Area of research
Mechanical Engineering · Ceramics and Composites
Research interest
Research focused on Composite material and Microstructure, with related work in Nanocomposite, Ultimate tensile strength, Welding. Notable publications include 'Recent researches of the bio-inspired nano-carbon reinforced metal matrix composites', 'Phase transformation and strengthening mechanisms of nanostructured high-entropy alloys', and 'Research and development of welding methods and welding mechanism of high-entropy alloys: A review'.
Nano/micro-scale numerical simulation and microscopic analysis on metal/oxide interfaces: A review
Phase transformation and strengthening mechanisms of nanostructured high-entropy alloys
Research and development of welding methods and welding mechanism of high-entropy alloys: A review
Effects of alloying, heat treatment and nanoreinforcement on mechanical properties and damping performances of Cu–Al-based alloys: A review
Fabrication and mechanical properties of nano‑carbon reinforced laminated Cu matrix composites
Effect of Ta addition on microstructures, mechanical and damping properties of Cu–Al–Mn–Ti alloy
Effect of Y on microstructure, damping properties and mechanical properties of Cu-Al-Ni-Mn alloy
Recent researches of the bio-inspired nano-carbon reinforced metal matrix composites
Fabrication and mechanical properties of α-Al2O3 whisker reinforced cu-graphite matrix composites
Microstructure and mechanical properties of Mo–Cu–Zr composites fabricated via microwave sintering
Effect of annealing heat treatment on microstructure and mechanical properties of nonequiatomic CoCrFeNiMo medium-entropy alloys prepared by hot isostatic pressing
Microstructures and mechanical properties of Al-Si alloy nanocomposites hybrid reinforced with nano-carbon and in-situ Al2O3
Synergetic effect of nano-carbon and HBN on microstructure and mechanical properties of Cu/Ti3SiC2/C nanocomposites