helpResearch questionElectronics-Free Pneumatic Logic and 3D-Printed Interactive Objects
How can fully non-electronic pneumatic systems operate autonomously driven by ambient energy?Direction: General AI Systems and Interaction Design
Electronics-Free Pneumatic Logic and 3D-Printed Interactive Objects
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2023
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24 items
helpResearch questionElectronics-Free Pneumatic Logic and 3D-Printed Interactive Objects
Which ambient energy sources (e.g., wind, humidity, temperature differences) can drive pneumatic systems, and how can they be efficiently collected?helpResearch questionElectronics-Free Pneumatic Logic and 3D-Printed Interactive Objects
How can components for pneumatic energy storage and utilization be designed and optimized for different application scenarios?lightbulbPractical problemElectronics-Free Pneumatic Logic and 3D-Printed Interactive Objects
Pneumatic devices in outdoor or remote areas struggle to operate without electronic components.helpResearch questionElectronics-Free Pneumatic Logic and 3D-Printed Interactive Objects
How can pneumatic principles implement logic operations and input/output functions in 3D-printed models?helpResearch questionElectronics-Free Pneumatic Logic and 3D-Printed Interactive Objects
Can pneumatic logic technology fully replace electronic components to achieve electronic-free interactive objects?helpResearch questionElectronics-Free Pneumatic Logic and 3D-Printed Interactive Objects
How can design tools help users embed pneumatic logic components in 3D-printed models?lightbulbPractical problemElectronics-Free Pneumatic Logic and 3D-Printed Interactive Objects
3D-printed objects requiring electronic components are complex and time-consuming to produce.helpResearch questionElectronics-Free Pneumatic Logic and 3D-Printed Interactive Objects
How can embedded kinetic design generate self-propelled 3D-printed motion?helpResearch questionElectronics-Free Pneumatic Logic and 3D-Printed Interactive Objects
How can embedded mechanical components support diverse dynamic functions within 3D-printed models?helpResearch questionElectronics-Free Pneumatic Logic and 3D-Printed Interactive Objects
How can users customize and optimize motion properties of 3D-printed models through interactive tools?lightbulbPractical problemElectronics-Free Pneumatic Logic and 3D-Printed Interactive Objects
Lay users cannot easily design 3D-printed models that support complex motion.helpResearch questionElectronics-Free Pneumatic Logic and 3D-Printed Interactive Objects
How can stable and efficient intermittent computing be achieved in multi-core scenarios?UbiComp '22AdaMICA: Adaptive Multicore Intermittent Computing
helpResearch questionElectronics-Free Pneumatic Logic and 3D-Printed Interactive Objects
How can multi-core configurations be dynamically adjusted based on ambient energy input to optimize performance and energy consumption?UbiComp '22AdaMICA: Adaptive Multicore Intermittent Computing
helpResearch questionElectronics-Free Pneumatic Logic and 3D-Printed Interactive Objects
How should multi-core parallel programming frameworks for intermittent computing be designed to improve development flexibility?UbiComp '22AdaMICA: Adaptive Multicore Intermittent Computing
lightbulbPractical problemElectronics-Free Pneumatic Logic and 3D-Printed Interactive Objects
Low-power devices struggle to efficiently complete complex computations under fluctuating energy conditions.UbiComp '22AdaMICA: Adaptive Multicore Intermittent Computing
helpResearch questionElectronics-Free Pneumatic Logic and 3D-Printed Interactive Objects
How can physical environment information be combined to improve the efficiency and UX of 3D model search?helpResearch questionElectronics-Free Pneumatic Logic and 3D-Printed Interactive Objects
With mixed reality technology, can users easily find physical models that meet their needs through spatial queries?helpResearch questionElectronics-Free Pneumatic Logic and 3D-Printed Interactive Objects
Can multimodal input (e.g., text, sketches, and image tags) lower the barrier for non-expert users of 3D printing?lightbulbPractical problemElectronics-Free Pneumatic Logic and 3D-Printed Interactive Objects
3D model search struggles to incorporate physical context, and non-expert users face high barriers to entry.helpResearch questionElectronics-Free Pneumatic Logic and 3D-Printed Interactive Objects
How can deformable modules (TF-Cells) with high thermal conductivity be designed to enhance thermoforming performance of 3D-printed objects?helpResearch questionElectronics-Free Pneumatic Logic and 3D-Printed Interactive Objects
How can TF-Cells optimize structural parameters under different deformation requirements?helpResearch questionElectronics-Free Pneumatic Logic and 3D-Printed Interactive Objects
How does this electronics-free thermoforming method compare with traditional approaches embedding electronic components?lightbulbPractical problemElectronics-Free Pneumatic Logic and 3D-Printed Interactive Objects
Existing 3D-printed objects are difficult to modify in depth and shape conveniently.Related papers
UIST 2023
Sustainflatable: Harvesting, Storing and Utilizing Ambient Energy for Pneumatic Morphing Interfaces
Qiuyu Lu, Tianyu Yu, Semina Yi
UIST 2022
AirLogic: Embedding Pneumatic Computation and I/O in 3D Models to Fabricate Electronics-Free Interactive Objects
Valkyrie Savage, Carlos Tejada, Mengyu Zhong
UIST 2022
Kinergy: Creating 3D Printable Motion using Embedded Kinetic Energy
Liang He, Xia Su, Huaishu Peng
CHI 2022
ShapeFindAR: Exploring In-Situ Spatial Search for Physical Artifact Retrieval using Mixed Reality
Evgeny Stemasov, Tobias Wagner, Jan Gugenheimer
CHI 2021
Designing Metamaterial Cells to Enrich Thermoforming 3D Printed Objects for Post-Print Modification
Donghyeon Ko, Jee Bin Yim, Yujin Lee
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