同济大学
导师风采
贺鹏飞
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  • 教授
  • 导师类别:硕士,博士生导师
  • 性别: 男
  • 学历:博士研究生
  • 学位:博士

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  • 所属院系:航空航天与力学学院
  • 所属专业:
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  • 工作电话 : -

简介

Personal Profile

男,1962年出生于陕西省佳县刘国具乡贺家仓村,1983年、1986年和1992年分别获得西安交通大学学士、硕士和博士学位。曾在上海交通大学金属基复合材料国家重点实验室、英国剑桥大学材料科学与冶金系从事博士后研究工作。曾在香港大学、日本电气通信大学、德国马普金属研究所从事合作研究。目前是同济大学航空航天与力学学院教授,博士生导师,上海同济技术转移服务有限公司董事长。是国家十二五“军民两用材料”863重大计划专家组成员和项目负责人,国防973计划课题负责人,国家重点研发计划首席科学家。是国家中长期规划编制专家组成员,同济大学-上海商用发动机有限公司联合创新中心首席科学家,国务院政府特殊津贴获得者。也是国际应用力学学会(IAAM)、中国航空学会、中国铁道学会、中国燃气轮机产业创新联盟理事,上海市新材料协会副理事长,IJAM、MMMS等7个国内外期刊编委。主要从事材料与结构的疲劳、损伤、寿命与可靠性的教学和研究工作。


科研项目

1、  科技部863重大项目,“XXX材料与器件”,2012年1月-2014年12月,2012AA03A706。1012万

2、  GF973项目子课题,“XXX液压系统流固耦合动力学基础”,2014年1月-2017年12月。480万

3、  国家重点研发计划“全海深载人潜水器结构设计、建造、验证、监测与评估技术研究”子课题。“耐压结构应力腐蚀研究”,2016年12月-2020年12月。113万

4、  中航商用航空发动机有限公司委托项目,“复合材料钛合金混合结构风扇叶片试制”,2016年12月-2018年12月。280万

5、  两机专项协作项目(西北工业大学委托),“镍基单晶气模孔结构疲劳性能研究”,2018年8月-2021年7月, 100万

6、  国家重点研发计划项目,“70Mpa加氢站用加压加注关键设备开发”,2020年1月-2022年12月,2350万


研究成果

发表学术论文一百余篇,近年发表的主要学术论文

1、        Xuli Ding*, HongdaZhao, Daowei Liang, Pengfei He* Enhanced electrochemical performance ofsilicon monoxide anode materials prompted by germanium  Materials Chemistry and Physics  267, 2021,124611

2、        Chengjiang Zhang, PingWang, Zhixun Wen*, Zhuangzhuang Xu, Pengfei He*, Zhufeng Yue, Study on creepproperties of nickel-based superalloy blades based on microstructurecharacteristics  Journal of Alloys andCompounds  890,2021,161710

3、        W. Y. Yun, Z. Z. Lu*, X. Jiang, P. F. He*, AK-ARBIS: An improved AK-MCSbased on the adaptive radial-based importance sampling for small failure probability,Structural Safety, 2020, 82: 101891, Q1

4、        Kang, Huairong; He,Pengfei; Zhang, Cunman; Dai, Ying; Shan, Zhongde; Zang, Yong; Lv, Hong,Tensileprogressive damage and compressive postbuckling analysis of open-hole laminatecomposites. Journal of ReinforcedPlastics and Composites, 2020,39(17-18): 637-653. DOI: 10.1177/0731684420920355

5、        W. Y. Yun, Z. Z. Lu, P. F. He*, Y. Dai, K. X. Feng, Adaptivesubdomain sampling and its adaptive Kriging–based method for reliability andreliability sensitivity analyses, Structural and Multidisciplinary Optimization,2020, 61: 1107–1121, Q1

6、        C. Feng, Y. Li, K. Song, P. F. He*, Structural characteristics,diffusion mechanism and mechanical behaviour of cathode catalyst layer,Computational Materials Science, 2020, 177: 109572,Q2

7、        C. J. Zhang, W. B. Hu, Z. X. Wen, W*. W Tong, Y. M. Zhang, Z. F. Yue, P. F. He*, Creep residuallife prediction of a nickel-based single crystal superalloy based on microstructureevolution, Materials Science & Engineering A, 2019, 756: 108-118, Q1

8、        H. W Yang, Y. Dai*, P. F. He*, Ratcheting simulation of a steelpipe with assembly parts under internal pressure and a cyclic bending load, Applied Sciences-Basel, 2019, 9: 5025, Q2

9、        H. R. Kang, P. F. He*, Y. Dai, C. M. Zhang, The effect ofstructural and process parameters on the effective properties of polymercomposites reinforced by fiber-rod and three-dimensional weaving, Fibers andPolymers, 2019, 20(12): 2625-2636, Q1

10、     F. Zhu, X.Ji, P. F. He*, B. L. Zheng, K.Zhang, On stress singularity at crack tip in elasticity, Results in Physics, 2019, 13: 102210, Q1

11、     X. Deng, J.Liu, L. Zhu, B. W. Zhang, P. F. He, X. B. Cheng*, T. B. Li, Realization oforthogonality in two-step laser focused Cr atomic deposition, Optik, 2019, 185:423-428, Q3

12、     C. Feng, Y. Li,K. N. Qu, Z. M. Zhang, P. F. He*, Mechanicalbehavior of a hydrated perfluorosulfonic acid membrane at meso and nano scales,RSC Advances, 2019, 9: 9594-9603, Q2

13、     W. Y. Yun, Z.Z. Lu , P. F. He*, Y. Dai, X. Jiang,An efficient method for estimating the parameter global reliability sensitivityanalysis by innovative single-loop process and embedded Kriging model,Mechanical Systems and Signal Processing, 2019, 133: 106288, , Q1

14、     X. C. Ma, X.Q. Zhang*, G. M. Sessler*, L. Chen, X. Y. Yang, Y. Dai, P. F. He, Energy harvesters based on fluorinated ethylene propyleneunipolar ferroelectrets with negative charges, AIP Advances, 2019, 9(12):125334, Q3

15、     Y. Li, C. Feng*, K. N. Qu, P. F. He, Effects of water and hydrogen content on theinteraction mechanism between particles and the mechanical properties of aNafion-based catalyst layer, Materials Research Express, 2019, 6: 08556-13, Q3

16、     P. F. He, Y.Shen, Y.  Gu, P. Y. Shen, 3D fracturemodelling and limit state analysis of prestressed composite concrete pipes, Frontiersof Structural and Civil Engineering, 2019, 13: 165-175, Q3

17、     Y. Shen, P.F. He, X. Y. Zhuang*, Fracture model for theprediction of the electrical percolation threshold in CNTs/polymer composites, Frontiersof Structure and Civil Engineering, 2018, 12: 125-136, Q3

18、     G. Song, R. Zeng, M. Al-Amri, J. P. Xu*, C. J.Zhu, P. F. He, Y. P. Yang, Repulsive Casimir force between hyperbolicmetamaterials, Optics Express, 2018, 26: 34461-34473, Q1

19、     X. Deng, J. Liu, L. Zhu, P. F. He, X. B.Cheng*, T. B. Li, Natural square ruler at nanoscale, Applied Physics Express,2018, 11: 075201, Q2

20、     C. Li, Y. Yuan*, P. F. He, J. Y. Yuan,H. T Yu, Improved equivalent mass-spring model for seismic response analysis oftwo-dimensional soil strata, Soil Dynamics and Earthquake Engineering, 2018,112: 198-202, Q2

21、     C. Feng, P. F. He*, Moisture and thermalexpansion properties and mechanism of interaction between ions of aNafion-based membrane electrode assembly, RSC Advances, 2017, 7: 34556-34566, Q2

22、     Pegios, I P; Papargyri Beskou, S*; Zhou,Y; He, P  Steady-statedynamic response of a gradient elastic half-plane to a load moving on itssurface with constant speed  Archive of Applied Mechanics, 2019, 89(9): 1809-1824.DOI: 10.1007/s00419-019-01546-9

23、     X. Ji, F. Zhu, P. F. He,Determination of stressintensity factor with direct stress approach using finite element analysis, Acta Mechanica Sinica, 2017, 33:879-885, Q3

24、     L. H. Zu, Q. M. Su,F. Zhu, B. J. Chen, H. H.Lu, C. X. Peng, T. He, G. H. Du, P. F. He, K. Chen, S. H. Yang, J. H. Yang, H.S. Peng, Antipulverization electrode based on low-Carbon triple-shelledsuperstructures for Lithium-ion batteries, Advanced Materials, 2017, 29:1701494, Q1

25、     G. Song, J. P. Xu*, C. J. Zhu, P. F. He, Y. P. Yang, S. Y. Zhu, Casimir force between hyperbolic metamaterials,Physical Review A, 2017, 95: 023814, Q2

26、     X. L. Ding, H. F. Wang, X. X. Liu, Z. H. Gao, Y.Y. Huang, D. H. Lv, P. F. He, Y. H. Huang*, Advanced anodes composed ofgraphene encapsulated nano-silicon in a carbon nanotube network, RSC Advances, 2017, 7: 15694-15701, Q2

27、     C. Zhang, C. X. Wang, T. Lahmer, P. F. He, T. A. Rabczuk, A dynamic XFEMformulation for crack identification, International Journal of Mechanics andMaterials in Design, 2016, 12: 427-448, Q1

28、     M. A. Msekh, M. Silani, M. Jamshidian, P.Areias, X. Y. Zhuang, G. Zi, P. F. He, T. Rabczuk*, Predictions of Jintegral and tensile strength of clay/epoxy nanocomposites material using phasefield model,  Composites Part B-Engineering,2016, 93: 97-114, Q1

29、     K. M. Hamdia, X. Y. Zhuang, P. F. He, T.Rabczuk*, Fracture toughness of polymeric particle nanocomposites: Evaluationof models performance using Bayesian method, Composites Science and Technology,2016, 126: 122-129, Q1

30、     B. Yang, B. L. Zheng*, X. J. Hu, K. Zhang, Y. Li,P. F. He, Z. F. Yue, Atomistic simulation of nanoindentation on incipient plasticity anddislocation evolution in gamma/gamma’ phase with interface and void,Computational MaterialsScience, 2016, 114: 172-177, Q2

31、     B. Yang, B. L. Zheng*, X. J. Hu, K. Zhang, Y.Li, P. F. He, Z. F. Yue, Effect of void on nanoindentation process of Ni-based single crystal alloy,Acta Metallurgica Sinica, 2016, 52: 129-134, Q4

32、     Z. X. Hui, P. F. He*, Y. Dai, A. H. Wu,Coarse-grain model of silicon functionalized graphene as anode material forlithium ion batteries, Acta Physica Sinica, 2015, 64: 143101, Q4

33、     C. Feng, P. F. He, Atomistic investigation on the diffusion mechanism of Ptnanoclusters on well-aligned multi-walled carbon nanotubes,Computational Materials Science, 2015, 103: 157-164, Q2

34、     X. J. Hu, B. L. Zheng*, B. Yang, J. G. Yu, P.F. He, Z. F. Yue, Influence ofinitial indentation point on nanoindentation of Ni-based single crystal linealloys, Acta Physica Sinica, 2015,64: 076201, Q4

35、     T. Y. Hu, B. L. Zheng*, M. Y. Hu, P. F. He,Z. F. Yue, Molecular dynamics simulation of incipient plasticity of nickel substratesof different surface orientations during nanoindentation, Materials Science andTechnology, 2015, 31: 325-331, Q2

6/8

专利:

1、        一种用于锂离子电池的硅负极活性材料的设计构筑及其制备方法,国家发明专利,授权号:201610908385.0, 2019年授权

2、        一种可组合的静电式动能采集器及其制备方法,申请号 202010313196.5

3、        一种测量同轴压电电 缆静水压压电系数的 系统及其制备方法,202011138324.3

 

奖励

2022年或中国航空学会科技进步二等奖


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