Area of research
Mechanics of Materials · Materials Chemistry
Research interest
Research interests include Materials science, Dynamic recrystallization, Microstructure, Superalloy, Strain rate, and Recrystallization (geology).
Revisiting the hot deformation behavior of Hastelloy X alloy through activation energy distribution map and modified hot processing map
Aggregation model of generation-load-storage flexibility resources based on objective weighting and agglomerative nesting algorithm
New insights into ductility improvement of a nickel-based superalloy through grain boundary engineering
Role of aging temperature on thermal stability of Co-free Cr0.8FeMn1.3Ni1.3 high-entropy alloy: Decomposition and embrittlement at intermediate temperatures
Characterization of hot workability of IN617B alloy using activation energy, Zener-Hollomon parameter and hot processing maps
Effect of microstructural evolution and mechanical properties of Haynes 230 superalloy during long-term aging at 700 °C
Revealing hot deformation behavior of inconel X-750 superalloy: A novel hot processing map coupled with grain boundary engineering
On the modified kinetics model describing the dynamic recrystallization behavior during hot deformation of Incoloy 925
Machine learning neural-network identification for dynamic recrystallization grains during hot deformation of nickel-based superalloy
Hot workability of a spray formed 2195 aluminum‑lithium alloy based on an improved isothermal processing map and DRX ‘C-curve’
Thermal deformation behavior and microstructure evolution of GH4169 superalloy under the shear-compression deformation conditions
Characteristic and mechanism of dynamic recrystallization in a newly developed Fe-Cr-Ni-Al-Nb superalloy during hot deformation
Three-dimensional hot processing map of a nickel-based superalloy (Alloy 925) established by modified artificial neural network model
Plastic thermal deformation behavior and microstructure evolution of solid solution strengthened Ni-based superalloy
Hot Deformation Characteristics and Dynamic Recrystallization Mechanisms of a Newly Developed Austenitic Heat-Resistant Alloy
Dynamic behavior and modified artificial neural network model for predicting flow stress during hot deformation of Alloy 925