collaborators

7 papers

physics.med-ph2026

Optimization of Magnetic Milli-Spinner for Robotic Endovascular Intervention

Lu Lu, Luca Higgins, Jack Bernardo +1

Vascular diseases such as atherosclerosis, thrombosis, and aneurysms can lead to life-threatening medical events. Conventional catheter- or guidewire-based interventional devices o…

physics.app-ph2025

2D-to-3D transformation of ring origami via snap-folding instabilities

Lu Lu, Sophie Leanza, Luyuan Ning +1

Ring origami, consisting of closed-loop rods, is a class of shape-morphing structures that undergo shape transformation through folding enabled by snap-buckling instabilities, refe…

physics.app-ph2025

Elastic Rod Origami (RodOri) for Programming Static and Dynamic Mechanical Properties

Sophie Leanza, Jeseung Lee, Ruike Renee Zhao

Reconfigurable mechanical systems enable precise programmable control over structural properties, opening new opportunities in architected materials, adaptive devices, and multifun…

nlin.PS2025

Buckling and post-buckling of cylindrical shells under combined torsional and axial loads

Lu Lu, Sophie Leanza, Yang Liu +1

The buckling behavior of cylindrical shells has gained significant interest over the past century due to its rich nonlinear behavior and broad engineering applications. While the b…

physics.app-ph2025

Multiple equilibrium states of a curved-sided hexagram: Part II-Transitions between states

Lu Lu, Jize Dai, Sophie Leanza +2

Curved-sided hexagrams with multiple equilibrium states have great potential in engineering applications such as foldable architectures, deployable aerospace structures, and shape-…

physics.app-ph2025

Multiple equilibrium states of a curved-sided hexagram: Part I-Stability of states

Lu Lu, Jize Dai, Sophie Leanza +2

The stability of the multiple equilibrium states of a hexagram ring with six curved sides is investigated. Each of the six segments is a rod having the same length and uniform natu…