近期论文 |
(1) Y. Tao, W. Xu, P. Yu*, A. Shen, Y. Zhao, X. Zhang, M. Li, J. Zhao*. Programmable direct-patterning assembly enables high-density and surface-conformal integration of fiber Bragg grating sensor arrays. Nature Commun., 2026, 17: 5998. (2) M. Li, P. Yu*, Z. Guo, Y. Liu, J. Zhao*. High-resolution and programmable line-morphologies of material-extrusion 3D printed self-leveling inks. Addit. Manuf., 2023, 71:103582. (3)A. Hua, J. Zhao*. A unified disconnection model of stress-driven grain boundary migration in nanocrystalline metals. J. Mech. Phys. Solids, 2024, 183:105515. (4)A. Hua, J. Zhao*, J. Zhang, P. Yu, N. Wei, W. Guo. Revealing the size effect mechanism of reversible grain boundary migration in nanocrystalline coppers: Molecular dynamics simulations and a refined disconnection model. J. Mech. Phys. Solids, 2022, 161: 104832. (5) A. Hua, J. Zhao*. Shear direction induced transition mechanism from grain boundary migration to sliding in a cylindrical copper bicrystal. Int. J. Plasticity, 2022, 156, 103370. (6)J. Ji, J. Wang, C. Zhu, X. Zhang*, Q. Li, J. Zhao*, W. Guo*. Revealing Density Thresholds of Carbon Nanotube Cross-Links for Load Transfer: A Graph Theory Strategy. ACS Nano, 2022, 16: 6929-6936. (7) J. Ji, J. Zhao*, W. Guo. Novel nonlinear coarse-grained potentials of carbon nanotubes. J. Mech. Phys. Solids, 2019, 128: 79-104. (8) J. Zhao*, J.W. Jiang, L. Wang, W. Guo*, T. Rabczuk*. Coarse-grained potentials of single-walled carbon nanotubes. J. Mech. Phys. Solids, 2014, 71: 197-218. (9) Y. Chen, Y. Zhang, K. Cai, J. Jiang, J.C. Zheng, J. Zhao*, N. Wei*, Interfacial thermal conductance in graphene/black phosphorus heterogeneous structures. Carbon, 2017, 117, 399-410. (10)W. Zhao, Z. Zhao, Y. Xue, M. Zhu, W. Wan, H. He, Z. Li*, J. Zhao*, N. Wei*. Intelligent optimization of bio-inspired airfoil fins based on NACA series profiles for enhanced thermal-hydraulic performance in tube-fin heat exchangers. Int. J. Heat Mass Transf., 2026. 259:128412. (11)S. Li, Y. Chen, Z. Li, J. Zhao*, N. Wei*. Role of hydrogen bonds in thermal conductance at the graphene oxide-H2O interface. Int. J. Heat Mass Transf., 2022. 183:122125. (12)S. Li, C. Lu, C. Zhang, Z. Li, J. Zhao, J. Chen*, N. Wei*. Modeling and investigation of fluid flow affecting thermal boundary conductance at the solid-fluid interface. Int. J. Heat Mass Transf., 2023, 213: 124333. |