milliMorph -- Fluid-Driven Thin Film Shape-Change Materials for Interaction Design

milliMorph -- Fluid-Driven Thin Film Shape-Change Materials for Interaction Design
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milliMorph——用于交互设计的流体驱动薄膜形状变化材料

DOI:
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发表时间:
2019
期刊:
ACM Symposium on User Interface Software and Technology
影响因子:
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通讯作者:
H. Ishii
H. Ishii
中科院分区:
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文献类型:
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作者:
Qiuyu Lu;Jifei Ou;João Wilbert;André Haben;Haipeng Mi;H. Ishii

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本文介绍了用于有形驱动界面的毫米尺度流体室和流道的设计空间、制造系统和应用。设计和制造微流控流室的能力使人们能够在薄膜材料上创建高频驱动、流动顺序控制和高分辨率设计。我们提出了一个创建这些流体室的四维设计空间,一种新型的热密封系统,可以轻松而精确地制造微流体,并展示了所制备的材料在触觉、环境设备和机器人中的应用。随着变形材料越来越多地被整合到设计新颖的界面中,MilliMorph丰富了流体驱动的变形材料库,并展示了在产品和交互设计中独特的毫米级新设计机会。
This paper presents a design space, a fabrication system and applications of creating fluidic chambers and channels at millimeter scale for tangible actuated interfaces. The ability to design and fabricate millifluidic chambers allows one to create high frequency actuation, sequential control of flows and high resolution design on thin film materials. We propose a four dimensional design space of creating these fluidic chambers, a novel heat sealing system that enables easy and precise millifluidics fabrication, and application demonstrations of the fabricated materials for haptics, ambient devices and robotics. As shape-change materials are increasingly integrated in designing novel interfaces, milliMorph enriches the library of fluid-driven shape-change materials, and demonstrates new design opportunities that is unique at millimeter scale for product and interaction design.
DOI: 10.1039/b904354c
发表时间: 2009-11-07
期刊: Lab on a chip
影响因子: 6.1
作者:
Rhee M;Burns MA
通讯作者: Burns MA