Projects
Highlighted projects that represent the kind of research we do. They span deployable structures, soft active matter, architected materials, vibrational fabrication, and more. You will see a common thread between them; they all apply geometry reasoning, mechanics-based analysis, and advanced manufacturing.
3D-printed volumetric knits
Programmable materials built from a single entangled thread
Acoustic shaping of imperfect shells
Using sound to sculpt defects into thin shells
Deployable wafer devices
Flat sheets that snap into stable 3D shapes, scaled down to the chip
Knit mechanics, from yarn to garment
A multi-level modeling and design framework for weft-knitted fabrics
Engineering knitted wearables
Programmable-stiffness textiles for wearable haptics
Temperature-switchable metamaterials
Materials that change how they behave under load when warmed or cooled
Weaving curved surfaces from flat ribbons
From basketry to computer-designed woven shells
A reprogrammable metamaterial with memory
A material you can rewrite like a hard drive
Bistable auxetic surface structures
Flat sheets of snapping cells that deploy into a curved shape and hold it
Printed bistable structures that deploy and reconfigure
Flat-printed assemblies that snap into stable, load-bearing 3D shapes
A solar array that deploys itself
Elastic flasher origami and scissor rings, triggered by warmth alone
Programmable active lattices
4D-printed cellular solids that reconfigure their own mechanics
Untethered soft robots that swim by snapping
Battery-free locomotion powered by bistable snaps