• Computing Material
  • Knit-in Shells
  • Knit-in Clay
  • Interlocking Nature_Oyster*2
  • Adaptive Lattice
  • Inflatable Knit
  • Subtractive Decoration
  • BioLight
  • Light Leak
  • Micro 3D Knit
  • Static Growth
  • Computing Sensory
  • Sound of Wind
  • Tracing Humidity
  • Resonate Trace
  • Tangible Light
  • Dynamic Aperture
  • Computing Landscape
  • Fabricate LA River
  • Hydro Dynamic
  • PlantALot Toolkit
  • Seasonality of Visitor Hotspots
  • Wayfinder
  • Beneath the Surface
  • Para-Toolbox
  • Parametric Planting Toolkit
  • ParaSpring
  • Paraknit
  • Exhibition
  • Knit-in Shells
Publication
Vitae
Contact
Qingru Yang
  • Computing Material
  • Knit-in Shells
  • Knit-in Clay
  • Interlocking Nature_Oyster*2
  • Adaptive Lattice
  • Inflatable Knit
  • Subtractive Decoration
  • BioLight
  • Light Leak
  • Micro 3D Knit
  • Static Growth
  • Computing Sensory
  • Sound of Wind
  • Tracing Humidity
  • Resonate Trace
  • Tangible Light
  • Dynamic Aperture
  • Computing Landscape
  • Fabricate LA River
  • Hydro Dynamic
  • PlantALot Toolkit
  • Seasonality of Visitor Hotspots
  • Wayfinder
  • Beneath the Surface
  • Para-Toolbox
  • Parametric Planting Toolkit
  • ParaSpring
  • Paraknit
  • Exhibition
  • Knit-in Shells
Publication
Vitae
Contact

ParaSpring

A heterogeneous spring design tool for exploring how variations in cross-section geometry influence stretch performance using 3D printer
A study of external kinematic frames that envelop robotic arms for character design.
parametric tool developed in gh
1) width
2) rotation
3) non-planr
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