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Electropermanent magnetic connectors and actuators : devices and their application in programmable matter

机译:电永磁磁性连接器和执行器:设备及其在可编程物质中的应用

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摘要

Programmable matter is a digital material having computation, sensing, and actuation capabilities as continuous properties active over its whole extent. To make programmable matter economical to fabricate, we want to use electromagnetic direct drive, rather than clockwork, to actuate the particles. Previous attempts to fabricate small scale (below one centimeter) robotic systems with electromagnetic direct-drive have typically run into problems with insufficient force or torque, excessive power consumption and heat generation (for magnetic-drive systems), or high-voltage requirements, humidity sensitivity, and air breakdown. (for electrostatic-drive systems) The electropermanent magnet is a solid-state device whose external magnetic flux can be stably switched on and off by a discrete electrical pulse. Electropermanent magnets can provide low-power connection and actuation for programmable matter and other small-scale robotic systems. The first chapter covers the electropermanent magnet, its physics, scaling, fabrication, and our experimental device performance data. The second introduces the idea of electropermanent actuators, covers their fundamental limits and scaling, and shows prototype devices and performance measurements. The third chapter describes the smart pebbles system, which consists of 12-mm cubes that can form shapes by stochastic self-assembly and self-disassembly. The fourth chapter describes the millibot, a continuous chain of programmable matter which forms shapes by folding.
机译:可编程物质是一种数字材料,具有计算,传感和驱动功能,在整个范围内具有连续性。为了使可编程物质制造起来经济,我们要使用电磁直接驱动而不是发条来驱动粒子。先前用电磁直接驱动制造小规模(不到1厘米)机器人系统的尝试通常遇到以下问题:力或扭矩不足,功率消耗和热量产生过多(对于电磁驱动系统)或高压要求,潮湿灵敏度和空气击穿。 (对于静电驱动系统)永磁体是一种固态设备,其外部磁通量可以通过离散的电脉冲稳定地打开和关闭。永久磁铁可以为可编程物质和其他小型机器人系统提供低功率连接和驱动。第一章介绍了永磁体,其物理性质,缩放,制造以及我们的实验设备性能数据。第二部分介绍了电动永久执行器的概念,涵盖了其基本限制和缩放比例,并展示了原型设备和性能测量结果。第三章介绍了智能鹅卵石系统,该系统由12毫米的立方体组成,可以通过随机自组装和自组装来形成形状。第四章介绍了millibot,这是可编程物质的连续链,通过折叠形成形状。

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