helpResearch questionSmart Textile Displays and Material Fabrication
Can multi-material textile recycling challenges be solved through hardenable single-material textiles?Direction: Creativity, Design, and Generative Making
Smart Textile Displays and Material Fabrication
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2025
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51 items
helpResearch questionSmart Textile Displays and Material Fabrication
How can polyethylene alcohol (PVA) enable single-material textiles with both soft and rigid properties?helpResearch questionSmart Textile Displays and Material Fabrication
Can humidity-controlled hardening processes achieve selective hardening in textile manufacturing?helpResearch questionSmart Textile Displays and Material Fabrication
How can plant seeds be directly integrated into textile fibers to create growth-capable materials?helpResearch questionSmart Textile Displays and Material Fabrication
How will users perceive and interact with seed-integrated textiles?helpResearch questionSmart Textile Displays and Material Fabrication
How can seed textile design foster symbiotic relationships between humans and non-humans such as plants?helpResearch questionSmart Textile Displays and Material Fabrication
How can machine knitting integrate electroluminescent yarn with interactive textiles seamlessly?helpResearch questionSmart Textile Displays and Material Fabrication
How can the LuxKnit system enable rapid automated design and production of display and capacitive touch sensing?helpResearch questionSmart Textile Displays and Material Fabrication
How do textiles integrating electroluminescent displays and capacitive touch sensing perform under different physical deformations?helpResearch questionSmart Textile Displays and Material Fabrication
How can embroidery path optimization improve the stretch performance of electronic textiles?UIST '24Embroidered Stretch Circuits
helpResearch questionSmart Textile Displays and Material Fabrication
Which parameters (e.g., stitch spacing and path density) can maximize the stretchability of embroidered circuit paths?UIST '24Embroidered Stretch Circuits
helpResearch questionSmart Textile Displays and Material Fabrication
How can interactive interfaces help users design embroidered circuit paths suitable for stretchable fabrics?UIST '24Embroidered Stretch Circuits
helpResearch questionSmart Textile Displays and Material Fabrication
How can two-dimensional pin beds enable volumetric knitting?UIST '24A New Approach for Volumetric Knitting
helpResearch questionSmart Textile Displays and Material Fabrication
How do dual-hook compound needles improve connection flexibility in volumetric knitting?UIST '24A New Approach for Volumetric Knitting
helpResearch questionSmart Textile Displays and Material Fabrication
How can volumetric knitting support the development of complex microstructures and design applications?UIST '24A New Approach for Volumetric Knitting
helpResearch questionSmart Textile Displays and Material Fabrication
How can ironed 3D-printed components enable low-cost fabrication and rapid prototyping of customized interactive smart textiles?helpResearch questionSmart Textile Displays and Material Fabrication
How do multilayer design and hexagonal tiling structures improve flexibility and integration of smart textiles?helpResearch questionSmart Textile Displays and Material Fabrication
Can shortcomings of existing smart textile fabrication methods be addressed by IrOnTex's ironing 3D printing approach?helpResearch questionSmart Textile Displays and Material Fabrication
How can waste cotton textiles be converted into conductive multifunctional electronic fabrics through high-temperature carbonization?UbiComp '24Design and Fabrication of Multifunctional Electronic Textiles from Waste Cotton Fabrics via Carbonization
helpResearch questionSmart Textile Displays and Material Fabrication
How do carbonized electronic fabrics perform in pressure sensing, tactile sensing, and wearables?UbiComp '24Design and Fabrication of Multifunctional Electronic Textiles from Waste Cotton Fabrics via Carbonization
helpResearch questionSmart Textile Displays and Material Fabrication
How can recyclable biodegradable electronic fabrics be designed to optimize lifecycle sustainability?UbiComp '24Design and Fabrication of Multifunctional Electronic Textiles from Waste Cotton Fabrics via Carbonization
helpResearch questionSmart Textile Displays and Material Fabrication
How can simple, inexpensive methods manufacture smart textiles with both high functionality and wash durability?helpResearch questionSmart Textile Displays and Material Fabrication
Can a dual-layer coating process (conductive carbon black ink and polyurethane coating) solve existing smart textile durability problems?helpResearch questionSmart Textile Displays and Material Fabrication
Can non-expert users easily create functional textiles through this method?helpResearch questionSmart Textile Displays and Material Fabrication
How can an embroiderable modular toolkit simplify prototyping of smart textiles?helpResearch questionSmart Textile Displays and Material Fabrication
Can modular design based on textile structures improve the practicality and multi-scenario adaptability of smart textiles?helpResearch questionSmart Textile Displays and Material Fabrication
Can visual programming tools lower the barrier for non-expert users to design smart textile products?helpResearch questionSmart Textile Displays and Material Fabrication
How can continuously drawn temperature-tunable liquid crystal elastomer (LCE) be used to manufacture 4D textile fibers compatible with textile equipment?helpResearch questionSmart Textile Displays and Material Fabrication
How compatible is FibeRobo fiber with existing embroidery, weaving, and knitting equipment?helpResearch questionSmart Textile Displays and Material Fabrication
How does FibeRobo fiber outperform existing thermoresponsive materials in cost, response speed, and physical performance?helpResearch questionSmart Textile Displays and Material Fabrication
How can key variables in embroidered electronic textiles be identified and characterized within a relational framework?UbiComp '23Developing an EDA Framework for Electronic Textiles: Case Study: Characterization & Design Rules Development for Stitched E-Textiles
helpResearch questionSmart Textile Displays and Material Fabrication
What design rules can improve production reliability and consistency of embroidered e-textile circuits?UbiComp '23Developing an EDA Framework for Electronic Textiles: Case Study: Characterization & Design Rules Development for Stitched E-Textiles
helpResearch questionSmart Textile Displays and Material Fabrication
How can these design rules be validated and generalized for scalability and applicability in actual e-textile circuit production?UbiComp '23Developing an EDA Framework for Electronic Textiles: Case Study: Characterization & Design Rules Development for Stitched E-Textiles
helpResearch questionSmart Textile Displays and Material Fabrication
How can designing multi-form textile forms (dynamic textile morphologies) from materials, form, and production simultaneously reduce textile and electronic waste?helpResearch questionSmart Textile Displays and Material Fabrication
How can dynamic design mechanisms be integrated across the textile lifecycle from production to use to achieve sustainability?helpResearch questionSmart Textile Displays and Material Fabrication
How can 3D interactive textiles improve adaptability and interactivity when combining ecological and smart design?helpResearch questionSmart Textile Displays and Material Fabrication
How can thermofluidic composites enable dynamic color-change animations on complex surfaces?helpResearch questionSmart Textile Displays and Material Fabrication
How can dynamic interface compatibility be improved to adapt to everyday materials and complex 3D shapes?helpResearch questionSmart Textile Displays and Material Fabrication
How can thermofluidic channels be optimized to support smooth heat diffusion and high-resolution animation?helpResearch questionSmart Textile Displays and Material Fabrication
How can punch needle embroidery (traditional embroidery technique) be combined with 3D printing to create new composite fiber textiles?helpResearch questionSmart Textile Displays and Material Fabrication
How can the lack of traditional tactile qualities in existing 3D-printed textiles and limited design complexity in punch needle embroidery be addressed?helpResearch questionSmart Textile Displays and Material Fabrication
How can tool path optimization and parametric design extend flexibility in embroidery patterns and fabrication processes?helpResearch questionSmart Textile Displays and Material Fabrication
How can reflective backplanes improve display contrast of PDLC (polymer-dispersed liquid crystal) modules?helpResearch questionSmart Textile Displays and Material Fabrication
How can PDLC modules be designed as flexible, textile-suitable non-emissive displays?helpResearch questionSmart Textile Displays and Material Fabrication
How can PDLC display system operating voltage be reduced for portable application scenarios?helpResearch questionSmart Textile Displays and Material Fabrication
How can digital embroidery enable self-assembling and shape-changing textiles?UbiComp '224D Embroidery: Implementing Parametric Structures in Textiles for Sculptural Embroidery
helpResearch questionSmart Textile Displays and Material Fabrication
How does heat-shrink thread density affect bending angles and shape deformation in embroidered structures?UbiComp '224D Embroidery: Implementing Parametric Structures in Textiles for Sculptural Embroidery
helpResearch questionSmart Textile Displays and Material Fabrication
How can embroidery processes be optimized to enable textile designs with embedded interactive functions?UbiComp '224D Embroidery: Implementing Parametric Structures in Textiles for Sculptural Embroidery
helpResearch questionSmart Textile Displays and Material Fabrication
How can deformable fabric patches achieve dynamic shape transformation while maintaining fabric softness and aesthetics?helpResearch questionSmart Textile Displays and Material Fabrication
How can shape memory alloys be effectively embedded in textiles to achieve bending, inflation, and contraction deformations?Related papers
CHI 2025
Selective Water-Based Hardening of Polyvinyl Alcohol (PVA) Knitted Textiles
Shahar Asor, Yoav Sterman
CHI 2025
LivingLoom: Investigating Human-Plant Symbiosis through Integrating Living Plants into (E-)Textiles
Jingwen Zhu, Samantha Chang, Ruth Zhao
CHI 2025
LuxKnit: Fabricating Interactive Display Textiles Integrated with Sensing by Machine Knitting
Tongyan Wang, Mohan Chi, Yue Yu
UbiComp 2024
IrOnTex: Using Ironable 3D Printed Objects to Fabricate and Prototype Customizable Interactive Textiles
Jiakun Yu, Supun Kuruppu, Biyon Fernando
CHI 2024
IntelliTex: Fabricating Low-cost and Washable Functional Textiles using A Double-coating Process
Yuecheng Peng, Danchang Yan, Haotian Chen
UIST 2023
EmTex: Prototyping Textile-Based Interfaces through An Embroidered Construction Kit
Qi Wang, Yuan Zeng, Nianding Ye
UIST 2023
FibeRobo: Fabricating 4D Fiber Interfaces by Continuous Drawing of Temperature Tunable Liquid Crystal Elastomers
Jack Forman, Ozgun Kilic Afsar, Sarah Nicita
CHI 2023
Conformal, Seamless, Sustainable: Multimorphic Textile-Forms as a Material-Driven Design Approach for HCI
Holly McQuillan, Elvin Karana
CHI 2023
Thermotion: Design and fabrication of thermofluidic composites for animation effects on object surfaces
Tianyu Yu, Weiye Xu, Haiqing Xu
CHI 2023
PunchPrint: Creating Composite Fiber-Filament Craft Artifacts by Integrating Punch Needle Embroidery and 3D Printing
Ashley Del Valle, Mert Toka, Alejandro Aponte
UIST 2022
Project Primrose: Reflective Light-Diffuser Modules for Non-Emissive Flexible Display Systems
Christine Dierk, TJ Rhodes, Gavin S. P. Miller
CHI 2022
Patch-O: Shape Changing Woven Patches for On Body Actuation
Pin-Sung Ku, Kunpeng Huang, Cindy Hsin-Liu Kao
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