Area of research
Mechanical Engineering · Materials Chemistry
Research interest
Research interests include Materials science, Amorphous metal, Relaxation (psychology), Amorphous solid, Alloy, and Nanoindentation.
Dynamic supramolecular snub cubes
Model for the onset of plasticity and hardness in bulk metallic glasses investigated by nanoindentation with a spherical indenter
Connection between Mechanical Relaxation and Equilibration Kinetics in a High-Entropy Metallic Glass
Creep deformation in metallic glasses: A global approach with strain as an indicator within transition state theory
Deciphering non-elastic deformation in amorphous alloy: Simultaneous aging-induced ordering and rejuvenation-induced disordering
Physics-motivated fractional viscoelasticity model for dynamic relaxation in amorphous solids
A highly distorted ultraelastic chemically complex Elinvar alloy
Intrinsic Correlation between the Fraction of Liquidlike Zones and the <mml:math xmlns:mml="http://www.w3.org/1998/Math/MathML" display="inline"><mml:mi>β</mml:mi></mml:math> Relaxation in High-Entropy Metallic Glasses
A hierarchically correlated flow defect model for metallic glass: Universal understanding of stress relaxation and creep
Revealing the structural heterogeneity of metallic glass: Mechanical spectroscopy and nanoindentation experiments
A high-entropy alloy as very low melting point solder for advanced electronic packaging
Structural heterogeneities and mechanical behavior of amorphous alloys
Amorphous physics and materials: Secondary relaxation and dynamic heterogeneity in metallic glasses: A brief review
Abnormal internal friction in the in-situ Ti60Zr15V10Cu5Be10 metallic glass matrix composite