Area of research
Mechanics of Materials · Mechanical Engineering
Research interest
Research interests include Materials science, Nonlinear system, Ultrasonic sensor, Structural engineering, Artificial intelligence, and Mechanics.
Detection of weld defects using ultrasonic-guided waves based on matching pursuit and density peak clustering
Feature extraction of ultrasonic guided wave weld detection based on group sparse wavelet transform with tunable Q-factor
Experimental Study on Properties of Ultrasonic Coupling Agent with Graphene in NDT
Feasibility study on wheelset fatigue damage with NOFRFs-KL divergence detection method in SIMO
Research on NOFRF Entropy-Based Detection Method for Early Damage of Pillar Porcelain Insulator
Fatigue damage detection and location of metal materials by electrical impedance tomography
Study on elastoplastic coupling mechanics model of the milled mixture of sugar cane
Sensitivity of important parameters in a three‐dimensional simulation of the milling process of sugar cane with modified Drucker–Prager Cap model based on evolutionary material properties
Location and Length Measurement of Invisible Fatigue Crack in Metal Components Using Wave Mixing Methods
Stress evaluation of metallic material under steady state based on nonlinear critically refracted longitudinal wave
The fatigue damage evaluation of gear in sugarcane presser using higher order ultrasonic nonlinear coefficients
Fatigue evaluation of metallic components based on chaotic characteristics of second harmonic generation signal
Study of cumulative fatigue damage detection for used parts with nonlinear output frequency response functions based on NARMAX modelling
Feasibility of Residual Stress Nondestructive Estimation Using the Nonlinear Property of Critical Refraction Longitudinal Wave
Product lifecycle–oriented knowledge services: Status review, framework, and technology trends