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Transforming a Monolithic Sheet of Nitinol into a Passive Reconfigurable Tactile Pixel Array Display at Braille Resolution

机译:在盲文分辨率下将一块Nitinol转化为无源可重新配置触觉像素阵列显示器

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Shape changing materials create a unique opportunity to design reconfigurable tactile display actuators. In this paper, we present a method that transforms a single thin monolithic sheet of Nitinol into a passive reconfigurable tactile pixel array at Braille resolution. We have designed a 27x27 tactile pixel array in which each pixel can be selectively actuated with an external source of heat. The pixels rise 0.4mm vertically with a peak blocked force of 0.28kg and have an average blocked force of 0.23kg at room temperature. After cooling, the pixels can be mechanically reconfigured back to their flat state for repeatable actuation. We demonstrate this actuator’s interactive capabilities through a novel erasable tactile drawing interface.
机译:形状更换材料为设计可重新配置的触觉显示器执行器创造了独特的机会。 在本文中,我们提出了一种在盲文分辨率下将单个薄型的镍钛醇片薄片转变为无源可重新配置的触觉像素阵列。 我们设计了一种27x27触觉像素阵列,其中可以用外部热源选择性地致动每个像素。 像素垂直上升0.4mm,峰值阻塞力为0.28kg,在室温下具有0.23g的平均阻塞力。 冷却后,可以将像素机械地重新配置回它们的平坦状态以进行可重复致动。 我们通过新型可擦除触觉绘图界面展示了这种执行器的交互功能。

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