Zobrazeno 1 - 10
of 13
pro vyhledávání: '"Hyoung Jun Lim"'
Publikováno v:
ACS Applied Materials & Interfaces. 15:24257-24270
Publikováno v:
International Journal of Damage Mechanics. 32:73-102
This paper proposes an integrated unified elasto-viscoplastic fatigue and creep damage model with modified hardening equations to simulate the elasto-viscoplasticity, primary-secondary and tertiary creep, relaxation, cyclic softening, temperature-dep
Publikováno v:
Multiscale Science and Engineering. 3:36-50
A new nano-micro–macro multiscale modeling approach that combines molecular dynamic (MD) simulations with micromechanics and stochastic continuum models is proposed to model carbon-fiber-reinforced graphene/epoxy nanocomposites. Halpin–Tsai and s
Publikováno v:
Journal of the Computational Structural Engineering Institute of Korea. 34:51-58
Publikováno v:
Journal of the Korean Society for Aeronautical & Space Sciences. 48:773-782
Publikováno v:
American Society for Composites 2021.
This research provides a multiscale framework of failure analysis for carbon-fiber sheet molding compound (CF-SMC) through a bundle packing reconstruction algorithm and material constitutive modeling, respectively. SMC composites have attracted the a
Publikováno v:
Composites Part B: Engineering. 231:109593
Publikováno v:
Composite Structures. 195:265-275
This paper presents a probabilistic multiscale approach to model the random spatial distribution of local elastic properties arising from the heterogeneous waviness and orientation of CNT fillers within a 3D microscale continuum representative volume
Publikováno v:
Composites Part B: Engineering. 217:108890
In this paper, we present a novel efficient multi-scale modeling methodology for three-dimensional (3D) needle-punched (NP) carbon/silicon carbide (NP Cf/SiCm) with a complex microstructure. Variations of the material properties induced by the needle
Publikováno v:
Composite Structures. 258:113178
In this paper, a novel nonlinear micromechanics constitutive model is proposed to simulate elastoplastic and ductile damage behavior for wavy carbon nanotube (CNT) nanocomposites. A modified Eshelby tensor corresponding to wavy CNT is derived by inte