Area of research
Biomedical Engineering · Mechanical Engineering
Research interest
Research interests include Advanced Surface Polishing Techniques, Advanced machining processes and optimization, Advanced Machining and Optimization Techniques, and Tunneling and Rock Mechanics.
Cross-region robotic grinding with adaptive toolpath planning and force control for point clouds of complex curved workpieces
[Establishment and evaluation of a predictive model for early neurological deterioration after intravenous thrombolysis in acute ischemic stroke based on machine learning].
Investigation of conditions leading to critical transitions between abrasive belt wear modes for rail grinding
Experimental and simulation research on residual stress for abrasive belt rail grinding
Microscopic contact pressure and material removal modeling in rail grinding using abrasive belt
An online belt wear monitoring method for abrasive belt grinding under varying grinding parameters
Deep convolutional neural network-based in-process tool condition monitoring in abrasive belt grinding
Comprehensive investigation on mechanisms of dry belt grinding on AISI52100 hardened steel
Investigation into static contact behavior in belt rail grinding using a concave contact wheel
Effects of belt’s adhesive wear on surface integrity in dry belt finishing
Stabilization of Black Phosphorous Quantum Dots in PMMA Nanofiber Film and Broadband Nonlinear Optics and Ultrafast Photonics Application
Investigating effects of adhesion wear on cutting efficiency and energy cost in dry belt finishing
Characteristic quantitative evaluation and stochastic modeling of surface topography for zirconia alumina abrasive belt