CompuMat: A Computational Composite Material for Tangible Interaction

Xinyi Yang, M. Nisser, Stefanie Mueller
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引用次数: 1

Abstract

This paper introduces a computational composite material comprising layers for actuation, computation and energy storage. Key to its design is inexpensive materials assembled from traditionally available fabrication machines to support the rapid exploration of applications from computational composites. The actuation layer is a soft magnetic sheet that is programmed to either bond, repel, or remain agnostic to other areas of the sheet. The computation layer is a flexible PCB made from copper-clad kapton engraved by a fiber laser, powered by a third energy-storage layer comprised of 0.4mm-thin lithium polymer batteries. We present the material layup and an accompanying digital fabrication process enabling users to rapidly prototype their own untethered, interactive and tangible prototypes. The material is low-profile, inexpensive, and fully untethered, capable of being used for a variety of applications in HCI and robotics including structural origami and proprioception.
CompuMat:一种用于有形交互的计算复合材料
介绍了一种由驱动层、计算层和储能层组成的计算复合材料。其设计的关键是由传统制造机器组装的廉价材料,以支持计算复合材料应用的快速探索。驱动层是一个软磁片,它被编程为要么粘合,排斥,要么与片的其他区域保持不可知。计算层是一个柔性PCB,由光纤激光雕刻的铜包层卡普顿制成,由0.4毫米薄的锂聚合物电池组成的第三层储能层供电。我们展示了材料堆叠和伴随的数字制造过程,使用户能够快速制作自己的不受束缚,互动和有形的原型。这种材料不引人注目,价格低廉,并且完全不受束缚,能够用于各种HCI和机器人应用,包括结构折纸和本体感觉。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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