Area of research
Civil and Structural Engineering · Mechanical Engineering
Research interest
Research interests include Advanced Materials and Mechanics, Vibration Control and Rheological Fluids, Structural Analysis and Optimization, and Acoustic Wave Phenomena Research.
Roadmap on embodying mechano-intelligence and computing in functional materials and structures
Cellular Automata Inspired Multistable Origami Metamaterials for Mechanical Learning
Discriminative Transition Sequences of Origami Metamaterials for Mechanologic
Magneto-origami structures: engineering multi-stability and dynamics via magnetic-elastic coupling
Planar locomotion of earthworm-like metameric robots
Architected Origami Materials: How Folding Creates Sophisticated Mechanical Properties
A review of the recent research on vibration energy harvesting via bistable systems
Harnessing Topological Wave Dynamics and Physical Computing for the Embodiment of Intelligence in Mechanical Metamaterials
Collaborative Research: Creating System Level Intelligence by Harvesting the Physical Reservoir Computing Power in Origami
Collaborative Research: Embedded Mechano-Intelligence for Soft Robotics
Collaborative Research: Understanding and Harnessing Complex Dynamics of Coupled Mechanical-Electrical System for an Improved Vibration Energy Harvesting
Collaborative Research: Frequency Selective Structures for High Sensitivity/High Resolution Damage Identification via Impediographic Tomography
EFRI-BSBA: Learning from Plants -- Biologically-Inspired Multi-Functional Adaptive Structural Systems
SST - Multifunctional Adaptive Piezoelectric Sensory System for Structural Damage Detection
SST - Multifunctional Adaptive Piezoelectric Sensory System for Structural Damage Detection
ITR: An Agent-Based Negotiation Framework for the Robust Design of Active-Passive Hybrid Piezoelectric Vibration Control Networks
Simultaneous Vibration Confinement and Disturbance Rejection Through Electromechanical Tailoring of Piezoeletric Networks