跳到主要内容

CY PeriTech

论文与著作

论文与著作

本页收录参考资料中的 59 条成果,覆盖多尺度建模、近场动力学、局部与非局部耦合、PeriFEM、材料破坏、多物理场、微结构和高性能计算。带“代表成果”标识的条目与当前网站技术体系关联度较高。书目信息后续将继续补充 DOI、出版社或期刊官方链接。

成果列表

  1. F. Han, J. Cui, Y. Yu, The statistical two-order and two-scale method for predicting the mechanics parameters of core-shell particle-filled polymer composites, Interaction and Multiscale Mechanics 1(2) (2008) 231-250.
  2. F. Han, J. Cui, Y. Yu, The statistical second-order two-scale method for mechanical properties of statistically inhomogeneous materials, International Journal for Numerical Methods in Engineering 84(8) (2010) 972-988.
  3. 代表成果 F. Han, G. Lubineau, Coupling of nonlocal and local continuum models by the Arlequin approach, International Journal for Numerical Methods in Engineering 89(6) (2012) 671-685.
  4. G. Lubineau, Y. Azdoud, F. Han, C. Rey, A. Askari, A morphing strategy to couple non-local to local continuum mechanics, Journal of the Mechanics and Physics of Solids 60(6) (2012) 1088-1102.
  5. Y. Azdoud, F. Han, G. Lubineau, A Morphing framework to couple non-local and local anisotropic continua, International Journal of Solids and Structures 50(9) (2013) 1332-1341.
  6. Y. Azdoud, F. Han, G. Lubineau, The morphing method as a flexible tool for adaptive local/non-local simulation of static fracture, Computational Mechanics 54(3) (2014) 711-722.
  7. F. Han, Y. Azdoud, G. Lubineau, Computational modeling of elastic properties of carbon nanotube/polymer composites with interphase regions. Part I: Micro-structural characterization and geometric modeling, Computational Materials Science 81 (2014) 641-651.
  8. F. Han, Y. Azdoud, G. Lubineau, Computational modeling of elastic properties of carbon nanotube/polymer composites with interphase regions. Part II: Mechanical modeling, Computational Materials Science 81 (2014) 652-661.
  9. Y. Azdoud, F. Han, G. Lubineau, D.J. Littlewood, P. Seleson, Chapter 14 Coupling Local and Nonlocal Models, in: Handbook of Peridynamic Modeling, Taylor & Francis/CRC Press (2016) 405-436.
  10. 代表成果 F. Han, G. Lubineau, Y. Azdoud, Adaptive coupling between damage mechanics and peridynamics: A route for objective simulation of material degradation up to complete failure, Journal of the Mechanics and Physics of Solids 94 (2016) 453-472.
  11. 代表成果 F. Han, G. Lubineau, Y. Azdoud, A. Askari, A morphing approach to couple state-based peridynamics with classical continuum mechanics, Computer Methods in Applied Mechanics and Engineering 301 (2016) 336-358.
  12. F. Han, T. Maloth, G. Lubineau, R. Yaldiz, A. Tevtia, Computational Investigation of the Morphology, Efficiency, and Properties of Silver Nano Wires Networks in Transparent Conductive Film, Scientific Reports 8(1) (2018) 17494.
  13. A. Mora, F. Han, G. Lubineau, Computational modeling of electrically conductive networks formed by graphene nanoplatelet–carbon nanotube hybrid particles, Modelling and Simulation in Materials Science and Engineering 26(3) (2018) 035010.
  14. A. Mora, F. Han, G. Lubineau, Estimating and understanding the efficiency of nanoparticles in enhancing the conductivity of carbon nanotube/polymer composites, Results in Physics 10 (2018) 81-90.
  15. Y.W. Wang, F. Han, G. Lubineau, A Hybrid Local/Nonlocal Continuum Mechanics Modeling and Simulation of Fracture in Brittle Materials, CMES - Computer Modeling in Engineering & Sciences 121(2) (2019) 399-423.
  16. J.M. Zhan, X.H. Yao, F. Han, An approach of peridynamic modeling associated with molecular dynamics for fracture simulation of particle reinforced metal matrix composites, Composite Structures 250 (2020) 112613.
  17. F. Han, S. Liu, G. Lubineau, A dynamic hybrid local/nonlocal continuum model for wave propagation, Computational Mechanics 67(1) (2021) 385-407.
  18. Z. Li, Y. Shen, F. Han, Z. Yang, A phase field method for plane-stress fracture problems with tension-compression asymmetry, Engineering Fracture Mechanics 257 (2021) 107995.
  19. S. Shen, Z. Yang, F. Han, J. Cui, J. Zhang, Peridynamic modeling with energy-based surface correction for fracture simulation of random porous materials, Theoretical and Applied Fracture Mechanics 114 (2021) 102987.
  20. Y. Wang, F. Han, G. Lubineau, Strength-induced peridynamic modeling and simulation of fractures in brittle materials, Computer Methods in Applied Mechanics and Engineering 374 (2021) 113558.
  21. J. Zhan, X. Yao, F. Han, X. Zhang, A rate-dependent peridynamic model for predicting the dynamic response of particle reinforced metal matrix composites, Composite Structures 263 (2021) 113673.
  22. 代表成果 F. Han, Z. Li, A Peridynamics-Based Finite Element Method (PeriFEM) for Quasi-Static Fracture Analysis, Acta Mechanica Solida Sinica 35 (2022) 446-460.
  23. Y. Liu, F. Han, L. Zhang, An extended fictitious node method for surface effect correction of bond-based peridynamics, Engineering Analysis with Boundary Elements 143 (2022) 78-94.
  24. Z. Liu, S. Liu, F. Han, L. Chu, The Morphing method to couple local and non-local thermomechanics, Computational Mechanics 70 (2022) 367-384.
  25. R. Song, F. Han, Y. Mei, Y. Sun, A. Zhang, A Hybrid Local/Nonlocal Continuum Mechanics Modeling of Damage and Fracture in Concrete Structure at High Temperatures, Computer Modeling in Engineering & Sciences 133(2) (2022) 389-412.
  26. B. Sun, F. Han, C. Feng, Y. Mei, Y. Sun, J. Shen, A. Zhang, Modeling of projectile penetrating fiber-reinforced concrete via the continuum discontinuum element method, Engineering Fracture Mechanics 276 (2022) 108887.
  27. Z. Yang, S. Zheng, F. Han, S. Shen, X. Guan, An Improved Peridynamic Model with Energy-Based Micromodulus Correction Method for Fracture in Particle Reinforced Composites, Communications in Computational Physics 32(2) (2022) 424-449.
  28. G. Zheng, L. Li, F. Han, Y. Xia, G. Shen, P. Hu, Coupled peridynamic model for geometrically nonlinear deformation and fracture analysis of slender beam structures, International Journal for Numerical Methods in Engineering (2022).
  29. 张建宇, 韩非, 江柏红, 林晔, 基于显微CT图像的近场动力学建模与复合材料微结构破坏模拟, 固体力学学报 43(02) (2022) 143-157.
  30. 代表成果 F. Han, Z. Li, J. Zhang, Z. Liu, C. Yao, W. Han, ABAQUS and ANSYS Implementations of the Peridynamics-Based Finite Element Method (PeriFEM) for Brittle Fractures, CMES - Computer Modeling in Engineering and Sciences 136(3) (2023) 2715-2740.
  31. Z. Li, F. Han, The peridynamics-based finite element method (PeriFEM) with adaptive continuous/discrete element implementation for fracture simulation, Engineering Analysis with Boundary Elements 146 (2023) 56-65.
  32. S. Liu, F. Han, X. Deng, Y. Lin, Thermomechanical Peridynamic Modeling for Ductile Fracture, Materials 16(11) (2023) 4074.
  33. X. Ou, X. Yao, F. Han, An adaptive coupling modeling between peridynamics and classical continuum mechanics for dynamic crack propagation and crack branching, Engineering Fracture Mechanics 281 (2023) 109096.
  34. Z. Yang, S. Zheng, F. Han, S. Shen, X. Guan, An efficient peridynamics-based statistical multiscale method for fracture in composite structures, International Journal of Mechanical Sciences 259 (2023) 108611.
  35. Z. Yang, S. Zheng, F. Han, X. Guan, J. Zhang, An adaptive coupling approach of local and non-local micromechanics, Journal of Computational Physics 489 (2023) 112277.
  36. Y. Yu, F. Han, Z. Li, Y. Sun, Y. Mei, A. Zhang, Element-based coupling modeling of peridynamics and classical continuum mechanics for dynamic brittle fracture, International Journal for Numerical Methods in Engineering 124 (2023) 5574-5595.
  37. J. Zhang, F. Han, Z. Yang, J. Cui, Coupling of an atomistic model and bond-based peridynamic model using an extended Arlequin framework, Computer Methods in Applied Mechanics and Engineering 403 (2023) 115663.
  38. 代表成果 J. Zhong, F. Han, L. Zhang, Accelerated Peridynamic Computation on GPU for Quasi-static Fracture Simulations, Journal of Peridynamics and Nonlocal Modeling 6 (2023) 206-229.
  39. Z. Li, F. Han, Adaptive coupling of non-ordinary state-based peridynamics and classical continuum mechanics for fracture analysis, Computer Methods in Applied Mechanics and Engineering 420 (2024) 116691.
  40. 代表成果 Z. Wang, L. Zhang, J. Zhong, Y. Peng, Y. Ma, F. Han, Image-Based Peridynamic Modeling-Based Micro-CT for Failure Simulation of Composites, Materials 17(20) (2024) 4987.
  41. J. Zhong, F. Han, L. Zhang, X. Guo, Multi-time-step coupling of peridynamics and classical continuum mechanics for dynamic brittle fracture, Engineering Fracture Mechanics 307 (2024) 110264.
  42. 任天宇, 韩非, 张玲, 孙云厚, 梅勇, 张鏖, 结构损伤与断裂力学分析CAE软件发展现状, 计算力学学报 (2024) 1-16.
  43. W. Han, F. Han, Z. Li, ANSYS implementation of coupling peridynamic and classical continuum mechanics model for fracture analysis, Engineering Fracture Mechanics 326 (2025) 111402.
  44. W. Han, S. Liu, L. Zhang, Z. Ma, F. Han, PERISOFT – a software with interactive graphical user interface based on peridynamics for fracture analysis, Engineering Computations (2025) 1-23.
    说明:PERISOFT 仅作为历史论文原始题名保留,现有产品体系已由 PeriEng 完全取代。
  45. J. Li, S. Liu, F. Han, Y. Mei, Y. Sun, F. Zhou, Adaptive Coupling of Peridynamic and Classical Continuum Mechanical Models Driven by Broken Bond/Strength Criteria for Structural Dynamic Failure, International Journal for Numerical Methods in Engineering 126(7) (2025) e70021.
  46. Z. Li, F. Han, F. Li, Q. Liang, Y. Sun, Y. Mei, Coupled local elasticity and non-local damage modeling for rate-dependent failure of quasi-brittle materials, Engineering Fracture Mechanics (2025) 111053.
  47. B. Sun, S. Liu, W. Han, F. Han, L. Zhang, Y. Sun, Y. Mei, Peridynamics-based reformulation of HJC constitutive model for concrete failure analysis under impact, International Journal of Impact Engineering 201 (2025) 105269.
  48. H. Yu, F. Han, Z. Li, A hybrid model coupling non-ordinary state-based peridynamics and classical continuum mechanics for simulating crack propagation, Engineering Analysis with Boundary Elements 179 (2025) 106398.
  49. 代表成果 韩非, 李志斌, 《近场动力学与有限元方法》, 科学出版社, 2025.
  50. 李志斌, 断裂问题的耦合非常规态型近场动力学研究:模型、算法及应用, 大连理工大学力学与航空航天学院, 2025.
  51. Y. Chen, F. Han, W. Xie, A time-dependent bond failure criterion for dynamic fracture in peridynamics, Engineering Analysis with Boundary Elements 187 (2026) 106736.
  52. S. Liu, H. Qian, F. Han, A Morphing approach to a couple of peridynamic and classical continuum diffusion models for transient heat conduction, Engineering Analysis with Boundary Elements 184 (2026) 106655.
  53. H. Luo, F. Han, G. Tang, L. Zhang, Y. Ma, Deep learning-enhanced rapid μ-CT characterization of additively manufactured components with a long-/short-exposure scanning strategy, Materials Characterization 232 (2026) 115960.
  54. W. Qian, X. Deng, F. Han, An investigation on damage and fracture mechanisms of PBX under extrusion load using ordinary state-based peridynamics, International Journal of Solids and Structures (2026) 114209.
  55. T. Ren, X. Deng, F. Han, Q. Wang, Multiphysics non-ordinary state-based peridynamics for modeling non-shock ignition of PBX, International Journal of Impact Engineering 212 (2026) 105634.
  56. S. Tao, F. Han, A New Definition of Peridynamic Damage for Thermo-Mechanical Fracture in Brittle Materials, Materials (2026) 234.
  57. C. Yao, F. Han, L. Zhang, X. Deng, Numerical investigation of double shock-induced microjetting from a grooved Sn sample via Eulerian peridynamics, Continuum Mechanics and Thermodynamics 38(5) (2026) 73.
  58. J. Zhong, F. Han, A rate-dependent peridynamic model for ductile material via multi-time-step integral, Engineering with Computers 42(1) (2026) 20.
  59. J. Zhong, F. Han, A deep learning-accelerated nonlocal reduced-order model for brittle fracture simulation, Computers & Structures 330 (2026) 108327.

资料说明:本页依据项目负责人提供的成果清单整理。后续将持续补充 DOI、ISBN 及期刊或出版社官方链接。

技术咨询 技术咨询