FabHydro: Printing Interactive Hydraulic Devices with an Affordable SLA 3D Printer
暂无分享,去创建一个
[1] Hiroshi Ishii,et al. Tangible bits: towards seamless interfaces between people, bits and atoms , 1997, CHI.
[2] Liang He,et al. Ondulé: Designing and Controlling 3D Printable Springs , 2019, UIST.
[3] Xiang 'Anthony' Chen,et al. Thermorph: Democratizing 4D Printing of Self-Folding Materials and Interfaces , 2018, CHI.
[4] Xiang 'Anthony' Chen,et al. 3D Printed Hair: Fused Deposition Modeling of Soft Strands, Fibers, and Bristles , 2015, UIST.
[5] Thomas J. Wallin,et al. 3D printing of soft robotic systems , 2018, Nature Reviews Materials.
[6] G. Whitesides,et al. Pneumatic Networks for Soft Robotics that Actuate Rapidly , 2014 .
[7] Haruki Takahashi,et al. 3D Printed Fabric: Techniques for Design and 3D Weaving Programmable Textiles , 2019, UIST.
[8] Robert Kovacs,et al. Digital Mechanical Metamaterials , 2017, CHI.
[9] Yoichi Ochiai,et al. Coded skeleton: programmable deformation behaviour for shape changing interfaces , 2016, SIGGRAPH ASIA Emerging Technologies.
[10] A. Parr. Hydraulics and Pneumatics: A technician's and engineer's guide , 1991 .
[11] Samuel B. Williams,et al. ASSOCIATION FOR COMPUTING MACHINERY , 2000 .
[12] Xin Wen,et al. CurveBoards: Integrating Breadboards into Physical Objects to Prototype Function in the Context of Form , 2020, CHI.
[13] Ivan Poupyrev,et al. 3D printed interactive speakers , 2014, CHI.
[14] D. Floreano,et al. Soft Robotic Grippers , 2018, Advanced materials.
[15] Moritz Heimrath,et al. Karamba—A Toolkit for Parametric Structural Design , 2014 .
[16] Artem Dementyev,et al. BodyPrinter: Fabricating Circuits Directly on the Skin at Arbitrary Locations Using a Wearable Compact Plotter , 2020, UIST.
[17] Daniela Rus,et al. Printable hydraulics: A method for fabricating robots by 3D co-printing solids and liquids , 2015, 2016 IEEE International Conference on Robotics and Automation (ICRA).
[18] Ivan Poupyrev,et al. PAPILLON: designing curved display surfaces with printed optics , 2013, UIST.
[19] Mark A. Skylar-Scott,et al. Voxelated soft matter via multimaterial multinozzle 3D printing , 2019, Nature.
[20] Kahraman G. Demir,et al. Computational and Experimental Design Exploration of 3D‐Printed Soft Pneumatic Actuators , 2020, Adv. Intell. Syst..
[21] Hiroshi Ishii,et al. Cilllia: 3D Printed Micro-Pillar Structures for Surface Texture, Actuation and Sensing , 2016, CHI.
[22] Ivan Poupyrev,et al. Printed optics: 3D printing of embedded optical elements for interactive devices , 2012, UIST.
[23] David E. Breen,et al. Geodesy: Self-rising 2.5D Tiles by Printing along 2D Geodesic Closed Path , 2019, CHI.
[24] I. Kuřitka,et al. Inkjet Printability Assessment of Weakly Viscoelastic Fluid: A Semidilute Polyvinylpyrrolidone Solution Ink Case Study. , 2021, Langmuir : the ACS journal of surfaces and colloids.
[25] Björn Hartmann,et al. Sauron: embedded single-camera sensing of printed physical user interfaces , 2013, UIST.
[26] Daniel Ashbrook,et al. Towards Augmented Fabrication: Combining Fabricated and Existing Objects , 2016, CHI Extended Abstracts.
[27] Scott E. Hudson,et al. A 3D Printer for Interactive Electromagnetic Devices , 2016, UIST.
[28] Amit Zoran,et al. Steel-Sense: Integrating Machine Elements with Sensors by Additive Manufacturing , 2016, CHI.
[29] David Lindlbauer,et al. Understanding Metamaterial Mechanisms , 2019, CHI.
[30] Sean Follmer,et al. Makers' Marks: Physical Markup for Designing and Fabricating Functional Objects , 2015, UIST.
[31] Yunbo Zhang,et al. RevoMaker: Enabling Multi-directional and Functionally-embedded 3D printing using a Rotational Cuboidal Platform , 2015, UIST.
[32] Hiroshi Ishii,et al. xPrint: A Modularized Liquid Printer for Smart Materials Deposition , 2016, CHI.
[33] Roel Vertegaal,et al. PrintPut: Resistive and Capacitive Input Widgets for Interactive 3D Prints , 2015, INTERACT.
[34] Scott E. Hudson,et al. A Layered Fabric 3D Printer for Soft Interactive Objects , 2015, CHI.
[35] Levent Burak Kara,et al. 4DMesh: 4D Printing Morphing Non-Developable Mesh Surfaces , 2018, UIST.
[36] Thomas J. Wallin,et al. 3D printing antagonistic systems of artificial muscle using projection stereolithography , 2015, Bioinspiration & biomimetics.
[37] Pedro Lopes,et al. Metamaterial Textures , 2018, CHI.
[38] Guanyun Wang,et al. A-line: 4D Printing Morphing Linear Composite Structures , 2019, CHI.
[39] Patrick Olivier,et al. Making 3D printed objects interactive using wireless accelerometers , 2014, CHI Extended Abstracts.
[40] Pedro Lopes,et al. Metamaterial Mechanisms , 2016, UIST.
[41] Scott E. Hudson,et al. Desktop Electrospinning: A Single Extruder 3D Printer for Producing Rigid Plastic and Electrospun Textiles , 2019, CHI.
[42] Anthony Esposito,et al. Fluid Power with Applications , 1980 .
[43] Martin Schmitz,et al. Capricate: A Fabrication Pipeline to Design and 3D Print Capacitive Touch Sensors for Interactive Objects , 2015, UIST.
[44] Yoshihiro Kawahara,et al. MorphIO: Entirely Soft Sensing and Actuation Modules for Programming Shape Changes through Tangible Interaction , 2019, Conference on Designing Interactive Systems.
[45] Keita Watanabe,et al. A 3D Printer Head as a Robotic Manipulator , 2019, UIST.