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Pouch Motors: Printable Soft Actuators Integrated with Computational Design

机译:袋式电机:可编程软驱动器与计算设计集成

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摘要

We propose pouch motors, a new family of printable soft actuators integrated with computational design. The pouch motor consists of one or more inflatable gas-tight bladders made of sheet materials. This printable actuator is designed and fabricated in a planar fashion. It allows both easy prototyping and mass fabrication of affordable robotic systems. We provide theoretical models of the actuators compared with the experimental data. The measured maximum stroke and tension of the linear pouch motor are up to 28% and 100 N, respectively. The measured maximum range of motion and torque of the angular pouch motor are up to 80° and 0.2 N, respectively. We also develop an algorithm that automatically generates the patterns of the pouches and their fluidic channels. A custom-built fabrication machine streamlines the automated process from design to fabrication. We demonstrate a computer-generated life-sized hand that can hold a foam ball and perform gestures with 12 pouch motors, which can be fabricated in 15 min.
机译:我们提出了袋式电动机,这是与计算设计集成的新型可打印软致动器系列。袋式电动机由一个或多个由片状材料制成的可充气气密囊组成。该可打印致动器以平面方式设计和制造。它允许简单的原型制作和可负担的机器人系统的大量制造。我们提供了执行器的理论模型与实验数据的比较。测得的线性袋装电机最大冲程和张力分别高达28%和100N。测得的袋装电机最大运动和扭矩最大范围分别为80°和0.2N。我们还开发了一种算法,该算法可自动生成囊袋及其流体通道的模式。定制的制造机器可简化从设计到制造的自动化流程。我们演示了一个计算机生成的与实物大小一样的手,它可以握住一个泡沫球并用12个可在15分钟内完成组装的袋装电机执行手势。

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