introduced for hierarchical sandwich structures. Three-dimensional failure mechanism maps for the pyramidal-pyramidal hierarchical lattice material are developed. The pyramidal-pyramidal hierarchical configuration can improve the load bearing capacity and core buckling resistance of the sandwich structures at low density.

Download: https://www.sciencedirect.com/science/article/pii/S**8330

[2] Qianqian Wu, Ying Gao, Xingyu Wei, Davood Mousanezhad, Li Ma, Ashkan Vaziri, Jian Xiong*. Mechanical properties and failure mechanisms of sandwich panels with ultra-lightweight three-dimensional hierarchical lattice cores. International Journal of Solids and Structures(IJSS), 2018, 132-133, 171-187.
Highlights: The mechanical properties and failure mechanisms of sandwich panels with “corrugated-pyramidal” hierarchical lattice cores were investigated through analytical modeling and detailed numerical simulations.

Download: https://www.sciencedirect.com/science/article/pii/S**4341

[3] Xiaodong Li, Jian Xiong*, Li Ma, Linzhi Wu*, Xiangqiao Yan. Effect of vacuum thermalcycling on the compression and shear performance of composite sandwich structures containng pyramidal truss cores. Composites Science and Technology(CSTE),2018, 158, 67-78.

Highlights: The effect of vacuum thermal cycling on the compression and shear performance of the composite sandwich panels with pyramidal-truss cores was studied using theoretical and experimental methods.

Download: https://www.sciencedirect.com/science/article/pii/S**446X

[4] Jian Xiong*, Ranajay Ghosh, Li Ma, Ashkan Vaziri, Yulong Wang, Linzhi Wu*. Sandwich-walled cylindrical shells with lightweight metallic lattice truss cores and carbon fiber reinforced composite face sheets. Composite part A, 2014, 56, 226-238.

Highlights: We manufactured sandwich-walled cylindrical shells with aluminum pyramidal truss core of constant curvature employing an interlocking fabrication technique for the metallic core.Thereafter, we carried out axial compression tests on some representative samples to investigate the failure modes of these structures and compared with an analytical failure map developed to account for Euler buckling, shell buckling, local buckling between reinforcements and face-crushing.

Download: http://www.sciencedirect.com/science/article/pii/S**1736

[5] Xiong, J.*, Ma,L., Pan, S.D., Wu, L.Z.*, Papadopoulos, J., Vaziri, A. (2012): Shear andbending performance of carbon fiber composite sandwich panels with pyramidaltruss cores, Acta Materialia,60, 1455-1466.

Highlights: This paper investigatedthe shear and bending performance of lattice truss sandwich panels through experimentaland theoretical methods. Failure maps were constructed to predict theresponse of panels under three-point bending.

Download: http://www.sciencedirect.com/science/article/pii/S**08184

[6] Xiong, J.*, Ma,L., Vaziri, A., Yang, J.S., Wu, L.Z*. (2012): Mechanical behavior of carbonfiber composite lattice core sandwich panels fabricated by laser cutting, Acta Materialia, 60, 5322-5334.

Highlights: This paper developed a new method to deal with thecore-truss debonding problem in the field of sandwich panels with lattice trusscores. Laser beam cutting method was introduced to remove material fromcorrugated core sandwich panels, leading to lattice cores with much strongercore-to-face-sheet bonding.

Download: http://www.sciencedirect.com/science/article/pii/S**03655

Books (专著)

出版物名称复合材料点阵结构力学性能表征

作者吴林志、熊健、马力 (著)

出版时间,完成时间2015年11月

出版社科学出版社

简单介绍复合材料点阵结构的提出和发展源自以下三方面的启示:①自然界中动植物独特的微结构构造和优异的力学性能;②金属点阵结构优异的力学性能;③工程中对结构轻量化和多功能化的迫切需求。作者及其团队近年来一直致力于先进复合材料点阵结构的设计、制备、表征及评价,《复合材料点阵结构力学性能表征》的内容正是作者所在团队近年来的研究成果和学术心得的总结,同时还借鉴了国内外部分具有代表性的研究工作。作者试图系统地介绍先进复合材料点阵结构的制备方法和力学特性,使读者能够全面了解该类结构的特点。


出版物名称复合材料学科方向预测及技术路线图

作者复合材料领域专家学者

出版时间,完成时间2018

出版社中国科协、中国复合材料学会

简单介绍本人参与了中国科协复合材料学科技术路线图中《复合材料结构设计与分析》一章的技术路线图编制工作。本章概要介绍复合材料结构设计与分析相关知识,针对航空航天装备、海洋工程装备及高技术船舶、节能与新能源汽车和电力装备四个领域,阐述复合材料结构设计思想、分析方法和技术,并基于发达国家复合材料结构设计和分析的发展历程和研究现状,结合我国实际情况,对我国复合材料结构设计和分析未来 10 年和 20 年分阶段目标、主要发展方向及可能或必须突破的重大科学技术问题进行描述。《复合材料学科方向预测及技术路线图》是由中国复合材料学会依据中国科协相关项目的工作指导,于2016-2017年组织行业专家进行编写。本书集国内百名复合材料行业专家及从业者知识精华,从复合材料前沿热点、高性能纤维与纺织结构增强体、聚合物基体等十二个章节方向对复合材料各个方面进行中期(2030)和中长期(2050)预测并提出具体的可执行方案。本书以《中国制造2025》十大重点领域为依据,从技术需求溯源到前沿基础研究,体现学科热点分析和趋势预报。并广泛征集了来自企业、高校、科研机构及专业学会专家的意见与建议,对复合材料学科未来发展具有重要的指导意义。


Peer Reviewed Journal Publications (杂志期刊)
https://www.researchgate.net/profile/Jian_Xiong6Researchgate Page

https://scholar.google.com.sg/citations?user=fjCiuVEAAAAJ&hl=en Google scholar

2019

[49] Yuntong Du, Changping Song, Jian Xiong*, Linzhi Wu. Fabrication and Mechanical Behaviors of Carbon Fiber Reinforced Composite Foldcore Based on Curved-crease Origami. Composites Science and Technology (CSTE), 2019,174, 94-105.

https://www.sciencedirect.com/science/article/pii/S**2292
[48] Qianqian Wu, Ashkan Vaziri, Mohamad Eydani Asl, Ranajay Ghosh, Ying Gao, Xingyu Wei, Li Ma, Jian Xiong*, Linzhi Wu.Lattice Materials with Pyramidal Hierarchy: Systematic Analysis and Three Dimensional Failure Mechanism Maps.Journal of the Mechanics and Physics of Solids(JMPS),2019,125,112-144.

https://www.sciencedirect.com/science/article/pii/S**8330
[47] Bin Hu, Lin-Zhi Wu, Jian Xiong, Li Ma, Wen Yang, Yang Jin. Mechanical properties of a node-interlocking pyramidal welded tube lattice sandwich structure. Mechanics of Materials, 2019,129,290-305.

https://www.sciencedirect.com/science/article/pii/S**2618

[46] Wen Yang, Jian Xiong*, Linzhi Wu, Yuntong Du. Methods for enhancing the thermal properties of epoxy matrix composites using 3D network structures. Composites Communications,2019,12,14-20.

https://www.sciencedirect.com/science/article/pii/S**01761

2018

[45] Wu Xu, ZZ Guo, Y Yu, Jian Xiong, Ying Gao. Experimental and analytical characterizations of finite interlaminar crack growth of 2D woven textile composites. Composite Structures, 2018, 206,713-721.
https://www.sciencedirect.com/science/article/pii/S**8944

[44] Jian Xiong*, Yutong Du, D. Mousanezhad, M. Eydani Asl, J.Norato, A. Vaziri*. Sandwich structures with prismatic and foam cores: A Review.Advanced Engineering Materials, 2018,**,1-19.

https://onlinelibrary.wiley.com/doi/full/10.1002/adem.**

[43] Chuanlei Li, Hongshuai Lei*, Yabo Liu, Xiaoyu Zhang, Jian Xiong, Hao Zhou*, Daining Fang. Crushing behavior of multi-layer metal lattice panel fabricated by selective laser melting. International Journal of Mechanical Sciences, 2018, 145,389-399.

https://www.sciencedirect.com/science/article/pii/S**9404

[42] Wen Yang, Jian Xiong*, Li-Jia Feng, Chong Pei, Lin-Zhi Wu. Fabrication and mechanical properties of three dimensional enhanced lattice truss sandwich structures. Journal of Sandwich Structures and Materials, 2018, 1-18.

http://journals.sagepub.com/doi/10.1177/**89602

[41] Qianqian Wu, Li Ma, Qiunan Liu, Lina Feng, Zhenyu Wang, Arne Ohrndorf,Hans-Jürgen Christ,Jian Xiong*. Impact response and energy absorption of human skull cellular bones. Journal of the Mechanical Behavior of Biomedical Materials, 2018, 81, 106-119.

https://www.sciencedirect.com/science/article/pii/S**0170X

[40] Xiaodong Li, Jian Xiong*, Li Ma, Linzhi Wu*, Xiangqiao Yan. Effect of vacuum thermal cycling on the compression and shear performance of composite sandwich structures containng pyramidal truss cores.Composites Science and Technology, 2018, 158, 67-78.

https://www.sciencedirect.com/science/article/pii/S**446X

[39] Qianqian Wu, Ying Gao, Xingyu Wei, Davood Mousanezhad, Li Ma, Ashkan Vaziri, Jian Xiong*. Mechanical properties and failure mechanisms of sandwich panels with ultra-lightweight three-dimensional hierarchical lattice cores. International Journal of Solids and Structures, 2018, 132-133, 171-187.

https://www.sciencedirect.com/science/article/pii/S**4341

2017

[38] Lijia Feng, Jian Xiong*, Lihong Yang, Guocai Yu, Wen Yang, Linzhi Wu*. Shear and bending performance of new type enhanced lattice truss structures. International Journal of Mechanical Sciences, 2017, 134, 589-598.

http://www.sciencedirect.com/science/article/pii/S**2385

[37] Juan Pablo Vitale, Gaston Francucci, Jian Xiong, Ariel Stocchi*. Failure mode maps of natural and synthetic fiber reinforced composite sandwich panels. Composites Part A, 2017, 94, 217-225.

https://www.sciencedirect.com/science/article/pii/S**X**X

[36] Qianqian Wu, Li Ma, Ying Gao, Jian Xiong*. A new fabrication method for hierarchical truss materials with millimeter-scale struts. Materials Letters, 2017, 186: 1-6.

http://www.sciencedirect.com/science/article/pii/S**X**

2016

[35] Qianqian Wu, Li Ma, Linzhi Wu, Jian Xiong*. A novel strengthening method for carbon fiber composite lattice truss structures. Composite Structures, 2016, 153: 585-592.

http://www.sciencedirect.com/science/article/pii/S**0522

[34] Jinshui Yang, Li Ma, Rudiger Schmidt, Ge Qi, Kai-Uwe Schroder, Jian Xiong, Linzhi Wu. Hybrid lightweight composite pyramidal truss sandwich panels with high damping and stiffness efficiency. Composite Structures, 2016, 148: 85-96.

http://www.sciencedirect.com/science/article/pii/S**2203

[33] Jian Xiong*, Ashkan Vaziri, Ranajay Ghosh, Hong Hu, Li Ma, Linzhi Wu. Compression behavior and energy absorption of carbon fiber reinforced composite sandwich panels made of three dimensional grid cores. Extreme Mechanics Letters, 2016,7: 114-120.

http://www.sciencedirect.com/science/article/pii/S**00347

[32] Jian Xiong*, Lina Feng, Ranajay Ghosh, Huaping Wu, Linzhi Wu, Li Ma, Ashkan Vaziri*. Fabrication and mechanical behavior of carbon fiber composite sandwich cylindrical shells with corrugated cores. Composite Structures, 2016, 156, 307-319.

https://www.sciencedirect.com/science/article/pii/S**940X

2015

[31] 熊健(通讯作者), 郑伟, 冯丽娜, 孟凡壹, 陆宇阳. 波纹板-金字塔多级点阵结构力学性能及失效机制研究. 固体力学学报,

2015, 36(S): 8-15.

http://www.cnki.com.cn/Article/CJFDTotal-GTLX2015S1019.htm

[30] 冯丽娜, 熊健(通讯作者), 郑伟, 杨金水, 吴林志. 波纹夹层圆柱壳复合材料设计及轴压性能研究. 复合材料学报,2015,in

press. (Professor Xiong is Corresponding author, in Chinese)

http://fhclxb.buaa.edu.cn/CN/abstract/abstract12615.shtml

[29] Jinshui Yang, Jian Xiong (Co-supervisor), Li Ma, Li-Na Feng, Shu-Yang Wang, Lin-Zhi Wu. Modal response of all-composite corrugated sandwich cylindrical shells. Composites Science and Technology, 2015, 115:9-20.

http://www.sciencedirect.com/science/article/pii/S**1736

[28] Jian Xiong, Robert Mines, Ranajay Ghosh, Ashkan Vaziri, Li Ma, Arne Ohrndorf, H.J. Christ, Linzhi Wu*. Advanced Micro-lattice materials. Advanced Engeering Materials, 2015, 17(9) 1253-1264.

http://onlinelibrary.wiley.com/doi/10.1002/adem.**/abstract

[27] Yuling Tang, Zhengong Zhou, Shidong Pan, Jian Xiong, Ying Guo. Mechanical property and failure mechanism of 3D carbon-carbon braided composites bolted joints under unidirectional tensile loading. Materials and Design, 2015, 65, 243-253.

http://www.sciencedirect.com/science/article/pii/S**689X

2014

[26] Guocai Yu, Linzhi Wu, Li Ma, Jian Xiong. Low velocity impact of carbon fiber aluminum laminates. Composite Structures, 2014,119, 757-766.

http://www.sciencedirect.com/science/article/pii/S**5029

[25] Jian Xiong, Ranajay Ghosh, Li Ma,H. Ebrahimi, A.M.S.Hamouda, Ashkan Vaziri, Linzhi Wu. Bending behavior of lightweight sandwich-walled shells with pyramidal truss cores. Composite Structures, 2014,116, 793-804.

http://www.sciencedirect.com/science/article/pii/S**275X

[24] Jinshui Yang, Jian Xiong(Co-supervisor), Li Ma, Guoqi Zhang, Xintao Wang, Linzhi Wu. Study on vibration damping of

composite sandwich cylindrical shell with pyramidal truss-like cores.Composite Structures, 2014,117, 362-272.

http://www.sciencedirect.com/science/article/pii/S**316X

[23] Jian Xiong*, Meng Zhang, Ariel Stocchi, Hong Hu, Li Ma, Linzhi Wu*, Zhong Zhang. Mechanical behaviors of carbon fiber composite sandwich columns with three dimensional honeycomb cores under in-plane compression.Composites Part B: Engineering, 2014, 60, 350-358.

http://www.sciencedirect.com/science/article/pii/S**07798

[22] Jian Xiong, Jinshui Yang, Ranajay Ghosh, Li Ma, Linzhi Wu, Ashkan Vaziri. Sandwich-walled composite cylinders with lattice truss cores.submitted.

[21] Jian Xiong*, Ranajay Ghosh, Li Ma, Ashkan Vaziri, Yulong Wang, Linzhi Wu*. Sandwich-walled cylindrical shells with lightweight metallic lattice truss cores and carbon fiber reinforced composite face sheets. Composite part A, 2014, 56, 226-238.

http://www.sciencedirect.com/science/article/pii/S**X**

[20] Jian Xiong*, Li Ma, Ariel Stocchi, Jinshui Yang, Linzhi Wu, Shidong Pan*. Bending response of carbon fiber composite sandwich beams with three dimensional honeycomb cores. Composite Structures, 2014, 108, 234-242.

http://www.sciencedirect.com/science/article/pii/S**4820

[19] Jian Xiong*, Bing Wang, Li Ma*, Jim Papadopoulos, Ashkan Vaziri, Linzhi Wu. Three-dimensional Composite Lattice Structures Fabricated by Electrical Discharge Machining. Experimental Mechanics, 2014, 54, 405-412.

http://link.springer.com/article/10.1007%2Fs11340-013-9801-y

[18] Jia Lou, Linzhi Wu, Li Ma, Jian Xiong, Bing Wang. Effects of local damage on vibration characteristics of composite pyramidal truss core sandwich structure. Composites Part B: Engineering, 2014, 62, 73-87.

http://www.sciencedirect.com/science/article/pii/S**00894

2013

[17] Jinshui Yang, Jian Xiong(Co-supervisor), Li Ma, Bing Wang, Guoqi Zhang, Linzhi Wu. Vibration and damping characteristics of hybrid carbon fiber composite pyramidal truss sandwich panels with viscoelastic layers. Composite Structures, 2013, 106, 570-580.

http://www.sciencedirect.com/science/article/pii/S**3383

[16] Bing Wang, Jian Xiong, Xiaojun Wang, Li Ma, Guoqi Zhang, Linzhi Wu, Jicai Feng. Energy absorption efficiency of carbon fiber reinforced polymer laminates under high velocity impact. Materials and Design, 2013, 50: 140-148.

http://www.sciencedirect.com/science/article/pii/S**0691

[15] Guoqi Zhang , Bing Wang, Li Ma, Jian Xiong, Linzhi Wu. Response of sandwich structures with pyramidal truss cores under the compression and impact loading. Composite Structures, 2013, 90: 1230-1235.

http://www.sciencedirect.com/science/article/pii/S**0494

[14]Guoqi Zhang, Bing Wang, Li Ma, Jian Xiong, Jinshui Yang, Linzhi Wu. The residual compressive strength of impact-damaged

sandwich structures with pyramidal truss cores. Composite Structures, 2013, 105: 188-198.

http://www.sciencedirect.com/science/article/pii/S**2262

2012

[13]Jian Xiong*, Li Ma, Shidong Pan, Linzhi Wu*, Jim Papadopoulos, Ashkan Vaziri. Shear and Bending Performance of Carbon Fiber Composite Sandwich Panels with Pyramidal Truss Cores. Acta Materialia, 2012, 60(4): 1455-1466.

http://www.sciencedirect.com/science/article/pii/S**08184

[12]Jian Xiong*, Li Ma, Ashkan Vaziri, Jinshui Yang, Linzhi Wu*. Mechanical Behavior of Carbon Fiber Composite Lattice Core Sandwich Panels Fabricated by Laser Cutting. Acta Materialia, 2012, 60(13-14): 5322-5334.

http://www.sciencedirect.com/science/article/pii/S**03655

[11] Jian Xiong*, Ashkan Vaziri, Li Ma, Jim Papadopoulos, Linzhi Wu*. Compression and Impact Testing of Two Layer Composite Pyramidal-core Sandwich Panels. Composite Structures, 2012, 94(2): 793-801.

http://www.sciencedirect.com/science/article/pii/S**362X

[10]吴林志,熊健,马力,王兵,张国旗,杨金水. 新型复合材料点阵结构的研究进展. 力学进展, 2012, 42(1):1-27. (中文核心约稿)

http://d.wanfangdata.com.cn/periodical_lxjz**.aspx

[9]吴林志,熊健,马力,王兵,泮世东,刘海涛. 轻质夹层多功能结构一体化设计. 力学与实践, 2012, 34(4): 8-18. (中文核心约稿)

http://kxrc.cnki.net/kcms/detail/detail.aspx?filename=LXYS**&dbcode=CJFQ&dbname=CJFDTEMP

2011

[8]Jian Xiong*, Li Ma, Linzhi Wu*, Jiayi Liu, Ashkan Vaziri. Mechanical Behavior and Failure of Carbon Fiber Composite Pyramidal Truss Core Sandwich Columns. Composite Part B: Engineering, 2011, 42(4): 938-945.

http://www.sciencedirect.com/science/article/pii/S**00229

[7]Jian Xiong*, Li Ma, Linzhi Wu*, Ming Li, Ashkan Vaziri. Mechanical Behavior of Sandwich Panels with Hollow Al-Si Tubes Core Construction. Materials and Design, 2011, 32(2): 592-597.

http://www.sciencedirect.com/science/article/pii/S**4917

[6]Li Ma, Jian Xiong, Ming Li, Linzhi Wu. Mechanical Response and Failure Mechanism of Fiber Reinforced Composite Truss Core Sandwich Structures[C]. 3rd International Cofenerce on Heterogeneous Material Mechanics (ICHMM-2011), Chong Ming Island, China, May 22-26, 2011 (EI收录,EI 收录号为**061)

[5]熊健,马力,杨金水,吴林志. 碳纤维复合材料金字塔点阵结构制备工艺及力学性能研究[J]. 固体力学学报, 2011, 32(S1): 8-13. (EI源期刊)

http://www.cqvip.com/qk/95077x/2011s1/**.html

[4] Ming Li, Linzhi Wu, Li Ma, Jian Xiong, Zhenxi Guan. Torsion of Carbon Fiber Composite Pyramidal Core Sandwich Plates[J]. Composite Structures, 2011, 93(9): 2358-2367.

http://www.sciencedirect.com/science/article/pii/S**1085

[3] Jiayi Liu, Zhengong Zhou, Li Ma, Jian Xiong, Linzhi Wu. Temperature Effects on the Strength and Crushing Behavior of Carbon Fiber Composite Truss Sandwich Cores[J]. Composites Part B: Engineering, 2011, 4(7)2: 1860-1866.

http://www.sciencedirect.com/science/article/pii/S**02812

2010

[2] Jian Xiong, Li Ma, Linzhi Wu, Bing Wang, Ashkan Vaziri. Fabrication and Crushing Behavior of Low Density Carbon Fiber Composite Pyramidal Truss Structures. Composite Structures, 2010, 92(11): 2695-2702.

http://www.sciencedirect.com/science/article/pii/S**111X

[1] 李明,吴林志,关正西,马力,熊健. 金属圆管增强夹芯柱屈曲分析[J]. 工程力学, 2010, 27(12): 34-39. (EI收录,EI收录号为**213)

http://www.cnki.com.cn/Article/CJFDTotal-GCLX**.htm*


会议论文 (Conference Publications/Presentations)
[14] Jian Xiong, H.-J.Christ. Micro-structural and mechanical characterization of cellular sandwich architectures in the mammal skull. Klausurtagung 2015, 30th September to 2nd October, Bonn, Germany. (German+English Oral speaking)

[13]Jian Xiong et al (2015). Fabrication and axial compressive behavior of composite sandwich cylindrical shells with pyramidal lattice truss. 20th International Conference on Composite Materials (ICCM 20), 19th -24th July, Copenhagen, Denmark. (English Oral speaking)

[12]熊健 (2014). 超轻三维多级点阵结构力学性能及失效机制研究[C]. 2014固体力学大会,四川成都,中国,10月10-12. (口头报告, Chinese Oral speaking)

[11] Jian Xiong et al (2013). Cellular Composite Materials. Klausurtagung-Siegen University, October 9 -11 , Attendorn, Germany. (English Oral speaking)

[10]熊健 (2013). 超轻复合材料点阵结构力学行为研究[C]. 2013复合材料力学研讨会,重庆,中国,5月13-15. (口头报告, Chinese Oral speaking)

[9] Jian Xiong et al (2012). Low Density Carbon Fiber Composite Pyramidal Truss Cores: Manufacturing, Experiments, Theory[C]. ASME 2012 International Mechanical Engineering Congress and Exposition, Houston, U.S.A, November 9-15. (English Oral speaking)

[8] Jian Xiong et al (2012). Mechanical Properties and Failure Modes of Carbon Fiber Composite Pyramidal Lattice Structures [C]. 23rd International Congress of Theoretical and Applied Mechanics (ICTAM2012), Beijing, China, August 19-24. (English Oral speaking)

[7] Jian Xiong et al (2011). Quasi-static Compression and Low Velocity Impact Response of Carbon Fiber Sandwich Panels with 8-truss Kagome Cores[C]. 16th International Conference on Composite Structures (ICCS16), Porto, Portugal, June 28-30. (English Oral speaking)

[6] Jian Xiong et al (2011). Quasi-static Compressive and Low Velocity Impact Response of Multilayer Carbon Fiber Sandwich Panels with Pyramidal Truss Structures[C]. 5th International Conference on Advanced Computational Engineering and Experimenting (ACE-X 2011), Algarve, Portugal, July 03-06. (English Oral speaking)

[5] Jian Xiong et al (2011). Carbon Fiber Composite Sandwich Panels with Pyramidal Truss-like Cores[C]. New England Workshop on the Mechanics of Materials and Structures. Boston, U.S.A, October 1. (Poster)

[4] Jian Xiong et al (2011). Fabrication and Mechanical Behaviors of Carbon Fiber Composite Sandwich Panels with Pyramidal Truss-like Cores[C]. 12th Annual Research and Industrial Collaboration Conference. Boston, U.S.A. October 13-14. (Poster)

[3] 熊健 (2010). 碳纤维复合材料点阵夹芯结构力学性能研究[C]. 2010全国固体力学学术会议, 武汉, 中国, 11月11-14. (口头报告, Chinese Oral speaking)

[2] Jian Xiong et al (2010). Mechanical Behavior of Low Density Carbon Fiber Composite Pyramidal Truss Structures[C]. International Workshop between Harbin Univ. of Tech. and Hanyang Univ. Chemical Eng. & Materials Sci. Eng. Seoul, South Korea, March 14-17. (Poster)

[1] 熊健 (2009). 铝硅合金空心圆管夹芯结构基本力学性能分析[C]. 中国力学学会学术大会, 郑州, 中国, 8月24-26. (口头报告, Chinese Oral speaking)

发明专利(Patents)
已授权的发明专利:

[1] 熊健, 吴林志, 马力, 王兵. 一种用于制备纤维增强金字塔点阵夹芯板芯子的组装模具:中国,ZL**73[P]. 2010-05-19.

[2]吴林志,熊健,马力,刘加一. 一种用于制备纤维增强蛋壳型点阵夹芯板芯子的组装模具: 中国, ZL**6[P]. 2010-05-19.

[3] 吴林志,熊健,马力,殷莎,王明亮. 一种轻质点阵夹芯板及采用激光切孔制备该板的方法: 中国, ZL**0.0[P]. 2011-02-09.

[4] 熊健,马力,吴林志,王志勇,泮世东. 采用机械钻孔制备轻质点阵夹芯板的方法: 中国,ZL**0.8[P]. 2012-02-16.

[5] 熊健,马力,吴林志,王志勇,王明亮. 采用电火花打孔制备轻质点阵夹芯板的方法: 中国,ZL**1.3[P]. 2012-12-12.

[6] 马力,熊健,吴林志,齐学飞,王孟孟. 纤维复合材料点阵夹芯板及制备该点阵夹芯板的模具及应用该模具制备点阵夹芯板的方法: 中国,ZL**4.0[P]. 2012-02-09.

[7] 吴林志,熊健,马力,赵望安,齐学飞. 一种轻质点阵夹芯板及采用线切割打孔制备该板的方法: 中国,ZL**3.4[P]. 2013-02-09.

[8] 吴林志,熊健,泮世东,彭亮,马力. 采用纤维编织预浸布制备复合材料点阵夹芯板的方法: 中国,ZL**6.X[P]. 2013-02-23.

[9] 熊健,马力,吴林志,刘加一,周振功. 金字塔型格栅板及制造该格栅板的嵌条及格栅点阵夹芯板的制备方法: 中国, ZL**7.3[P]. 2013-06-05.

[10] 熊健,马力,吴林志,王兵,张国旗. 一种采用纤维编织布制备金字塔型点阵夹芯板的方法: 中国,ZL**5.5[P]. 2013-06-05.

[11] 熊健,刘贞谷,杜严锋,郑博文,杨琨。一种用于制备复合材料褶皱夹芯结构的组装模具。中国,ZL**10, 2017-04-12.

[12] 熊健,郑伟,孟凡壹,吴林志,马力。周期微观桁架嵌片以及周期微观桁架结构体的制造方法。中国,ZL**85, 2017-03-24.

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[1] Xiong, J., Wu, L.Z., Ma, L., Wang, B. (2010): Mould for fabricating carbon fiber composite pyramidal truss cores structures. Chinese Patent (Patent No ZL**73).

[2] Wu, L.Z., Xiong, J., Ma, L., Liu, J.Y. (2010): Mould for fabricating carbon fiber composite egg truss cores structures. Chinese Patent (Patent No ZL**6).

[3] Xiong, J., Ma, L., Wu, L.Z., Wang, Z.Y., Pan, S.D. (2011): The Method for fabricating carbon fiber composite sandwich panels with lattice truss cores using machine drilling. Chinese Patent (Patent No ZL**0.8).

[4] Wu, L.Z., Xiong, J., Ma, L., Yin, S., Wang, M.L. (2011): The Method for fabricating carbon fiber composite sandwich panels with lattice truss cores using laser beam cutting. Chinese Patent (Patent No ZL**0.0).

[5] Ma, L., Xiong, J., Wu, L.Z., Qi, X.F., Wang, M.M. (2011): The Mould and Method for fabricating carbon fiber composite sandwich panels with truss cores. Chinese Patent (Patent No ZL**4.0).

[6] Xiong, J., Ma, L., Wu, L.Z., Wang, Z.Y., Wang, M.L. (2011): The Method for fabricating carbon fiber composite sandwich panels with lattice truss cores using electrical discharge machining. Chinese Patent (Patent No ZL**1.3).

[7] Wu, L.Z., Xiong, J., Ma, L., Zhao, W.A., Qi, X.F. (2011): The Method for fabricating carbon fiber composite sandwich panels with lattice truss cores using wire electrode cutting. Chinese Patent (Patent No ZL**3.4).

[8] Wu, L.Z., Xiong, J., Pan, S.D., Peng, L., Ma, L. (2011): The Method for fabricating carbon fiber composite sandwich panels with lattice truss cores using fiber woven presoak cloth. Chinese Patent (Patent No ZL**6.X).

[9] Xiong, J., Ma, L., Wu, L.Z., Liu, J.Y., Zhuo, Z.G. (2011): The Method for fabricating carbon fiber composite sandwich panels with pyramidal grid cores. Chinese Patent (Patent No ZL**7.3).

[10] Xiong, J., Ma, L., Wu, L.Z., Liu, J.Y., Zhuo, Z.G. (2011): The Method for fabricating carbon fiber composite sandwich panels with pyramidal truss cores using fiber weave cloth. Chinese Patent (Patent No ZL**5.5).

[11] Wu, L.Z., Xiong, J., Ma, L., Yang, J.S., Peng, L.: The Method for fabricating carbon fiber composite cylindrical shells with lattice truss cores. Submitted as: Chinese Patent (Application No **8.7, application date 02. 10. 2011).

[12] Wu, L.Z., Xiong, J., Ma. L., Xiong, G., Liu, J.Y. The Method for fabricating carbon fiber composite sandwich panels with improved pyramidal truss cores. Submitted as: Chinese Patent (Application No **8.1, application date 02.10.2011).

[13] Yin, S., Ma, L., Wu, L.Z., Xiong, J., Zhang, W.J. The Method for fabricating carbon fiber composite sandwich panels with hollow pyramidal truss cores. Submitted as: Chinese Patent (Application No **9.2, application date 02.10.2010)

Typical Journals Links
Science

http://www.sciencemag.org/journals

Nature

http://www.nature.com/nature/index.html

Nature Materials

http://www.nature.com/nmat/index.html

Progress in Materials Science

http://www.journals.elsevier.com/progress-in-materials-science/

Advanced Materials

http://onlinelibrary.wiley.com/journal/10.1002/(ISSN)1521-4095

Acta Materialia

http://www.journals.elsevier.com/acta-materialia/

Composites Science and Technology

http://www.journals.elsevier.com/composites-science-and-technology/

Composites Part A

http://www.journals.elsevier.com/composites-part-a-applied-science-and-manufacturing/

Journal of the Mechanics and Physics of Solids

http://www.journals.elsevier.com/journal-of-the-mechanics-and-physics-of-solids/

International Journal of Solids and Structures

http://www.journals.elsevier.com/international-journal-of-solids-and-structures/

Journal of Applied Mechanics

http://appliedmechanics.asmedigitalcollection.asme.org/journal.aspx

Experimental Mechanics

http://www.springer.com/engineering/mechanics/journal/11340

Advanced Engineering Materials

http://onlinelibrary.wiley.com/journal/10.1002/(ISSN)1527-2648

Composite Structures

http://www.journals.elsevier.com/composite-structures/

Composite Part B

http://www.journals.elsevier.com/composites-part-b-engineering/

Materials and Design

http://www.journals.elsevier.com/materials-and-design/

Materials Science and Engineering: A

http://www.journals.elsevier.com/materials-science-and-engineering-a/

Journal of Sandwich Structures and Materials

https://us.sagepub.com/en-us/nam/journal-of-sandwich-structures-materials/journal201586

Journal of Mechanics of Materials and Structures

http://msp.org/jomms/about/cover/cover.html





Opportunities (招贤纳士)
本课题组研究方向主要集中在复合材料结构力学,包括超轻复合材料结构及多孔结构的力学行为。

(1) 微纳米尺度复合材料结构设计及电化学性能研究 (基金项目)

计划招收一名博士研究生,具有化学或材料学背景。
(2) 吸声降噪复合材料结构设计及力学性能研究 (国家基金)
计划招收一名博士或硕博连读生,要求熟练使用有限元软件,有材料力学基础。
(3) 汽车复合材料轻量化结构设计及应用研究 (校企合作)
计划招收一名本硕/硕士研究生,要求力学基础知识扎实,会使用有限元软件。
项目多为基础研究与应用研究相结合,科研经费充足,倡导创新,专注基础研究。既瞄准高水平文章,也具有明确的应用背景。
联系邮箱:jx@hit.edu.cn
提示:硕士研究生复试前后,提前将简历和本科指导教师推荐信发送至邮箱,进行考核并接收;博士研究生采用申请-考核制,提前一年联系。
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Several visiting, Postdoctoral fellow, graduate and undergraduate researchpositions are available. If you are interested, please email your CV along witha cover letter expressing your background and research interests to Professor Dr.Jian Xiong.


Members (团队成员)
Principal Investigator: Dr. Jian Xiong,Professor,Email: jx@hit.edu.cn





Ph.D Students



姓名(Name):杨雯(Wen Yang)

出生年月(Birthday):1988年9月

籍贯(Place of Birth):山东 泰安(Tai’an Shandong)

入学年份:15级博士生(副导师)

E-mail:wen**@163.com

教育背景:

2015.03-至今: 哈尔滨工业大学 航天学院 工程力学 博士

2012.09-2014.07:哈尔滨工业大学 航天学院 材料学硕士

2007.09-2011.07:齐鲁工业大学 材料学院 无机非金属材料科学与工程 学士

研究方向:集承载-热控于一体的多功能轻质夹芯结构性能研究

Research Interest: Thermal and mechanical properties of multifunctional sandwich structures





姓名(Name): 吴倩倩(Qianqian Wu)

出生年月(Birthday):1989年6月

籍贯(Place of Birth): 山东莱州(Laizhou, Shandong)

入学年份:15级博士生 (副导师)

E-mail: potentialdonor@126.com

教育背景:

2015.9-至今: 哈尔滨工业大学 工程力学博士 (推荐免试)

2013.9-2015.7: 哈尔滨工业大学 工程力学硕士(推荐免试)

2008.9-2013.7: 哈尔滨工业大学 俄语、飞行器设计与工程(双学位)本科

研究方向:生物多孔结构力学行为研究

Research Interest: Mechanical behavior of cellular structures in Nature


姓名(Name):杜昀桐 (Yuntong Du)

出生年月(Birthday):1992年7月

籍贯(Place of Birth):山东淄博(Zibo, Shandong)

入学年份:16级博士生 (副导师)

E-mail: yuntong1992@163.com

教育背景:

2016.9-至今: 哈尔滨工业大学航天学院工程力学博士

2014.9-2016.7: 哈尔滨工业大学航天学院 工程力学研究生硕士学位

2010.9-2014.7: 山东科技大学 矿业与安全工程学院 理论与应用力学本科学士学位

研究方向: 褶皱夹芯结构设计及力学性能研究

Research Interest: Design and mechanical behavior of sandwich structures with folded core


姓名 (Name):高英 (Ying Gao)

出生年月:1991年9月

籍贯:湖北 黄冈 (Huanggang Hubei)

入学年份:17级博士生(副导师)

E-mail: gyhust@163.com

教育背景:

2017.9-至今:哈尔滨工业大学工程力学博士

2015.8-2017.7: 哈尔滨工业大学工程力学硕士

2011.9-2015.7: 华中科技大学 船舶与海洋工程 本科学士学位

研究方向:复合材料结构力学性能

Research Interest: Mechanical property of composite structures


姓名(Name): 韦兴宇 (Xingyu Wei)

出生年月:1992年7月

籍贯:黑龙江 佳木斯 (Heilongjiang Kiamusze)

入学年份:17级博士生(副导师)

E-mail: weixingyu92@foxmail.com

教育背景:

2016.09-至今:哈尔滨工业大学 航天学院 工程力学 硕博连读

2011.09-2015.07:燕山大学 建筑工程与力学学院 工程力学 本科 学士学位

研究方向:复合材料结构力学性能

Research Interests: Mechanical property of composite structures


姓名(Name):宿一书
出生年月(Birthday):1989年12月
籍贯(Place of Birth):山东省潍坊市(Weifang City of ShanDong Province)
入学年份:18级博士(副导师)
Email:suyishu1014@126.com

教育背景:
2018.9至今:哈尔滨工业大学 航天学院 力学 博士
2015.9-2018,3:沈阳航空航天大学 工程力学 硕士
2008.9-2012.6:哈尔滨师范大学 物理学 学士
研究方向:多物理场超材料 超高温热防护结构设计
Research Interest:Multiphysics Metamaterials;Structure design of ultra-temperature thermal protection



Master Student
姓名(Name):韩行锴 (Xingkai Han)

出生年月(Birthday):1995年3月

籍贯(Place of Birth):吉林省东辽县(Dongliao County of Jilin Province)

入学年份:17级硕士生(导师)

Email:**@qq.com

教育背景:

2017.9-至今:哈尔滨工业大学航天学院 工程力学 硕博连读

2013.8-2017.7: 合肥工业大学 工程力学专业 本科学士学位

研究方向:轻质复合材料结构力学性能研究

Research Interest:The mechanical properties of lightweight composite materials.





姓名(Name):周思彤(Sitong Zhou)

出生年月(Birthday):1994年11月

籍贯(Place of Birth):辽宁北票(Beipiao,Liaoning))

入学年份:17级硕士生 (导师)

E-mail: **@qq.com

教育背景:

2017.9-至今:哈尔滨工业大学 航天学院 工程力学研究生 硕士学位

2013.9-2017.7: 内蒙古工业大学 理学院 工程力学本科 学士学位

研究方向: 褶皱夹芯结构吸音降噪性能研究

Research Interest: Acoustic behavior of sandwich structures with folded core





姓名(Name): 刘从灵(Congling Liu)
出生年月(Birthday):1995年10月
籍贯(Place of Birth): 福建省浦城县(Pucheng County of Fujian Province)
入学年份:18级硕士生(导师)
Email: **@qq.com
教育背景:

2018.9~至今:哈尔滨工业大学航天学院工程力学硕士
2014.9~2018.7中国民航大学飞行器制造工程专业本科学士学位
研究方向:轻质复合材料结构设计,特种环境复合材料结构力学行为
Research Interest:The design of Lightweight composite structures, Structural mechanical behavior of special environmental composites .



Undergraduate Students
16本-葛皓 16本-金浩正 16本-李达夫 6本-李傅杉


16本-吕浩楠 16本-宋长平16本-周春明

Former Students (毕业校友)

王文佳 (Wenjia Wang) 2016.09-2017.06 (本科)研究方向:汽车复合材料弹簧设计及性能研究,就业去向:赴美读研

冯丽娜 (Lina Feng)2013.09-2016.07 (本科-保送硕士)研究方向:碳纤维复合材料波纹板结构(本科),自然界多孔结构动态力学行为(硕士) 就业去向:航天一院

郑伟 (Wei Zheng) 2014.09-2016.07 (硕士)研究方向:自然界多孔结构静态力学性能研究 就业去向:中国广核有限公司

张成雨 (Chengyu Zhang)2014.09-2016.07 (硕士) 研究方向:导热聚合物设计及性能研究就业去向:史密斯公司

孟凡壹 (Fanyi Meng) 2013.09-2015.07 (硕士)研究方向:超轻多级结构设计及力学性能研究 就业去向:航天三院

陆宇阳 (Yuyang Lu)2012.09-2013.07 (本科)研究方向:多级结构设计及力学性能就业去向: 中国科学技术大学读研


Excellent Student Events (优秀学生动态)


博士研究生 吴倩倩 获得2018年度国家奖学金

硕士研究生 周思彤 获得2018年度研究生特殊奖学金

博士研究生 吴倩倩 获得2017年度国家公派联合培养奖学金,公派至加拿大麦吉尔大学

博士研究生 杨金水 获得2016年度国家公派联合培养奖学金,公派至德国亚琛工业大学

博士研究生 杨金水 获得2015年度国家奖学金
硕士研究生 冯丽娜 获得2015年度国家奖学金
硕士研究生 郑 伟 获得2015年度光华奖学金
硕士研究生 杜昀桐通过直攻博考核,进入课题组攻读博士研究生
Ph.D candidate Jinshui Yang was awarded the Scholarship from ChinaScholarship Council to visit RWTH in Aachen, Germany.
Ph.D candidate Jinshui Yang has published one paper about lightweight compositestructures at Composites Science and Technologyhttp://www.sciencedirect.com/science/article/pii/S**1736
M.S Lina Feng has published one paper about lightweight compositestructures at Acta Materiae Compositae Sinica 《复合材料学报》
http://fhclxb.buaa.edu.cn/CN/abstract/abstract12615.shtml
高英从华科保送至哈工大复合材料与结构研究所攻读硕士研究生

Group Culture (团队文化)
Honesty, Strive, Fraternal unity

Strict criterions,Solid Skills

------------------------------------

诚实,奋进,团结友爱

规格严格,功夫到家


研究领域
“航天器每一个零件减少1克重量都是贡献”-钱学森先生早在1961年讲授《星际航行概论》课时指出。为了实现飞行器减轻重量、增加有效载荷的目的,发展先进轻质复合材料结构,实现结构轻量化和多功能化是迫切需要解决的科学问题。申请人在这个研究背景下,一直从事超轻复合材料结构设计、制备、力学性能表征与评价的系统性研究工作。

轻质复合材料点阵结构设计及力学性能研究

格栅结构和点阵结构等被认为是当前最富有前景的新一代先进轻质超强韧材料,并已开始应用于航空航天结构。轻质复合材料点阵结构方面,在国家重大基础研究计划(973计划)、国家自然科学基金重点项目、国家自然科学基金面上/青年基金项目等资助下,近年来主要取得如下研究成果:

(1) 在成功开发了多种制备工艺的基础上,制备了多种拓扑构型的全复合材料点阵夹芯结构;

(2) 提出了复合材料点阵夹芯结构在平压和剪切作用下的力学分析模型,揭示了其失效机理,得到了侧压和弯曲载荷作用下的失效机制图,探讨了夹芯结构的冲击失效机理和阻尼特性;

(3) 设计了有重要工程应用背景的复合材料点阵/波纹夹芯曲面壳及圆柱壳,研究了弯曲和轴压作用下的失效机制,并绘制了失效机制图,揭示了结构的振动阻尼特性。



超轻多级点阵结构设计及力学性能研究

在国家自然科学基金青年基金项目资助下,结合自然界多级思想,采用3D打印技术,设计并制备出超轻聚合物多层级点阵夹心结构,提高了芯子杆件抗屈曲的能力,使整体力学性能得到增强。与已有文献夹芯结构压缩强度进行比较发现:设计并提出的多级点阵结构具有最佳的轻量化效果。基于力学理论预报模型,绘制了平压、剪切、侧压及三点弯曲载荷下多级点阵结构的3维失效机制图,定量研究了结构几何尺寸变化对结构失效模式的影响。


复合材料褶皱夹芯结构设计及力学性能研究

针对航空航天飞行器蜂窝芯子单胞封闭的问题,在国家自然科学基金面上项目、教育部博士点基金和优秀留学归国人员基金项目资助下,提出了基于曲面折纸的新型褶皱结构,发明了碳纤维复合材料褶皱结构的高性能制备工艺,建立了力学理论预报模型,揭示了复合材料褶皱结构的失效机制。褶皱结构用于航空发动机机匣可以实现吸声降噪;具有开放单胞的褶皱结构用于替换直升机和游艇的芳纶纸蜂窝,有利于水汽的排出;复合材料褶皱结构用于军车可以实现减重以及提高其防爆性能。





轻质自然界多孔材料微观结构表征及其力学性能

头盖骨对于维持生命安全具有极其重要的作用,头盖骨受到外物挤压及撞击造成的损伤是临床医疗中常见的颅骨外伤疾病,从而需要针对破损位置进行仿生替代。目前,针对头盖骨力学机制的研究还很不完善。在德国洪堡基金、哈工大青年拔尖以及军委科技委创新基金等项目资助下,我们从多孔夹芯结构角度出发,建立了头盖骨在压缩、弯曲、冲击、爆炸等载荷下合适的理论及数值模型,准确揭示头盖骨力学机制,为未来的工程应用提供必要可靠的技术储备。



集承载-热控于一体的多功能轻质夹芯结构设计及性能研究

针对可重复使用高马赫飞行器结构轻量化需求,在国家自然科学基金创新群体研究项目、国家自然科学基金重点项目、总装备部预研及航天院所合作项目资助下,开展集承载-热控于一体的多功能轻质夹芯结构的力学性能、热变形、传热性能分析及参数优化。 基于拓扑强化及材料强化相结合,设计并制备出了多种具有高强度、低密度的铝点阵结构,同时揭示了铝点阵夹芯结构的失效机制。在保证轻量化的基础上,使得结构的热变形尽可能小。



碳纤维复合材料蜂窝结构折叠工艺及力学性能研究

传统的蜂窝芯子多为芳纶纸或铝合金,我们创新性提出了基于剪纸思想的折叠技术,采用先进碳纤维复合材料,设计并制备了轻质高强的全碳纤维复合材料蜂窝结构,为复合材料蜂窝芯子提供了多种可设计的构型,揭示了裁剪折叠工艺制备的夹心结构的吸能及失效机制;由裁剪折叠工艺所制备的全碳纤维复合材料蜂窝结构可用于航天结构上的轻质减重、防护结构上抗爆吸能以及航空航天异型复杂结构设计等方面。



轻质复合材料三维负泊松比结构设计及力学性能研究

基于二维负泊松比构型提出了多种三维负泊松比结构,有效的丰富了三维负泊松比材料库。 对三维负泊松比结构进行力学性能表征,为其应用奠定了理论基础;三维负泊松比结构具有优越的防爆、抗爆力学性能,可用于军舰外壳以及军车底盘防爆设计;三维负泊松比结构可用于医疗植入结构物设计,使用寿命较传统材料更长;采用三位负泊松比结构设计的汽车轮胎具有更好的减震效果。

复合材料风机叶片双轴向布结构优化设计及力学性能分析

针对复合材料风机叶片结构中使用的双轴向布模型进行优化,在保证结构达到轻量化目标的同时提高结构在五种加载方式下的结构强度。复合材料双轴向布优化模型用于风力发电机中可以提高风力发电机对风能的利用率,同时,独特的复合材料编织结构在其它叶片结构中也能发挥一定的力学优势。相关设计方案已经提供给科技企业,从而提升复合材料风机叶片的服役效率。




Research Projects (科研项目)

项目名称碳纤维新型皱褶夹芯结构制备及力学行为研究 (Fabrication and Mechanical behaviors of carbon fiber composite novel foldcore structures)

项目来源国家自然科学基金-面上项目 (National Natural Science Foundation of China)

开始时间2016-01-01

结束时间2019-12-01

项目经费680,000

担任角色负责

项目类别纵向项目

项目状态进行中



项目名称超轻三维多级点阵结构设计及力学性能研究 (Fabrication and Mechanical Behaviors of Ultra light Weight 3D Multi-hierarchical Lattice Sandwich Structures)

项目来源国家自然科学基金委 (National Natural Science Foundation of China)

开始时间2014-01-01

结束时间2016-12-01

项目经费230,000

担任角色负责

项目类别纵向项目

项目状态完成



项目名称校企合作、预研项目及科技成果转化项目 (University-Enterprise Cooperation)

项目来源哈工大,科技企业,航天院所及国防课题等

开始时间2014-01-01

结束时间2019-12-31

项目经费4,000,000

担任角色负责

项目类别横向项目

项目状态进行中



项目名称金属点阵结构设计制备及力学性能表征

项目来源国家自然科学基金委重点项目

开始时间2015.01

结束时间2019.12

项目经费3,600,000

担任角色参与

项目类别纵向项目

项目状态进行中



项目名称战场环境*******模拟及防护

项目来源中央军委科技委

开始时间2017.06

结束时间2018.12

项目经费500,000

担任角色负责

项目类别纵向项目

项目状态进行中



项目名称轻质复合材料结构力学

项目来源黑龙江省留学回国人员择优资助

开始时间2017.10

结束时间2018.10

项目经费50,000

担任角色负责

项目类别纵向项目

项目状态进行中



项目名称轻质复合材料结构力学 (人才项目)

项目来源哈尔滨工业大学青年拔尖人才计划

开始时间2016.01

结束时间2018.12

项目经费1,000,000

担任角色负责

项目类别纵向项目

项目状态进行中



Important Links (重要链接)
Research Group

Cellular Materials Laboratoryhttp://www.cellmat.es/index.php/home HRL Laboratories, LLC http://www.hrl.com/hrlDocs/pressreleases/2011/prsRls_111117.html Fraunhofer IFAM Dresdenhttp://www.ifam.fraunhofer.de/en/Dresden/Cellular_metallic_materials/Drahtgitterstrukuturen.html Fraunhofer IFAM Bremen http://www.ifam.fraunhofer.de/en/Bremen/Shaping_Functional_Materials/Powder_Technology/Lightweight_Materials.html RWTH Aachen Uni, Institute ofStructural Mechanics and Lightweight Design http://www.sla.rwth-aachen.de/Alcoa Foundation-LightweightVehicles http://www.iie.org/Programs/Alcoa-Foundation-Advancing-Sustainability-Research/Lightweight-Vehicle-Structures Institute for LightweightStructures and Conceptual Design, Uni Stuttgart www.uni-stuttgart.de/ilek Researchers from U.S.AProf. John W.Hutchinsonhttp://www.seas.harvard.edu/hutchinson/

Prof.Ashkan Vaziri http://www.hpmsl.neu.edu/index.html

Prof.Horacio Dante Espinosahttp://clifton.mech.northwestern.edu/~espinosa/

Prof. Lorna J. Gibsonhttp://web.mit.edu/dmse/csg/

Prof. Haydn N.Wadley http://www.virginia.edu/ms/research/wadley/

Prof.Katia Bertoldihttp://bertoldi.seas.harvard.edu/

Prof. Anthony Evanshttp://engineering.ucsb.edu/faculty/profile/167

Prof. Lorenzo Valdevithttp://valdevit.eng.uci.edu/index.htm

Prof. Francis W. Zok http://engineering.ucsb.edu/faculty/profile/188

Prof. Lorenzo Valdevithttp://valdevit.eng.uci.edu/index.htm

Prof. Marc Zupan http://me.umbc.edu/dr-marc-zupan/

Prof. Howard James Rathbun http://people.llnl.gov/rathbun4

Prof.Julia R.Greer http://www.jrgreer.caltech.edu/home.php

Prof. Roderic Lakes http://homepages.cae.wisc.edu/~lakes/

Prof. K.T.Tanhttp://metacomposites.uakron.edu/

Researchers from Germany

Prof. Dr.-Ing. H.-J. Christ http://www.mb.uni-siegen.de/lmw/mitarbeiter/christ/index.html.en?lang=en

Prof. John Banharthttp://www.helmholtz-berlin.de/media/media/spezial/people/banhart/html/index.html

Dr.-Ing. Sebastian Heimbshttp://www.heimbs-online.de/publications.htm

Prof. Dr. Martin Wegener http://www.aph.kit.edu/wegener/english/index.php

Researchers from Hongkong, China

Prof. Hu Hong

http://www.itc.polyu.edu.hk/en/people/academic_staff_profile.html?id=4028e**012987f1d**

Researchers from U.K

Prof. Norman A. Fleck http://www-mech.eng.cam.ac.uk/profiles/fleck/

Prof. Michael F. Ashbyhttps://www-edc.eng.cam.ac.uk/people/mfa2.html

Prof. Vikram S.Deshpande http://www-mech.eng.cam.ac.uk/profiles/vsd/

Prof. Ken E. Evanshttps://emps.exeter.ac.uk/engineering/staff/keevans/publications

Prof. Fabrizio Scarpahttp://www.bristol.ac.uk/engineering/people/fabrizio-l-scarpa/

Dr. Sohrab Kazemahvazihttp://www.eng.cam.ac.uk/profiles/sk525

Prof. Bob Mines http://www.liv.ac.uk/engineering/staff/robert-mines/

Dr. Guanhua Zhang https://emps.exeter.ac.uk/engineering/staff/gz221

Researchers from Canada

Prof. Glenn D. Hibbardhttp://mse.utoronto.ca/faculty-staff/professors/hibbard/

Researchers from South Korea

Prof. Ki Ju Kang http://65.54.113.26/Author/**/ki-ju-kang

Researchers from Russia

Prof. V.V.Vasiliev http://store.elsevier.com/V.V.-Vasiliev/ELS_**/

Researchers from Australia Prof. Evgeny Morozov https://research.unsw.edu.au/people/professor-evgeny-morozov

Researchers from Sweden

Prof. Dan Zenkert https://www.kth.se/profile/danz/

Prof. M.N.Velea http://www.unitbv.ro/dimec/Membri/Sefidelucrari/MNV.aspx

Researchers from Qatar

Prof. EL-Sadig Mahdi Ahmed Saad http://faculty.qu.edu.qa/elsadigms/saadcv.aspx


Teaching Courses (讲授课程)


[1] The Mechanical Mystery ofMaterials and Structures in the Nature (Underground) [Spring/Fall]
《自然界材料与结构的力学奥秘》大一本科生-新生研讨课[每年春季/秋季]
[2] Characterization and Evaluation of Composite Materials (Ph.D students) [Spring]
《复合材料性能表征与评价》 博士研究生[每年春季]

[3]Composites and Human life (Underground students)[Fall]

《复合材料与人类生活》大二大三本科生-文化素质课[每年秋季]

[4] Special lecture of CompositeMaterials and Structures (Ph.D and Master students) [Spring/Fall]
《复合材料与结构进展》专题课博士研究生[每年春季/秋季]
[5] Special lecture of SolidMechanics (Ph.D and Master students) [Spring/Fall]
《固体力学》专题课 博士研究生[每年春季/秋季]

Teaching Research (教学研究)
14级本科工程力学班 班主任 “拔尖优秀人才培养体系”教学研究




Dr.Xiong plans to attend ICTAM 24, August 21-26, 2016 at Montreal,Canada

新闻标题2018年全国固体力学学术会议-参与策划与筹备

发表时间2018-06-20

会议网址:http://www.solidmechanics2018.com

主办单位:中国力学学会固体力学专业委员会

承办单位:哈尔滨工业大学哈尔滨工程大学 中国地震局工程力学研究所哈尔滨理工大学特种环境复合材料技术国家级重点实验室

支持单位:国家自然科学基金委数理学部

黑龙江省力学学会



新闻标题25th International Congress of Theoretical and Applied Mechanics, 21-26 August 2016 at Montreal, Canada

发表时间2015-07-27

http://www.ictam2016.org/welcome_e.shtml


新闻标题17th International Conference on Experimental Mechanics, Rhodes, Greece, July 3-7, 2016

发表时间2015-07-27

http://www.icem17.org/


新闻标题http://www.eccm17.org/ECCM 17

发表时间2015-07-27

http://www.eccm17.org/


新闻标题ICCM 20July 19-24, 2015 Copenhagen, Denmark-English Oral Speaking

发表时间2015-07-27

Prof. Xiong attended and presented at International Conference on Composite Materials (ICCM-20) at Copenhagen,Denmark.

Topic Title: Fabrication and axial compressive behavior of composite sandwich cylinderical shells with pyramidal lattice truss. English Oral speaking


Dr.Xiong plans to attend 17th International Confernece on Experimental Mechanics, Rhodes, Greece, July 3-7, 2016

新闻标题2018年全国固体力学学术会议-参与策划与筹备

发表时间2018-06-20

会议网址:http://www.solidmechanics2018.com

主办单位:中国力学学会固体力学专业委员会

承办单位:哈尔滨工业大学哈尔滨工程大学 中国地震局工程力学研究所哈尔滨理工大学特种环境复合材料技术国家级重点实验室

支持单位:国家自然科学基金委数理学部

黑龙江省力学学会



新闻标题25th International Congress of Theoretical and Applied Mechanics, 21-26 August 2016 at Montreal, Canada

发表时间2015-07-27

http://www.ictam2016.org/welcome_e.shtml


新闻标题17th International Conference on Experimental Mechanics, Rhodes, Greece, July 3-7, 2016

发表时间2015-07-27

http://www.icem17.org/


新闻标题http://www.eccm17.org/ECCM 17

发表时间2015-07-27

http://www.eccm17.org/


新闻标题ICCM 20July 19-24, 2015 Copenhagen, Denmark-English Oral Speaking

发表时间2015-07-27

Prof. Xiong attended and presented at International Conference on Composite Materials (ICCM-20) at Copenhagen,Denmark.

Topic Title: Fabrication and axial compressive behavior of composite sandwich cylinderical shells with pyramidal lattice truss. English Oral speaking


Dr. Xiong plans to attend ECCM 17, 26-30 June, 2016. Munich, Germany

新闻标题2018年全国固体力学学术会议-参与策划与筹备

发表时间2018-06-20

会议网址:http://www.solidmechanics2018.com

主办单位:中国力学学会固体力学专业委员会

承办单位:哈尔滨工业大学哈尔滨工程大学 中国地震局工程力学研究所哈尔滨理工大学特种环境复合材料技术国家级重点实验室

支持单位:国家自然科学基金委数理学部

黑龙江省力学学会



新闻标题25th International Congress of Theoretical and Applied Mechanics, 21-26 August 2016 at Montreal, Canada

发表时间2015-07-27

http://www.ictam2016.org/welcome_e.shtml


新闻标题17th International Conference on Experimental Mechanics, Rhodes, Greece, July 3-7, 2016

发表时间2015-07-27

http://www.icem17.org/


新闻标题http://www.eccm17.org/ECCM 17

发表时间2015-07-27

http://www.eccm17.org/


新闻标题ICCM 20July 19-24, 2015 Copenhagen, Denmark-English Oral Speaking

发表时间2015-07-27

Prof. Xiong attended and presented at International Conference on Composite Materials (ICCM-20) at Copenhagen,Denmark.

Topic Title: Fabrication and axial compressive behavior of composite sandwich cylinderical shells with pyramidal lattice truss. English Oral speaking


ICCM 20, Dr. Xiong attended and presented at International Conference on Composite Materials (ICCM-20) at Copenhagen, Denmark.

新闻标题2018年全国固体力学学术会议-参与策划与筹备

发表时间2018-06-20

会议网址:http://www.solidmechanics2018.com

主办单位:中国力学学会固体力学专业委员会

承办单位:哈尔滨工业大学哈尔滨工程大学 中国地震局工程力学研究所哈尔滨理工大学特种环境复合材料技术国家级重点实验室

支持单位:国家自然科学基金委数理学部

黑龙江省力学学会



新闻标题25th International Congress of Theoretical and Applied Mechanics, 21-26 August 2016 at Montreal, Canada

发表时间2015-07-27

http://www.ictam2016.org/welcome_e.shtml


新闻标题17th International Conference on Experimental Mechanics, Rhodes, Greece, July 3-7, 2016

发表时间2015-07-27

http://www.icem17.org/


新闻标题http://www.eccm17.org/ECCM 17

发表时间2015-07-27

http://www.eccm17.org/


新闻标题ICCM 20July 19-24, 2015 Copenhagen, Denmark-English Oral Speaking

发表时间2015-07-27

Prof. Xiong attended and presented at International Conference on Composite Materials (ICCM-20) at Copenhagen,Denmark.

Topic Title: Fabrication and axial compressive behavior of composite sandwich cylinderical shells with pyramidal lattice truss. English Oral speaking

相关话题/结构 哈尔滨工业大学 力学 工程力学 航天