lightbulbPractical problemShape-Changing Fabrication and Dynamic Material Interfaces
Users struggle to flexibly adjust the physical properties of everyday objects.Direction: General AI Systems and Interaction Design
Shape-Changing Fabrication and Dynamic Material Interfaces
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24 items
lightbulbPractical problemShape-Changing Fabrication and Dynamic Material Interfaces
Data collected by smart devices lacks transparency, and users struggle to intuitively understand its meaning.lightbulbPractical problemShape-Changing Fabrication and Dynamic Material Interfaces
Dynamic multicolor texture display requires complex equipment that is inconvenient for everyday interaction.lightbulbPractical problemShape-Changing Fabrication and Dynamic Material Interfaces
Current shape-changing technologies use bulky, inflexible hardware with imprecise control.UIST '24FlexEOP: Flexible Shape-changing Actuator using Embedded Electroosmotic Pumps
lightbulbPractical problemShape-Changing Fabrication and Dynamic Material Interfaces
People with physical limitations struggle to independently don traditional clothing.UbiComp '24Self-Tightening and Self-Fastening Belts and Shoes: Shape Memory Adaptive Apparel to Assist Individuals with Physical Limitations
lightbulbPractical problemShape-Changing Fabrication and Dynamic Material Interfaces
Existing on-skin display devices lack flexibility and cannot dynamically change displayed content.UbiComp '24ECSkin: Tessellating Electrochromic Films for Reconfigurable On-skin Displays
lightbulbPractical problemShape-Changing Fabrication and Dynamic Material Interfaces
Traditional dynamic material actuators require continuous power supply and offer insufficient deformation complexity.lightbulbPractical problemShape-Changing Fabrication and Dynamic Material Interfaces
Ordinary users lack tools and capabilities to design and fabricate freeform interactive displays.lightbulbPractical problemShape-Changing Fabrication and Dynamic Material Interfaces
Current paper actuators struggle to achieve controllable complex deformation, limiting practical interactive applications.lightbulbPractical problemShape-Changing Fabrication and Dynamic Material Interfaces
Traditional 3D-printed displays require tedious post-processing or are limited to non-controllable global heating effects.lightbulbPractical problemShape-Changing Fabrication and Dynamic Material Interfaces
Mechanical metamaterials are difficult to reconfigure, have limited functionality, and lack flexible user participation.lightbulbPractical problemShape-Changing Fabrication and Dynamic Material Interfaces
Users need to frequently replace physical interfaces to meet diverse needs, which is costly and troublesome.lightbulbPractical problemShape-Changing Fabrication and Dynamic Material Interfaces
Existing shape-changing interfaces have limited polymorphism, making complex interaction design difficult to achieve.lightbulbPractical problemShape-Changing Fabrication and Dynamic Material Interfaces
Haptic interfaces lack rapid, low-cost methods for personalized customization.lightbulbPractical problemShape-Changing Fabrication and Dynamic Material Interfaces
Data physicalization tools generally lack material flexibility and 3D dynamic support.lightbulbPractical problemShape-Changing Fabrication and Dynamic Material Interfaces
Existing programmable soft surface technologies are costly and difficult to scale.UbiComp '22Layer by Layer, Patterned Valves Enable Programmable Soft Surfaces
lightbulbPractical problemShape-Changing Fabrication and Dynamic Material Interfaces
Soft pneumatic actuators are inefficient to manufacture and cannot integrate sensing functions.lightbulbPractical problemShape-Changing Fabrication and Dynamic Material Interfaces
Existing shape-changing display technologies are costly, complex, and noisy, making widespread adoption difficult.lightbulbPractical problemShape-Changing Fabrication and Dynamic Material Interfaces
Users are concerned about social inequity and data privacy risks from DNA data storage.lightbulbPractical problemShape-Changing Fabrication and Dynamic Material Interfaces
Users struggle to effectively manage and locate physical interfaces in multitasking scenarios.lightbulbPractical problemShape-Changing Fabrication and Dynamic Material Interfaces
In personalized manufacturing, intrinsic structures overlook the need for continuous deformation sensing.lightbulbPractical problemShape-Changing Fabrication and Dynamic Material Interfaces
Everyday objects lack simple, convenient, low-power interaction methods.lightbulbPractical problemShape-Changing Fabrication and Dynamic Material Interfaces
Precise measurement, modeling, and assembly are too complex and time-consuming when users design adaptive accessories.lightbulbPractical problemShape-Changing Fabrication and Dynamic Material Interfaces
Ordinary users struggle to design and produce shape-changing interfaces due to high barriers.Related papers
CHI 2025
Wearable Material Properties: Passive Wearable Microstructures as Adaptable Interfaces for the Physical Environment
Yuyu Lin, Hatice Gokcen Guner, Jianzhe Gu
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Stills from the Inner Ear Shorts: Collecting and Living with Data
Wyatt Olson, Freesoul El Shabazz-Thompson, Melanie Wells
UIST 2024
PortaChrome: A Portable Contact Light Source for Integrated Re-Programmable Multi-Color Textures
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ConeAct: A Multistable Actuator for Dynamic Materials
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DisplayFab: The State of the Art and a Roadmap in the Personal Fabrication of Free-Form Displays Using Active Materials and Additive Manufacturing.
Ollie Hanton, Mike Fraser, Anne Roudaut
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Waxpaper Actuator: Sequentially and Conditionally Programmable Wax Paper for Morphing Interfaces
Di Wu, Emily Guan, Yunjia Zhang
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3D Printing Locally Activated Visual-Displays Embedded in 3D Objects via Electrically Conductive and Thermochromic Materials
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Robotic Metamaterials: A Modular System for Hands-On Configuration of Ad-Hoc Dynamic Applications
Zhitong Cui, Shuhong Wang, Violet Yinuo Han
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Reconfigurable Interfaces by Shape Change and Embedded Magnets
Himani Deshpande, Bo Han, Kongpyung Moon
CHI 2023
EpoMemory: Multi-state Shape Memory for Programmable Morphing Interfaces
Ke Zhong, Adriane Fernandes Minori, Di Wu
CHI 2023
Exploring Long-Term Mediated Relations with a Shape-Changing Thing: A Field Study of coMorphing Stool
Ce Zhong, Ron Wakkary, William Odom
CHI 2023
SwellSense: Creating 2.5D interactions with micro-capsule paper
Tingyu Cheng, Zhihan Zhang, Bingrui Zong
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