Area of research
Mechanics of Materials · Materials Chemistry
Research interest
Research interests include Fatigue and fracture mechanics, Titanium Alloys Microstructure and Properties, Advanced materials and composites, and Metal and Thin Film Mechanics.
A critical review of silicon nanowire electrodes and their energy storage capacities in Li-ion cells
Machine learning guided optimal composition selection of niobium alloys for high temperature applications
A critical review of silicon nanowire electrodes and their energy storage capacities in Li-ion cells.
Review: Fatigue of Fiber-Reinforced Composites, Damage and Failure
CALPHAD Approach and processing of a multicomponent titanium matrix composite for high strength and fracture toughness
CALPHAD-guided alloy design and processing for improved strength and toughness in Titanium Boride (TiB) ceramic alloy containing a ductile phase
Enhancement of fatigue resistance using the accelerated diffusion/sintering phenomenon near beta transus temperature in Ti-6Al-4V powder metallurgy alloy
Powder metallurgy of titanium – past, present, and future
Strength–Ductility Property Maps of Powder Metallurgy (PM) Ti-6Al-4V Alloy: A Critical Review of Processing-Structure-Property Relationships
Imaging of the Li spatial distribution within V2O5 cathode in a coin cell by neutron computed tomography
The role of crack origin size and early stage crack growth on high cycle fatigue of powder metallurgy Ti-6Al-4V alloy
A new approach to the mechanics of fatigue crack growth in metals: Correlation of mean stress (stress ratio) effects using the change in net-section strain energy
New approach to achieve high strength powder metallurgy Ti-6Al-4V alloy through accelerated sintering at β-transus temperature and hydrogenation-dehydrogenation treatment
Mechanical fatigue of polymers: A new approach to characterize the S N behavior on the basis of macroscopic crack growth mechanism
A physical model and constitutive equations for complete characterization of S-N fatigue behavior of metals
New Powder Metallurgical Approach to Achieve High Fatigue Strength in Ti-6Al-4V Alloy
The Nature of Electrochemical Delithiation of Li-Mg Alloy Electrodes: Neutron Computed Tomography and Analytical Modeling of Li Diffusion and Delithiation Phenomenon
The Nature of Tensile Ductility as Controlled by Extreme-Sized Pores in Powder Metallurgy Ti-6Al-4V Alloy
Fatigue crack growth in miniature specimens: The equivalence of ∆K-correlation and that based on the change in net-section strain energy density
A powder metallurgy method for manufacturing Ti-6Al-4V with wrought-like microstructures and mechanical properties via hydrogen sintering and phase transformation (HSPT)
Understanding competing fatigue mechanisms in powder metallurgy Ti–6Al–4V alloy: Role of crack initiation and duality of fatigue response
Phase Transformations and Formation of Ultra-Fine Microstructure During Hydrogen Sintering and Phase Transformation (HSPT) Processing of Ti-6Al-4V
An experimental study of the (Ti–6Al–4V)–xH phase diagram using in situ synchrotron XRD and TGA/DSC techniques
An In-Situ Electrochemical Cell for Neutron Diffraction Studies of Phase Transitions in Small Volume Electrodes of Li-Ion Batteries
Electrochemical Charge/Discharge Behavior and Phase Transitions during Cell Cycling of Li(Mg) Alloy Anodes for High Capacity Li Ion Batteries
Analytical modeling and simulation of electrochemical charge/discharge behavior of Si thin film negative electrodes in Li-ion cells
Kinetics of growth of superhard boride layers during solid state diffusion of boron into titanium