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[1]Yan, D. S., Yun, Z.*, Li, J. J.*, Twin boundary spacing and loading direction dependent tensile deformation of nano-twinned Al10(CrCoFeNi)90 high-entropy alloy: An atomic study.International Journal of Mechanical Sciences, 2023, 246: 118717.
[2]Twin boundary spacing and loading direction dependent tensile deformation of nano-twinned Al10(CrCoFeNi)90 high-entropy alloy: An atomic study.International Journal of Mechanical Sciences, 2023, 242: 108026.
[3]Synergetic deformation mechanism in hierarchical twinned high-entropy alloys.Journal of Materials Science & Technology, 2022, 102: 80-88.
[4]Shear instability in heterogeneous nanolayered Cu/Zr composites.Journal of Materials Science & Technology, 2022, 105: 81-91.
[5]Computational modelling of frictional deformation of bimodal nanograined metals.International Journal of Mechanical Sciences, 2022, 222: 107220.
[6]Enhanced resistance to shear instability by gradient nanolayered structures in sputtered Cu/Zr composites.Materials Science and Engineering: A, 2022, 846: 143253.
[7]Strengthening Cu/Ni nanolayered composites by introducing thin Ag interlayers: A molecular dynamics simulation study.Journal of Applied Physics, 2021, 130: 045109.
[8]A micromechanical model for heterogeneous nanograined metals with shape effect of inclusions and geometrically necessary dislocation pileups at the domain boundary.International Journal of Plasticity, 2021, 144: 10302.
[9]Twin boundary-assisted precipitation of sigma phase in a high-entropy alloy.Materials Letters, 2021, 300: 130198.
[10]A hierarchical scheme from nano to macro scale for the strength and ductility of graphene/metal nanocomposites.International Journal of Engineering Science, 2021, 162: 10347.
[11]Enhanced frictional performance in gradient nanostructures by strain delocalization.International Journal of Mechanical Science, 2021, 201: 10645.
[12]Dispersive behavior of high frequency Rayleigh waves propagating on an elastic half space.Acta Mechanica Sinica, 2021, 37: 562-569.
[13]Modelling the shear banding in gradient nano-grained metals.Nanomaterials, 2021, 11: 2468.
[14]Interfacial nanophases stabilize nanotwins in high-entropy alloys.Acta Materialia, 2020, 185: 218-232.
[15]Stabilizing Al–Mg–Si–Cu alloy by precipitation nano-phase control.Materials Science and Engineering: A, 2020, 769: 138513.
[16]Natural-ageing-enhanced precipitation near grain boundaries in high-strength aluminum alloy.Journal of Materials Science & Technology, 2020, 46: 107-113.
[17]Directional sliding behavior of a water droplet on a wedge-shape patterned functional surface.The Journal of Physical Chemistry B, 2020, 124: 6905-6912.
[18]A new elastic theory of nanocomposites with incoherent interface effect based on interface energy density.Journal of Applied Mechanics, 2020, 87: 021008.
[19]Revealing extra strengthening and strain hardening in heterogeneous two-phase nanostructures.International Journal of Plasticity, 2020, 126: 102626.
[20]Influencing factors of droplet aggregation on hierarchical wedge-shaped functional surfaces.Computational Materials Science, 2020, 175: 10961.
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