Area of research
Mechanical Engineering · Civil and Structural Engineering
Research interest
Research focused on Metamaterial and Symmetry (geometry), with related work in Paraboloid, Bridge (graph theory), Particle swarm optimization. Notable publications include 'Multi-stability of the hexagonal origami hypar based on group theory and symmetry breaking', 'Machine learning applied to the design and inspection of reinforced concrete bridges: Resilient methods and emerging applications', and 'Particle Swarm Optimization-Based Metaheuristic Design Generation of Non-Trivial Flat-Foldable Origami Tessellations With Degree-4 Vertices'.
Accurate force evaluation in prestressed cable-strut structures: A robust sparse Bayesian learning method with feedback-driven error optimization
Inverse design of tubular energy absorbers formed from the least-symmetric crystallographic DDC surface
Design and low-velocity impact behavior of an origami-bellow foldcore honeycomb acoustic metastructure
Crystallographically programmed kirigami metamaterials
Multi-stability of irregular four-fold origami structures
A quasi-zero-stiffness vibration isolator inspired by Kresling origami
Design–material transition threshold of ribbon kirigami
Highly stretchable graphene kirigami with tunable mechanical properties
Geometric design and performance analysis of a foldcore sandwich acoustic metastructure for tunable low-frequency sound absorption
Tunable multi-stability of conical Kresling origami structures utilizing local imperfections
Programmable Truncated Cuboctahedral Origami Metastructures Actuated by Shape Memory Polymer Hinges
A symmetric substructuring method for analyzing the natural frequencies of conical origami structures
Multi-stability of the hexagonal origami hypar based on group theory and symmetry breaking
A programmable auxetic metamaterial with tunable crystal symmetry
Data-driven design and morphological analysis of conical six-fold origami structures
Engineered origami crease perforations for optimal mechanical performance and fatigue life
Algorithmic Spatial Form-Finding of Four-Fold Origami Structures Based on Mountain-Valley Assignments
Inverse design of programmable Poisson's ratio and in-plane stiffness for generalized four-fold origami
A Unified Inverse Design and Optimization Workflow for the Miura-oRing Metastructure
Effects of perforated creases on the mechanical behavior and fatigue life of thick origami structures
Cyclic Reconfigurability of Deployable Ring Structures With Angulated Beams
Selective hinge removal strategy for architecting hierarchical auxetic metamaterials
Intelligent computational design of scalene-faceted flat-foldable tessellations
Machine learning applied to the design and inspection of reinforced concrete bridges: Resilient methods and emerging applications
Geometric design classification of kirigami-inspired metastructures and metamaterials
Particle Swarm Optimization-Based Metaheuristic Design Generation of Non-Trivial Flat-Foldable Origami Tessellations With Degree-4 Vertices
Assigning mountain-valley fold lines of flat-foldable origami patterns based on graph theory and mixed-integer linear programming
Intrinsic non-flat-foldability of two-tile DDC surfaces composed of glide-reflected irregular quadrilaterals
A hybrid symmetry–PSO approach to finding the self-equilibrium configurations of prestressable pin-jointed assemblies
An Integrated Geometric-Graph-Theoretic Approach to Representing Origami Structures and Their Corresponding Truss Frameworks