Area of research
Mechanics of Materials · Civil and Structural Engineering
Research interest
Research interests include Mechanical Behavior of Composites, Metal and Thin Film Mechanics, Structural Response to Dynamic Loads, and High-Temperature Coating Behaviors.
Chatter detection in the turning process using acoustic wavelet scattergrams and transfer learning
Automated posture adjustment system for immobilized patients using EEG signals.
Nonlinear Buckling Analysis of a Two-Stage Hydraulic Cylinder Using Static Riks Method
Chatter Detection in a Tapered Workpiece During Turning Process Using Acoustic Signals
Using SEA for Reducing Torque of an Active Compliance
Design and experimental analysis of low wind speed rotary piezoelectric energy harvester
Customised Implant for Temporomandibular Joint: New Technique to Design and Stress Analysis to Balance the Loading at Both Ends.
Biomechanical Analysis of Patient-Specific Temporomandibular Joint Implant and Comparison with Natural Intact Jaw Bone Using Finite Element Method
Design and finite element analysis of femoral stem prosthesis using functional graded materials.
Design, Modeling, and Analysis of Piezoelectric-Actuated Device for Blood Sampling
Finite element analysis of fixed bone plates over fractured femur model.
The role of slow screw dislocations in controlling fast strain avalanche dynamics in body-centered cubic metals
Viscoelastic foam-filled lattice for high energy absorption
Evaluation of novel temperature-stable viscoelastic polyurea foams as helmet liner materials
Tailoring the rate-sensitivity of low density polyurea foams through cell wall aperture size
Fundamental formulations and recent achievements in piezoelectric nano-structures: a review
Collaborative Research: Planning for Uncertainty in Coupled Water-Power Distribution Networks
Collaborative Research: Planning for Uncertainty in Coupled Water-Power Distribution Networks
Collaborative Research: CPS: Medium: Adaptive, Human-centric Demand-side Flexibility Coordination At-scale in Electric Power Networks
Collaborative Research: CPS: Medium: Adaptive, Human-centric Demand-side Flexibility Coordination At-scale in Electric Power Networks
CDS&E: Collaborative Research: Fast Numerical Simulations of Low Void Fraction Disperse Multiphase Systems using Event-Triggered Communication
AI Institute: Planning: AI-Enabled Secure and Responsive Smart Manufacturing
CDS&E: Collaborative Research: Fast Numerical Simulations of Low Void Fraction Disperse Multiphase Systems using Event-Triggered Communication
RAPID: Collaborative Research: Modeling and Learning-based Design of Social Distancing Policies for COVID-19
Exploring Deformation Mechanisms in Metallic Nanostructures Under Extreme Conditions of Temperature and Strain Rate
Understanding and Controlling Atomic-Scale Mechanisms for Imparting Room Temperature Ductility in Tungsten and BCC Metals
CPS:Small:Collaborative Research: Incentivizing Desirable User Behavior in a Class of CPS
CPS: Synergy: Collaborative Research: Beyond Stability: Performance, Efficiency and Disturbance Management for Smart Infrastructure Systems
EAGER: Renewables: Collaborative Research: Market Designs for Distribution Systems with High Renewable Penetration
CPS: Synergy: Collaborative Research: Architectural and Algorithmic Solutions for Large Scale PEV Integration into Power Grids
Loading Metal Nanostructures Under Extreme Conditions Using Stress Waves with Rarefaction Shock Profiles
Collaborative Research: Investigating the Physical Origins of Spatial Statistical Scaling in Peak Streamflows from Event to Annual Time Scales
CAREER: Scalable and Optimal Co-Design of Control and Communication Protocols in Cyber-physical Systems
CSR-EHCS(EHS), SM: Collaborative Research: An Anytime Approach to Real-Time Embedded Control
Collaborative Research: SGER--Dynamical Origins of Statistical Scaling in Floods on Real Networks-An Exploratory Diagnostic Analysis
Collaborative Research: Testing a Dynamical-Hortonian Scaling Theory for for Flood Events on Whitewater Basin, Kansas
WCR: Designing a Pilot Study for Floods in the Walnut River Basin, KS, Using a Scaling Framework
A Stress Wave-Induced Direct Pattern Transfer Procedure for Efficient Manufacturing ICs and MEMS Devices
Developing a "Numerical Laboratory" to Test Scaling Hypotheses for Hydrologic Extremes
An Exploratory Study for Coupling Biota, Energy and the Hydrological Cycle in Simple Nonlinear Models of Planetary Climate
Collaborative Research: Scaling and Allometry in River Networks: Coupling Rainfall, Topography, and Vegetation with Hydrological Extremes