Tangible Explorations of Sonolithography

Tangible Explorations of Sonolithography
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超声波光刻技术的具体探索

DOI:
10.1145/3623509.3633387
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发表时间:
2024
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Child O
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声光刻技术是通过在超声场中施加声辐射力来对空气中的颗粒进行定向图案化的过程。在这项工作中,我们提出了一种通过有形互动来探索和获得对该过程的直觉的新颖方法。我们演示了用于创建超声波光刻技术的物理仪器的设计和使用。该设计包括“Orbograph”,一种有形控制器,通过直接触觉交互体现关键声学参数;低成本、开源的驱动电路;和可配置的换能器阵列。我们通过展示使用该工具制作的包含线性图案、网格、圆形和更复杂形状的超声波光刻技术来展示其功能。通过使用不同的染料和活性材料,我们展示了声光刻技术的创造性应用,并表明了其在交互式设备制造中的潜力。通过这项工作,我们鼓励对该领域进行有趣的艺术探索,以激发未来对有形材料相互作用的声光刻技术的研究。
Sonolithography is the process of directed patterning of airborne particles through the exertion of acoustic radiation forces in ultrasound fields. In this work we present a novel way to explore and gain intuition about the process through tangible interaction. We demonstrate the design and use of a physical instrument for the creation of sonolithographs. The design includes the “Orbograph”, a tangible controller that embodies key acoustic parameters through direct tactile interactions; a low-cost and open-source driving circuit; and a configurable transducer array. We demonstrate its capabilities by presenting sonolithographs made with the tool that contain linear patterns, grids, circular and more complex shapes. By using different dyes and active materials, we demonstrate sonolithography's creative application as well as suggest its potential in the fabrication of interactive devices. Through this work we encourage a playful artistic exploration of the domain to motivate future research in sonolithography for tangible material interactions.
DOI: 10.1145/3290607.3313014
发表时间: 2019
期刊: Extended Abstracts of the 2019 CHI Conference on Human Factors in Computing Systems
影响因子: --
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