Area of research
Materials Chemistry · Mechanics of Materials
Research interest
Research focused on Carbon nanotube and Peridynamics, with related work in Finite element method, Nanotechnology, Cohesive zone model. Notable publications include 'A peridynamics-based cohesive zone model (PD-CZM) for predicting cohesive crack propagation', 'Biomass-derived oriented carbon aerogels with integrated high-performance microwave absorption and thermal insulation', and 'Finite element method of bond-based peridynamics and its ABAQUS implementation'.
Biomass-derived oriented carbon aerogels with integrated high-performance microwave absorption and thermal insulation
An implicit ordinary state-based peridynamic framework for quasi-brittle fracture problems
A peridynamics-based cohesive zone model (PD-CZM) for predicting cohesive crack propagation
Analysis on the influence of Poisson’s ratio on brittle fracture by applying uni-bond dual-parameter peridynamic model
Finite element method of bond-based peridynamics and its ABAQUS implementation
Recent Progress in the Preparation of Horizontally Ordered Carbon Nanotube Assemblies from Solution
3-D finite element calculation of electric field enhancement for nanostructures fabrication mechanism on silicon surface with AFM tip induced local anodic oxidation
Investigating interfacial contact configuration and behavior of single-walled carbon nanotube-based nanodevice with atomistic simulations
Atomistic simulations on the axial nanowelding configuration and contact behavior between Ag nanowire and single-walled carbon nanotubes
Nanofabrication with the thermal AFM metallic tip irradiated by continuous laser